序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
181 Containing low molecular weight compound to form a hybrid network, compositions for use in resin injection molding JP51011491 1991-05-21 JP3093262B2 2000-10-03 コニング,アドリアヌス ヨハネス デ
182 Storage-stable reaction resin mixture, its preparation and its use JP5528589 1989-03-09 JP2660742B2 1997-10-08 HANSU PEETAA MYUURAA; HAINRIHI HAINE
183 In-mold coating method JP6456095 1995-03-23 JPH08258080A 1996-10-08 YAMAMOTO YOSHIAKI; OTA KENJI; YONEMOCHI KENJI; FUJII SATOSHI; FUJISHIRO TAKESHI; IZUMIDA TOSHIAKI
PURPOSE: To form an one-coat in-mold coating film excellent in adhesiveness, appearance, weatherability and solvent resistance and adaptable even to an outdoor use such as a car outer panel or an exterior member and also having the function as topcoating. CONSTITUTION: In an in-mold coating method, a molten thermoplastic resin molding material is injected into a mold cavity to be molded and a coating compsn. is injected into the gap between the obtained molded article and the inner wall of the mold and cured to take out the coated molded article. The coating compsn. contains a vehicle component (A) consisting of a urethane acrylate or methacrylate oligomer (i) being a reaction product not substantially containing an unreacted isocyanate group consisting of org. polyisocyanate (a), org. polyol (b) and hydroxyalkyl acrylate or methacrylate (c) and a polymerizable unsaturated monomer (ii), a polyisocyaonate compd. (B) and a polymerization initiator (C).
184 The coating composition JP28910885 1985-12-21 JPH0635562B2 1994-05-11 JON UTSUZU; JON EMU RUUNII; BAANAADO JEI BORUGAA
The invention relates to a conformal coating for printed circuit boards and electronic components comprising a multifunctional alkene, a multifunctional thiol, a multifunctional isocyanate and a polymerisation initiator of the photoinitiator type, the composition being substantially free of isocyanate condensation catalyst.
185 JPH05509112A - JP51011491 1991-05-21 JPH05509112A 1993-12-16
186 Isocyanate-or isothiocyanate-modified polysilazane ceramic precursor JP4708790 1990-02-27 JPH03252425A 1991-11-11 SCHWARK JOANNE MARIE
PURPOSE: To obtain a polymer for an SiN ceramic precursor or the like in which its viscosity can be easily regulated by reacting NH 3 with a halogenated Si compd. to a prepare a silazane ammonolysis product and reacting the silazane ammonolysis product with an isocyanate compd. or the like. CONSTITUTION: Ammonia is reacted with halogenated Si compds. (at least one of the halogenated Si compds. contg. an Si-H bond), such as formula I [wherein R represents H, a 1 to 6C (substd.) alkyl, an aryl, a 1 to 6C alkenyl or the like; and X represents Cl, Br or I], formula II (wherein R' has the same meaning as R), and a mixture thereof to prepare a silazane ammonolysis product, which is then reacted with a compd., such as an isocyanate, an isothiocyanate, a ketene, a thioketene, a carbodiimide or carbon disulfide, in an amt. of about 0.1 to 30 wt.% based on the wt. of the ammonolysis product to prepare the objective polysilazane-added polymer. COPYRIGHT: (C)1991,JPO
187 JPH0134533B2 - JP21824486 1986-09-18 JPH0134533B2 1989-07-19 ANIRU BII GOORU
188 Protection material for concrete JP25752887 1987-10-13 JPH01100074A 1989-04-18 OWADA TAKEO; TANAKA KAZUYUKI; IWAMI ETSUJI
