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    • 43. 发明授权
    • Method for producing multilayer ceramic substrate
    • 多层陶瓷基板的制造方法
    • US08372227B2
    • 2013-02-12
    • US13274519
    • 2011-10-17
    • Kazuo KishidaTakahiro Takada
    • Kazuo KishidaTakahiro Takada
    • C03B29/00B29C65/00
    • 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。
    • 44. 发明授权
    • Cable and/or the like supporting and guiding device
    • 电缆和/或类似的支撑和引导装置
    • US07082852B2
    • 2006-08-01
    • US10689502
    • 2003-10-18
    • Masaaki IkedaShoichiro KomiyaTakayuki MatsudaHideaki MinamiKazuo Kishida
    • Masaaki IkedaShoichiro KomiyaTakayuki MatsudaHideaki MinamiKazuo Kishida
    • F16C1/26
    • F16G13/16H02G11/006Y10T74/20462
    • To provide a cable and/or the like supporting and guiding device, by which a cable and/or the like can be easily incorporated into a chain and damage of the cable and/or the like and an accident of break in a cable can be minimized. A cable and/or the like supporting and guiding device comprises a chain (CH), a cable and/or the like (CB) disposed along the chain, and a support (20), which intersects the chain to support the cable and/or the like disposed on the chain. The support is composed of a material, which is flexed in the longitudinal direction of the cable and/or the like. In a curved section of the chain, when force is applied to the cable and/or the like, the support is flexed or bent in a direction of an action of force to ensure a length of the cable and/or the like, which is required for bending.
    • 为了提供电缆和/或类似的支撑和引导装置,通过该电缆和/或类似的支撑和引导装置可以容易地将电缆和/或类似物结合到链条中,并且电缆等的损坏和电缆中的断裂事故可以是 最小化。 电缆和/或类似的支撑和引导装置包括沿着链条设置的链条(CH),电缆和/或类似物(CB)以及支撑件(20),其与链条相交以支撑电缆和/ 或类似物。 支撑体由在电缆的纵向方向上弯曲的材料和/或类似物构成。 在链条的弯曲部分中,当力施加到电缆和/或类似物时,支撑件在力的作用方向上弯曲或弯曲,以确保电缆的长度等, 弯曲所需。
    • 48. 发明授权
    • Process for the preparation of maleimide copolymers and thermoplastic
resin composition using the same
    • 用于制备马来酰亚胺共聚物和使用其的热塑性树脂组合物的方法
    • US4804706A
    • 1989-02-14
    • US25628
    • 1987-03-02
    • Kazuo KishidaYutaka ToyookaAtsushi Kimura
    • Kazuo KishidaYutaka ToyookaAtsushi Kimura
    • C08F212/04C08F222/40C08L25/02C08L51/04C08L77/00C08L51/00
    • C08F222/40
    • The present invention provides a process for the preparation of maleimide copolymers by emulsion polymerization of an aromatic vinyl monomer, a vinyl cyanide monomer and a maleimide monomer in specific proportions wherein the polymerization is carried out by charging not less than a specific proportion of the aromatic vinyl monomer and optionally not more than a specific proportion of the vinyl cyanide monomer into the polymerization system before initiation of the polymerization; adding, continuously or dividedly, a mixture composed of the total amount of the maleimide monomer and the remainder of the other monomers to the polymerization system after initiation of the polymerization; maintaining the pH of the aqueous phase of the polymerization system in the range of 3 to 9 at the initiation of said polymerization; and using a redox catalyst containing an oil-soluble organic peroxide. According to this polymerization process, maleimide copolymers having excellent thermal resistance and resistance to thermal decomposition can be prepared in high yield.The present invention also provides a resin composition having excellent thermal resistance, resistance to thermal decomposition, and impact resistance which is formed by blending, in a specific proportion, a maleimide copolymer prepared by the aforesaid process with a rubber-reinforced resin obtained by grafting a vinyl cyanide monomer or the like onto a specific elastomer; and optionally blending the resulting thermoplastic resin composition with a thermoplastic resin that is hard at room temperature.
