IMPLANT AND METHOD FOR PRODUCTION THEREOF
    194.
    发明申请
    IMPLANT AND METHOD FOR PRODUCTION THEREOF 有权
    植入物及其生产方法

    公开(公告)号:US20130218292A1

    公开(公告)日:2013-08-22

    申请号:US13764267

    申请日:2013-02-11

    Applicant: Biotronik AG

    Abstract: A method for producing an implant and the implant itself, particularly an intraluminal endoprosthesis, wherein the implant is produced from a preferably hollow cylindrical semifinished article (10), wherein the semifinished article contains magnesium or a magnesium alloy, the method comprising preparing the semifinished article (10), and shaping the semifinished article at a temperature of between 250° C. and 550° C. using a tool, which has a metallic lubricant containing gallium and/or a gallium compound on at least a part of its surface that will come into contact with the semifinished article.

    Abstract translation: 一种用于制造植入物和植入物本身的方法,特别是管腔内假体,其中所述植入物由优选中空的圆柱形半成品(10)制备,其中所述半成品包含镁或镁合金,所述方法包括制备所述半成品 (10),并且使用在其表面的至少一部分上具有包含镓和/或镓化合物的金属润滑剂的工具在250℃至550℃的温度下成形半成品,其将在其表面的至少一部分上 接触到半成品。

    BIPHASIC NANOPOROUS VITREOUS CARBON MATERIAL AND METHOD OF MAKING THE SAME
    198.
    发明申请
    BIPHASIC NANOPOROUS VITREOUS CARBON MATERIAL AND METHOD OF MAKING THE SAME 有权
    双相纳米复合碳材料及其制造方法

    公开(公告)号:US20070275863A1

    公开(公告)日:2007-11-29

    申请号:US11627940

    申请日:2007-01-26

    Abstract: A biphasic nanoporous vitreous carbon material with a cementitious morphology characterized by presence of non-round porosity, having superior hardness and tribological properties, as useful for high wear-force applications. The biphasic nanoporous vitreous carbon material is produced by firing, under inert atmosphere, of particulate vitrified carbon in a composition containing (i) a precursor resin that is curable and pyrolyzable to form vitreous carbon and, optionally, (ii) addition of one or more of the following: solid lubricant, such as graphite, boron nitride, or molybdenum disulfide; a heat-resistant fiber reinforcement, such as copper, bronze, iron alloy, graphite, alumina, silica, or silicon carbide; or one or more substances to improve electrical conductivity, such as dendritic copper powder, copper “felt” or graphite flake, to produce a superior vitreous carbon that is useful alone or as a continuous phase in reinforced composites, in relation to conventional glassy carbon materials.

    Abstract translation: 具有水泥质形态的双相纳米孔玻璃碳材料,其特征在于存在非圆形孔隙率,具有优异的硬度和摩擦学性能,对于高磨损应用是有用的。 双相纳米多孔玻璃碳材料是通过在惰性气氛下在含有(i)可固化和可热解以形成玻璃碳的前体树脂的组合物中烧结颗粒状玻璃碳制备的,并且任选地(ii)加入一种或多种 如下:固体润滑剂,如石墨,氮化硼或二硫化钼; 铜,青铜,铁合金,石墨,氧化铝,二氧化硅或碳化硅等耐热纤维增强材料; 或一种或多种改善导电性的物质,例如树枝状铜粉,铜“毡”或石墨片,以产生相对于常规玻璃碳材料单独使用或作为连续相可用于增强复合材料的优质玻璃碳 。

    Heat conductive silicone grease composition and cured product thereof
    199.
    发明申请
    Heat conductive silicone grease composition and cured product thereof 审中-公开
    导热硅脂组合物及其固化产物

    公开(公告)号:US20070042533A1

    公开(公告)日:2007-02-22

    申请号:US11505435

    申请日:2006-08-17

    Abstract: Provided is a heat conductive silicone grease composition including (A) 100 parts by mass of an organopolysiloxane containing 2 or more alkenyl groups bonded to silicon atoms within each molecule, (B) an organohydrogenpolysiloxane containing 2 or more hydrogen atoms bonded to silicon atoms within each molecule, in sufficient quantity to provide from 0.1 to 5.0 hydrogen atoms bonded to silicon atoms within the component (B) for each alkenyl group within the component (A), (C) 100 to 2,200 parts by mass of a heat conductive filler, (D) an effective quantity of a platinum-based catalyst, and (E) an effective quantity of an addition reaction retarder, in which the component (C) includes more than 90% by mass and no more than 100% by mass of an indium powder with an average particle size of 0.1 to 100 μm. Also provided is a heat conductive silicone cured product obtained by curing the above composition by heating at a temperature equal to, or greater than, the melting point of the indium powder. Further provided is an electronic device including an electronic component, a heat radiating member, and a heat conductive member including the above cured product disposed between the electronic component and the heat radiating member. Still further provided is a method of curing the above composition. Even further provided is a method of forming a heat conductive member between an electronic component and a heat radiating member. The above heat conductive silicone grease composition generates a suitably thin cured product with excellent thermal conductivity that prevents problems such as the contamination of components other than the coated component, and the leakage of oily materials from the product if used over extended periods.

    Abstract translation: 本发明提供一种导热性硅氧烷润滑脂组合物,其包含(A)100质量份在每个分子内含有2个以上与硅原子键合的烯基的有机聚硅氧烷,(B)含有2个以上与各原子中的硅原子键合的氢原子的有机氢聚硅氧烷 分子,提供组分(A),(C)中每个链烯基组分(B)内与硅原子键合的0.1至5.0个氢原子,100至2200质量份的导热填料( D)有效量的铂系催化剂和(E)有效量的加成反应缓凝剂,其中组分(C)包含大于90质量%且不大于100质量%的铟 平均粒径为0.1〜100μm的粉末。 还提供了通过在等于或大于铟粉末的熔点的温度下加热固化上述组合物而获得的导热硅酮固化产物。 还提供了一种电子设备,包括电子部件,散热构件和导热构件,其包括设置在电子部件和散热构件之间的上述固化物。 还提供了固化上述组合物的方法。 进一步提供一种在电子部件和散热部件之间形成导热部件的方法。 上述导热硅脂组合物产生具有优异导热性的合适薄的固化产物,其防止诸如涂层组分之外的组分的污染等问题,以及如果长时间使用则油品从产品中泄漏。

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