首页 / 国际专利分类库 / 化学;冶金 / 有机高分子化合物;其制备或化学加工;以其为基料的组合物 / 用碳-碳不饱和键以外的反应得到的高分子化合物 / 不包括在C08G2/00到C08G65/00组内的,由在高分子主链中形成含氧或氧与碳键合反应得到的高分子化合物
序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
101 Polymeric ester peroxide JP4039489 1989-02-22 JPH02219824A 1990-09-03 SUYAMA SHUJI; HIGUCHI YOSHIKI
PURPOSE: To obtain a polymeric ester peroxide having a structure in which two specified kinds of peroxide groups are alternately bonded together and both of low and high-temperature activities and being adapted to be used by itself as a free radical polymerization initiator for a vinyl monomer. CONSTITUTION: A polymeric ester peroxide which is a compound composed of alternately bonded structural units of formulas I and II (wherein X is a group of formula III, IV or V), containing head-to-head and head-to-tail bonds arranged at random, wherein the molar ratio of the structural units of formula I to those of formula II is 6:4-4:6, and having an average MW of 2000-20000. It has two kinds of peroxide groups in which the acyl groups are secondary and tertiary and a 10hr half-life temperature of the peroxide groups of 50-55°C on the low-temperature side and 72-78°C on the high temperature side, and is useful as a polymerization initiator for forming a block copolymer based on vinyl chloride and (meth)acrylic acid or its ester. COPYRIGHT: (C)1990,JPO&Japio
102 Zinc plating process for products JP16143987 1987-06-30 JPS648290A 1989-01-12 WASHIRII MIHAIROBUICHI BURINOF; REONIIDO YURIEBUICHI GUNEDENKO; UITARII URAJIMIROBUICHI TOROFU; YURII MIHAIROBUICHI ROSHIKAREF; ARUKADEI BORISOBUICHI RIFUSHIT; IWAN FUIRITSUPOBUICHI BURIYUUH; WARENCHIN WASHIRIEBUICHI BIYUU; WARERII GURIGORIEBUICHI DORIYU
103 Novel copolymer of so2 and ethylene JP24285486 1986-10-13 JPS6295321A 1987-05-01 EITO DORENTO
104 JPS5920666B2 - JP6281277 1977-05-31 JPS5920666B2 1984-05-15 KOMAI TAKESHI; MATSUSHIMA MASARU
105 JPS4933360B1 - JP6620870 1970-07-30 JPS4933360B1 1974-09-06
106 JPS4928139B1 - JP231665 1965-01-19 JPS4928139B1 1974-07-24
107 HETEROATOM CONTAINING CYCLIC DIMERS EP13746592.8 2013-02-08 EP2812372B1 2018-09-26 ARHANCET, Graciela B.; MAHONEY, Matthew; WANG, Xiaojun
The present invention provides cyclic dimers of alpha acids and polymers derived therefrom. Also provided are processes for preparing and methods of using the cyclic dimers and the polymers derived from the cyclic dimers.
108 FLAMMGESCHÜTZTE, ALIPHATISCHE POLYKETONMASSEN, HIERAUS HERGESTELLTE FORMKÖRPER SOWIE VERFAHREN ZU DEREN HERSTELLUNG EP15194576.3 2015-11-13 EP3168253B1 2018-04-11 Stöppelmann, Georg
109 FLAMMGESCHÜTZTE, ALIPHATISCHE POLYKETONMASSEN, HIERAUS HERGESTELLTE FORMKÖRPER SOWIE VERFAHREN ZU DEREN HERSTELLUNG EP15194576.3 2015-11-13 EP3168253A1 2017-05-17 Stöppelmann, Georg

Die vorliegende Erfindung betrifft Polyketonformmassen auf Basis von teilkristallinen, aliphatischen Polyketonen. Insbesondere betrifft sie halogenfreie, flammgeschützte Formmassen auf Basis aliphatischer Polyketone, die bevorzugtermaßen Salze von Phosphinsäuren als Flammschutzmittel enthalten. Die Formmassen erfüllen die Brandschutzklassifikation V0 nach UL94 und zeigen gute mechanische Eigenschaften. Diese Formmassen eignen sich zur Herstellung von insbesondere dünnwandigen Formkörpern für die Elektro- und Elektronik-Industrie wie beispielsweise Gehäusen, Gehäusekomponenten oder Konnektoren.

