Heterocyclic Structure Other Than Per Se N-alkyl Pyrrolidone Patents (Class 524/717)
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Patent number: 8580916Abstract: A stable solution of the polymer prepared from N,O-heterocyclic compound and its preparing method are provided, wherein the stable solution is prepared by making the N,O-heterocyclic compound of formulae I or II carry out a ring-opening polymerization: wherein R1 to R3, W1, W2, m, n, p and q are as defined in the specification. The stable solution can be used as a hardener for curing epoxy resin.Type: GrantFiled: December 13, 2010Date of Patent: November 12, 2013Assignee: Taiwan Union Technology CorporationInventors: Shih-Hao Liao, Chih-Wei Liao, Hsuan-Hao Hsu, Hsien-Te Chen, Tsung-Hsien Lin
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Patent number: 8106141Abstract: Reaction products prepared from reactants including: (a) at least one compound of structural Formula (I): wherein R1 is selected from aryl and heteroaryl; X is selected from a direct bond, —O—, —S—, —NH—, alkylene, cycloalkylene, heterocyclylene, arylene, alkarylene, and heteroarylene; Y is a substituted alkylene group having at least two contiguous carbon atoms and which can be interrupted by one or more —O—, —S—, or —NH— moieties as defined herein, wherein the alkylene group of Y has substituents independently selected from —OH, —NH2, —SH, cycloalkyl, heterocyclyl, aryl, and heteroaryl, or two hydrogen atoms on the same carbon atom of Y are replaced by carbonyl, and wherein at least two substituents of Y are each independently selected from —OH, —NH2, and —SH, as defined herein; and (b) at least one isocyanate functional material.Type: GrantFiled: May 7, 2008Date of Patent: January 31, 2012Assignee: Henkel CorporationInventors: Anthony F. Jacobine, Andrew Messana, David M. Glaser, Steven Thomas Nakos
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Patent number: 7910653Abstract: Aromatic sulfonimide ionene polymers useful as membranes in electrochemical cells are prepared.Type: GrantFiled: October 1, 2007Date of Patent: March 22, 2011Assignee: E.I. du Pont de Nemours and CompanyInventor: Mark F. Teasley
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Patent number: 7868086Abstract: Aromatic sulfonimide ionene polymers useful as membranes in electrochemical cells are prepared.Type: GrantFiled: October 1, 2007Date of Patent: January 11, 2011Assignee: E. I. du Pont de Nemours and CompanyInventor: Mark F. Teasley
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Patent number: 7838594Abstract: Aromatic sulfonimide ionene compositions useful as monomers for polymers in electrochemical cells are prepared.Type: GrantFiled: October 1, 2007Date of Patent: November 23, 2010Assignee: E.I. du Pont de Nemours and CompanyInventor: Mark F. Teasley
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Publication number: 20100273920Abstract: The present invention relates to a composition comprising: at least one (poly)isocyanate and at least one surfactant comprising an acid or a mixture of acids and an optionally heterocyclic amine or polyamine or a mixture of such amines, said amine or polyamine or at least one amine of said mixture of amines carrying at least one alkylene oxide, preferably ethylene oxide, functional group.Type: ApplicationFiled: November 18, 2008Publication date: October 28, 2010Applicant: PERSTORP FRANCEInventors: Jean-Marie Bernard, Philippe Olier
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Patent number: 7074851Abstract: The invention relates to a process for preparing stabilized compositions based on polyamide. The stabilizer is a phosphorus stabilizer selected from phosphorous acid and hypophosphorous acid. It is introduced before or during the polymerization of the polyamide. The use of these stabilizers prevents foaming phenomena.Type: GrantFiled: December 21, 2001Date of Patent: July 11, 2006Assignee: Nylstar S.A.Inventors: Thierry Charbonneaux, Jean-François Thierry
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Patent number: 7005474Abstract: The invention discloses an acrylic acid-modified epoxy polyester resin and the preparation process thereof. The resin comprises 100 pbw of a copolymer (A) formed from an unsaturated fatty acid-modified polyester and a bisphenol A type epoxy resin, and 20-40 pbw of poly(meth)acrylic acid (ester) (B). The preparation process comprises the following steps: (1) alcoholyzing a drying oil with a polyol; (2) adding successively, to the product from step (1), a dibasic anhydride, a fatty acid containing a conjugated double bond and an epoxy resin, and esterifying to obtain an epoxy polyester; and (3) copolymerizing the epoxy polyester from step (2) and an acrylic monomer. This invention also provides a water-based emulsion containing said resin, and a water-based paint exhibiting excellent antirust property and having low production cost.Type: GrantFiled: March 11, 2002Date of Patent: February 28, 2006Assignee: Marine Research Institute of Chemical IndustryInventors: Fuchang Liu, Wenlin Liu, Peimin Hou, Yuanhao Xu
