Claims
- 1. A passivated rare earth magnet composition, comprising:
- particles of at least one rare earth magnet material,
- a passivating agent, said passivating agent being an (A) oxidation resistant composition, or an (B) corrosion inhibitor, or mixtures of (A) and (B), or layers of (A) and (B) in any order, said passivating agent attached to and coating said at least one rare earth magnet material, the total amount of said passivating agent being 20 percent or less by weight based upon the total weight of said rare earth magnet material and said passivating agent, and
- a binder adhering said coated particles of said at least one rare earth magnet material together and forming a passivated rare earth magnet composition, said binder comprising a thermoset polymer, a thermoplastic polymer, an elastomer, a reaction injection molding binder, or combinations thereof, the amount of said binder being from about 2 percent to about 60 percent by volume based upon the total volume of said rare earth magnetic material, said passivating agent, and said binder.
- 2. A passivated rare earth magnet composition according to claim 1, wherein
- said (A) oxidation resistant composition comprises a (Ay) ternary composition, or a (Ax) binary composition, or mixtures thereof,
- said (Ay) ternary composition comprising
- (1) an amino containing silane,
- (2) an epoxy silane, and
- (3) an epoxy resin,
- said (Ay1) amino containing silane being an aminosilane or a polyaminosilane having the formula ##STR6## wherein said R.sup.1 group has from 1 to 30 carbon atoms, wherein said R.sup.1 group is an aliphatic, an aromatic, or combinations thereof, wherein n is 1 or 0, wherein R.sup.2 and R.sup.3, independently, is an aliphatic, an aromatic, or combinations thereof having from 1 to 20 carbon atoms, wherein Y and Z independently is a hydrogen atom, an aminoalkyl group, a polyaminoalkyl group, an aryl group, an alkylalkoxysilane group, or an aminoalkylalkoxysilane group wherein said alkyl group has from 1 to 12 carbon atoms and said alkoxy group has from 1 to 6 carbon atoms,
- wherein said (Ay2) epoxy silane compound has the formula ##STR7## wherein said R.sup.1 group has from to 30 carbon atoms, wherein said R.sup.1 group is an aliphatic, an aromatic, or combinations thereof, wherein n is 1 or 0, wherein R.sup.2 and R.sup.3, independently, is an aliphatic, an aromatic, or combinations thereof having from 1 to 20 carbon atoms, and wherein T is an epoxycyclohexyl group, a glycidoxy group, or an alkyl derivative thereof,
- wherein the amount of said (Ay1) amino containing silane and said (Ay2) epoxy silane in said coating composition each, independently, being from about 5 to about 70 parts by weight per 100 parts by weight of said (Ay) composition, and wherein the amount of said (Ay3) epoxy compound being from about 5 parts to about 90 parts by weight per every 100 parts by weight of said (Ay) coating composition,
- said (Ax) binary oxidation resistant coating comprising:
- (1) an amino containing silane, and
- (2) an epoxy silane or an epoxy resin, said (Ax1) amino containing silane being an amino silane or a polyaminosilane having the same formula as said (Ay1) amino containing silane wherein said R.sup.1, R.sup.2, R.sup.3, Y, and Z, independently, are as set forth in said (Ay1) formula and wherein n is 0 or 1,
- wherein (Ax2) epoxy silane has the same formula of said (Ay2) epoxy silane, wherein said R.sup.1, R.sup.2, R.sup.3, and T, independently, are as set forth in said (Ay2) formula and wherein n is 0 or 1,
- wherein the amount of said (Ax1) amino containing silane is from about 20 parts to about 80 parts by weight based upon the total weight of said (Ax1) amino containing silane and said (Ax2) epoxy silane or said epoxy resin, and wherein the amount of said (Ax2) epoxy silane or said epoxy resin is from about 80 parts to about 20 parts by weight based upon the total weight of said (Ax2) epoxy silane or said epoxy resin and said (Ax1) amino containing silane.
- 3. A passivated rare earth magnet composition according to claim 2, wherein said corrosion inhibitor is an oxymetallate, or a zinc salt, or combinations thereof, wherein said oxymetallate inhibitor is various phosphates, various molybdates, various polymolybdates, various chromates, various dichromates, various silicates, or combinations thereof, wherein said R.sup.1 of said (Ay1) and said (Ax1) amino-containing silane compound, independently, is an aliphatic having from 1 to 20 carbon atoms, an aromatic or an alkyl substituted aromatic having from 6 to 30 carbon atoms, and wherein R.sup.2 and R.sup.3 of said (Ay1) and said (Ax1) amino-containing silane, and said Ay2) and said (Ax2) epoxy silane, independently, is an aliphatic having from 1 to 11 carbon atoms.
- 4. A passivated rare earth magnet composition according to claim 3, wherein the average particle size of said rare earth magnet particles is from about 1 to about 700 microns.
- 5. A passivated rare earth magnet composition according to claim 4, wherein said R.sup.1 of said (Ay1) and said (Ax1) amino-containing silane compound and said (Ay2) and said (Ax2) epoxy silane compound, independently, is an alkyl containing 3 or 4 carbon atoms, an aromatic or an alkyl substituted aromatic containing from 7 to 9 carbon atoms, wherein R.sup.2 and R.sup.3 of said (Ay1) and said (Ax1) amino-containing silane compound and said (Ay2) and said (Ax2) epoxy silane compound, independently, is an alkyl having 1 or 2 carbon atoms, wherein Y group of said (Ay1) and said (Ax1) contains at least one secondary or primary amine moiety,
- wherein the amount of said (Ay1) amino-containing silane is from about 20 to about 60 parts by weight, wherein the amount of said (Ay2) epoxy silane is from about 10 parts to about 55 parts by weight, and wherein the amount of said (Ay3) epoxy resin is from about 10 parts to about 50 parts by weight, and
- wherein the amount of said (Ax1) amino-containing silane is from about 30 to about 70 parts by weight, and wherein the amount of said (Ax2) epoxy silane or said epoxy resin is from about 70 parts to about 30 parts by weight,
- wherein the amount of said passivating agent is less than 4 percent by weight, and wherein the amount of said binder is 4 percent or from about 10 percent to about 40 percent by volume.
- 6. An passivated rare earth magnet composition according to claim 5, wherein the average particle size of said rare earth magnetic particle is from about 10 microns to about 75 microns, wherein said (Ay1) and said (Ax1) amino-containing silane compound is 4-aminobutyltriethoxysilane, (aminoethylaminomethyl)phenethyltrimethoxysilane, N-(2-aminoethyl)-3-aminopropylmethyldimethoxysilane, 3-aminopropyltriethoxysilane, 3-aminopropyltrimethoxysilane, N-2-aminoethyl-3-aminopropyltrimethoxysilane, N-2-aminoethyl-3-aminopropyltris(2-ethylhexoxy)silane, 6-(aminohexylaminopropyl)trimethoxysilane, 3-aminophenyltrimethoxysilane, 3-aminopropylmethyldiethoxysilane, bis[3-(trimethoxysilyl)propyl]ethylenediamine, n-phenylaminopropyltrimethoxysilane, trimethoxysilylpropyldiethylenetriamine, .omega.-aminoundecyltrimethoxysilane, bis[3-(trimethoxysilyl)propyl]amine, dimethoxymethylsilylpropyl (polyethyleneimine), or trimethoxysilylpropyl(polyethyleneimine),
- wherein said (Ay2) and said (Ax2) epoxy silane is (3-glycidoxypropyl)methyldiethoxysilane, (3-glycidoxypropyl)trimethoxysilane, 2-(3,4-epoxycyclohexyl)ethylmethyldimethoxysilane, 2-(3,4-epoxycyclohexyl)ethyltrimethoxysilane, or [2-(3,4-epoxy-4-methylcyclohexyl)propyl]methyldiethoxy silane, and wherein said (Ay3) and said (Ax2) epoxy is the reaction product of bisphenol A and epichlorohydrin,
- wherein the amount of said (Ay1) amino-containing silane is from about 35 to about 50 parts by weight, wherein the amount of said (Ay2) epoxy silane is from about 15 to about 40 parts by weight, and wherein the amount of said (Ay3) epoxy resin is from about 20 to about 40 parts by weight,
- and wherein said oxymetallate is M.sub.2 CrO.sub.4 or M.sub.2 CR.sub.2 O.sub.7 where M is H, Li, Na, or K.
