Thermal conductive polymer molded article and method for producing the same
    3.
    发明授权
    Thermal conductive polymer molded article and method for producing the same 失效
    导热聚合物成型体及其制造方法

    公开(公告)号:US07079405B2

    公开(公告)日:2006-07-18

    申请号:US10617517

    申请日:2003-07-11

    IPC分类号: H02M3/335

    摘要: A thermal conductive polymer molded article is formed by molding a thermotropic liquid crystalline composition comprised mainly of a thermotropic liquid crystalline polymer, wherein the thermal conductive polymer molded article is formed by applying a magnetic field or an electric field to the thermotropic liquid crystalline composition melted by heating so that the thermal conductive polymer molded article has a first thermal conductivity (λ1) higher than a second thermal conductivity (λ2) of a molded article formed by molding the thermotropic liquid crystalline polymer without the application of the field. The thermal conductive polymer molded article preferably has a first thermal conductivity (λ1) of between 0.7 and 20 W/(m·K). Preferably, the thermotropic liquid crystalline polymer comprises at least one polymer selected from (A) a wholly aromatic polyester and (B) a wholly aromatic polyester amide.

    摘要翻译: 导热聚合物模制品通过模制一种主要由热致液晶聚合物组成的热致液晶组合物而形成,其中通过向由热致液晶组合物熔化的热致变液晶组合物施加磁场或电场而形成导热聚合物模塑制品 加热,使得导热聚合物模塑制品具有比通过模塑成型制成的模塑制品的第二热导率(λ/ 2> 2)高的第一热导率(λ<1/2) 热致液晶聚合物无应用领域。 导热聚合物模塑制品优选具有0.7至20W /(m.K)之间的第一热导率(λ<1/2)。 优选地,热致液晶聚合物包含至少一种选自(A)全芳族聚酯和(B)全芳族聚酯酰胺的聚合物。

    Ion conductive polymer electrolyte membrane and production method for the same
    5.
    发明授权
    Ion conductive polymer electrolyte membrane and production method for the same 失效
    离子导电聚合物电解质膜及其制备方法相同

    公开(公告)号:US07540991B2

    公开(公告)日:2009-06-02

    申请号:US11173721

    申请日:2005-07-01

    IPC分类号: H05B6/00

    摘要: The present invention provides an electrolyte membrane formed of an ion conductive composition. Said composition contains a liquid crystalline polymer having an ionic dissociative group. Molecular chains of the liquid crystalline polymer are orientated in a specific direction. The degree of orientation α of the liquid crystalline polymer is in a range of 0.45 or more and less than 1, as defined by equation (1) as follows, Degree of orientation α=(180−Δβ)/180  (1), wherein Δβ is a full width at half maximum of a peak in an X-ray diffraction intensity distribution pattern obtained by measuring an intensity distribution from 0 to 360 degrees in the azimuthal angle direction, at a peak scattering angle, in an X-ray diffraction image of the electrolyte membrane. Ionic conductivity in a thickness direction of the membrane is higher than the ionic conductivity in a direction parallel to a surface of the membrane. The present invention also provides a method for manufacturing an electrolyte membrane formed of an ion conductive composition.

    摘要翻译: 本发明提供由离子导电组合物形成的电解质膜。 所述组合物含有具有离子解离基团的液晶聚合物。 液晶聚合物的分子链沿特定方向取向。 如式(1)所定义,液晶聚合物的取向度α在0.45以上且小于1的范围内,<?在线式说明=“在线式”末端= “lead”?>取向度α=(180-Deltabeta)/ 180(1),<?in-line-formula description =“In-line formula”end =“tail”?>其中Deltabeta是 在电解质膜的X射线衍射图像中,以峰值散射角测量方位角方向的0〜360度的强度分布而得到的X射线衍射强度分布图案中的峰的半值最大值。 膜的厚度方向上的离子传导率在平行于膜的表面的方向上高于离子导电率。 本发明还提供一种由离子导电组合物形成的电解质膜的制造方法。

    Ion conductive polymer electrolyte membrane and production method for the same
    7.
    发明申请
    Ion conductive polymer electrolyte membrane and production method for the same 失效
    离子导电聚合物电解质膜及其制备方法相同

    公开(公告)号:US20060004112A1

    公开(公告)日:2006-01-05

    申请号:US11173721

    申请日:2005-07-01

    IPC分类号: C08J5/20 H01M8/10

    摘要: The present invention provides an electrolyte membrane formed of an ion conductive composition. Said composition contains a liquid crystalline polymer having an ionic dissociative group. Molecular chains of the liquid crystalline polymer are orientated in a specific direction. The degree of orientation α of the liquid crystalline polymer is in a range of 0.45 or more and less than 1, as defined by equation (1) as follows; Degree of orientation α=(180−ΔB/180) (1), wherein ΔB is a full width at half maximum of a peak in an X-ray diffraction intensity distribution pattern obtained by measuring an intensity distribution from 0 to 360 degrees in the azimuthal angle direction, at a peak scattering angle, in an X-ray diffraction image of the electrolyte membrane. Ionic conductivity in a thickness direction of the membrane is higher than the ionic conductivity in a direction parallel to a surface of the membrane. The present invention also provides a method for manufacturing an electrolyte membrane formed of an ion conductive composition.

    摘要翻译: 本发明提供由离子导电组合物形成的电解质膜。 所述组合物含有具有离子解离基团的液晶聚合物。 液晶聚合物的分子链沿特定方向取向。 液晶聚合物的取向度为如下式(1)所定义的0.45以上且小于1的范围; 取向度α=(180-ΔB/ 180)(1),其中DeltaB是通过测量从0到360度的强度分布而获得的X射线衍射强度分布图中的峰的半峰全宽 在电解质膜的X射线衍射图像中以峰值散射角度的方位角方向。 膜的厚度方向上的离子传导率在平行于膜的表面的方向上高于离子导电率。 本发明还提供一种由离子导电组合物形成的电解质膜的制造方法。

    Graphitized carbon fiber powder and thermally conductive composition
    10.
    发明授权
    Graphitized carbon fiber powder and thermally conductive composition 失效
    石墨化碳纤维粉末和导热组合物

    公开(公告)号:US06794035B2

    公开(公告)日:2004-09-21

    申请号:US10255275

    申请日:2002-09-26

    IPC分类号: B32B516

    摘要: Graphitized carbon powder are produced by carbonizing and expanding a pitch by heating to form carbonaceous foam and by graphitizing before pulverizing or graphitizing after pulverizing the carbonaceous foam. The resultant graphitized carbon powders have an interplanar spacing (d002) of graphite planes of less than 0.3370 nm. The powders preferably have an average particle size of from 2 to 200 &mgr;m. A thermally conductive composition includes the graphitized carbon powders in a matrix. The content of the powders is preferably 1 to 800 parts by weight relative to 100 parts by weight of the matrix. Thus, the graphitized carbon powders that have excellent thermal conductivity and a thermally conductive composition including such powders are provided.

    摘要翻译: 通过加热碳化和膨胀沥青以形成碳质泡沫并通过石墨化之后,在粉碎碳质泡沫之前进行粉碎或石墨化之前生产石墨化碳粉末。 所得的石墨化碳粉末具有小于0.3370nm的石墨平面的晶面间距(d002)。 粉末的平均粒径优选为2〜200μm。 导热组合物包括基质中的石墨化碳粉。 相对于100重量份的基质,粉末的含量优选为1〜800重量份。 因此,提供具有优异导热性的石墨化碳粉末和包含这种粉末的导热组合物。