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    • 1. 发明申请
    • METHOD FOR PRODUCING MULTILAYER CERAMIC SUBSTRATE
    • 生产多层陶瓷基板的方法
    • US20120267037A1
    • 2012-10-25
    • US13274519
    • 2011-10-17
    • Kazuo KISHIDATakahiro TAKADA
    • Kazuo KISHIDATakahiro TAKADA
    • B32B37/14
    • B32B18/00C04B2237/343C04B2237/562C04B2237/62C04B2237/66C04B2237/68C04B2237/704H05K1/167H05K3/4629H05K3/4688H05K2203/308Y10T156/10
    • In a method for producing a multilayer ceramic substrate by a non-shrinkage process, even when a total area of surface electrodes on a first principal surface side is smaller than that on a second principal surface side, a favorable balance in terms of a time period from softening to crystallization of glass is achieved between the first principal surface side and the second principal surface side, thereby allowing all base material layers to be densified and prevented from causing cracks or warpage, even when the crystallization temperature is lowered to prevent production of a reaction layer. The crystallization temperature of a glass material included in a second base material layer defining a second principal surface with a larger total area of surface electrodes is less than that of a glass material included in a first base material layer defining a first principal surface.
    • 在通过非收缩工艺制造多层陶瓷基板的方法中,即使在第一主表面侧的表面电极的总面积比第二主面侧的表面电极的总面积小的情况下,在时间段 在第一主表面侧和第二主表面侧之间实现从玻璃的软化到结晶化,从而即使结晶温度降低,也可以使所有基材层致密化并防止其引起裂纹或翘曲,从而防止产生 反应层。 包含在限定具有较大表面电极总面积的第二主表面的第二基材层中的玻璃材料的结晶温度小于包含在限定第一主表面的第一基材层中的玻璃材料的结晶温度。
    • 4. 发明授权
    • Cable or the like protection and guide device
    • 电缆等保护和导向装置
    • US07047720B2
    • 2006-05-23
    • US10824117
    • 2004-04-14
    • Masaaki IkedaShoichiro KomiyaTakayuki MatsudaKazuo Kishida
    • Masaaki IkedaShoichiro KomiyaTakayuki MatsudaKazuo Kishida
    • F16G13/00
    • F16G13/16Y10S59/90
    • A cable or the like protection and guide device, which can escape static electricity reliably without an antistatic additive and can minimize the generation of wear particles due to sliding contact is disclosed. A cable or the like protection and guide device according to the present invention includes a number of synthetic resin link bodies (11) articulably connected to each other with a cable or the like (10) inserted therein. Each link body comprises a pair of link plates (21) disposed on both sides of the cable or the like and an inner circumferential side connecting plate (22) and an outer circumferential side connecting plate (23) spanned across a bending inner circumferential side and a bending outer circumferential side of the link plate, respectively. Tongue pieces (41 to 44), which are positioned at the front and rear sides of the longitudinal direction of said protection and guide device and sliding contacts, are provided in a protruded manner on at least one of said inner circumferential side connecting plate and said outer circumferential connecting plate, and a metallic member (50) is incorporated in at least one of sliding contact surfaces (41A to 44A) of said tongue pieces.
    • 公开了一种电缆等保护和引导装置,其可以可靠地避免静电而不具有抗静电添加剂并且可以最小化由于滑动接触而产生的磨损颗粒。 根据本发明的电缆等保护和引导装置包括多个合成树脂连接体(11),其通过插入其中的电缆或类似物(10)彼此铰接地连接。 每个链节主体包括设置在电缆等的两侧的一对链板(21)和跨越弯曲内周侧的内周侧连接板(22)和外周侧连接板(23),以及 连接板的弯曲外周侧。 位于所述保护引导装置和滑动接触件的纵向方向的前后侧的舌片(41至44)突出地设置在所述内周侧连接板和所述内周侧连接板中的至少一个上 外周连接板和金属构件(50)结合在所述舌片的滑动接触表面(41A至44A)中的至少一个中。
    • 7. 发明授权
    • Process for producing a low gloss thermoplastic resin
    • 低光泽热塑性树脂的制造方法
    • US4877844A
    • 1989-10-31
    • US135470
    • 1987-12-21
    • Kazuo KishidaYutaka ToyookaYoshiyuki Mikami
    • Kazuo KishidaYutaka ToyookaYoshiyuki Mikami
    • C08F236/12C08F279/02
    • C08F236/12C08F279/02
    • A process for producing a low gloss thermoplastic resin which comprises polymerizing in two steps from 20 to 70 parts by weight of a butadiene polymer, at least 70% by weight of which is constituted by butadiene, with from 30 to 80 parts by weight of a total of from 15 to 40% by weight of a vinyl cyanide monomer and from 60 to 85% by weight of an aromatic vinyl monomer, characterized in that for the polymerization of the first step, the butadiene polymer, the vinyl cyanide monomer and the aromatic vinyl monomer were charged in amounts corresponding to from 20 to 80% by weight of the entire butadiene polymer, from 20 to 80% by weight of the entire vinyl cyanide monomer and from 20 to 80% by weight of the entire aromatic vinyl monomer, respectively, and after the completion of the polymerization of the first step, the rest of the butadiene polymer, the vinyl cyanide monomer and the aromatic vinyl monomer were charged for the polymerization of the second step.
