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    • 1. 发明授权
    • Polyolefin-based composite material containing a stratiform silicate and
production process therefor
    • 含有层状硅酸盐的聚烯烃系复合材料及其制造方法
    • US5939184A
    • 1999-08-17
    • US855610
    • 1997-05-13
    • Hirofumi InoueTeruo Hosokawa
    • Hirofumi InoueTeruo Hosokawa
    • C08K9/02B32B5/16C08K3/34
    • C08K9/02Y10S977/788Y10T428/259Y10T428/31935Y10T428/31938
    • A material which exhibits enhanced mechanical strength and heat resistance is provided, comprising: (a) 99.9 to 60% by weight of a modified polyolefin or a polyolefin containing such a modified polyolefin in an amount of at least 1% by weight, the modified polyolefin having a copolymer portion as a graft or a block in a polyolefin, the copolymer portion made of an unsaturated carboxylic acid or a derivative thereof and a monomer, which has a monomer reactivity ratio, the product of which, when multiplied by a monomer reactivity ratio of the unsaturated carboxylic acid or the derivative thereof, is 1 or less; and (b) 0.1 to 40% by weight of a lipophilic interstratified compound in which tetraalkylammonium cation is inserted in a swellable stratiform silicate; can be obtained simply by taking the steps of mixing and melt-kneading in the absence of a solvent, without swelling and cleaving a stratiform silicate compound using a swelling/dispersing medium or the like, such as an organic solvent.
    • 提供了具有增强的机械强度和耐热性的材料,其包括:(a)99.9至60重量%的改性聚烯烃或含有至少1重量%的改性聚烯烃的聚烯烃,改性聚烯烃 在聚烯烃中具有共聚物部分作为接枝物或嵌段,由不饱和羧酸或其衍生物制成的共聚物部分和具有单体反应性比的单体,其乘积乘以单体反应性比 的不饱和羧酸或其衍生物为1以下; 和(b)0.1〜40重量%的亲水性分层化合物,其中四烷基铵阳离子插入可膨胀的层状硅酸盐中; 可以简单地通过在不存在溶剂的情况下进行混合和熔融捏合的步骤,而不用溶胀/分散介质等(例如有机溶剂)溶解并裂解层状硅酸盐化合物。
    • 2. 发明授权
    • Method of producing resin composition containing inorganic filler
    • 含有无机填料的树脂组合物的制造方法
    • US5932634A
    • 1999-08-03
    • US836913
    • 1997-05-23
    • Teruo HosokawaHirofumi InoueYoshihiro Moteki
    • Teruo HosokawaHirofumi InoueYoshihiro Moteki
    • C08K7/00C08K9/04C08K3/10C08K3/34
    • C08K7/00C08K9/04
    • A method of producing a resin composition containing an inorganic filler is disclosed, wherein organic cations having a steric hindrance structure are brought into contact with a layered mineral with an equivalent area per unit charge on the layer surface of 40-150 .ANG..sup.2 /charge, then brought into contact with a thermoplastic resin having a solubility parameter of at least 9.5 �cal/cm.sup.3 !.sup.1/2, so as to disperse the layered mineral inside the resin at the molecular level. The resin compositions obtained by this production method have excellent rigidity, heat resistance and impact resistance, and are suitable for use in fields such as, for example, automobiles, household electronic parts, construction materials and industrial materials.
    • PCT No.PCT / JP96 / 02754 Sec。 371日期1997年5月23日 102(e)日期1997年5月23日PCT提交1996年9月25日PCT公布。 公开号WO97 / 11998 日本1997年4月3日公开了含有无机填料的树脂组合物的制造方法,其中具有空间位阻结构的有机阳离子与层表面上的每单位电荷的等效面积接触40-150 ANGSTROM 2 /充电,然后与溶解度参数为至少9.5 [cal / cm3] + E,fra 1/2 + EE的热塑性树脂接触,以便将层状矿物分散在树脂中的分子水平 。 通过该制造方法获得的树脂组合物具有优异的刚性,耐热性和耐冲击性,并且适用于例如汽车,家用电子部件,建筑材料和工业材料等领域。
    • 3. 发明授权
    • Compound resin composition
    • 复合树脂组合物
    • US06274663B1
    • 2001-08-14
    • US09331638
    • 1999-06-23
    • Teruo HosokawaHirofumi Inoue
    • Teruo HosokawaHirofumi Inoue
    • C08K300
    • C08K9/04C08K2201/008
    • A compound resin composition in which an intercalated compound, in which an onium salt of an aminoalcohol derivative is inserted into the layers of a swellable stratified compound and the interlayer distance is 10˜25 Å as measured by x-ray diffraction, is finely dispersed in a heat curable resin, wherein the proportion is the intercalated compound with respect to the compound resin composition is in the range of 0.5˜60% by weight. This compound resin composition has excellent bending elastic modulus and thermal resistance, and is therefore suitably employed in a number of fields such as the automotive components, home appliance parts, aircraft parts, and construction materials fields, among others.
