Claims
- 1. A method of using an .alpha.-methylstyrene functional polymer to make a magnetic recording medium, comprising the steps of:
- (a) milling ingredients comprising a magnetic pigment, a radiation curable polymer, and a solvent to form a magnetic dispersion, wherein the radiation curable polymer comprises a plurality of pendant .alpha.-methylstyrene moieties of the formula ##STR18## wherein the radiation curable polymer is prepared by reacting a hydroxy functional polymer with an .alpha.-methylstyrene functionalized isocyanate, wherein the hydroxy functional polymer contains no pendant acrylate, methacrylate, methacrylamide, or acrylamide moieties and has a hydroxy equivalent weight in the range from 100 to 10,000, and wherein the hydroxy functional polymer and the .alpha.-methylstyrene functionalized isocyanate are reacted under conditions such that there is a molar excess of the OH groups of the hydroxy functional polymer relative to the NCO groups of the isocyanate and such that said OH groups react with said NCO groups to form the radiation curable polymer having .alpha.-methylstyrene functionality;
- (b) blending ingredients comprising a free radical generator and additional solvent into the magnetic dispersion of step (a), wherein the weight ratio of the free radical generator to the radiation curable polymer is in the range 1:5 to 1:1, and wherein the additional solvent is added in an amount such that the magnetic dispersion comprises 45 to 75 weight percent of solvent;
- (c) coating the magnetic dispersion of step (b) onto a nonmagnetizable substrate;
- (d) optionally, passing the coated nonmagnetizable substrate through a magnetic field in order to orient or randomize the magnetic orientation of the magnetic pigment;
- (e) drying the coated nonmagnetizable substrate, whereby a dried magnetic coating on the nonmagnetizable substrate is formed;
- (f) optionally, calendering the magnetic coating; and
- (g) curing the dried magnetic coating with ionizing radiation.
- 2. The process of claim 1, wherein the free radical generator is selected from the group consisting of acrylates, methacrylates, methacrylamides, and acrylamides.
- 3. The process of claim 1, wherein the free radical generator is selected from the group consisting of pentaerythritol triacrylate and an aromatic urethane hexacrylate oligomer.
- 4. The process of claim 1, wherein the radiation curable polymer comprises a plurality of chain segments of the formula ##STR19## wherein: R is a segment of the polymer backbone; and
- X is a single bond or linking group which is stable under irradiation.
- 5. The process of claim 1, wherein the radiation curable polymer is obtained by reacting a hydroxy-functional polymer with an .alpha.-methylstyrene functional isocyanate of the formula ##STR20## such that the hydroxy groups of the hydroxy functional polymer react with the NCO groups of the .alpha.-methylstyrene functional isocyanate.
- 6. The process of claim 1, wherein there is a sufficient excess of hydroxy groups relative to NCO groups such that 10% to 90% of the hydroxy groups of the hydroxy functional polymer are reacted with the NCO groups of the .alpha.-methylstyrene functional isocyanate.
- 7. The process of claim 6, wherein there is a sufficient excess of hydroxy groups relative to NCO groups such that 50% to 80% of the hydroxy groups of the hydroxy functional polymer are reacted with the NCO groups of the .alpha.-methylstyrene functional isocyanate.
- 8. The process of claim 1, wherein the ingredients of step (a) further comprise a Tg-lowering agent, wherein the weight ratio of the radiation curable polymer to the Tg-lowering agent is in the range from 10:90 to 90:10.
- 9. The process of claim 1, wherein the ingredients of step (b) further comprise a Tg-lowering agent, wherein the weight ratio of the radiation curable polymer to the Tg-lowering agent is in the range from 10:90 to 90:10.
- 10. The process of claim 8, wherein the Tg-lowering agent is a monomeric plasticizer selected from the group consisting of diethylphthalate, dibutylphthalate, and dioctylphthalate.
- 11. The process of claim 9, wherein the Tg-lowering agent is a monomeric plasticizer selected from the group consisting of diethylphthalate, dibutylphthalate, and dioctylphthalate.
- 12. The process of claim 8, wherein the Tg-lowering agent is a polymer having a Tg in the range from -30.degree. C. to 75.degree. C.
- 13. The process of claim 9, wherein the Tg-lowering agent is a polymer having a Tg in the range from -30.degree. C. to 75.degree. C.
- 14. The process of claim 8, wherein the Tg-lowering agent is a thermoplastic polyurethane having a Tg in the range from -30.degree. to 75.degree. C.
- 15. The process of claim 9, wherein the Tg-lowering agent is a thermoplastic polyurethane having a Tg in the range from -30.degree. to 75.degree. C.
- 16. The process of claim 4, wherein R has the formula ##STR21## and X is a single bond.
- 17. The process of claim 1, wherein the magnetic pigment is .gamma.-Fe.sub.2 O.sub.3.
- 18. The process of claim 1, wherein the magnetic pigment is cobalt-doped .gamma.-Fe.sub.2 O.sub.3.
- 19. The process of claim 1, wherein the magnetic pigment is barium ferrite.
- 20. The process of claim 1, wherein the magnetic pigment is a Fe metal particle magnetic pigment.
Parent Case Info
This is a division of application Ser. No. 07/775,145 filed 10/09/1991 now U.S. Pat. No. 5,380,905.
US Referenced Citations (13)
Foreign Referenced Citations (5)
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Date |
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230957 |
Dec 1985 |
DEX |
58-146043 |
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JPX |
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Non-Patent Literature Citations (2)
Entry |
Dexter et al., "m-TMI, A Novel Unsaturated Aliphatic Isocyanate", Journal of Coatings Technology, vol. 58, No. 737, pp. 43-47 (Jun. 1986). |
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Divisions (1)
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Number |
Date |
Country |
Parent |
775145 |
Oct 1991 |
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