Process stabilization of polymer compositions comprising phosphorous containing flame retardants

US9758640B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9758640-B2
Application numberUS-201514717573-A
CountryUS
Kind codeB2
Filing dateMay 20, 2015
Priority dateJan 9, 2015
Publication dateSep 12, 2017
Grant dateSep 12, 2017

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  2. Abstract

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  5. First independent claim

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Abstract

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Flame retardant polymer compositions comprising certain polymers, a flame retardant material obtained by heating certain phosphonic acid salts at temperatures over 200° C. and certain clays or metal compounds such as select metal borates, oxides, hydroxides, oxide hydroxides etc., are readily processed at elevated temperatures and under high stress conditions whereas similar compositions without the clays or metal compounds of the invention are prone to decomposition. For example, polyamide compositions comprising the flame retardant material obtained by heating certain phosphonic acid salts at temperatures over 200° C., hydrotalcite clays, and/or borates, oxides, hydroxides, oxide hydroxides of zinc or calcium, are highly stable to thermal processing under strenuous conditions such as high temperature extrusion.

First claim

Opening claim text (preview).

What is claimed: 1. A flame retardant polymer composition comprising: a) a thermoset or thermoplastic polymer; b) from 1% to 50%, by weight based on the total weight of the flame retardant polymer composition, of a flame retardant material comprising one or more compounds of empirical formula (IV) wherein R is C 1-12 alkyl, C 6-10 aryl, C 7-18 alkylaryl, or C 7-18 arylalkyl, wherein said alkyl, aryl, alkylaryl, or arylalkyl are unsubstituted or are substituted by halogen, hydroxyl, amino, C 1-4 alkylamino, di-C 1-4 alkylamino, C 1-4 alkoxy, carboxy or C 2-5 alkoxycarbonyl; M is a metal, y is a number of from 1 to 4 so that M (+)y is a metal cation where (+)y represents the charge formally assigned to the cation, q is 1, 2 or 3, n is 1 or 2, r is 0, 1 or 2 provided that 2(q)+r=n(y); wherein the flame retardant material is obtained by thermal conversion of salts of formula (I) before incorporation into the polymer by a process comprising heating at temperatures higher than 200° C. for from about 0.01 hour to about 20 hours one or more than one compound of formula (I) wherein R, M and y are as defined above and p is a number of from 1 to 4; and c) one or more compounds selected from the group consisting of hydrotalcite clays, metal borates, metal oxides and metal hydroxides. 2. The flame retardant polymer composition according to claim 1 wherein the metal of the metal borates, metal oxides and metal hydroxides is zinc or calcium. 3. The flame retardant polymer composition according to claim 2 comprising one or more additional flame retardants, one or more synergists and/or one or more flame retardant adjuvants selected from the group consisting of halogenated flame retardants, alkyl phosphine oxide flame retardants, aryl phosphine oxide flame retardants, alkyl phosphate flame retardants, aryl phosphate flame retardants, alkyl aryl phosphonates, aryl phosphonates, alkyl phosphinates, aryl phosphinates, salts of alkyl phosphinic acid, salts of aryl phosphinic acid, carbon black, graphite, carbon nanotubes, silicones, polyphenylene ether, melamine, melamine derivatives, melamine condensation products, melamine salts, metal hydroxides, oxides, oxide hydrates and borates wherein the metal is other than zinc or calcium, carbonates, sulfates, sulfides, phosphates, phosphites, carboxylates, hypophosphites, silicates, and mixed metal salts. 4. The flame retardant polymer composition according to claim 3 wherein the one or more additional flame retardants, one or more synergists and/or one or more flame retardant adjuvants is selected from the group consisting of benzylic phosphine oxides, poly benzylic phosphine oxides, melamine, melam, melem, melon, melamine cyanurate, melamine borate, melamine phosphates, melamine metal phosphates, talc, calcium silicate, aluminosilicate, aluminosilicate as hollow tubes, magnesium carbonate, barium sulfate, boron phosphate, exfoliated vermiculite, magnesium oxide, magnesium hydroxide, aluminum oxide, aluminum oxide hydroxide, aluminum trihydrate, aluminum hydrogen phosphite, silica, tin oxide, antimony oxide (III and V) and oxide hydrate, titanium oxide, zirconium oxide and zirconium hydroxide. 5. The flame retardant polymer composition according to claim 4 wherein the one or more additional flame retardants, one or more synergists and/or one or more flame retardant adjuvants is selected from the group consisting of aluminum hydrogen phosphite, melem, melam, melon, a melamine metal phosphate wherein the metal comprises aluminum, magnesium or zinc, an aluminum tris(dialkylphosphinate), methylene-diphenylphosphine oxide-substituted polyaryl ether, xylylenebis(diphenylphosphine oxide), 4,4′-bis(diphenylphosphinylmethyl)-1,1′-biphenyl, ethylene bis-1,2-bis-(9,10-dihydro-9-oxy-10-phosphaphenanthrene-10-oxide)ethane and dimelamine zinc pyrophosphate. 