    • 将其中将氨基醇衍生物的鎓盐插入可膨胀的分层化合物的层中的插层化合物和通过x射线衍射测量的层间距离为10〜25的复合树脂组合物被细分散在 相对于化合物树脂组合物,所述嵌入化合物的比例为0.5〜60重量%的热固性树脂。 该复合树脂组合物具有优异的弯曲弹性模量和耐热性,因此适用于汽车部件,家电部件,飞机部件,建筑材料领域等多个领域。
    • 4. 发明授权
    • Electrostatic discharge protector
    • 静电放电保护器
    • US08625248B2
    • 2014-01-07
    • US13123262
    • 2009-10-06
    • Mina OnishiYoshimitsu IshiharaHirofumi InoueYukihiko Azuma
    • Mina OnishiYoshimitsu IshiharaHirofumi InoueYukihiko Azuma
    • H02H1/04H02H3/22
    • H01C7/12H01T4/10H05K1/0259H05K2201/09672H05K2201/09881
    • The present invention provides an electrostatic discharge protector capable of protecting electronic circuit boards having various designs from electrostatic discharge freely, simply and easily. The electrostatic discharge protector of the present invention comprises at least three conductive members containing one pair of electrodes and the conductive members other than the electrodes, the conductive members are each disposed in such a way that the gap between one conductive member and the other conductive member has a width of 0.1 to 10 μm, an insulating member is disposed and embedded in at least one of gaps having a width of 0.1 to 10 μm which are adjacent to each conductive member and one electrode is connected to the other electrode paired with the one electrode through the insulating member and the conductive members other than electrodes.
    • 本发明提供一种静电放电保护器,其能够简单且容易地保护具有各种设计的电子电路板免受静电放电。 本发明的静电放电保护器包括至少三个包含一对电极的导电构件和除电极之外的导电构件,导电构件各自设置成使得一个导电构件和另一个导电构件之间的间隙 具有0.1至10微米的宽度,绝缘构件设置并嵌入在与每个导电构件相邻的宽度为0.1至10μm的间隙中的至少一个中,并且一个电极连接到与该一个配对的另一个电极 电极通过绝缘构件和除电极之外的导电构件。
    • 5. 发明授权
    • Suspension system for vehicle
    • 车辆悬挂系统
    • US08398091B2
    • 2013-03-19
    • US12935703
    • 2009-05-08
    • Hirofumi InoueTakuhiro Kondo
    • Hirofumi InoueTakuhiro Kondo
    • B60G17/0165
    • B60G17/0157B60G17/06B60G2202/42B60G2400/102B60G2400/206B60G2400/252
    • A suspension system for a vehicle, including: an electromagnetic actuator configured to generate an actuator force and including a sprung-side unit supported by a sprung portion, an unsprung-side unit supported by an unsprung portion, a screw mechanism, and an electromagnetic motor; a connecting mechanism including a support spring for permitting one of the sprung-side and unsprung-side units to be floatingly supported as a floating unit by a unit-floatingly support portion that is one of the sprung and unsprung portions by which the floating unit is supported; and a controller including a sprung-vibration-damping control portion and a relative-vibration-damping control portion that is configured to execute a relative-vibration damping control for damping a vibration of the floating unit caused by the structure in which the floating unit is floatingly supported by the support spring.
    • 一种用于车辆的悬架系统,包括:电磁致动器,其被配置为产生致动器力,并且包括由簧上部支撑的簧上侧单元,由簧下部支撑的簧下侧单元,螺旋机构和电磁马达 ; 一种连接机构,包括:支撑弹簧,用于通过单元浮动支撑部分将所述簧上侧和簧下侧单元中的一个作为浮动单元浮动地支撑,所述单元浮动支撑部分是所述浮动单元和簧下侧单元之一 支持的; 以及控制器,其包括弹簧减振控制部分和相对减振控制部分,所述相关减振控制部分被配置为执行相对振动衰减控制,以减缓由所述浮动单元是 由支撑弹簧浮动支撑。
    • 9. 发明授权
    • Semiconductor device and method of manufacturing the same
    • 半导体装置及其制造方法
    • US08110867B2
    • 2012-02-07
    • US12240246
    • 2008-09-29
    • Shinichi WatanabeHirofumi Inoue
    • Shinichi WatanabeHirofumi Inoue
    • H01L27/115H01L21/336
    • H01L21/28123H01L29/4238
    • A semiconductor device includes a device isolation insulating film which is buried in a semiconductor substrate, a gate insulation film which is provided on the semiconductor substrate, a gate electrode which is provided on the gate insulation film, a source region and a drain region which are provided in the semiconductor substrate and spaced apart from each other in a manner to sandwich the gate electrode, both end portions of each of the source region and the drain region being offset from the device isolation insulating film in a channel width direction by a predetermined distance, and first and second gate electrode extension portions which are provided in a manner to cover both end portions of each of the source region and the drain region in a channel length direction.
    • 半导体器件包括埋在半导体衬底中的器件隔离绝缘膜,设置在半导体衬底上的栅极绝缘膜,设置在栅极绝缘膜上的栅极电极,源极区域和漏极区域 设置在半导体基板中并且以夹着栅电极的方式彼此间隔开,源极区域和漏极区域中的每一个的两个端部在沟道宽度方向上偏离器件隔离绝缘膜预定距离 以及第一和第二栅电极延伸部分,其以在沟道长度方向上覆盖源极区域和漏极区域中的每一个的两个端部的方式设置。