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Patent number: 7001936Abstract: The present invention provides pigmented inks comprising self-dispersing pigment and an amino-containing compound. The addition of an amino-containing compound to the self-dispersing pigment can improve the reliability and performance of the ink in an inkjet printhead. The present invention also provides methods for making a surface modified pigment comprising associating a self-dispersing pigment with an amino-containing compound having no more than one primary amino group or one secondary amino group.Type: GrantFiled: July 16, 2003Date of Patent: February 21, 2006Assignee: Lexmark International, Inc.Inventors: Charles Edward Akers, Jr., Sandra Helton McCain, Phillip Wayne Sisk, Jing X. Sun
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Patent number: 6548621Abstract: The invention provides a poly(imide-benzoxazole) (PIBO) copolymer prepared from a trimellitic anhydride halide monomer and a bis(o-diaminophenol) monomer. The PIBO copolymer is characterized by the following recurring unit: wherein X is —O—, —S—, —C(CF3)2—, —C(CH3)2—, —CO—, —CH2—, —SO2—, —SO—, or deleted; and n is an integer. The PIBO copolymers of this invention are particularly useful as dielectric layers in semiconductor devices because they possess hydroxyl groups which create better adhesion to semiconductor substrates.Type: GrantFiled: November 8, 2001Date of Patent: April 15, 2003Assignee: Industrial Technology Research InstituteInventors: Shih-Jung Tsai, Steve Lien-Chung Hsu, Yuan-Pin Huang
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Patent number: 6521719Abstract: The present invention relates to multifunctional macromers, to a method for the manufacture thereof and to their use in unsaturated polyester resins as additives to improve mechanical properties of preparations manufactured thereof. The process for the manufacture of multifunctional macromers comprises the following steps: a) reacting a polycarboxylic acid with 2 to 4 carboxylic groups, preferably 3 to 4 carboxylic groups, with glycidyl (meth)acrylate or allyl glycidyl ether, the amount of glycidyl (meth)acrylate or allyl glycidyl ether being at least one mol of glycidyl (meth)acrylate or allyl glycidyl ether per free carboxylic group of formed macromer, and b) reacting the product from step a) with an unsaturated, aromatic or aliphatic anhydride in an amount sufficient to esterify part or all of the free hydroxyl groups of the product from step a).Type: GrantFiled: April 15, 2002Date of Patent: February 18, 2003Assignee: Ashland Inc.Inventors: Jukka Tulisalo, Mikael Skrifvars, Karri Airola, Jukka Estamo, Pertti Hietakari
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Patent number: 6348516Abstract: Process for using microwave irradiation to prepare solutions of polymers functionalized with acid groups The invention relates to a process for preparing aqueous, hydrous and anhydrous solutions of polymers functionalized with acid groups, which comprises using microwave radiation to supply the heat required to prepare the solution. The solutions are suitable as a starting material for producing gas diffusion electrodes, fuel cells and polymer-electrolyte-stabilized platinum nanoparticles.Type: GrantFiled: July 6, 2000Date of Patent: February 19, 2002Assignee: Celanese Ventures GmbHInventors: Thomas Soczka-Guth, Helmut Witteler, Gregor Deckers, Georg Frank, Kilian Brehl, Jürgen Lenze, Harald Bönsel, Rüdiger Knauf
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Patent number: 6344516Abstract: A curable resin composition, which comprises a resin formed, in the presence of a transition metal complex, by polymerizing an oxidative-polymerizable compound that contains a phenol-compound-containing vegetable oil. A method for producing a curable resin composition comprising a resin formed, in the presence of a catalyst, by polymerizing an oxidative-polymerizable compound that contains a phenol-compound-containing vegetable oil, wherein the catalyst is a transition metal complex. The curable resin composition is useful as a raw material for a urushi-like coating, a friction material, a brake lining material, a brake pad material, a material for forming a coating film, a compound for a recording material, a raw material for an ink, a raw material for a coating,.a raw material for a adhesive, a raw material for an epoxy resin, a raw material for a photoresist or antioxidant, and a starting material for a functional polymer.Type: GrantFiled: February 28, 2001Date of Patent: February 5, 2002Assignees: National Institute of Advanced Industrial Science and Technology, Japan Chemical Innovation InstituteInventors: Ryohei Ikeda, Shiro Kobayashi, Hiroshi Uyama