    • 本发明提供了一种通过芳香族乙烯基单体,乙烯基氰单体和马来酰亚胺单体以特定比例的乳液聚合制备马来酰亚胺共聚物的方法,其中聚合通过将不少于特定比例的芳族乙烯基 单体,并且任选地不超过特定比例的乙烯基氰单体在聚合开始之前进入聚合体系; 在聚合开始后,向马来酰亚胺单体和剩余的其它单体组成的混合物连续地或分开地加入到聚合体系中; 在所述聚合开始时,将聚合体系的水相的pH保持在3〜9的范围内; 并使用含有油溶性有机过氧化物的氧化还原催化剂。 根据该聚合方法,可以高产率制备具有优异的耐热性和耐热分解性的马来酰亚胺共聚物。 本发明还提供一种具有优异的耐热性,耐热分解性和耐冲击性的树脂组合物,其通过以特定比例将通过上述方法制备的马来酰亚胺共聚物与通过将上述方法获得的橡胶增强树脂 乙烯基氰单体等涂覆在特定的弹性体上; 任选地将得到的热塑性树脂组合物与在室温下硬的热塑性树脂共混。
    • 49. 发明授权
    • Novel polymer composition
    • 新型聚合物组成
    • US4435540A
    • 1984-03-06
    • US336460
    • 1981-12-31
    • Kazuo KishidaIsao SasakiNobuhiro Mukai
    • Kazuo KishidaIsao SasakiNobuhiro Mukai
    • C08F2/44C08K3/04C08K3/00C08K3/08C08K3/26
    • C08F2/44
    • A polymer composition wherein an inorganic substance and an organic polymer are firmly consolidated, which is characterized by being produced by polymerizing a vinyl monomer susceptible to radical polymerization in a polymerization system containing a dispersed inorganic substance in the presence of at least one monomer selected from sulfonic acid monomers, sulfonate monomers, or carboxylic acid monomers represented by the general formula [I] ##STR1## wherein R.sub.1 is a hydrogen atom, alkyl group having 1 to 20 carbon atoms, phenyl group, derivative of phenyl group, or halogen atom, X is CONH, ##STR2## COO(CH.sub.2).sub.m or (CH.sub.2).sub.n (wherein R.sub.2 and R.sub.3 are each a hydrogen atom or alkyl group having 1 to 15 carbon atoms, R.sub.4 is an alkylene group having 1 to 15 carbon atoms, m is an integer of 1 to 20, and n is an integer of 0 to 20), and Y is a hydrogen atom, ammonium radical, or an alkali metal atom, or by the general formula [II] ##STR3## wherein R.sub.5 is a hydrogen atom, alkyl group having 1 to 15 carbon atoms, COOZ, halogen atom, phenyl group, or derivative of phenyl group, R.sub.6 is a hydrogen atom, alkyl group having 1 to 15 carbon atoms, COOZ, halogen atom, phenyl group, or derivative of phenyl group, R.sub.7 is a hydrogen atom, alkyl group having 1 to 15 carbon atoms, halogen atom, phenyl group, or derivative of phenyl group, and Z is a hydrogen atom, ammonium radical, or alkali metal atom, or by the general formula [III] ##STR4## wherein R.sub.8 and R.sub.9 are each a hydrogen atom, alkyl group having 1 to 15 carbon atoms, halogen atom, phenyl group, or derivative of phenyl group.
    • 一种聚合物组合物,其中无机物质和有机聚合物被牢固地固化,其特征在于通过在含有分散的无机物质的聚合体系中聚合具有自由基聚合的乙烯基单体在至少一种选自以下的单体 由通式[I]表示的酸单体,磺酸酯单体或羧酸单体其中R1是氢原子,具有1-20个碳原子的烷基,苯基,苯基衍生物或卤素 原子,X为CONH,COO(CH 2)m或(CH 2)n(其中R 2和R 3各自为氢原子或具有1至15个碳原子的烷基,R 4为具有1至15个碳原子的亚烷基 m为1〜20的整数,n为0〜20的整数,Y为氢原子,铵基或碱金属原子,通式[II]表示。[II] ]其中R5是氢原子,具有1至1的烷基 5个碳原子,COOZ,卤素原子,苯基或苯基的衍生物,R6是氢原子,具有1至15个碳原子的烷基,COOZ,卤素原子,苯基或苯基的衍生物,R7是 氢原子,碳原子数1〜15的烷基,卤素原子,苯基或苯基的衍生物,Z为氢原子,铵基或碱金属原子,或通式[III] [III]其中R8和R9各自为氢原子,具有1至15个碳原子的烷基,卤素原子,苯基或苯基的衍生物。
    • 50. 发明授权
    • Coating composition and process for preparing synthetic resin shaped
articles by using same
    • 涂料组合物及其制备方法
    • US4339474A
    • 1982-07-13
    • US239202
    • 1981-03-03
    • Kazuo KishidaIsao SasakiKenji KushiMisao Tamura
    • Kazuo KishidaIsao SasakiKenji KushiMisao Tamura
    • C08F2/48C09D4/06B05D3/06C08F8/00
    • C09D4/06
    • A coating composition for the preparation of synthetic resin shaped articles excellent in abrasion resistance and weatherability is described. This composition comprises (a) a polyfunctional monomer composition comprising (i) 40-100 wt. % of a polyfunctional monomer containing at least three methacryloyloxy or acryloyloxy groups in the molecule and having a MW of not higher than about 900 and (ii) 0-60 wt. % of a mono- or bi-functional monomer having one or two methacryloyloxy or acryloyloxy groups in the molecule and having a MW of not higher than about 300 per methacryloyloxy or acryloyloxy group, (b) 5-35 parts by wt., based on 100 wt. parts of the monomer composition, of at least one ultraviolet absorber, (c) 0.5-8 wt. parts, based on 100 parts by wt. of the monomer composition, of at least one polymeric material selected from polymers of alkyl methacrylates and alkyl acrylates, and (d) 0.01-6 parts by wt., based on 100 parts by wt. of the monomer composition, of a photosensitizer. The coating composition is coated on a synthetic resin shaped article and then, irradiated with ultraviolet rays in an inert gas or air to form a crosslinked coating film having a thickness of 1 to 30 microns.
    • 描述了用于制备耐磨性和耐候性优异的合成树脂成型制品的涂料组合物。 该组合物包含(a)多官能单体组合物,其包含(i)40-100wt。 %的分子中含有至少三个甲基丙烯酰氧基或丙烯酰氧基并具有不高于约900的MW的多官能单体和(ii)0-60重量% %的分子中具有1个或2个甲基丙烯酰氧基或丙烯酰氧基的单功能或双官能单体,每个甲基丙烯酰氧基或丙烯酰氧基具有不高于约300的MW,(b)5-35重量份,基于 100重量 单体组合物的部分,至少一种紫外线吸收剂,(c)0.5-8wt。 部分,基于100重量份。 至少一种选自甲基丙烯酸烷基酯和丙烯酸烷基酯的聚合物的聚合物材料,和(d)基于100重量份的重量比为0.01-6重量份。 的单体组合物。 将涂料组合物涂布在合成树脂成形制品上,然后在惰性气体或空气中用紫外线照射,形成厚度为1至30微米的交联涂膜。