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    • 1. 发明授权
    • Process for producing modified epoxy resin
    • 改性环氧树脂生产工艺
    • US08222324B2
    • 2012-07-17
    • US10558759
    • 2004-05-27
    • Katsumi YamaguchiMasakuni UenoMasahiro Miyamoto
    • Katsumi YamaguchiMasakuni UenoMasahiro Miyamoto
    • C08F255/00
    • C08L51/04C08L63/00H05K1/0373C08L2666/22C08L2666/14C08L2666/08
    • This invention provides a process for producing an epoxy resin composition having core/shell rubber particles (rubber-like polymer particles) dispersed in an epoxy resin, wherein an epoxy resin composition excellent in the dispersed state of rubber-like polymer particles in an epoxy resin with a reduced amount of contaminants is produced easily and efficiently.The epoxy resin composition having rubber-like polymer particles dispersed well in an epoxy resin with less contaminant is obtained by bringing an aqueous latex of rubber-like polymer particles (B) into contact with an organic medium (C) showing partial solubility in water, then bringing an organic medium (D) having lower partial solubility in water than that of the organic medium (C) into contact therewith to separate water substantially, to remove the rubber-like polymer particles as a dispersion (F) having the polymer particles dispersed in the organic medium, and mixing it with an epoxy resin (A), followed by distilling volatile components away.
    • 本发明提供一种制备分散在环氧树脂中的核/壳橡胶颗粒(橡胶状聚合物颗粒)的环氧树脂组合物的方法,其中环氧树脂中橡胶状聚合物颗粒的分散状态优异的环氧树脂组合物 容易且有效地产生减少量的污染物。 通过将橡胶状聚合物粒子(B)的水性胶乳与在水中显示部分溶解性的有机介质(C)接触,得到具有良好分散在污染物少的环氧树脂中的具有橡胶状聚合物粒子的环氧树脂组合物, 然后将与水相比在水中的部分溶解度低于有机介质(C)的有机介质(D)与其接触,以基本上分离水,以除去作为分散体(F)的橡胶状聚合物颗粒,聚合物颗粒分散 在有机介质中,并与环氧树脂(A)混合,然后将挥发性组分蒸馏除去。
    • 3. 发明授权
    • Cycloolefin copolymer resin composition and process for preparing the same
    • 环烯烃共聚物树脂组合物及其制备方法
    • US06331591B1
    • 2001-12-18
    • US09424360
    • 1999-11-23
    • Masahiro MiyamotoKatsuhiko KimuraTaizo Aoyama
    • Masahiro MiyamotoKatsuhiko KimuraTaizo Aoyama
    • C08G6348
    • C08L45/00C08L9/06C08L23/22C08L25/10C08L53/02C08L2666/24C08L2666/04
    • A cycloolefin copolymer resin composition having well-balanced transparency and impact resistance which comprises (A) a cycloolefin copolymer and (B) 1 to 100 parts by weight, per 100 parts by weight of said cycloolefin copolymer, of at least one rubber-like polymer selected from the group consisting of (B1) an aromatic vinyl-isobutylene copolymer and (B2) an aromatic vinyl-conjugated diene copolymer, wherein the difference in refractive index (nD) at 20° C. between the components (A) and (B) is at most 0.015 and the particle size of the component (B) dispersed in the component (A) is from 0.4 to 3 &mgr;m. The composition may further contain a core-shell polymer (C), whereby the impact resistance can be further improved. The composition is prepared by kneading the above components at an elevated temperature optionally in the presence of an organic peroxide.
    • 一种具有良好平衡的透明性和耐冲击性的环烯烃共聚物树脂组合物,其包含(A)环烯烃共聚物和(B)每100重量份所述环烯烃共聚物1至100重量份的至少一种橡胶状聚合物 选自(B1)芳族乙烯基 - 异丁烯共聚物和(B2)芳族乙烯基 - 共轭二烯共聚物,其中在组分(A)和(B)之间的20℃下的折射率差(nD) )为0.015以下,分散在成分(A)中的成分(B)的粒径为0.4〜3μm。 组合物还可以含有核 - 壳聚合物(C),由此可以进一步提高耐冲击性。 组合物通过任选在有机过氧化物的存在下在高温下捏合上述组分来制备。
    • 4. 发明授权
    • Apparatus for inspecting bottles having elliptic light converging means
    • 用于检查具有椭圆光会聚装置的瓶子的装置
    • US4171481A
    • 1979-10-16
    • US887965
    • 1978-03-20
    • Yoshitada MimaYouji KannoNobuo SatoYasuhiko HaraYosiaki TomitaTakuro KarakawaMasahiro MiyamotoToshitaka Kano
    • Yoshitada MimaYouji KannoNobuo SatoYasuhiko HaraYosiaki TomitaTakuro KarakawaMasahiro MiyamotoToshitaka Kano
    • G01N21/90G01N21/32
    • G01N21/90
    • An apparatus of the invention for inspecting bottles for detecting flaws or contamination in the bottles relies upon the light converging function performed by one open-sided elliptic cylinder having reflective inner surface and two foci. The point or line to be inspected of the bottle is positioned at one of the two foci, while at least one light receiving element is disposed at the other focus. A beam of light is applied to the point or line to be inspected of the bottle, so that, if there is any defect such as flaw or contamination, the light is reflected irregularly by the bottle in indefinite direction. The irregularly reflected fractions of light are reflected by the inner surface of the elliptic cylinder and converge on the light receiving element disposed at the other focus, so as to be effectively received by the same element. the presence of the defect, if any, is detected from the output of the light receiving element. Another light receiving element may be disposed outside of the elliptic cylinder so as to receive the fraction of light passed through the bottle.
