THERMAL DIFFUSION SHEET AND METHOD FOR MOUNTING THE SAME
    1.
    发明申请
    THERMAL DIFFUSION SHEET AND METHOD FOR MOUNTING THE SAME 有权
    热扩散片及其安装方法

    公开(公告)号:US20100132871A1

    公开(公告)日:2010-06-03

    申请号:US12624040

    申请日:2009-11-23

    IPC分类号: B32B37/14 B32B7/12

    摘要: A thermal diffusion sheet of the present invention includes a graphite sheet and thermally conductive adhesive layers attached to both principal surfaces of the graphite sheet. The thermally conductive adhesive layer on a first surface is substantially the same in size as the graphite sheet. The thermally conductive adhesive layer on a second surface is relatively larger in size than the thermally conductive adhesive layer on the first surface, and the entire periphery of the thermally conductive adhesive layer on the second surface lies outside the graphite sheet. The adhesive strength of the thermally conductive adhesive layers on the first and second surfaces after exposure to 40° C. for 168 hours is reduced by no more than 20% relative to the initial adhesive strength. Ahardened material of a polymer component of the thermally conductive adhesive layers on the first and second surfaces has a thermal conductivity of 0.6 W/m·K or more. With this configuration, the thermal diffusion sheet has a structure in which the graphite sheet is sealed by attaching the thermally conductive adhesive layer that is larger than the graphite sheet and has a good thermal conductivity in the plane direction to a radiator plate, and can transfer heat to the radiator plate reliably at a low cost.

    摘要翻译: 本发明的热扩散片包括石墨片和附着在石墨片的两个主表面上的导热粘合剂层。 第一表面上的导热粘合剂层的大小与石墨片的尺寸基本相同。 第二表面上的导热粘合剂层的尺寸比第一表面上的导热粘合剂层大,并且第二表面上的导热粘合剂层的整个周边位于石墨片的外部。 在暴露于40℃168小时后第一表面和第二表面上的导热粘合剂层的粘合强度相对于初始粘合强度降低不超过20%。 第一表面和第二表面上的导热粘合剂层的聚合物组分的硬化材料的热导率为0.6W / m·K以上。 通过该结构,热扩散片具有通过将大于石墨片的导热性粘合剂层附着在散热板的平面方向上具有良好的导热性而将石墨片密封的结构, 以低成本可靠地散热到散热板。

    Base structure of a turnout
    2.
    发明授权
    Base structure of a turnout 失效
    基本结构的投票率

    公开(公告)号:US06257494B1

    公开(公告)日:2001-07-10

    申请号:US09345182

    申请日:1999-06-30

    IPC分类号: E01B1300

    CPC分类号: E01B7/22

    摘要: A base structure of a turnout, which has high durability and is capable of reliably preventing lateral displacement, is disclosed. The base structure of the turnout comprises a set of steel sleepers 1A, which is installed on the track bed and can be filled with ballast. The set of steel sleepers 1A comprises a plurality of steel sleepers 2a, 2b, 2c having a substantially same configuration and different lengths, which are arranged in parallel to each other at predetermined intervals with the length varying stepwise from the shortest steel sleeper 2a to the longest steel sleeper 2c, with end faces on both sides of the longitudinal direction of all steel sleepers are capped with sleeper tie members 3, 4, and 5 or 6, and a portion, or all, of the sleeper tie members are embedded in the track bed.

    摘要翻译: 公开了具有高耐久性并且能够可靠地防止横向位移的转弯的基座结构。 道岔的基座结构包括一组钢轨枕床1A,其安装在轨道床上并且可以用镇流器填充。 钢枕1的组合包括多个具有基本相同的构造和不同长度的钢轨座2a,2b,2c,它们以预定的间隔彼此平行地布置,长度从最短的钢轨枕2a到 所有钢轨枕的长度方向两侧端面的最长的钢轨枕2c被带有枕木配件3,4和5或6,并且一部分或全部的枕木连接件嵌入在 轨道床

    Thermal diffusion sheet and method for mounting the same
    3.
    发明授权
    Thermal diffusion sheet and method for mounting the same 有权
    热扩散片及其安装方法

    公开(公告)号:US08273209B2

    公开(公告)日:2012-09-25

    申请号:US12624040

    申请日:2009-11-23

    IPC分类号: B32B37/00

    摘要: A thermal diffusion sheet of the present invention includes a graphite sheet and thermally conductive adhesive layers attached to both principal surfaces of the graphite sheet. The thermally conductive adhesive layer on a first surface is substantially the same in size as the graphite sheet. The thermally conductive adhesive layer on a second surface is relatively larger in size than the thermally conductive adhesive layer on the first surface, and the entire periphery of the thermally conductive adhesive layer on the second surface lies outside the graphite sheet. The adhesive strength of the thermally conductive adhesive layers on the first and second surfaces after exposure to 40° C. for 168 hours is reduced by no more than 20% relative to the initial adhesive strength. A hardened material of a polymer component of the thermally conductive adhesive layers on the first and second surfaces has a thermal conductivity of 0.6 W/m·K or more. With this configuration, the thermal diffusion sheet has a structure in which the graphite sheet is sealed by attaching the thermally conductive adhesive layer that is larger than the graphite sheet and has a good thermal conductivity in the plane direction to a radiator plate, and can transfer heat to the radiator plate reliably at a low cost.

    摘要翻译: 本发明的热扩散片包括石墨片和附着在石墨片的两个主表面上的导热粘合剂层。 第一表面上的导热粘合剂层的大小与石墨片的尺寸基本相同。 第二表面上的导热粘合剂层的尺寸比第一表面上的导热粘合剂层大,并且第二表面上的导热粘合剂层的整个周边位于石墨片的外部。 在暴露于40℃168小时后第一表面和第二表面上的导热粘合剂层的粘合强度相对于初始粘合强度降低不超过20%。 第一表面和第二表面上的导热粘合剂层的聚合物组分的硬化材料具有0.6W / m·K以上的导热率。 通过这种结构,热扩散片具有通过将大于石墨片的导热性粘合剂层附着在散热板的平面方向上具有良好导热性而将石墨片密封的结构, 以低成本可靠地散热到散热板。

    Method for forming tires
    4.
    发明授权
    Method for forming tires 失效
    轮胎成型方法

    公开(公告)号:US4534812A

    公开(公告)日:1985-08-13

    申请号:US584324

    申请日:1984-02-28

    IPC分类号: B29D30/32 B29H17/22

    摘要: A method for forming tires by the use of a tire-forming machine having a drum bladder and a turnup bladder. An organic halogen compound having in the molecule thereof a ##STR1## bond, in which X represents a halogen atom, is applied to the surfaces of the drum bladder and turnup bladder of the machine to form a layer of the organic halogen compound, whereby unvulcanized rubber for tires is prevented from sticking to said bladders during the formation of tires form the unvulcanized rubber.

    摘要翻译: 一种通过使用具有鼓囊和翻盖囊的轮胎成形机来形成轮胎的方法。 在其分子中具有X表示卤素原子的有机卤素化合物被施加到机器的鼓囊和翻盖囊的表面上以形成有机卤素化合物的层,由此未硫化 在形成未硫化橡胶的轮胎形成期间,防止轮胎用橡胶粘附到所述气囊。