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Patent number: 6262225Abstract: The invention is related to an olefin-carbon monoxide-vinyl monomer terpolymer composition which is derived from an olefin feed and a synthesis gas feed and at least one vinyl monomer feed. The invention is also related to a method for preparing olefin-carbon monoxide-vinyl monomer terpolymers by heating an olefin feed, a synthesis gas feed and at least one vinyl monomer feed in the presence of a free radical polymerization initiator. More particularly, the synthesis gas feed comprises predominantly carbon monoxide and hydrogen. The terpolymers of the invention are useful as polyvinyl chloride plasticizers.Type: GrantFiled: July 18, 2000Date of Patent: July 17, 2001Assignee: ExxonMobil Research and Engineering CompanyInventors: Abhimanyu O. Patil, Manika Varma-Nair
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Patent number: 6040366Abstract: The compression set of elastomeric silicone compositions, addition cured injection moldable compositions, is reduced by the incorporation of nitrogen compounds wherein the nitrogen possesses at least one organic substituent and the nitrogen is tetravalent wherein the nitrogen is cationic. The adhesion of such compositions to thermoset or thermoplastic polymer substrates is improved by the addition of bis(trimethoxysilylpropyl)fumarate and a disilanol that may or may not contain alkenyl groups. The lubricity of such compositions is improved by the addition of compounds selected from the group consisting of diorganosiloxanes such as polydimethylsiloxanes, phenyl containing siloxanes such as copolymers of diphenylsiloxane with diorganosiloxanes and copolymers of methylphenylsiloxane with diorganosiloxanes, fluorosilicones such as silicones containing trifluoropropyl substituted siloxanes, polydimethylsiloxanes, aliphatic and aromatic hydrocarbons that are liquid between 0.degree. C. and 100.degree. C.Type: GrantFiled: February 27, 1998Date of Patent: March 21, 2000Assignee: General Electric CompanyInventors: Frank S. Burkus, II, Edward M. Jeram, Slawomir Rubinsztajn
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Patent number: 5985969Abstract: Polyimide precursor solutions comprise an organic liquid and the reaction product of an aromatic dianhydride and an aromatic diaminobenzoxazole capped, on at least one terminal end, with a bifunctional chain extender. The bifunctional chain extender has one functional group reactive with the amine of the aromatic diaminobenzoxazole or the anhydride of the aromatic dianhydride and another functional group which does not form amic acid linkages, but which is capable of further reaction to increase the molecular weight of the polyimide precursor under conditions other than those used to react the aromatic diamine and aromatic dianhydride to form the polyimide precursor. These polyimide precursors can be converted into polyimidebenzoxazole polymers.Type: GrantFiled: February 23, 1998Date of Patent: November 16, 1999Assignee: The Dow Chemical CompanyInventors: William J. Harris, Wen-Fang Hwang
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Patent number: 5977220Abstract: A process to reduce the compression set of elastomeric silicone compositions, addition cured injection moldable compositions or millable compositions, comprises the incorporation of nitrogen compounds wherein the nitrogen possesses at least one organic substituent and the nitrogen is tetravalent wherein the nitrogen is cationic.Type: GrantFiled: December 29, 1997Date of Patent: November 2, 1999Assignee: General Electric CompanyInventors: Frank S. Burkus, II, Edward M. Jeram, Slawomir Rubinsztajn