- 7. A passivated rare earth magnet composition according to claim 1, wherein said rare earth magnet material is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt, or an alloy of neodymium, iron, boron and cobalt.
- 8. A passivated rare earth magnet composition according to claim 4 wherein said rare earth magnet material is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt, or an alloy of neodymium, iron, boron and cobalt.
- 9. A passivated rare earth magnet composition according to claim 5, wherein said rare earth magnet material is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt, or an alloy of neodymium, iron, boron and cobalt.
- 10. A passivated rare earth magnet composition according to claim 6, wherein said rare earth magnet material is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt, or an alloy of neodymium, iron, boron and cobalt.
- 11. A passivated rare earth magnet composition according to claim 1, including an antidegradant in combination with said passivating agent coating to said at least one rare earth magnet material.
- 12. An passivated rare earth magnet composition according to claim 2, including an antidegradant in combination with said passivating agent coating to said at least one rare earth magnet material, said antidegradant being an organic phosphorous compound or an amine salt thereof, or an alcohol having from 8 to 25 carbon atoms, or a polyvinyl alcohol.
- 13. A passivated rare earth magnet composition according to claim 4, including up to about 25 percent by volume of an antidegradant based upon said antidegradant and said rare earth magnet material, said antidegradant in combination with said passivating agent coating said at least one rare earth magnet material, said antidegradant having the formula ##STR8## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an aliphatic, an aromatic, or combinations thereof having from 1 to 25 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; wherein R.sup.10 through R.sup.32, independently, is an aliphatic, an aromatic, or combinations thereof, having a total of from 1 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol.
- 14. A passivated rare earth magnet composition according to claim 6, including up to about 25 percent by volume of an antidegradant based upon said antidegradant and said rare earth magnet material, said antidegradant in combination with said passivating agent coating said at least one rare earth magnet material, said antidegradant having the formula ##STR9## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an alkyl having from 15 to 20 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; wherein R.sup.10 through R.sup.32, independently, is an alkyl having from 12 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol.
- 15. A passivated rare earth magnet composition according to claim 14, including up to about 2 percent volume of an antidegradant based upon said antidegradant and said rare earth magnet material, said antidegradant being distearyl pentaerythritol diphosphite, dilauryl phosphate, trilauryl phosphite, distearyl phosphite, di-tridecyl phosphite, tetraphenyl dipropyleneglycol diphosphite, or trisnonylphenyl phosphite, dodecanol, octadecanol, polyvinyl alcohol, or combinations thereof.
- 16. A passivated rare earth magnet composition according to claim 8, including an antidegradant, said antidegradant in combination with said passivating agent coating said at least one rare earth magnet material.
- 17. A passivated rare earth magnet composition according to claim 9, including up to about 25 percent by volume of an antidegradant based upon said antidegradant and said rare earth magnet material, said antidegradant in combination with said passivating agent coating and said at least one rare earth magnet material, said antidegradant having the formula ##STR10## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an alkyl having from 15 to 20 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; or wherein R.sup.10 through R.sup.32, independently, is an alkyl having from 12 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol.
- 18. A passivated rare earth magnet composition according to claim 1, including an antidegradant coating residing on said passivating agent coating, or dispersed in said binder, or both, and wherein the amount of said antidegradant is from about 1 to about 40 parts by weight per 100 parts by weight of said binder.
- 19. A passivated rare earth magnet composition according to claim 2, including an antidegradant coating residing on said passivating agent coating, or dispersed in said binder, or both, and wherein the amount of said antidegradant is from about 1 to about 40 parts by weight per 100 parts by weight of said binder, wherein said antidegradant has the formula ##STR11## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an aliphatic, an aromatic, or combinations thereof, having from 1 to 25 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; or wherein R.sup.10 through R.sup.32, independently, is an aliphatic, an aromatic, or combinations thereof, having a total of from 1 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol.
- 20. A passivated rare earth magnet composition according to claim 4, including an effective amount of an antidegradant coating residing on said passivating agent coating, or dispersed in said binder, or both, wherein the amount of said antidegradant is from about 1 to about 40 parts by weight per 100 parts by weight of said binder, wherein said antidegradant has the formula ##STR12## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an alkyl having from 15 to 20 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; or wherein R.sup.10 through R.sup.32, independently, is an alkyl having from 12 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol.
- 21. A passivated rare earth magnet composition according to claim 20, including an antidegradant coating residing on said passivating agent coating, or dispersed in said binder, or both, wherein the amount of said antidegradant is from about 1 to about 20 parts by weight for every 100 parts by weight of said binder, and wherein said antidegradant is distearyl pentaerythritol diphosphite, dilauryl phosphate, trilauryl phosphite, distearyl phosphite, di-tridecyl phosphite, tetraphenyl dipropyleneglycol diphosphite, or trisnonylphenyl phosphite, dodecanol, octadecanol, polyvinyl alcohol, and combinations thereof.
- 22. A passivated rare earth magnet composition according to claim 8, including an antidegradant coating residing on said passivating agent coating, or dispersed in said binder, or both, wherein the amount of said antidegradant is from about 1 to about 40 parts by weight per 100 parts by weight of said binder.
- 23. A passivated rare earth magnet composition according to claim 11, including an antidegradant coating residing on said passivating agent coating, or dispersed in said binder, or both, wherein the amount of said antidegradant is from about 1 to about 20 parts by weight per 100 parts by weight by said binder, and wherein said antidegradant is distearyl pentaerythritol diphosphite, dilauryl phosphate, trilauryl phosphite, distearyl phosphite, di-tridecyl phosphite, tetraphenyl dipropyleneglycol diphosphite, or trisnonylphenyl phosphite, dodecanol, octadecanol, polyvinylalcohol, or combinations thereof.
- 24. A passivated rare earth magnet composition, comprising;
- particles of at least one rare earth magnet material;
- the surface of said particles passivated by a localized concentration of a passivating agent, said passivating agent comprising an (A) oxidation resistant composition, or an (B) corrosion inhibitor, a mixture of (A) and (B), or layers of localized concentrations of (A) and (B) in any order about said rare earth magnet particles, the total amount of said passivating agent being 20 percent or less by weight based upon the total weight of said rare earth magnet material and said passivating agent, said (A) oxidation resistant composition comprising a (A1) ternary composition, or (Ax) binary composition, or both, said (Ay) ternary composition comprising
- (1) an amino containing silane,
- (2) an epoxy silane, and
- (3) an epoxy resin, said (Ax) binary composition comprising
- (1) an amino containing silane, and
- (2) an epoxy silane or an epoxy resin, the amount of said binder being from about 2 percent to about 60 percent by volume based upon the total volume of said rare earth magnet material, said passivating agent, and said binder.
- 25. A passivated rare earth magnet composition, according to claim 24, wherein said magnet material contains at least one rare earth element having an atomic number of from 57 to 71, and wherein said binder is a thermoplastic, a thermoset, or combinations thereof an elastomer.
- 26. A passivated rare earth magnet composition, according to claim 23, wherein said corrosion inhibitor is an oxymetallate, or a zinc salt, or combinations thereof, wherein said oxymetallate is various phosphates, various molybdates, various polymolybdates, various chromates, various dichromates, various silicates, or combinations thereof.