    • 本发明的用于检测瓶子中的缺陷或污染的瓶子的装置依赖于一个具有反射内表面和两个焦点的开放式侧面椭圆筒执行的聚光功能。 要检查瓶子的点或线位于两个焦点中的一个,而在另一个焦点处设置至少一个光接收元件。 将光束施加到要检查的瓶子的点或线上,使得如果存在诸如缺陷或污染的缺陷,则不规则地由灯在不定的方向上反射光。 光的不规则反射分数被椭圆柱体的内表面反射并且会聚在设置在另一焦点上的光接收元件上,以便被同一元件有效地接收。 从光接收元件的输出检测缺陷的存在(如果有的话)。 另一个光接收元件可以设置在椭圆柱体的外部,以便接收通过瓶子的一部分光。
    • 6. 发明授权
    • Process for producing modified epoxy resin
    • 改性环氧树脂生产工艺
    • US08680180B2
    • 2014-03-25
    • US13372231
    • 2012-02-13
    • Katsumi YamaguchiMasakuni UenoMasahiro Miyamoto
    • Katsumi YamaguchiMasakuni UenoMasahiro Miyamoto
    • C08F255/00C08F283/00
    • C08L51/04C08L63/00H05K1/0373C08L2666/22C08L2666/14C08L2666/08
    • An epoxy resin composition comprises an epoxy resin (A) and rubber-like polymer particles (B). The rubber-like polymer particles (B) maintain a finely dispersed state of primary particles. The content of the rubber-like polymer particles (B) is 0.5 to 80% by weight when the total amount of the epoxy resin (A) and rubber-like polymer particles (B) is 100% by weight. Rubber-like polymer particles (B) are obtainable by graft-polymerizing 5 to 50% by weight of a shell layer (B-2) with 50 to 95% by weight of a rubber particle core (B-1), and average particle diameter of the rubber-like polymer particles (B) is 0.03 to 2 μm. Rubber particle core (B-1) comprises elastic material of not less than 50% by weight of at least one monomer selected from diene monomers and (meth)acrylate monomers and less than 50% by weight of another coploymerizable vinyl monomer, or polysiloxane rubber elastic materials, or a mixture thereof.
    • 环氧树脂组合物包含环氧树脂(A)和橡胶状聚合物颗粒(B)。 橡胶状聚合物粒子(B)保持初级粒子的微细分散状态。 当环氧树脂(A)和橡胶状聚合物颗粒(B)的总量为100重量%时,橡胶状聚合物颗粒(B)的含量为0.5至80重量%。 橡胶状聚合物粒子(B)可以通过以50〜95重量%的橡胶粒子核(B-1)的5〜50重量%的壳层(B-2)进行接枝聚合而获得,平均粒子 橡胶状聚合物粒子(B)的直径为0.03〜2μm。 橡胶颗粒芯(B-1)包含不小于50重量%的至少一种选自二烯单体和(甲基)丙烯酸酯单体的单体和小于50重量%的另一种可共聚乙烯基单体的弹性材料或聚硅氧烷橡胶 弹性材料或其混合物。
    • 9. 发明申请
    • PROCESS FOR PRODUCING MODIFIED EPOXY RESIN
    • 生产改性环氧树脂的方法
    • US20120142820A1
    • 2012-06-07
    • US13372231
    • 2012-02-13
    • Katsumi YAMAGUCHIMasakuni UENOMasahiro MIYAMOTO
    • Katsumi YAMAGUCHIMasakuni UENOMasahiro MIYAMOTO
    • C08L51/04
    • C08L51/04C08L63/00H05K1/0373C08L2666/22C08L2666/14C08L2666/08
    • An epoxy resin composition comprises an epoxy resin (A) and rubber-like polymer particles (B). The rubber-like polymer particles (B) maintain a finely dispersed state of primary particles. The content of the rubber-like polymer particles (B) is 0.5 to 80% by weight when the total amount of the epoxy resin (A) and rubber-like polymer particles (B) is 100% by weight. Rubber-like polymer particles (B) are obtainable by graft-polymerizing 5 to 50% by weight of a shell layer (B-2) with 50 to 95% by weight of a rubber particle core (B-1), and average particle diameter of the rubber-like polymer particles (B) is 0.03 to 2 μm. Rubber particle core (B-1) comprises elastic material of not less than 50% by weight of at least one monomer selected from diene monomers and (meth)acrylate monomers and less than 50% by weight of another coploymerizable vinyl monomer, or polysiloxane rubber elastic materials, or a mixture thereof.
    • 环氧树脂组合物包含环氧树脂(A)和橡胶状聚合物颗粒(B)。 橡胶状聚合物粒子(B)保持初级粒子的微细分散状态。 当环氧树脂(A)和橡胶状聚合物颗粒(B)的总量为100重量%时,橡胶状聚合物颗粒(B)的含量为0.5至80重量%。 橡胶状聚合物粒子(B)可以通过以50〜95重量%的橡胶粒子核(B-1)的5〜50重量%的壳层(B-2)进行接枝聚合而获得,平均粒子 橡胶状聚合物粒子(B)的直径为0.03〜2μm。 橡胶颗粒芯(B-1)包含不小于50重量%的至少一种选自二烯单体和(甲基)丙烯酸酯单体的单体和小于50重量%的另一种可共聚乙烯基单体的弹性材料或聚硅氧烷橡胶 弹性材料或其混合物。