110 POLYMERS, SUBSTRATES, METHODS FOR MAKING SUCH, AND DEVICES COMPRISING THE SAME EP14748738 2014-02-06 EP2953993A4 2016-12-28 DUCK NICHOLAS BRENDAN
The present invention relates generally to substrates for making polymers and methods for making polymers. The present invention also relates generally to polymers and devices comprising the same.
111 POLYMERS, SUBSTRATES, METHODS FOR MAKING SUCH, AND DEVICES COMPRISING THE SAME EP14749541 2014-02-06 EP2953987A4 2016-09-28 DUCK NICHOLAS BRENDAN
The present invention relates generally to substrates for making polymers and methods for making polymers. The present invention also relates generally to polymers and devices comprising the same.
112 HETEROATOM CONTAINING CYCLIC DIMERS EP13746592 2013-02-08 EP2812372A4 2015-09-23 ARHANCET GRACIELA B; MAHONEY MATTHEW; WANG XIAOJUN
The present invention provides cyclic dimers of alpha acids and polymers derived therefrom. Also provided are processes for preparing and methods of using the cyclic dimers and the polymers derived from the cyclic dimers.
113 HETEROATOM CONTAINING CYCLIC DIMERS EP13746592.8 2013-02-08 EP2812372A1 2014-12-17 ARHANCET, Graciela B.; MAHONEY, Matthew; WANG, Xiaojun
The present invention provides cyclic dimers of alpha acids and polymers derived therefrom. Also provided are processes for preparing and methods of using the cyclic dimers and the polymers derived from the cyclic dimers.
114 METHOD OF PRODUCING COMPOSITE MATERIALS EP12732250.1 2012-01-05 EP2661462A1 2013-11-13 HÄRKÖNEN, Mika; WIKSTRÖM, Lisa; NÄTTINEN, Kalle; NURMI, Leena
A method of producing a material comprising nanocellulose and a polymer, comprising carrying out in-situ, ring opening of polymerisation of dry nanocellulose dispersed in a monomer to produce said material. The material can be used as a reinforcing additive for plastics, for example in the form of a plastics masterbatch.
115 RIGID-ROD POLYMERS EP90913070.0 1990-08-10 EP0489085B1 2005-12-07 MARROCCO, Matthew, Louis, III; GAGN , Robert, Raymond; TRIMMER, Mark, Steven
High-performance polymers having a rigid-rod backbone comprising a chain length of at least 25 organic monomer units joined together by covalent bonds wherein at least about 95 % of the bonds are substantially parallel; and solubilizing organic groups attached to at least 1 % of the monomer units. The polymers are prepared in a solvent system which is a solvent for both the monomer starting materials and the rigid-rod polymer product. These polymers are used to overcome the limitations on the strength of molecular composites (composites without fibers) caused by generally low polymer-polymer miscibility. In these composites rigid-rod polymers perform the function of fibers. The solubilizing groups are selected to permit blending of these polymers with a matrix polymer to form a molecular composite of one stable phase.
116 Ester-type polymeric peroxides EP90301692.1 1990-02-16 EP0384660B1 1994-06-29 Suyama, Shuji; Higuchi, Yoshiki
117 Preparation of poly (arylene ether ketones) EP87200609.3 1984-03-30 EP0243997B1 1992-10-14 Jansons, Viktors; Gors, Heinrich Carl
118 Polymeric peroxy ester and its use EP89310238.4 1989-10-06 EP0364169A3 1991-06-12 Suyama, Shuji; Ishigaki, Hideyo; Taura, Katsuki

A polymeric peroxy ester, which consists of a structural unit represented by the formula (I): and a structural unit represented by the general formula (II): , wherein R represents -CH₂CH₂-, -C≡C- or and has an average molecular weight of 1,000-15,000, said structural units (I) and (II) being bonded alternately in a molar ratio within the range of from 6:4 to 4:6, has a 10-hour half-life period temperature of 70-85°C and a high activity at relatively high temperature, is safe in the production and handling, is adapted to be used as a polymerization initiator in the polymerization of vinyl monomer, and can produce a vinyl polymer having a high molecular weight.

119 Ester-type polymeric peroxides EP90301692.1 1990-02-16 EP0384660A2 1990-08-29 Suyama, Shuji; Higuchi, Yoshiki

A novel polymeric peroxide used as a free radical polymerization initiator for vinyl monomers is a compound alternately bonding the two particular structural units in random form and having two different thermal decomposition rates.

120 Polymeric peroxy ester and its use EP89310238.4 1989-10-06 EP0364169A2 1990-04-18 Suyama, Shuji; Ishigaki, Hideyo; Taura, Katsuki

A polymeric peroxy ester, which consists of a structural unit represented by the formula (I): and a structural unit represented by the general formula (II): , wherein R represents -CH₂CH₂-, -C≡C- or and has an average molecular weight of 1,000-15,000, said structural units (I) and (II) being bonded alternately in a molar ratio within the range of from 6:4 to 4:6, has a 10-hour half-life period temperature of 70-85°C and a high activity at relatively high temperature, is safe in the production and handling, is adapted to be used as a polymerization initiator in the polymerization of vinyl monomer, and can produce a vinyl polymer having a high molecular weight.

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