- 27. A passivated rare earth magnet composition, according to claim 26, wherein
- said (Ay1) amino containing silane formula being an aminosilane or a polyaminosilane having the formula ##STR13## wherein said R.sup.1 group has from 1 to 30 carbon atoms, wherein said R.sup.1 group is an aliphatic, an aromatic, or combinations thereof, wherein n is 1 or 0, wherein R.sup.2 and R.sup.3, independently, is an aliphatic, an aromatic, or combinations thereof having from 1 to 20 carbon atoms, wherein Y and Z independently is a hydrogen atom, an aminoalkyl group, a polyaminoalkyl group, an aryl group, an alkylalkoxysilane group, or an aminoalkylalkoxysilane group wherein said alkyl group has from 1 to 12 carbon atoms and said alkoxy group has from 1 to 6 carbon atoms,
- wherein said (Ay2) epoxy silane compound has the formula ##STR14## wherein said R.sup.1 group has from 1 to 30 carbon atoms, wherein said R.sup.1 group is an aliphatic, an aromatic, or combinations thereof, wherein n is 1 or 0, wherein R.sup.2 and R.sup.3, independently, is an aliphatic, an aromatic, or combinations thereof having from 1 to 20 carbon atoms, and wherein T is an epoxycyclohexyl group, a glycidoxy group, or an alkyl derivative thereof,
- wherein the amount of said (Ay1) amino containing silane and said (AY2) epoxy silane in said coating composition each, independently, being from about 5 to about 70 parts by weight per 100 parts by weight of said coating (Ay) composition, and wherein the amount of said (Ay3) epoxy compound being from about 5 parts to about 90 parts by weight per every 100 parts by weight of said (Ay) coating composition,
- said (Ax1) amino containing silane being an amino silane or a polyaminosilane having the same formula as said (Ay1) amino containing silane wherein said R.sup.1, R.sup.2, R.sup.3, Y, and Z, independently, are as set forth in said (Ay1) formula and wherein n is 0 or 1,
- wherein (Ax2) epoxy silane has the same formula of said (Ay2) epoxy silane, wherein said R.sup.1, R.sup.2, R.sup.3, and T, independently, are as set forth in said (Ay2) formula and wherein n is 0 or 1,
- wherein the amount of said (Ax1) amino containing silane is from about 20 parts to about 80 parts by weight based upon the total weight of said (Ax1) amino containing silane and said (Ax2) epoxy silane or said epoxy resin, and wherein the amount of said (Ax2) epoxy silane or said epoxy resin is from about 80 parts to about 20 parts by weight based upon the total weight of said (Ax2) epoxy silane or said epoxy resin and said (Ax1) amino containing silane.
- 28. A passivated rare earth magnet composition, according to claim 27, wherein said rare earth magnet particle has an average particle size of from about 1 to about 700 microns.
- 29. A passivated rare earth magnet composition, according to claim 28, wherein said rare earth magnet material is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt, or an alloy of neodymium, iron, boron or cobalt.
- 30. A passivated rare earth magnet composition according to claim 28, wherein said particle size of said rare earth magnet particle is from about 1 to about 100 microns, wherein said (Ay1) and said (Ax1) amino-containing silane compound is 4-aminobutyltriethoxysilane,(aminoethylaminomethyl) phenethyltrimethoxysilane, N-(2-aminoethyl)-3-aminopropylmethyldimethoxysilane, 3-aminopropyltriethoxysilane, 3-aminopropyltrimethoxysilane, N-2-aminoethyl-3-aminopropyltrimethoxysilane,N-2-aminoethyl-3-aminopropyltris (2-ethylhexoxy)silane, 6-(aminohexylaminopropyl)trimethoxysilane, 3-aminophenyltrimethoxysilane, 3-aminopropylmethyldiethoxysilane, bis[3-(trimethoxysilyl)propyl]ethylenediamine, n-phenylaminopropyltrimethoxysilane, trimethoxysilylpropyldiethylenetriamine, .omega.-aminoundecyltrimethoxysilane, bis[3-(trimethoxysilyl)propyl]amine, dimethoxymethylsilylpropyl (polyethyleneimine), or trimethoxysilylpropyl(polyethylenimine),
- wherein said (Ay2) and said (Ax2) epoxy silane is (3-glycidoxypropyl)methyldiethoxysilane, (3-glycidoxypropyl)trimethoxysilane,2-(3,4-epoxycyclohexyl)ethylmethyldimethoxysilane, 2-(3,4-epoxycyclohexyl)ethyltrimethoxysilane, or [2-(3,4-epoxy4-methylcyclohexyl)propyl]methyldiethoxy silane, and wherein said (Ay3) and said (Ay2) epoxy is the reaction product of bisphenol A and epichlorohydrin.
- 31. A passivated rare earth magnet composition, according to claim 30, wherein said elastomer is a nitrile rubber, polyacrylate rubber, polyepichlorohydrin, ethylene-propylene-diene (EPDM), silicone graph EPDM, chlorosulfonated polyethylene, polyurethane elastomer, or combinations thereof, wherein said thermoplastic binder is polyethylene, polypropylene, polyamide, thermoplastic polyurethanes, polyphenylene sulfide, and combinations thereof, and wherein said thermoset binder is a polyurethane, an epoxy, and combinations thereof, and wherein said oxymetallate inhibitor is M.sub.2 CrO.sub.4 or M.sub.2 Cr.sub.2 O.sub.7 where M is H, Li, Na, or K.
- 32. A passivated rare earth magnet composition, according to claim 31, wherein said binder is a saturated nitrile rubber containing from 30 to 50 percent by weight of acrylonitrile units and from 50 to 70 percent by weight of butadiene units, wherein said nitrile rubber is at least 85 percent saturated, or a tetraglycidyl ether of tetraphenol ethane.
- 33. A passivated rare earth magnet composition, according to claim 25, including an antidegradant in said rare earth magnet composition, wherein the amount of said antidegradant is from about 1 to about 40 parts by weight for every 100 parts by weight of said binder, wherein said antidegradant is an organic phosphorus compound or an amine salt thereof, or an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, or an aromatic substituted aliphatic alcohol, having from 8 to 25 carbon atoms, or polyvinylalcohol.
- 34. A passivated rare earth magnet composition, according to claim 28, including an antidegradant in said rare earth magnet composition, wherein the amount of said antidegradant is from about 1 to about 40 parts by weight for every 100 parts by weight of said binder, said antidegradant having the formula ##STR15## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an aliphatic, an aromatic, or combinations thereof, having from 1 to 25 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; or wherein R.sup.10 through R.sup.32, independently, is an aliphatic, an aromatic, or combinations thereof, having a total of from 1 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol.
- 35. A passivated rare earth magnet composition, according to claim 31, including an antidegradant in combination with said passivating agent, wherein the amount of said antidegradant is from about 1 to about 40 parts by weight for every 100 parts by weight of said binder, said antidegradant having the formula ##STR16## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an alkyl having from 15 to 20 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; or wherein R.sup.10 through R.sup.32, independently, is an alkyl having from 12 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol.
- 36. A passivated rare earth magnet composition, according to claim 32, including an antidegradant in combination with said passivating agent, wherein the amount of said antidegradant is from about 1 to about 40 parts by weight for every 100 parts by weight of said binder, said antidegradant having the formula ##STR17## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an alkyl having from 15 to 20 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; or wherein R.sup.10 through R.sup.32, independently, is an alkyl having from 12 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, or m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol.