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Patent number: 5977248Abstract: Gels, cast films, coatings, extruded rods, extruded fibers, compression molded discs, and machined compression molded discs, are made from organopolysiloxane sheet or tube polymers such as an apophyllite-derived 3-cyanopropyldimethyl siloxy sheet polymer of the formula [((NCC.sub.3 H.sub.6)(CH.sub.3).sub.2 SiO).sub.x (HO).sub.1-x SiO.sub.1.5 ].sub.n. Polymers are prepared by contacting sheet or tube silicates with an organohalosilane containing at least one polar group such as cyanoalkyl, acyloxy, or haloalkyl, in the presence of a polar solvent or a mixture of a polar solvent and a non-polar solvent; and heating the mixture until a polymer is formed.Type: GrantFiled: June 3, 1998Date of Patent: November 2, 1999Assignees: Dow Corning Corporation, Case Western Reserve UniversityInventors: Chenggang Chen, Dimitris Elias Katsoulis, Malcolm Edward Kenney
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Patent number: 5877259Abstract: A heat-sealable adhesive for dissimilar substrates is disclosed comprising an organic solvent suspension of a graft copolymer of an A-B-A terblock copolymeric rubber, olefin copolymer and olefin terpolymer. Processing conditions are improved over known adhesive preparation conditions.Type: GrantFiled: October 14, 1997Date of Patent: March 2, 1999Assignee: Sun Chemical CorporationInventors: Albert A. Kveglis, Robert J. Catena, Joseph M. Laquidara, Stavros Staveris
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Patent number: 5849864Abstract: The present invention is addressed a formulation curable in the presence of an amine and containing one or more of a polyol or polymercapto resin, a polyisocyanate cross-linking agent, optionally a organic vehicle, and a tin catalyst complex. The present invention comprises the catalyst complex being formed from a metal catalyst and a complexing sulfonic acid in an equivalent ratio of complexing sulfonic acid to metal catalyst of greater than 2:1. Such curable formulation may be compounded into a coating, an adhesive (including a structural adhesive), a caulk, a foundry binder, or the like. Besides having excellent shelf life, long periods of open time are experienced with the novel catalyzed formulation. However, upon exposure to an amine, the catalyst complex becomes activated and then is effective to catalyze the NCO--OH reaction or the NCO--SH reaction to effect cure of the formulation.Type: GrantFiled: August 1, 1996Date of Patent: December 15, 1998Assignee: Ashland Chemical CompanyInventors: Gary M. Carlson, Laurence G. Dammann
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Patent number: 5741585Abstract: Polyimide precursor solutions comprise an organic liquid and the reaction product of an aromatic dianhydride and an aromatic diaminobenzoxazole capped, on at least one terminal end, with a bifunctional chain extender. The bifunctional chain extender has one functional group reactive with the amine of the aromatic diaminobenzoxazole or the anhydride of the aromatic dianhydride and another functional group which does not form amic acid linkages, but which is capable of further reaction to increase the molecular weight of the polyimide precursor under conditions other than those used to react the aromatic diamine and aromatic dianhydride to form the polyimide precursor. These polyimide precursors can be converted into polyimidebenzoxazole polymers.Type: GrantFiled: April 24, 1995Date of Patent: April 21, 1998Assignee: The Dow Chemical CompanyInventors: William J. Harris, Wen-Fang Hwang
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Patent number: 5719256Abstract: The invention provides a novel preparation process of a polycondensation type polymer, an excellent polymer which is represented by lactic acid and the preparation process of the polymer, a polycondensation agent used for the preparation process, and an intermediate. Specifically, the invention provides a preparation process of the polycondensation type polymer, for example, polyamide, polyimide, polythioester and polyester, comprising bonding a carboxyl group comprising compound with an active hydrogen group comprising compound in the presence of haloiminium salt. The invention provides excellent polylactic acid having a controlled D/L-isomer ratio in the repeating structural units and preparation process of polylactic acid, and further provides a haloiminium salt compound used for the preparation process and an intermediate compound of acid chloride.Type: GrantFiled: October 15, 1996Date of Patent: February 17, 1998Assignee: Mitsu Toatsu Chemicals, Inc.Inventors: Shoji Tamai, Yukiko Mori, Kenichi Goto, Katsuji Watanabe, Osamu Kohgo, Kotaro Shimizu, Toshiyuki Kataoka, Takashi Kuroki, Wataru Yamashita, Hideki Mizuta, Teruyuki Nagata
