CA2906858A1

Cross-linked organic polymers for use as elastomers

Abstract

Methods are disclosed to prepare elastomeric materials by providing aromatic polymer(s) which is/are non-elastomeric at room temperature; cross-linking the aromatic polymer using a cross- linking compound to form a cross-linked aromatic polymer which is substantially cured; and heating the cross-linked aromatic polymer to a temperature at or above a glass transition temperature of the cross-linked aromatic polymer. Materials formed thereby and end products are also described which may be formed using the aromatic polymer cross-linking techniques to develop strong elastomeric materials for high temperature and/or harsh condition end applications.

CA2906858A1, drawing sheet 1
Sheet 1 of 29

Term

7.5 yearsto projected expiry

Projected expiry 17 March 2034, counted from filing; an application has no term until it is granted.

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  2. Filed
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  4. Today
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13 claims: 3 independent, 10 dependent

  1. 1
    We claim·. 1. A method of preparing an elastomeric material, comprising (a) providing an aromatic polymer which is non-elastomerie at room temperature;(b) cross-linking the aromatic polymer using across-linking compound to form a cross-linked aromatic polymer that, is substantially cured;and (c) heating the cross-linked aromatic polymer to a temperature at or.above a glass transition temperature of the cross-linked aromatic polymer.
  2. 7
    7US2014/030666 24.04.2015 REPLACEMENT SHEET ,ο Ο)
  3. 8
    The method of preparing an elastomeric material according to claim .1, wherein the cross-linking compound has a structure according to formula (II):wherein ζλ is an arene moiety having a molecular weight of less than 10,000 g/mol, R is selected from a group consisting of hydroxide (-OH), amine (-NH2), halide, ether, ester, or amide, and v is about 2.0 to about 6.0.
  4. 12
    12 3 4 10 wherein Ar , Ar , Ar and Ar are identical or different aryl radicals, m ~ 0 to 1.0, and n~ lw. 32. The method of preparing an elastomeric material according to claim 31. wherein step (b) further comprises cross-linking the organic polymer with the cross-linking compound and. a cross-linking reaction additive selected from an organic acid and/or an acetate compound, 1 5 wherein the cross-linking reaction additive is capable of reacting with the cross-linking compound to form a reactive intermediate in the form of an oligomer, which reactive intermediate oligomer is capable of cross-linking the organic polymer. 33. The. method of prepar ing an elastomeric material according to claim 32, wherein the cross-linking reaction additive is an organic acid selected from glacial acetic acid, formic acid, 20 and/or benzoic acid. 34. The method of preparing an elastomeric material according to claim 32, wherein the cross-linking reaction additive is an acetate compound having a structure according to formula wherein M is a Group I or a Group II metal; and R is a alkyl, aryl or aralkyl group, wherein the alkyl group comprises a hydrocarbon group of 1 to about IS carbon atoms which has from 0 AMENDED SHEET - IPEA/US PCT/US2014/030666 24.04.2015 CA 02906858 2015-09-14 REPLACEMENT SHEET PCT/US14/30666 27-03-2015 to about 5 ester or ether groups along or in a chain of the hydrocarbon group, and wherein R comprises 0 to about 5 functional groups selected, from sulfate, phosphate, hydroxyl, carbonyl, ester, halide, mercapto or potassium . 35. The method of preparing an elastomeric material according to claim 34, wherein the 5 acetate compound is selected from lithium acetate hydrate sodium acetate, and/or potassium acetate, and salts and derivatives thereof. 36. The method of preparing an elastomeric material according to claim 32, wherein the weight, percentage ratio of the cross-linking compound to the cross-linking reaction additive is about 10:1 to about 10,000:1. 10 37. The method of preparing an elastomeric material according to claim 36,. wherein the weight percentage ratio oft.be cross-linking compound to the cross-linking reaction additive is about 20:1 to about 1000:1. 38. The method of preparing an elastomeric material according to claim 31, wherein the . organic polymer is a polyiarylene ether), in is 1 and λ is 0 and the polymer has repeating units
  5. 13
    15 having tire structure of formula (1):39. The method of preparing an elastomeric material according to claim 26, wherein the cross-linking compound has a structure selected from a group consisting of AMENDED SHEET - IPEA/US PCT/US2014/030666 24.04.2015 CA 02906858 2015-09-14 PCT/US14/30666 27-03-2015 REPLACEMENT SHEET AMENDED SHEET - IPEA/US PCT/US14/30666 27-03-2015 PCT/US2014/030666 24.04.2015 • CA 02906858 2015-09-14 REPLACEMENT SHEET 40. The method of preparing an elastomeric material according to claim 26, wherein the 5 arene moiety has a molecular weight ofabout 1,000 g'mol to about 9,000 g/mol. 41. The method of preparing an elastomeric material according to claim 40, wherein the arene moiety has a molecular weigh t of about 2,000 g/mol to about 7,000 g/mol. 42. The method of preparing an elastomeric material accordi ng to claim 1, w herein the method further comprises forming a composition comprising the cross-linked organic polymer 10 and beating the composition to form, a molded article and step (c) further comprises placing the AMENDED SHEET - IPEA/US PCT/US2014/030666 24.04.2015 CA 02906858 2015-09-14 PCT/US14/30666 27-03-2015 REPLACEMENT SHEET molded article in use at a température at or above the glass transition temperature of the crosslinked organic polymer. . 43. An article formed by the method of claim 26. 44. The article according to claim 43, selec ted from the group consisting of an O-ring, a V5 ring, a U-cup, a gasket, at least one component of a seal stack, a packer element, a diaphragm, a face seal, a bearing, a valve seat, an adapter, a wiper ring, a chevron seal back-up ring, an tubing. AMENDED SHEET - IPEA/US CA 02906858 2015-09-14 WO 2014/145834 PCT/US2014/030666 1/6 G' (Ρα) G' (Ρα) Temperature (°C) l· 1G „ 1 Temperature (®C)