    • 一种低光泽性热塑性树脂的制造方法,其特征在于,将20〜70重量份的丁二烯聚合物,其中至少70重量%由丁二烯构成,其中20〜70重量份, 总计为15至40重量%的乙烯基氰单体和60至85重量%的芳族乙烯基单体,其特征在于,对于第一步骤的聚合,丁二烯聚合物,乙烯基氰单体和芳族化合物 乙烯基单体的量相当于整个丁二烯聚合物的20至80重量%,全部乙烯基氰单体的20至80重量%和芳族乙烯基单体总量的20至80重量% ,在第一步聚合完成后,加入其余的丁二烯聚合物,乙烯基氰单体和芳族乙烯基单体进行第二步的聚合反应。
    • 9. 发明授权
    • Thermoplastic resin having excellent impact resistance and heat
resistance
    • 热塑性树脂具有优良的耐冲击性和耐热性
    • US4558099A
    • 1985-12-10
    • US675232
    • 1984-11-27
    • Kazuo KishidaNaoki YamamotoYasumasa Sato
    • Kazuo KishidaNaoki YamamotoYasumasa Sato
    • C08C1/07C08F279/02C08F279/04C08F265/02
    • C08F279/04C08C1/07C08F279/02
    • A thermoplastic resin having excellent impact resistance and heat resistance obtainable by polymerizing 93 to 30 parts by weight of a monomer mixture comprising 20 to 90% by weight of at least one .alpha.-alkylaromatic vinyl monomer, 10 to 40% by weight of at least one vinyl cyanide monomer and 0 to 60% by weight of at least one vinyl monomer copolymerizable therewith (100% by weight in total) in the presence of 7 to 70 parts by weight (in terms of solid) of a rubber latex of a large particle size having a particle diameter of at least 0.2 .mu.m obtained by adding 0.1 to 5 parts by weight (in terms of solid) of an acid-group containing copolymer (B) latex obtained from 3 to 30% by weight of an acid-group containing monomer, 97 to 35% by weight of at least one alkyl acrylate having 1 to 12 carbon atoms in the alkyl group, and 0 to 48% by weight of at least one vinyl monomer copolymerizable therewith (100% by weight in total) to 100 parts by weight (in terms of solid) of a rubber (A) latex of a small particle size having a pH of 7 or higher obtained from 100 to 50% by weight of 1,3-butadiene and 0 to 50% by weight of a monomer having CH.sub.2 .dbd.C
    • 具有优异抗冲击性和耐热性的热塑性树脂可通过聚合93至30重量份的包含20至90重量%的至少一种α-烷基芳族乙烯基单体,10至40重量%的至少一种 乙烯基氰单体和0至60重量%的至少一种可与其共聚的乙烯基单体(总共100重量%),在7至70重量份(以固体计)的大颗粒的橡胶胶乳的存在下 通过加入0.1至5重量份(以固体计)含有酸的基团的共聚物(B)得到的粒径至少为0.2μm的粒径为3至30重量%的酸基 至少一种在烷基中具有1-12个碳原子的丙烯酸烷基酯和至少一种可与其共聚的至少一种乙烯基单体(总共100重量%)至少至少一个至少一个 橡胶(A)胶乳100重量份(以固体计) 得到100〜50重量%的1,3-丁二烯和0〜50重量%的具有CH 2 = C <基团且可与其共聚的单体(100重量%)的pH为7以上的小粒径 总共)。