- 37. A sintered rare earth magnet article, comprising:
- a sintered rare earth magnet,
- the surface of said sintered rare earth magnet passivated by a localized concentration of a passivating agent, said passivating agent comprising an (A) oxidation resistant composition, or an (B) corrosion inhibitor, a mixture of (A) and (B), or layers of localized concentrations of (A) and (B) in any order about said rare earth magnet particles, the total amount of said passivating agent being 20 percent or less by weight based upon the total weight of said rare earth magnet and said passivating agent, said (A) oxidation resistant composition comprising a (Ay) ternary composition, or (Ax) binary composition, or both, said (Ay) ternary composition comprising
- (1) an amino containing silane,
- (2) an epoxy silane, and
- (3) an epoxy resin,
- said (Ax) binary composition comprising
- (1) an amino containing silane, and
- (2) an epoxy silane or an epoxy resin, and
- said sintered article being free of a binder.
- 38. A sintered rare earth magnet article, according to claim 37, wherein said magnet material contains at least one rare earth element having an atomic number of from 57 to 71, and wherein the amount of said passivating agent is about 20 percent or less by weight based upon the total weight of said rare earth magnet particles.
- 39. A sintered rare earth magnet article, according to claim 38, wherein
- said (Ay1) amino containing silane formula is an aminosilane or a polyaminosilane having the formula ##STR18## wherein said R.sup.1 group has from to 30 carbon atoms, wherein said R.sup.1 group is an aliphatic, an aromatic, or combinations thereof, wherein n is 1 or 0, wherein R.sup.2 and R.sup.3, independently, is an aliphatic, an aromatic, or combinations thereof having from 1 to 20 carbon atoms, wherein Y and Z independently is a hydrogen atom, an aminoalkyl group, a polyaminoalkyl group, an aryl group, an alkylalkoxysilane group, or an aminoalkylalkoxysilane group wherein said alkyl group has from 1 to 12 carbon atoms and said alkoxy group has from 1 to 6 carbon atoms,
- wherein said (Ay2) epoxy silane compound has the formula ##STR19## wherein said R.sup.1 group has from 1 to 30 carbon atoms, wherein said R.sup.1 group is an aliphatic, an aromatic, or combinations thereof, wherein n is 1 or 0, wherein R.sup.2 and R.sup.3, independently, is an aliphatic, an aromatic, or combinations thereof having from 1 to 20 carbon atoms, and wherein T is an epoxycyclohexyl group, a glycidoxy group, or an alkyl derivative thereof,
- wherein the amount of said (Ay1) amino containing silane and said (Ay2) epoxy silane in said coating composition each, independently, being from about 5 to about 70 parts by weight per 100 parts by weight of said coating composition, and wherein the amount of said (Ay3) epoxy compound being from about 5 parts to about 90 parts by weight per every 100 parts by weight of said (Ay) coating composition,
- wherein said (Ax1) amino containing silane is an amino silane or a polyaminosilane having the same formula as said (Ay1) amino containing silane wherein said R.sup.1, R.sup.2, R.sup.3, Y, and Z, independently, are as set forth in said (Ay1) formula and wherein n is 0 or 1,
- wherein (Ax2) epoxy silane has the same formula of said (Ay2) epoxy silane, wherein said R.sup.1, R.sup.2, R.sup.3, and T, independently, are as set forth in said (Ay2) formula and wherein n is 0 or 1,
- wherein the amount of said (Ax1) amino containing silane is from about 20 parts to about 80 parts by weight based upon the total weight of said (Ax1) amino containing silane and said (Ax2) epoxy silane or said epoxy resin, and wherein the amount of said (Ax2) epoxy silane or said epoxy resin is from about 80 parts to about 20 parts by weight based upon the total weight of said (Ax2) epoxy silane or said epoxy resin and said (Ax1) amino containing silane.
- 40. A sintered rare earth magnet article, according to claim 16, wherein said rare earth magnet material is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt or an alloy of neodymium, iron, boron and cobalt.
- 41. A sintered rare earth magnet article, according to claim 40, including an antidegradant, wherein said is an organic phosphorous compound; an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, or an aromatic substituted aliphatic alcohol, having from 8 to 25 carbon atoms; or polyvinylalcohol.
- 42. A passivated rare earth magnet-binder blend article, comprising:
- a blend of a binder and rare earth magnet particles, said binder being a thermoplastic, a thermoset, an elastomer, or a reaction injection molded compound, said rare earth magnet particle containing at least one rare earth element having an atomic number of from 57 to 71, said blend encapsulated by a passivating agent, said passivating agent comprising an (A) oxidation resistant composition or an (B) corrosion inhibitor, or mixtures thereof, the amount of said passivating agent being 20 percent by weight or less based upon the total weight of said passivating agent, said binder, and said rare earth magnet particles.
- 43. A passivated rare earth magnet-binder blend article, according to claim 42, wherein said oxidation resistant composition comprises a (Ay) ternary composition, or a (Ax) binary composition, or both, said (Ay) ternary composition comprising
- (1) an amino containing silane,
- (2) an epoxy silane, and
- (3) an epoxy resin, said (Ax) binary composition comprising
- (1) an amino containing silane, and
- (2) an epoxy silane or an epoxy resin.
- 44. A passivated rare earth magnet-binder blend article, according to claim 43, wherein
- said (Ay1) amino containing silane formula is an aminosilane or a polyaminosilane having the formula ##STR20## wherein said R.sup.1 group has from 1 to 30 carbon atoms, wherein said R.sup.1 group is an aliphatic, an aromatic, or combinations thereof, wherein n is 1 or 0, wherein R.sup.2 and R.sup.3, independently, is an aliphatic, an aromatic, or combinations thereof having from 1 to 20 carbon atoms, wherein Y and Z independently is a hydrogen atom, an aminoalkyl group, a polyaminoalkyl group, an aryl group, an alkylalkoxysilane group, or an aminoalkylalkoxysilane group wherein said alkyl group has from 1 to 12 carbon atoms and said alkoxy group has from 1 to 6 carbon atoms,
- wherein said (Ay2) epoxy silane compound has the formula ##STR21## wherein said R.sup.1 group has from to 30 carbon atoms, wherein said R.sup.1 group is an aliphatic, an aromatic, or combinations thereof, wherein n is 1 or 0, wherein R.sup.2 and R.sup.3, independently, is an aliphatic, an aromatic, or combinations thereof having from 1 to 20 carbon atoms, and wherein T is an epoxycyclohexyl group, a glycidoxy group, or an alkyl derivative thereof,
- wherein the amount of said (Ay1) amino containing silane and said (Ay2) epoxy silane in said coating composition each, independently, being from about 5 to about 70 parts by weight per 100 parts by weight of said (Ay) composition, and wherein the amount of said (Ay3) epoxy compound being from about 5 parts to about 90 parts by weight per every 100 parts by weight of said (Ay) coating composition,
- wherein said (Ax1) amino containing silane is an amino silane or a polyaminosilane having the same formula as said (Ay1) amino containing silane wherein said R.sup.1, R.sup.2, R.sup.3, Y, and Z, independently, are as set forth in said (Ay1) formula and wherein n is 0 or 1,
- wherein (Ax2) epoxy silane has the same formula of said (Ay2) epoxy silane, wherein said R.sup.1, R.sup.2, R.sup.3, and T, independently, are as set forth in said (Ay2) formula and wherein n is 0 or 1,
- wherein the amount of said (Ax1) amino containing silane is from about 20 parts to about 80 parts by weight based upon the total weight of said (Ax1) amino containing silane and said (Ax2) epoxy silane or said epoxy resin, and wherein the amount of said (Ax2) epoxy silane or said epoxy resin is from about 80 parts to about 20 parts by weight based upon the total weight of said (Ax2) epoxy silane or said epoxy resin and said (Ax1) amino containing silane.
- 45. A passivated rare earth magnet-binder blend article, according to claim 44, wherein said rare earth magnet particle is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt.