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Patent number: 5596025Abstract: The present invention provides novel dental impression materials, the cure of which can be monitored visually, comprising: (1) a curable silicone polymer; (2) a crosslinker compound containing silicon-bonded-hydrogen groups; (3) a hydrosilation catalyst; and (4) one or more cure-indicating dyes that exhibit a color change in the presence of a silicon-bonded-hydrogen compound and a hydrosilation catalyst. The cure-indicating dye provides the composition with an initial pre-cure color and a different post-cure color. As a result of this change in color, the state of cure of the impression material can be visually monitored.Type: GrantFiled: June 29, 1995Date of Patent: January 21, 1997Assignee: Minnesota Mining and Manufacturing CompanyInventors: Joel D. Oxman, Mark S. Konings, George V. D. Tiers, Kim M. Vogel, Dennis E. Vogel
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Patent number: 5583178Abstract: The present invention provides novel hydrosilation-curable compositions, the cure of which can be monitored visually, comprising: (1) an ethylenic compound; (2) a compound containing silicon-bonded-hydrogen groups; (3) a hydrosilation catalyst; and (4) one or more cure-indicating dyes with light absorption in the visible spectrum that exhibit a color change in the presence of a silicon-bonded-hydrogen compound and a precious metal hydrosilation catalyst. The cure-indicating dye provides the composition with an initial pre-cure color and a different post-cure color. As a result of this change in color, the state of cure of the composition can be visually monitored.Type: GrantFiled: June 29, 1995Date of Patent: December 10, 1996Assignee: Minnesota Mining and Manufacturing CompanyInventors: Joel D. Oxman, Mark S. Konings, George V. D. Tiers, Kim M. Vogel, Dennis E. Vogel
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Patent number: 5527864Abstract: A biodegradable block copolymer made from the transesterfication of a poly(propylene fumarate) prepolymer and a poly(ethylene oxide) prepolymer. The block copolymer poly(propylene fumarate -co- ethylene oxide) is capable of crosslinking at body temperature. Crosslinking requires an appropriate crosslinking monomer and an initiator. The biodegradable block copolymer has utility as a vascular implant because it can be injected as a fluid into the vascular system and crosslinked in situ.Type: GrantFiled: August 8, 1995Date of Patent: June 18, 1996Inventors: Laura J. Suggs, Richard G. Payne, Michael J. Yaszemski, Antonios G. Mikos
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Patent number: 5502096Abstract: A room temperature curable rubber composition of a condensation curing type that comprises as a base polymer a diorganopolysiloxane or a polyoxyalkylene in which both ends of the molecular chain are blocked with a hydrolyzable silyl group, and a carbonyl compound, an amino group containing organic compound, and an .alpha.,.beta.-unsaturated carbonyl compound that are blended with the base polymer. Since the room temperature curable rubber composition is cured with water in the air and at the same time the dehydration condensation of the carbonyl group and the amino group produces water in the composition, the quick curability and deep curability are improved remarkably.Type: GrantFiled: October 19, 1994Date of Patent: March 26, 1996Assignee: Shin-Etsu Chemical Co., Ltd.Inventors: Tsuneo Kimura, Masatoshi Arai
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Patent number: 5424343Abstract: A cyanoacrylate monomer adhesive formulation which has improved thermal properties resulting from the inclusion in the formulation of an effective amount for enhancing the thermal resistance of the cured polymer of a naphthosultone compound having at least one strong electron withdrawing group thereon, suitably a nitro group.Type: GrantFiled: October 8, 1992Date of Patent: June 13, 1995Assignee: Loctite CorporationInventor: Shabbir Attarwala
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Patent number: 5334653Abstract: A composition is disclosed which comprises an amino radical-containing organopolysiloxane and an organopolysiloxane containing at least 3 epoxy radical-containing organic groups in each molecule.Type: GrantFiled: August 26, 1992Date of Patent: August 2, 1994Assignee: Dow Corning Toray Silicone Co., Ltd.Inventors: Masakado Kennoki, Isao Ona, Masaru Ozaki