PURPOSE: To obtain the titled protection material having excellent adhesivity to concrete and durability, by using a specific dicyclopentadiene derivative, a hydroxyl-containing ethylenic unsaturated monomer, a polyvalent isocyanate compound, etc., as essential components. CONSTITUTION: The objective material can be produced by copolymerizing (A) 10W90pts.wt. of a dicyclopentadiene derivative of formula (R 1 is oxaalkylene glycol containing 2W12C alkylene glycol and two 4W12C alkylene chains bonded through at least one O, wherein each alkylene chain contains ≥2C atoms; R 2 is H or methyl), (B) 5W50pts.wt. of a hydroxyl-containing ethylenic unsaturated monomer (e.g. 2-hydroxyethyl acrylate), (C) 5W50pts.wt. of a polyvalent isocyanate compound having ≥2 isocyanate groups (e.g. diphenylmethane diisocyanate) and (D) 0W40pts.wt. of other ethylenic unsaturated monomer copolymerizable with the components A and B (e.g. acrylic acid). The polymerization temperature is -20W+50°C. COPYRIGHT: (C)1989,JPO&Japio
189 JPS6326764B2 - JP50075381 1981-03-02 JPS6326764B2 1988-05-31 KOFUAKUSU TSUORUTAN; SHUURAA ROORANDO
190 JPS57500511A - JP50075381 1981-03-02 JPS57500511A 1982-03-25
191 Manufacture of hydantoins and heattresistant product containing them JP1174181 1981-01-30 JPS56122359A 1981-09-25 UIRUFURIITO TSUEHIAA; RUUDORUFU MERUTEN
192 JPS5639337B2 - JP2077773 1973-02-22 JPS5639337B2 1981-09-12
193 Unsaturated ester of glycolmonodicyclopentenyl ether JP14284280 1980-10-13 JPS5681529A 1981-07-03 EMMONS WILLIAM D; NYI KAYSON
The invention is concerned with novel unsaturated compounds having extremely low volatility having a single monoethylenically unsaturated group of the formula H2C = C < whereby they are capable of polymerization to produce linear homopolymers and copolymers with copolymerizable monomers containing such a group, and having autoxidizable characteristics by virtue of a different type of unsaturated group. These new compounds are useful for the production of polymers, alone or in admixture with other polymers or monomers to modify the characteristics of the components of the mixture. They are useful in coating or impregnating compositions and/or in the molding, casting, or otherwise forming of shaped articles.
194 Polymer with imide group JP15867777 1977-12-29 JPS5392900A 1978-08-15 JIYAN RUI ROKATERI; JIYAN ROBAN
195 Hydantoins and process for preparing same JP14232377 1977-11-29 JPS5377061A 1978-07-08 BIRUFURIITO TSUETSUHIYAA; RUDORUFU MERUTEN
196 Casting resin* preparation and curing method therefor JP6127177 1977-05-27 JPS52146490A 1977-12-06 BURUFU FUON BONIN; ROTAARU PURAISU; URURITSUHI FUON JITSUITSUKI
197 JPS4981319A - JP12838773 1973-11-16 JPS4981319A 1974-08-06
198 JPS496098A - JP2077773 1973-02-22 JPS496098A 1974-01-19
199 (METH)ACRYLATE-FUNCTIONALIZED EXTENDED ISOSORBIDE EP16773623.0 2016-02-10 EP3277693A1 2018-02-07 DWORAK, David P.; GUSTAFSON, Darel; MULLEN, David; MESSANA, Andrew D.; HYNES, Aimee; LEDWITH, Deirdre; O'KANE, Ruairi
The present invention relates to curable polyurethane polymers made from renewable materials. In particular isosorbide derived from glucose is used. These renewable materials may be formed into curable polyurethane polymer compositions having different chemical functionalities and cure mechanisms.
200 RADICALLY POLYMERIZABLE COMPOSITION, CURED PRODUCT AND PLASTIC LENS EP12785738.1 2012-03-12 EP2586802B1 2014-12-24 KOBAYASHI Nobuo; KONDO Akihiro; MIYAWAKI Atsuhisa; IKUSHIMA Naoya; HATSUSAKA Kazuaki
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