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    • 5. 发明授权
    • Sliding material and method of manufacturing the same
    • 滑动材料及其制造方法
    • US5091098A
    • 1992-02-25
    • US660823
    • 1991-02-26
    • Tadashi TanakaHidehiko TamuraKiyohide UenakaShigemasa Hakakoshi
    • Tadashi TanakaHidehiko TamuraKiyohide UenakaShigemasa Hakakoshi
    • F16C33/10C08J5/16C08K3/08C08L29/12C09D127/18C10M111/04C10N10/00C10N10/08C10N10/12C10N20/06C10N30/06C10N40/02C10N50/08F16C33/20
    • F16C33/201C08K3/08C09D127/18C08L29/12
    • A sliding material comprising a backing metal having a porous metal layer formed on the surface thereof and a composition for impregnation coating impregnated and coated to the pores and the surface thereof, wherein the composition for impregnation coating is a composition composed of (a) 0.5-30 vol. % of at least one material selected from a group of resins composed of PFA, EPE, and FEP, 5-30 vol % of metal lead having a relative surface area of 1,000-8,500 cm.sup.2 /g in an average particle size, and the balance composed of PTFE, a total of the respective components other than the PTFE is 5.5-50 vol %, a sliding material comprising a backing metal having porous metal layer formed on the surface thereof and a composition for impregnation coating impregnated and coated to the pores and the surface thereof composed of 0.5-30 vol % of at least one material selected from resins composed of PFA, EPE, and FEP, 5-30 vol % of metal lead having a relative surface area of 1,000-8,500 cm.sup.2 /g in an average particle size, 0.5-30 vol % of at least one material selected from a filler composed of solid lubricant metal oxide, metal fluoride, graphite, a fiber selected from a ceramic of carbon fiber, glass fiber, and SiC, and the balance composed of PTFE, the respective components other than the PTFE being 6-50 vol %, and a method of manufacturing a sliding material comprising the steps of impregnating and covering the above composition for impregnation coating (a) or (b) to the pores and the surface thereof defined in the porous metal layer formed on the surface of a backing metal, and thereafter baking the backing metal with the above composition for impregnation coating (a) or (b) in a neutral atmosphere or in a reducing atmosphere.
    • 一种滑动材料,其包含在其表面上形成有多孔金属层的背衬金属和浸渍涂布在孔及其表面上的浸渍涂料组合物,其中浸渍涂层用组合物为(a)0.5- 30卷 选自由PFA,EPE和FEP组成的一组树脂中的至少一种材料的至少一种,5-30体积%的平均粒径的相对表面积为1,000-8,500cm2 / g的金属铅,余量 由PTFE构成的除了PTFE以外的各成分的总量为5.5〜50体积%,包含在其表面形成有多孔金属层的背衬金属的滑动材料和浸渍并涂布在孔上的浸渍涂料组合物, 其表面由0.5-30体积%的选自由PFA,EPE和FEP组成的树脂中的至少一种材料组成,5-30体积%的平均相对表面积为1000-8,500厘米2 /克的金属铅 粒径为0.5-30体积%的选自由固体润滑剂金属氧化物,金属氟化物,石墨,选自碳纤维陶瓷,玻璃纤维和SiC的纤维构成的填料中的至少一种材料,余量由 PTFE,除了PTFE贝氏体之外的各个组分 g的6-50体积%,以及制造滑动材料的方法,包括以下步骤:将上述用于浸渍涂料(a)或(b)的组合物浸渍并覆盖在形成于多孔金属层上的多孔金属层中限定的孔及其表面上 背衬金属的表面,然后在中性气氛或还原气氛中用上述用于浸渍涂层(a)或(b)的组合物烘烤背衬金属。
    • 10. 发明授权
    • Sliding member
    • 滑动构件
    • US5780396A
    • 1998-07-14
    • US590208
    • 1996-01-23
    • Tadashi TanakaHidehiko TamuraTakahiro Niwa
    • Tadashi TanakaHidehiko TamuraTakahiro Niwa
    • B32B15/08C08K3/04C08L27/18C08L57/00F16C33/20C10M111/04C10M147/02
    • F16C33/201B32B15/08C08L27/18C08L2205/02
    • A sliding member excellent in cavitation resistance and friction properties which has a sliding surface composed of a resin composition comprising a tetrafluoroethylene-perfluoroalkyl vinyl ether copolymer resin and a polytetrafluoroethylene having a molecular weight of 5,000,000 to 15,000,000 and optionally a solid lubricant, wherein the proportion of the tetrafluoro-ethylene-perfluoroalkyl vinyl ether copolymer resin is 1 to 50% by volume based on the volume of the resin composition and the proportion of the solid lubricant is 0.5 to 10% by volume based on the volume of the resin composition. The addition of the solid lubricant results in an enhancement of friction properties and the use of an exfoliated graphite as the solid lubricant brings about a further enhancement of friction properties.
    • 具有防空气阻力和摩擦性能优异的滑动构件,其具有由包含四氟乙烯 - 全氟烷基乙烯基醚共聚物树脂的树脂组合物和分子量为5,000,000至1500,000的聚四氟乙烯和任选的固体润滑剂组成的滑动表面,其中, 四氟乙烯 - 全氟烷基乙烯基醚共聚物树脂的体积相对于树脂组合物的体积为1〜50体积%,固体润滑剂的比例相对于树脂组合物的体积为0.5〜10体积%。 添加固体润滑剂导致摩擦性能的提高,并且使用作为固体润滑剂的剥离石墨进一步提高摩擦性能。