- 46. A passivated rare earth magnet-binder blend article, according to claim 45, wherein said elastomer is a nitrile rubber, polyacrylate rubber, polyepichlorohydrin, ethylene-propylene-diene (EPDM), silicone graph EPDM, chlorosulfonated polyethylene, polyurethane elastomer, or combinations thereof, wherein said thermoplastic binder is polyethylene, polypropylene, polyamide, thermoplastic polyurethanes, polyphenylene sulfide, and combinations thereof, and wherein said thermoset binder is a polyurethane, an epoxy, and combinations thereof.
- 47. An injection molded ,magnetic article, comprising the composition of claim 1.
- 48. An injection molded magnetic article, comprising the composition of claim 6.
- 49. An injection molded magnetic article, comprising the composition of claim 25.
- 50. An injection molded magnetic article, comprising the composition of claim 37.
- 51. An injection molded magnetic article, comprising the composition of claim 12.
- 52. A compression molded magnetic article, comprising the composition of claim 1.
- 53. A compression molded magnetic article, comprising the composition of claim 6.
- 54. A compression molded magnetic article, comprising the composition of claim 25.
- 55. A compression molded magnetic article, comprising the composition of claim 37.
- 56. A compression molded magnetic article, comprising the composition of claim 12.
- 57. A reaction injection molded magnetic article, comprising the composition of claim 1.
- 58. A reaction injection molded magnetic article, comprising the composition of claim 6.
- 59. A reaction injection molded magnetic article, comprising the composition of claim 25.
- 60. A reaction injection molded magnetic article, comprising the composition of claim 37.
- 61. A reaction injection molded magnetic article, comprising the composition of claim 12.
- 62. A passivated rare earth magnet composition, comprising;
- particles of at least one rare earth magnet material;
- the surface of said particles passivated by a localized concentration of a plasma-treated passivating agent, said passivating agent comprising an (A) oxidation resistant composition, or an (B) corrosion inhibitor, a mixture of (A) and (B), or layers of localized concentrations of (A) and (B) in any order about said rare earth magnet particles, said (A) oxidation resistant composition comprising a (A1) ternary composition, or (Ax) binary composition, or both, said (Ay) ternary composition comprising
- (1) an amino containing silane,
- (2) an epoxy silane, and
- (3) an epoxy resin, said (Ax) binary composition comprising
- (1) an amino containing silane, and
- (2) an epoxy silane or an epoxy resin,
- the total amount of said plasma-treated passivating agent being 20 percent or less by weight based upon a total weight of said rare earth magnet material and said plasma-treated passivating agent, and a binder bonding said passivated particles together, and the amount of said binder being from about 2 percent to about 60 percent by volume based upon the total volume of said rare earth magnet material, said plasma-treated passivating agent, and said binder.
- 63. A passivated rare earth magnet composition, according to claim 62, wherein said magnet material contains at least one rare earth element having an atomic number of from 57 to 71, wherein said binder is a thermoplastic, a thermoset, an elastomer, reaction injection molded compound and wherein said passivating agent particles have been treated with an ionized gas plasma in a vacuum of from about 100 to about 10.sup.-6 torr at a radio frequency of from about 10 hertz to about 10.sup.9 hertz.
- 64. A passivated rare earth magnet composition, according to claim 63, wherein said (A) oxidation resistant composition comprises a (Ay) ternary composition, or a (Ax) binary composition, or mixtures thereof,
- said (Ay) ternary composition comprising
- (1) an amino containing silane,
- (2) an epoxy silane, and
- (3) an epoxy resin,
- said (Ay1) amino containing silane being an aminosilane or a polyaminosilane having the formula ##STR22## wherein said R.sup.1 group has from to 30 carbon atoms, wherein said R.sup.1 group is an aliphatic, an aromatic, or combinations thereof, wherein n is 1 or 0, wherein R.sup.2 and R.sup.3, independently, is an aliphatic, an aromatic, or combinations thereof having from 1 to 20 carbon atoms, wherein Y and Z independently is a hydrogen atom, an aminoalkyl group, a polyaminoalkyl group, an aryl group, an alkylalkoxysilane group, or an aminoalkylalkoxysilane group wherein said alkyl group has from 1 to 12 carbon atoms and said alkoxy group has from 1 to 6 carbon atoms,
- wherein said (Ay2) epoxy silane compound has the formula ##STR23## wherein said R.sup.1 group has from to 30 carbon atoms, wherein said R.sup.1 group is an aliphatic, an aromatic, or combinations thereof, wherein n is 1 or 0, wherein R.sup.2 and R.sup.3, independently, is an aliphatic, an aromatic, or combinations thereof having from 1 to 20 carbon atoms, and wherein T is an epoxycyclohexyl group, a glycidoxy group, or an alkyl derivative thereof,
- wherein the amount of said (Ay1) amino containing silane and said (Ay2) epoxy silane in said coating composition each, independently, being from about 5 to about 70 parts by weight per 100 parts by weight of said (Ay) composition, and wherein the amount of said (Ay3) epoxy compound being from about 5 parts to about 90 parts by weight per every 100 parts by weight of said (Ay) coating composition,
- said (Ax) binary oxidation resistant coating comprising;
- (1) an amino containing silane, and
- (2) an epoxy silane or an epoxy resin, said (Ax1) amino containing silane being an amino silane or a polyaminosilane having the same formula as said (Ay1) amino containing silane wherein said R.sup.1, R.sup.2, R.sup.3, Y, and Z, independently, are as set forth in said (Ay1) formula and wherein n is 0 or 1,
- wherein (Ax2) epoxy silane has the same formula of said (Ay2) epoxy silane, wherein said R.sup.1, R.sup.2, R.sup.3, and T, independently, are as set forth in said (Ay2) formula and wherein n is 0 or 1,
- wherein the amount of said (Ax1) amino containing silane is from about 20 parts to about 80 parts by weight based upon the total weight of said (Ax1) amino containing silane and said (Ax2) epoxy silane or said epoxy resin, and wherein the amount of said (Ax2) epoxy silane or said epoxy resin is from about 80 parts to about 20 parts by weight based upon the total weight of said (Ax2) epoxy silane or said epoxy resin and said (Ax1) amino containing silane.
- 65. A passivated rare earth magnet composition, according to claim 64, wherein said rare earth magnet particle has an average particle size of from about 1 to about 700 microns and wherein said ionized gas plasma is an inert gas plasma, wherein said vacuum is from about 10 to about 0.001 torr, and wherein said radio frequency is from about 60 hertz to about 20 megahertz.
- 66. A passivated rare earth magnet composition, according to claim 62, wherein said rare earth magnet material is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt, or an alloy of neodymium, iron, boron and cobalt, wherein said corrosion inhibitor is an oxymetallate, or a zinc salt, or combinations thereof, wherein said oxymetallate is various phosphates, various molybdates, various polymolybdates, various chromates, various dichromates, various silicates, or combinations thereof.
- 67. A passivated rare earth magnet composition, according to claim 66, wherein said particle size of said rare earth magnet particle is from about 1 to about 500 microns, and wherein the amount of said passivating agent is about 4 percent or less by weight based upon the total weight of said at least one rare earth magnet materials.
- 68. A passivated rare earth magnet composition, according to claim 67, wherein said elastomer is a nitrile rubber, polyacrylate rubber, polyepichlorohydrin, ethylene-propylene-diene (EPDM), silicone graph EPDM, chlorosulfonated polyethylene, polyurethane elastomer, or combinations thereof, wherein said thermoplastic binder is polyethylene, polypropylene, polyamide, thermoplastic polyurethanes, polyphenylene sulfide, and combinations thereof, and wherein said thermoset binder is a polyurethane, an epoxy, and combinations thereof, and wherein said oxymetallate inhibitor is M.sub.2 CrO.sub.4 or M.sub.2 Cr.sub.2 O.sub.7 where M is H, Li, Na, or K.
