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    • 3. 发明申请
    • FRICTION MATERIAL COMPOSITION, FRICTION MATERIAL USING THE SAME, AND FRICTION MEMBER
    • 摩擦材料组合物,使用它的摩擦材料和摩擦材料
    • US20140227541A1
    • 2014-08-14
    • US14255416
    • 2014-04-17
    • HITACHI CHEMICAL COMPANY, LTD.
    • Mitsuo UNNOManabu OnoTakashi Kikudome
    • F16D69/02
    • F16D69/026B29C70/78B29K2401/00B29K2427/18B29K2505/08B29K2505/12B29K2509/02B29K2511/00B29K2705/00B29K2995/0016B29L2031/16C08L61/04F16D69/028F16D2069/002F16D2200/0069F16D2200/0086Y10T428/12035Y10T428/12951Y10T428/31703
    • Provided is a friction material composition comprising: a binder; a fibrous base material; an abrasive material; an inorganic filler; and an organic filler, wherein the friction material composition further comprises: at least one selected from the group consisting of zinc, a cellulose fiber as the fibrous base materials and a flame retardant fiber as the fibrous base materials; an iron-based fiber as the fibrous base material in an specified amount; and an inorganic abrasive material having a Mohs hardness of 8 or higher and a particle size of 1 μm or larger as the abrasive material in an amount of 1 wt % or less. The present invention can provide a friction material composition which is less destructive to facing materials compared to conventional products, which has a high friction coefficient upon braking when used in repeated braking during high-speed traveling, and which is capable of suppressing pad wear and uneven pad wear, in the case that the friction material composition is formed into a brake pad for passenger cars. The present invention can also provide a friction material and a friction member using this friction material composition.
    • 提供了一种摩擦材料组合物,其包含:粘合剂; 纤维基材; 磨料; 无机填料; 和有机填料,其中所述摩擦材料组合物还包含:选自锌,作为纤维基材的纤维素纤维和作为纤维基材的阻燃纤维的至少一种; 铁基纤维作为特定量的纤维基材; 以及Mohs硬度为8以上,粒径为1μm以上的无机研磨材料为1重量%以下的研磨材料。 本发明可以提供一种摩擦材料组合物,与传统产品相比,其在面对材料方面的破坏性较差,在常规产品中,当在高速行驶中用于重复制动时制动时具有高的摩擦系数,并且能够抑制垫磨损和不均匀 在摩擦材料组合物形成乘用车用刹车片的情况下,垫磨损。 本发明还可以提供使用该摩擦材料组合物的摩擦材料和摩擦构件。
    • 8. 发明申请
    • Composite nanofiber, composite nanofiber association, complex structure, and production method thereof
    • 复合纳米纤维,复合纳米纤维关联,复合结构及其制备方法
    • US20070197708A1
    • 2007-08-23
    • US11569300
    • 2005-05-27
    • Ren-Hua JinJian-Jun Yuan
    • Ren-Hua JinJian-Jun Yuan
    • C08K3/08
    • C08L79/02B82Y30/00D01F6/96D06M11/79D06M13/507D06M2101/30Y10T428/12035Y10T428/12174Y10T428/12438Y10T428/24603Y10T442/2885
    • A silica nanofiber is derived from a crystalline polymer filament of a polymer including straight chain polyethyleneimine backbones, which is capable of forming a water-insoluble crystal in the presence of water molecules at room temperature, and the crystalline polymer filament in the silica concentrates metal ions, thereby realizing a composite nanofiber including metals or metal ions in the silica. Furthermore, the composite nanofiber of the present invention can be easily produced by fixing a polymer structure in the silica as the scaffold for metal ions and concentrating metal ions at the scaffold or reducing the metal ions. Furthermore, a metal-containing silica nanofiber can be easily obtained by removing a polymer component from the composite nanofiber, the composite nanofiber association, and the complex nanofiber structure. These nanofibers can be assembled and integrated, and the assembled or integrated association or structure can realize various shapes.
    • 二氧化硅纳米纤维来源于包含直链聚乙烯亚胺骨架的聚合物的结晶聚合物长丝,其能够在室温下在水分子存在下形成水不溶性晶体,二氧化硅中的结晶聚合物长丝浓缩金属离子 从而实现在二氧化硅中包含金属或金属离子的复合纳米纤维。 此外,本发明的复合纳米纤维可以通过将二氧化硅中的聚合物结构固定在金属离子的支架上并将金属离子浓缩在支架上或还原金属离子而容易地制备。 此外,通过从复合纳米纤维,复合纳米纤维结合体和复合纳米纤维结构中除去聚合物组分,可以容易地获得含金属的二氧化硅纳米纤维。 这些纳米纤维可以组装和集成,并且组装或整合的关联或结构可以实现各种形状。