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Patent number: 5288794Abstract: A cyanoacrylate monomer adhesive formulation which has improved thermal properties resulting from the inclusion in the formulation of an effective amount for enhancing the thermal resistance of the cured polymer of a mono, poly or hetero aromatic compound characterized by at least three substitutions on an aromatic ring thereof, two or more of said substitutions being electron withdrawing groups selected from the group consisting of NO.sub.2, CN, CF.sub.3, NR.sup.1.sub.3.sup.+, SR.sup.1.sub.2.sup.+, C(.dbd.O)R.sup.1, C(.dbd.O)OR.sup.1, NO, CCl.sub.3, SO.sub.2, S(.dbd.O), SO.sub.3, SO.sub.2 R.sup.1, SO.sub.2 OR.sup.1 and F, one or more of said substitutions being leaving groups selected from the group consisting of F, Br, Cl, I, NO.sub.2, CN, SOR.sup.1, SO.sub.2 R.sup.1 and SO.sub.2 OR.sup.1, and R.sup.1 is an optionally substituted hydrocarbon group. Example such compounds have the formula: ##STR1## where L is the leaving group and the W groups are the electron withdrawing groups.Type: GrantFiled: October 23, 1992Date of Patent: February 22, 1994Assignee: Loctite CorporationInventor: Shabbir Attarwala
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Patent number: 5247001Abstract: The invention relates to composite conducting polymers.It comprises producing a composite polymer comprising a base polymer formed from a normal polyurethane in which a conducting polymer formed from doped polypyrrole is dissolved.It enables a conducting polypolymer to be obtained, the mechanical characteristics of which are very substantially those of a normal polyurethane.Type: GrantFiled: December 24, 1991Date of Patent: September 21, 1993Assignee: Thomson-CSFInventor: Olivier Lacour
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Patent number: 5231161Abstract: Macrocyclic poly(alkylene dicarboxylate) oligomers are prepared in high yield by the reaction of a dicarboxylic acid chloride such as terephthaloyl chloride with at least one bis(hydroxyalkyl) ester such as bis(4-hydroxybutyl) terephthalate, in the presence of a highly unhindered amine or a mixture thereof with at least one other tertiary amine such as triethylamine, in a substantially inert organic solvent such as methylene, chlorobenzene or a mixture thereof. The concentration of the reagents in the reaction mixture are at least 0.08M.Type: GrantFiled: October 22, 1992Date of Patent: July 27, 1993Assignee: General Electric CompanyInventors: Daniel J. Brunelle, John B. McDermott
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Patent number: 5081172Abstract: A method of reducing the compression set of a silicone elastomer is accomplished by mixing an alkenyl silazane with a previously prepared, based heated, silanol-containing silicone elastomer base. Fluorosilicone elastomers prepared by these methods find use in gasketing and sealing application which are exposed to fuels and solvents.Type: GrantFiled: December 13, 1989Date of Patent: January 14, 1992Assignee: Dow Corning CorporationInventors: Roger G. Chaffee, Lawrence D. Fiedler, Myron T. Maxson
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Patent number: 4943623Abstract: Polyesters useful as a binder or a component of a binder for powder lacquers and which contain hydroxyls, carboxyls or both and which have an acid value of up to 50, a hydroxyl value of up to 200 and a sum of hydroxyl value and acid value of from 20 to 200 is produced by reacting:(a) an acid component selected from the group consisting of (a1) at least one poly-functional organic carboxylic acid, (a2) at least one ester-forming derivative of a poly-functional organic carboxylic acid, (a3) at least one organic hydroxycarboxylic acid, (a4) at least one lactone of an organic hydroxycarboxylic acid, and mixtures thereof, with the proviso that at least 50 mol-% of component (a) consists of aromatic species of components (a1), (a2), (a3), (a4), or mixtures thereof,with(b) a polyol component which is at least one polyhydric alcohol having a molecular weight in the range from 62 to 250,while maintaining an equivalent ratio of carboxyl groups to hydroxyl groups of form 0.65:1 to 1.Type: GrantFiled: November 21, 1988Date of Patent: July 24, 1990Assignee: Bayer AktiengesellschaftInventors: Wolfgang Ebert, Rolf-Volker Meyer, Hans-Joachim Kreuder
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Patent number: 4937312Abstract: There are provided new elastomeric copolymers of about 15 to 45 mol %, preferably about 25 to 35 mol % trioxane, about 55 to 85 mol %, preferably about 65 to 75 mol % of 1,3-dioxolane, said mol percents based on the total of trioxane and 1,3-dioxolane, and about 0.005 to 0.15 wt. %, preferably about 0.05 to 0.12 wt. % of 1,4-butanediol diglycidyl ether or butadiene diepoxide as a bifunctional monomer, based on the total weight of copolymer. The elastomeric copolymers may be prepared by mixing said monomers in a substantially dry state and under an inert atmosphere with a cationic polymerization catalyst, e.g., p-nitrobenzenediazonium tetrafluoroborate. The elastomeric copolymers have a strong interaction with moldable, crystalline acetal polymers comprising at least 85 mol % of polymerized oxymethylene units and may be used as a blending agent with such crystalline acetal polymers or as a bonding agent to improve the adhesiveness of the crystalline acetal polymer to other materials.Type: GrantFiled: December 11, 1989Date of Patent: June 26, 1990Assignee: Hoechst Celanese Corp.Inventors: George L. Collins, Kurt F. Wissbrun, Hongkyu Kim