- 69. A passivated rare earth magnet composition, according to claim 68, wherein said binder is a saturated nitrile rubber containing from 30 to 50 percent by weight of acrylonitrile units and from 50 to 70 percent by weight of butadiene units, wherein said nitrile rubber is at least 85 percent saturated, or a tetraglycidyl ether of tetraphenol ethane, wherein said ionized gas plasma is an ionized argon or helium gas.
- 70. A passivated rare earth magnet composition, according to claim 63, including a plasma-treated antidegradant in said rare earth magnet composition, wherein the amount of said plasma-treated antidegradant is from about 1 to about 40 parts by weight for every 100 parts by weight of said binder, wherein said antidegradant is an organic phosphorous compound, an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, or an aromatic substituted aliphatic alcohol, having from 8 to 25 carbon atoms, or polyvinyl-alcohol, and wherein said passivating agent particles have been treated with an ionized gas plasma in a vacuum of from about 100 to about 10.sup.-6 torr at a radio frequency of from about 10 hertz to about 10.sup.9 hertz.
- 71. A passivated rare earth magnet composition, according to claim 66, including a plasma-treated antidegradant in said rare earth magnet composition, wherein the amount of said plasma-treated antidegradant is from about 1 to about 40 parts by weight for every 100 parts by weight of said binder, said antidegradant having the formula ##STR24## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an aliphatic, an aromatic, or combinations thereof, having from 1 to 25 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; or wherein R.sup.10 through R.sup.32, independently, is an aliphatic, an aromatic, or combinations thereof, having a total of from 1 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol, and wherein said passivating agent particles have been treated with an ionized gas plasma in a vacuum of from about 100 to about 10.sup.-6 torr at a radio frequency of from about 10 hertz to about 10.sup.9 hertz.
- 72. A passivated rare earth magnet composition, according to claim 64, including a plasma-treated antidegradant in said rare earth magnet composition, wherein the amount of said plasma-treated antidegradant is from about 1 to about 40 parts by weight for every 100 parts by weight of said binder, said antidegradant having the formula ##STR25## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an alkyl having from 15 to 20 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; or wherein R.sup.10 through R.sup.32, independently, is an alkyl having from 12 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol, and wherein said plasma-treated antidegradant is treated with an inert gas plasma in a vacuum of from about 10 to about 0.001 torr at a ratio frequency of from about 10 hertz to about 10.sup.9 hertz.
- 73. A passivated rare earth magnet composition, according to claim 66, including a plasma-treated antidegradant in said rare earth magnet composition, wherein the amount of said plasma-treated antidegradant is from about 1 to about 40 parts by weight for every 100 parts by weight of said binder, said antidegradant having the formula ##STR26## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an alkyl having from 15 to 20 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; or wherein R.sup.10 through R.sup.32, independently, is an alkyl having from 12 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol and wherein said plasma-treated antidegradant is treated with an inert gas plasma in a vacuum of from about 10 to about 1 torr at a radio frequency of from about 10 hertz to about 10.sup.9 hertz.
- 74. A passivated rare earth magnet composition according to claim 7, wherein said (Ay1) and said (Ax1) amino containing silane, independently, is 3-aminopropyltriethoxysilane, 3-aminopropyltrimethoxysilane, or N-2-aminoethyl-3-aminopropyltrimethoxysilane, wherein said (Ay2) and said (Ax2) epoxy silane is 3-glycidoxypropyl)methyldiethoxysilane or 3-glycidoxypropyl)trimethoxysilane, wherein said (Ax2) epoxy is the reaction product of bisphenol A and epichlorohydrin, and wherein said binder is a nitrile rubber, an acrylate, an epoxy or combinations thereof.
- 75. A sintered rare earth magnet article, according to claim 40, wherein said corrosion inhibitor is an oxymetallate, or a zinc salt, or combinations thereof, wherein said oxymetallate inhibitor is various phosphates, various molybdates, various polymolybdates, various chromates, various dichromates, various silicates, or combinations thereof, wherein said R.sup.1 of said (Ay1) and said (Ax1) amino-containing silane compound, independently, is an aliphatic having from 1 to 20 carbon atoms, an aromatic or an alkyl substituted aromatic having from 6 to 30 carbon atoms, and wherein R.sup.2 and R.sup.3 of said (Ay1) and said (Ax1) amino-containing silane, and said (Ay2) and said (Ax2) epoxy silane, independently, is an aliphatic having from 1 to 11 carbon atoms.
- 76. A sintered rare earth magnet article according to claim 72, wherein said R.sup.1 of said (Ay1) and said (Ax1) amino-containing silane compound and said (Ay2) and said (Ax2) epoxy silane compound, independently, is an alkyl containing 3 or 4 carbon atoms, an aromatic or an alkyl substituted aromatic containing from 7 to 9 carbon atoms, wherein R.sup.2 and R.sup.3 of said (Ay1) and said (Ax1amino-containing silane compound and said (Ay2) and said (Ax2) epoxy silane compound, independently, is an alkyl having 1 or 2 carbon toms, wherein Y group of said (Ay1) and said (Ax1) contains at least one secondary or primary amine moiety,
- wherein the amount of said (Ay1) amino-containing silane is from about 20 to about 60 parts by weight, wherein the amount of said (Ay2) epoxy silane is from about 10 parts to about 55 parts by weight, and wherein the amount of said (Ay3) epoxy resin is from about 10 parts to about 50 parts by weight,
- wherein the amount of said (Ax1) amino-containing silane is from about 30 to about 70 parts by weight, and wherein the amount of said (Ax2) epoxy silane or said epoxy resin is from about 70 parts to about 30 parts by weight, and
- wherein the amount of said passivating agent is 4 percent or less by weight, and wherein the amount of said binder is from about 10 percent to about 40 percent by volume.
- 77. A sintered rare earth magnet article according to claim 73, wherein said (Ay1) and said (Ax1) amino-containing silane compound is 4-aminobutyltriethoxysilane, (aminoethylaminomethyl)phenethyltrimethoxysilane, N,-(2-aminoethyl)-3-aminopropylmethyldimethoxysilane, 3-aminopropyltriethoxysilane, 3-aminopropyltrimethoxysilane, N-2-aminoethyl-3-aminopropyltrimethoxysilane, N-2-aminoethyl-3-aminopropyltris(2-ethylhexoxy)-silane, 6-aminohexylaminopropyl)trimethoxysilane, 3-aminophenyltrimethoxysilane, 3-aminopropylmethyldiethoxysilane, bis[3-trimethoxysilyl)propyl]ethylenediamine, n-phenylaminopropyltrimethoxysilane, trimethoxysilylpropyldiethylenetriamine, .omega.-aminoundecyltrimethoxysilane, bis[3-(triethoxysilyl)propyl]amine, dimethoxymethylsilylpropyl (polyethyleneimine), or trimethoxysilylpropyl(polyethylenimine),
- wherein said (Ay2) and said (Ax2) epoxy silane is (3-glycidoxypropyl)methyldiethoxysilane, (3-glycidoxypropyl)trimethoxysilane,2-(3,4-epoxycyclohexyl)ethylmethyldimethoxysilane, 2-(3,4-epoxycyclohexyl)ethyltrimethoxysilane, or [2-(3,4-epoxy-4-methylcyclohexyl)propyl]methyldiethoxy silane, and wherein said (Ay3) and said (Ax2) epoxy is the reaction product of bisphenol A and epichlorohydrin,
- and wherein said oxymetallate is M.sub.2 CrO.sub.4 or M.sub.2 Cr.sub.2 O.sub.7 where M is H, Li, Na, or K.
