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    • 1. 发明授权
    • Energy absorbing type steering device, and method and device for assembling the steering device
    • 能量吸收型转向装置,以及组装转向装置的方法和装置
    • US06840128B1
    • 2005-01-11
    • US10069398
    • 2000-07-28
    • Shigemi ShioyaSadato KitaTakashi ShimadaSeiji Sano
    • Shigemi ShioyaSadato KitaTakashi ShimadaSeiji Sano
    • B62D1/19F16F7/12B62D1/16
    • F16F7/125B62D1/192
    • Energy absorbing steering devices may include an outer cylindrical member (OU) that is press-fited around an inner shaft member (IN). The outer shape of the inner shaft member and the inner shape of the outer cylindrical member have a circular cross-section and the diameter of the inner shape of the outer cylinder member is larger than the diameter of the outer shape of the inner shaft member. A plurality of fine members (W) is disposed along the axial direction between the circular cross-sectional outer shape and the circular cross-sectional inner shape in order to provide a clearance (G) between the inner shaft member and the outer cylindrical member. The arrangement of the fine members may be modified in order to adjust the rigidity of relative movement along the axial direction of the outer cylindrical member and the inner shaft member.
    • 能量吸收转向装置可以包括围绕内轴构件(IN)冲压的外圆柱形构件(OU)。 内轴构件的外形和外筒构件的内部形状具有圆形横截面,外筒构件的内部形状的直径大于内轴构件外形的直径。 为了提供内轴构件和外筒状构件之间的间隙(G),在圆形截面外形和圆形横截面内部形状之间沿着轴向设置有多个精细构件(W)。 为了调整沿着外筒部件和内轴部件的轴向的相对移动的刚性,可以对精细部件的配置进行修改。
    • 8. 发明申请
    • MASS SPECTROMETRY OF BIOLOGICAL SAMPLE USING IMMUNOPRECIPITATION
    • 使用免疫反应的生物样品的质谱分析
    • US20100086938A1
    • 2010-04-08
    • US12516790
    • 2007-10-02
    • Takashi ShimadaAtsuhiko ToyamaTaka-aki Sato
    • Takashi ShimadaAtsuhiko ToyamaTaka-aki Sato
    • G01N33/53G01N33/543G01N33/553G01N33/552G01N33/544
    • G01N33/6848
    • It is intended to provide an analysis method for a biological sample with clinical significance, which is a system being simple to such an extent that it can be applied to a clinical field, and capable of capping a molecule ionization suppression in mass spectrometry. Mass spectrometry of a biological sample using immunoprecipitation, comprising the steps of: preparing a sample containing an objective biological molecule; concentrating the biological molecule in the sample by immunoprecipitation using an antibody-bound carrier or a carrier to which a molecule capable of specifically binding to an antibody is bound; washing an immunoprecipitate of the biological molecule by using an aqueous solution containing a charge neutralizing agent as a washing liquid; and detecting the biological molecule by subjecting the washed immunoprecipitate to mass spectrometry.
    • 旨在为具有临床意义的生物样品提供分析方法,该方法简单到能够应用于临床领域并且能够在质谱法中限制分子离子化抑制的系统。 使用免疫沉淀的生物样品的质谱法,包括以下步骤:制备含有客观生物分子的样品; 通过使用抗体结合的载体或能够与抗体特异性结合的分子结合的载体通过免疫沉淀将生物分子浓缩在样品中; 通过使用含有电荷中和剂的水溶液作为洗涤液来洗涤生物分子的免疫沉淀物; 并通过对洗涤的免疫沉淀物进行质谱检测来检测生物分子。
    • 9. 发明申请
    • RUBBER COMPOSITE AND TIRES MADE BY USING THE SAME
    • 橡胶复合材料和轮胎使用相同
    • US20090266461A1
    • 2009-10-29
    • US12439709
    • 2007-08-02
    • Uchu MukaiKazuhiko MisumiTakashi Shimada
    • Uchu MukaiKazuhiko MisumiTakashi Shimada
    • B60C5/00C08K3/22C08K5/24
    • B60C1/00B32B25/042B32B25/12B32B25/14B32B25/16B32B2250/248B32B2307/306B32B2307/50B32B2605/00B60C2009/0021C08K3/06C08K3/22C08K5/25C08L21/00Y10T152/10495
    • The present invention provides a rubber composite constituted of at least two layers of members comprising a rubber composition containing a diene base rubber cross-linked by sulfur, wherein a difference in a concentration of sulfur between adjacent members in the rubber composite described above is 1.5 part by mass or more based on 100 parts by mass of a rubber component in the rubber composition described above; zinc oxide is blended in an amount satisfying a condition shown in the following equation (I) based on 100 parts by mass of a rubber component in a low sulfur concentration rubber composition among the adjacent members, and an antioxidant and/or a naphthoic hydrazide compound are blended in an amount satisfying a condition shown in the following equation (II) based on 100 parts by mass of the rubber component in the low sulfur concentration rubber composition: blending amount (parts by mass) of zinc oxide in the low sulfur concentration rubber composition>Sb×1.3+(Sa−Sb)×0.3  (I) (wherein Sa represents a blending amount (parts by mass) of sulfur in the high sulfur concentration rubber composition, and Sb represents a blending amount (parts by mass) of sulfur in the low sulfur concentration rubber composition) and blending amount (mole) of the antioxidant and/or the naphthoic hydrazide compound in the low sulfur concentration rubber composition>0.005+(Sa−Sb)/2000  (II) (wherein Sa and Sb represent the same contents as described in the equation (I)); a rubber composite improved in a problem originating in a difference in a concentration of a blending agent, particularly sulfur between adjacent rubber compositions comprising a rubber composition cross-linked by sulfur without using new raw materials and members; and a tire prepared by using the same.
    • 本发明提供一种由至少两层构件构成的橡胶复合体,该橡胶组合物包括含有由硫交联的二烯基橡胶的橡胶组合物,其中上述橡胶复合材料中相邻构件之间的硫浓度差为1.5份 以上述橡胶组合物中的100质量份橡胶成分为基准, 氧化锌以相邻成员中的低硫浓度橡胶组合物中的橡胶成分100质量份,抗氧化剂和/或萘甲酰肼化合物为基准,以满足下述式(I)所示的条件的量进行配合 以低硫浓度橡胶组合物中的橡胶成分100质量份为基准,混合满足下述式(II)所示条件的量:低硫浓度橡胶中的氧化锌的配合量(质量份) 组成> Sbx1.3 +(Sa-Sb)x0.3(I)(其中,Sa表示高硫浓度橡胶组合物中的硫的配合量(质量份),Sb表示配合量(质量份) 低硫浓度橡胶组合物中的硫)和低硫浓度橡胶组合物> 0.005+(Sa-Sb)/ 2000(II)中的抗氧化剂和/或萘甲酰肼化合物的配合量(摩尔)(其中,Sa和 Sb 表示与等式(I)中所述相同的内容); 橡胶复合材料改善了由于不使用新的原材料和构件而由硫交联的橡胶组合物构成的相邻橡胶组合物之间的混合剂浓度差异特别是硫的差异, 和使用该轮胎制备的轮胎。