6. The flame retardant polymer composition according to claim 3 wherein the one or more additional flame retardants, one or more synergists and/or one or more flame retardant adjuvants comprises one or more halogenated flame retardants, alkyl or aryl phosphine oxide flame retardants, alkyl or aryl phosphate flame retardants, alkyl or aryl phosphonates, alkyl or aryl phosphinates, salts of alkyl or aryl phosphinic acid, carbon black, graphite, carbon nanotubes, silicones, polyphenylene ether, melamine, melamine derivatives, melamine condensation products or melamine salts. 7. The flame retardant polymer composition according to claim 2 wherein the flame retardant material (b) is obtained by a process comprising: i) preparing an intermediate salt complex by treating one or more phosphonic acid compound with one or more appropriate metal compound to give an intermediate salt complex corresponding to formula (I) comprising multiple values for R and/or M, and then heating the intermediate salt complex at temperatures higher than 200° C. for about 0.01 hour to about 20 hours; or ii) preparing an intimate salt mixture by combining two or more individual metal phosphonic acid salts of formula (I) which have differing values for R and/or M, and then heating the intimate salt mixture at temperatures higher than 200° C. for about 0.01 hour to about 20 hours; or (iii) heating at temperatures higher than 200° C. for about 0.01 hour to about 20 hours two or more separate metal phosphonic acid salts of formula (I), which differ by having different values for R and/or M to form individual flame retardant materials that are subsequently mixed together to form a blended flame retardant material. 8. The flame retardant polymer composition according to claim 2 wherein the thermoset or thermoplastic polymer comprises one or more of a polyolefin homopolymer, polyolefin copolymer, rubber, epoxy resin, polyalkylene terephthalate, polyurethane, polysulfone, polyimide, polyphenylene ether, styrenic polymer, styrenic copolymer, polycarbonate, acrylic polymer, polyamide, polyacetal, or a blend thereof. 9. The flame retardant polymer composition according to claim 8 wherein the thermoset or thermoplastic polymer comprises one or more of a styrenic polymer, polyolefin, polyalkylene terephthalate, epoxy resin, polycarbonate, polyamide, or polyurethane. 10. The flame retardant polymer composition according to claim 9 wherein the thermoset or thermoplastic polymer further comprises a reinforcing agent. 11. The flame retardant polymer composition according to claim 10 wherein the thermoset or thermoplastic polymer comprises polybutylene terephthalate, polyethylene terephthalate, glass filled polybutylene terephthalate, glass filled polyethylene terephthalate, a glass reinforced epoxy resin, a thermoplastic polyamide or a glass filled thermoplastic polyamide. 12. The flame retardant polymer composition according to claim 1 wherein M is Li, K, Na, Mg, Ca, Ba, Zn, Zr, B, Al, Si, Ti, Sn or Sb. 13. The flame retardant polymer composition according to claim 1 wherein M is Al or Ca. 14. The flame retardant polymer composition according to claim 13 wherein R is methyl, ethyl, or propyl. 15. The flame retardant polymer composition according to claim 1 wherein R is unsubstituted C 1-6 alkyl. 16. The flame retardant polymer composition according to claim 1 wherein the thermoset or thermoplastic polymer comprises one or more of a p

Assignees

Inventors

Classifications

  • Compositions of polyamides obtained by reactions forming a carboxylic amide link in the main chain (of polyhydrazides C08L79/06; of polyamideimides or polyamide acids C08L79/08); Compositions of derivatives of such polymers · CPC title

  • Phosphorus containing acids · CPC title

  • C08K5/5333Primary

    Esters of phosphonic acids · CPC title

  • Polyesters derived from dicarboxylic acids and dihydroxy compounds (C08L67/06 takes precedence) · CPC title

  • containing phosphorus · CPC title

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What does patent US9758640B2 cover?
Flame retardant polymer compositions comprising certain polymers, a flame retardant material obtained by heating certain phosphonic acid salts at temperatures over 200° C. and certain clays or metal compounds such as select metal borates, oxides, hydroxides, oxide hydroxides etc., are readily processed at elevated temperatures and under high stress conditions whereas similar compositions withou…
Who is the assignee on this patent?
Chemtura Corp, Lanxess Solutions Us Inc
What technology area does this patent fall under?
Primary CPC classification C08K5/5333. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Sep 12 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).