- 78. A sintered rare earth magnet article according to claim 40, wherein said rare earth magnet material is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt, or an alloy of neodymium, cobalt, iron and boron.
- 79. A sintered rare earth magnet article according to claim 75, including up to about 25 percent by volume of an antidegradant based upon said antidegradant and said rare earth magnet material, said antidegradant in combination with said passivating agent coating said at least one rare earth magnet material, said antidegradant having the formula ##STR27## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an aliphatic, an aromatic, or combinations thereof, having from 1 to 25 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; wherein R.sup.10 through R.sup.32, independently, is an aliphatic, an aromatic, or combinations thereof, having a total of from 1 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, or combinations thereof, having from 8 to 25 carbon atoms, or polyvinylalcohol.
- 80. A sintered rare earth magnet article according to claim 74, including up to about 2 percent volume of an antidegradant based upon said antidegradant and said rare earth magnet material, said antidegradant being distearyl pentaerythritol diphosphite, dilauryl phosphate, trilauryl phosphite, distearyl phosphite, di-tridecyl phosphite, tetraphenyl dipropyleneglycol diphosphite, or trisnonylphenyl phosphite, dodecanol, octadecanol, or combinations thereof.
- 81. A sintered rare earth magnet article according to claim 41, including up to about 2 percent volume of an antidegradant based upon said antidegradant and said rare earth magnet material, said antidegradant being distearyl pentaerythritol diphosphite, dilauryl phosphate, trilauryl phosphite, distearyl phosphite, di-tridecyl phosphite, tetraphenyl dipropyleneglycol diphosphite, or trisnonylphenyl phosphite, dodecanol, octadecanol, or combinations thereof.
- 82. A passivated rare earth magnet-binder blend article according to claim 45, wherein said corrosion inhibitor is an oxymetallate, or a zinc salt, or combinations thereof, wherein said oxymetallate inhibitor is various phosphates, various molybdates, various polymolybdates, various chromates, various dichromates, various silicates, or combinations thereof, wherein said R.sup.1 of said (Ay1) and said Ax1) amino-containing silane compound, independently, is an aliphatic having from 1 to 2 carbon atoms, an aromatic or an alkyl substituted aromatic having from 6 to 30 carbon atoms, and wherein R.sup.2 and R.sup.3 of said (Ay1) and said (Ax1) amino-containing silane, and said (Ay2) and said (Ax2) epoxy silane, independently, is an aliphatic having from 1 to 11 carbon atoms.
- 83. A passivated rare earth magnet-binder blend article according to claim 80, wherein said R.sup.1 of said (Ay1) and said (Ax1) amino-containing silane compound and said (Ay2) and said (Ax2) epoxy silane compound, independently, is an alkyl containing 3 or 4 carbon atoms, an aromatic or an alkyl substituted aromatic containing from 7 to 9 carbon atoms, wherein R.sup.2 and R.sup.3 of said (Ay1) and said (Ax1) amino-containing silane compound and said (Ay2) and said (Ax2) epoxy silane compound, independently, is an alkyl having 1 or 2 carbon atoms, wherein Y group of said (Ay1) and said (Ax1) contains at least one secondary or primary amine moiety,
- wherein the amount of said (Ay1) amino-containing silane is from about 20 to about 60 parts by weight, wherein the amount of said (Ay2) epoxy silane is from about 10 parts to about 55 parts by weight, and wherein the amount of said (Ay3) epoxy resin is from about 10 parts to about 50 parts by weight, and
- wherein the amount of said (Ax1) amino-containing silane is from about 30 to about 70 parts by weight, and wherein the amount of said (Ax2) epoxy silane or said epoxy resin is from about 70 parts to about 30 parts by weight,
- wherein the amount of said passivating agent is 4 percent or less by weight.
- 84. A passivated rare earth magnet-binder blend article according to claim 81, wherein the average particle size of said rare earth magnetic particle is from about 10 microns to about 75 microns, wherein said (Ay1) and said (Ax1) amino-containing silane compound is 4-aminobutyltriethoxysilane, (aminoethylaminomethyl)phenethyltrimethoxysilane, N-(2-aminoethyl)-3-aminopropylmethyldimethoxysilane, 3-aminopropyltriethoxysilane, 3-aminopropyltrimethoxysilane, N-2-aminoethyl-3-aminopropyltrimethoxysilane, N-2-aminoethyl-3-aminopropyltris(2-ethylhexoxy)silane, 6-(aminohexylaminopropyl)trimethoxysilane, 3-aminophenyltrimethoxysilane, 3-aminopropylmethyldiethoxysilane, bis[3-(trismethoxysilyl)propyl]ethylenediamine, n-phenylaminopropyltrimethoxysilane, trimethoxysilylpropyldiethylenetriamine, .omega.-aminoundecyltrimethoxysilane, bis[3-(triethoxysilyl)propyl]amine, dimethoxymethylsilylpropyl (polyethyleneimine) or trimethoxysilylpropyl(polyethylenimine),
- wherein said (Ay2) and said (Ax2) epoxy silane is (3-glycidoxypropyl)methyldiethoxysilane, (3-glycidoxypropyl)trimethoxysilane, 2-(3,4-epoxycyclohexyl)ethylmethyldimethoxysilane, 2-(3,4-epoxycyclohexyl)ethyltrimethoxysilane, or [2-(3,4-epoxy-4-methylcyclohexyl)propyl]methyldiethoxy silane, and wherein said (Ay3) and said (Ax2) epoxy is the reaction product of bisphenol A and epichlorohydrin,
- and wherein said oxymetallate is M.sub.2 CrO.sub.4 or M.sub.2 Cr.sub.2 O.sub.7 where M is H, Li, Na, or K.
- 85. A passivated rare earth magnet-binder blend article according to claim 80, wherein said rare earth magnet particle is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt, or an alloy of neodymium, cobalt, iron and boron.
- 86. A passivated rare earth magnet-binder blend article according to claim 82, wherein said rare earth magnet particle is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt, or an alloy of neodymium, cobalt, iron and boron.
- 87. A passivated rare earth magnet-binder blend article according to claim 44, including an antidegradant in combination with said passivating agent, said antidegradant being an organic phosphorous compound or an amine salt thereof, or an alcohol having from 8 to 25 carbon atoms, or a polyvinyl alcohol.
- 88. A passivated rare earth magnet-binder blend article according to claim 84, including up to about 25 percent by volume of an antidegradant based upon said antidegradant and said rare earth magnet material, said antidegradant in combination with said passivating agent, said antidegradant having the formula ##STR28## including any isomer of Formulas II, III, IV, V, VI, VII, VIII, IX, or X, and wherein R.sup.3 through R.sup.9, independently, is H, or an aliphatic, an aromatic, or combinations thereof, having from 1 to 25 carbon atoms, or wherein R.sup.8 or R.sup.9 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; or wherein R.sup.10 through R.sup.32, independently, is an aliphatic, an aromatic, or combinations thereof, having a total of from 1 to 20 carbon atoms, or wherein R.sup.16, R.sup.17, or R.sup.18 is H, or wherein R.sup.31 or R.sup.32 is an alkoxy having from 1 to 25 carbon atoms; or an amine salt thereof; where R.sup.33 is ethylene or propylene, and m is 1 to 100, or
- said antidegradant is an aliphatic alcohol, an aromatic alcohol, an aliphatic substituted aromatic alcohol, an aromatic substituted aliphatic alcohol, having from 8 to 25 carbon atoms, or combinations thereof, or polyvinylalcohol.
- 89. A passivated rare earth magnet-binder blend article according to claim 86, including an antidegradant in combination with said passivating agent, wherein said antidegradant is distearyl pentaerythritol diphosphite, dilauryl phosphate, trilauryl phosphite, distearyl phosphite, di-tridecyl phosphite, tetraphenyl dipropyleneglycol diphosphite, or trisnonylphenyl phosphite, dodecanol, octadecanol, polyvinyl alcohol, or combinations thereof.