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Patent number: 4820743Abstract: Polymer/polyol compositions, obtained by polymerizing one or more ethylenically unsaturated monomers in situ in a blend of a polyether polyol and a polyamine, are of suitably high reactivity. The polymer/polyol compositions provide, by reaction with a polyisocyanate, polyurethanes having improved moldability and physical properties along with self-mold-release characteristics, and are particularly suitable for producing polyurethane by RIM process.Type: GrantFiled: December 9, 1987Date of Patent: April 11, 1989Assignee: Sanyo Chemical Industries, Ltd.Inventors: Isao Ishikawa, Tsuyoshi Tomosada
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Patent number: 4764537Abstract: Disclosed are internal mold release agents for the preparation of molded articles using polyisocyanate addition polymerization, which are comprised of:(A) at least one ketimine, aldimine, enamine, cyclic Schiff base or a mixture of at least two of said compounds;(B) at least one metal salt of an organic carboxylic acid having from 8 to 24 carbon atoms; and(C) optionally including at least one carboxylic acid, organic sulphonic acid, mineral acid, or amidosulphonic acid, and their use in preparing molded articles comprised of polyurethane-plastics, polyurea-plastics, polyurethane-polyurea-plastics, polyurethane-polyurea-polyamide-plastics, or polyurea-polyamide-plastics.Type: GrantFiled: September 15, 1987Date of Patent: August 16, 1988Assignee: BASF AktiengesellschaftInventors: Peter Horn, Hans U. Schmidt
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Patent number: 4530989Abstract: Room temperature stable organopolysiloxane compositions containing organosilicon compounds having Si-bonded hydrogen atoms and aliphatic multiple bonds, a platinum catalyst which promotes the addition of Si-bonded hydrogen atoms to the aliphatic multiple bonds and an inhibitior which prevents premature crosslinking at room temperature selected from the group consisting of a maleinimide and a maleic acid derivative of the formula ##STR1## where R.sup.1 is a hydroxyl group or a trimethylsiloxy group and R.sup.2 is a monovalent hydrocarbonoxy radical having from 1 to 20 carbon atoms per radical, which is bonded to the carbon atom of the ##STR2## group or a monovalent hydrocarbonoxy radical having from 1 to 20 carbon atoms per radical, which is bonded to the carbon atom of the ##STR3## group and which is substituted with at least one triorganosilyl group.Type: GrantFiled: March 16, 1984Date of Patent: July 23, 1985Assignee: Wacker-Chemie GmbHInventors: Ulrich Michel, Josef Radecker
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Patent number: 4405750Abstract: .alpha.-Cyanoacrylate adhesives of fluorescent color having incorporated therein at least one member selected from C.I. Solvent Green 5, C.I. Acid Red 50 and C.I. Acid Red 52.Type: GrantFiled: September 13, 1982Date of Patent: September 20, 1983Assignees: Sumitomo Chemical Company, Ltd., Taoka Chemical Company, Ltd.Inventors: Tiaki Nakata, Noriyuki Kawazoe, Toshio Takenaka
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Patent number: RE32504Abstract: Room temperature stable organopolysiloxane compositions containing organosilicon compounds having Si-bonded hydrogen atoms and aliphatic multiple bonds, a platinum catalyst which promotes the addition of Si-bonded hydrogen atoms to the aliphatic multiple bonds and an inhibitor which prevents premature crosslinking at room temperature selected from the group consisting of a maleinimide and a maleic acid derivative of the formula ##STR1## where R.sup.1 is a hydroxyl group or a trimethylsiloxy group and R.sup.2 is a monovalent hydrocarbonoxy radical having from 1 to 20 carbon atoms per radical, which is bonded to the carbon atom of the ##STR2## group or a monovalent hydrocarbonoxy radical having from 1 to 20 carbon atoms per radical, which is bonded to the carbon atom of the ##STR3## group and which is substituted with at least one triorganosilyl group.Type: GrantFiled: May 30, 1986Date of Patent: September 15, 1987Assignee: Wacker-Chemie GmbHInventors: Ulrich Michel, Josef Radecker