Claims
- 1. Crystals of a magnesium hydroxide solid solution of the formula Mg.sub.1-x M.sup.2+ .sub.x (OH).sub.2, wherein M.sup.2+ denotes at least one divalent metal ion selected from the group consisting of Mn.sup.2+, Fe.sup.2+, Co.sup.2+, Ni.sup.2+, Cu.sup.2+ and Zn.sup.2+ ; and 0.001.ltoreq.x<0.5; and wherein the concentration of M.sup.2+ in the vicinity of the surface of the crystals is at least twice the average concentration of M.sup.2+ in the crystals.
- 2. A flame retardant resin and/or rubber composition comprising 20 to 250 parts of the magnesium hydroxide solid solution according to claim 1 per 100 parts of the resin and/or rubber.
- 3. A flame retardant resin and/or rubber composition according to claim 2, wherein M.sup.2+ is at least one of Ni.sup.2+ and Mn.sup.2+.
- 4. A flame retardant resin and/or rubber composition according to claim 2, wherein the surfaces of the magnesium hydroxide solid solution crystals are treated with at least one surface treating material selected from the group consisting of higher fatty acids and alkali metal salts thereof, anionic surfactants, phosphate esters, silane coupling agents, titanate coupling agents, aluminum coupling agents, and esters derived from multivalent alcohols and fatty acids.
- 5. A flame retardant material consisting essentially of crystals of a magnesium hydroxide solid solution of the formula Mg.sub.1-x M.sup.2+ .sub.x (OH).sub.2, wherein M.sup.2+ denotes at least one divalent metal selected from the group consisting of Mn.sup.2+, Fe.sup.2+, Co.sup.2+, Ni.sup.2+, Cu.sup.2+ and Zn.sup.2+ ; and 0.001.ltoreq.x<0.5; and wherein the concentration of M.sup.2+ in the vicinity of the surface of the crystals is at least twice the average concentration of M.sup.2+ in the crystals.
- 6. A method of producing a magnesium hydroxide solid solution, which comprises:
- hydrothermally treating an aqueous dispersion of finely divided magnesium hydroxide;
- adding, with stirring, an aqueous solution containing at least one divalent metal ion selected from the group consisting of Mn.sup.2+, Fe.sup.2+, Co.sup.2+, Ni.sup.2+, Cu.sup.2+ and Zn.sup.2+, to the dispersion of the hydrothermally treated magnesium hydroxide; and
- reacting the hydrothermally treated magnesium hydroxide with said at least one divalent metal ion.
- 7. A method according to claim 6, wherein the aqueous dispersion of finely divided magnesium hydroxide is prepared by reacting magnesium chloride with calcium hydroxide.
- 8. A method of according to claim 6, wherein the aqueous dispersion additionally contains at least one chloride selected from the group consisting of magnesium chloride, calcium chloride and sodium chloride.
Parent Case Info
This application is a continuation of application Ser. No. 08/458,899 filed Jun. 2, 1995, now abandoned.
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Continuations (1)
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Number |
Date |
Country |
Parent |
458899 |
Jun 1995 |
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