- 90. A passivated rare earth magnet-binder blend article according to claim 86, including an antidegradant in combination with said passivating agent, wherein said passivating agent is distearyl pentaerythritol diphosphite, dilauryl phosphate, trilauryl phosphite, distearyl phosphite, di-tridecyl phosphite, tetraphenyl dipropyleneglycol diphosphite, or trisnonylphenyl phosphite, dodecanol, octadecanol, polyvinyl alcohol, or combinations thereof.
- 91. A passivated rare earth magnet composition according to claim 66, wherein said R.sup.1 of said (Ay1) and said (Ax1) amino-containing silane compound and said (Ay2) and said (Ax2) epoxy silane compound, independently, is an alkyl containing 3 or 4 carbon atoms, an aromatic or an alkyl substituted aromatic containing from 7 to 9 carbon atoms, wherein R.sup.2 and R.sup.3 of said (Ay1) and said (Ax1) amino-containing silane compound and said (Ay2) and said (Ax2) epoxy silane compound, independently, is an alkyl having 1 to 2 carbon atoms, wherein Y group of said (Ay1) and said (Ax1) contains at least one secondary or primary amine moiety,
- wherein the amount of said (Ay1) amino-containing silane is from about 20 to about 60 parts by weight, wherein the amount of said (Ay2) epoxy silane is from about 10 parts to about 55 parts by weight, and wherein the amount of said (Ay3) epoxy resin is from about 10 parts to about 50 parts by weight, and
- wherein the amount of said (Ax1) amino-containing silane is from about 30 to about 70 parts by weight, and wherein the amount of said (Ax2) epoxy silane or said epoxy resin is from about 70 parts to about 30 parts by weight,
- wherein the amount of said passivating agent is 4 percent or less by weight, and wherein the amount of said binder is from about 10 percent to about 40 percent by volume, and wherein said corrosion inhibitor is an oxymetallate, or a zinc salt, or combinations thereof, wherein said oxymetallate is various phosphates, various molybdates, various polymolybdates, various chromates, various dichromates, various silicates, or combinations thereof.
- 92. A passivated rare earth magnet composition according to claim 89, wherein said (Ay1) and said (Ax1) amino-containing silane compound is 4-aminobutyltriethoxysilane, (aminoethylaminomethyl)phenethyltrimethoxysilane, N-(2-aminoethyl)-3-aminopropylmethyldimethoxysilane, 3-aminopropyltriethoxysilane, 3-aminopropyltrimethoxysilane, N-2-aminoethyl-3-aminopropyltrimethoxysilane, N-2-aminoethyl-3-aminopropyltris(2-ethylhexoxy)silane, 6-(aminohexylaminopropyl)trimethoxysilane, 3-aminophenyltrimethoxysilane, 3-aminopropylmethyldiethoxysilane, bis[3-trimethoxysilyl)propyl]ethylenediamine, n-phenylaminopropyltrimethoxysilane, trimethoxysilylpropyldiethylenetriamine, .omega.-aminoundecyltrimethoxysilane, bis[3-(triethoxysilyl)propyl]amine, dimethoxymethylsilylpropyl (polyethyleneimine), or trimethoxysilylpropyl(polyethylenimine),
- wherein said (Ay2) and said (Ax2) epoxy silane is (3-glycidoxypropyl)methyldiethoxysilane, (3-glycidoxypropyl)trimethoxysilane, 2-(3,4-epoxycyclohexyl)ethylmethyldimethoxysilane, 2-(3,4-epoxycyclohexyl)ethyltrimethoxysilane, or [2-(3,4-epoxy-4-methylcyclohexyl)propyl]methyldiethoxy silane, and wherein said (Ay3) and said (Ax2) epoxy is the reaction product of bisphenol A and epichlorohydrin,
- and wherein said oxymetallate is M.sub.2 CrO.sub.4 or M.sub.2 Cr.sub.2 O.sub.7 where M is H, Li, Na, or K.
- 93. A passivated rare earth magnet composition according to claim 87, including up to about 2 percent volume of an antidegradant based upon said antidegradant and said rare earth magnet material, said antidegradant being distearyl pentaerythritol diphosphite, dilauryl phosphate, trilauryl phosphite, distearyl phosphite, di-tridecyl phosphite, tetraphenyl dipropyleneglycol diphosphite, trisnonylphenyl phosphite, dodecanol, octadecanol, polyvinyl alcohol, or combinations thereof.
- 94. A passivated rare earth magnet composition according to claim 91, wherein said rear earth magnet material is an alloy of neodymium or praseodymium in combination with iron and boron, or an alloy of samarium and cobalt, or an alloy of neodymium, iron, boron and cobalt.
- 95. A passivated rare earth magnet composition according to claim 68, including a plasma-treated antidegradant in said rare earth magnet composition, wherein the amount of said plasma-treated antidegradant is from about 1 part to about 40 parts by weight for every 100 parts by weight of said binder, and wherein said antidegradant is distearyl pentaerythritol diphosphite, dilauryl phosphate, trilauryl phosphite, distearyl phosphite, ditridecyl phosphite, tetraphenyl dipropyleneglycol diphospite, trisnonylphenyl phosphite, dodecanol octadecanol, or combinations thereof.
- 96. A passivated rare earth magnet composition according to claim 93, including a plasma-treated antidegradant in said rare earth magnet composition, wherein the amount of said plasma-treated antidegradant is from about 1 part to about 40 parts by weight for every 100 parts by weight of said binder, and wherein said antidegradant is distearyl pentaerythritol diphosphite, dilauryl phosphate, trilauryl phosphite, distearyl phosphite, ditridecyl phosphite, tetraphenyl dipropyleneglycol diphosphite, trisnonylphenyl phosphite, dodecanol, octadecanol, or combinations thereof.
CROSS-REFERENCE
This application is a continuation-in-part of co-pending U.S. patent application Ser. No. 07/132,890,now U.S. Pat. No. 4,876,305 filed Dec. 14, 1987, for "Oxidation Resistant Compositions for Use With Rare Earth Magnets." This application is also a continuation-in-part of U.S. patent application Ser. No. 07/313,662,now U.S. Pat. No. 4,869,964 filed Feb. 21, 1989, for "Oxidation Resistant Compositions for Use With Rare Earth Magnets," which is a division of the aforementioned U.S. patent application Ser. No. 07/132,890, now U.S. Pat. No. 4,876,305 filed Dec. 14, 1987.
US Referenced Citations (5)
Non-Patent Literature Citations (5)
Entry |
"Effects of Surface Treatment for Thermoplastic Magnet" by Satoh, et al., IEEE Translation Journal on Magnetics in Japan, vol. TJMJ-1, No. 3, Jun. 1985, pp. 387-388. |
"Thermoplastic Magnet Having Highly Improved Heat-Resistance" by Satoh, et al., IEEE Translation Journal on Magnetics in Japan, vol. TJMJ-1, No. 8, Nov. 1985. |
"Treating Plastic Surfaces with Cold Gas Plasmas" by Peter W. Rose & Edw. M. Liston, Plastics Engineering, Oct. 1985, p. 41. |
"Fundamentals of Plasma Chemistry and Technology" by Herman V. Boenig, Technomic Publishing; 1988. |
"Corrosion Protection of Copper Metal Surfaces by Plasma Polymerization" by Jan A. VanLier and Robert E. Ray Jr., Polymeric Materials Science and Engineering, Proceedings of the ACS Division of Polymeric Materials: Science and Engineering, vol. 56, American Chemical Society, p. 603, 1987. |
Divisions (1)
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Continuation in Parts (1)
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