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Stainless steel, titanium, or titanium alloy solid polymer fuel cell separator and its method of production and method of evaluation of warp and twist of separator

机译:不锈钢,钛或钛合金固体聚合物燃料电池隔板及其制造方法和隔板翘曲和扭曲的评估方法

摘要

The present invention releases a method of producing a metal separator for a solid polymer fuel cell by stainless steel, titanium, or titanium alloy during which securing lower cost and mass producibility by using a material having a high workability to form a complicated shape by a high productivity, then using an inexpensive blast process to drive a conductive substance into the surface of the metal separator member, that is, provides a stainless steel, titanium, or titanium alloy solid polymer fuel cell separator comprised of stainless steel, titanium, or titanium alloy in the surface of which a low ion release conductive substance is buried, having an arithmetic mean roughness (Ra) of the separator surface of 0.5 to 5.0 μm, having a 10-point mean roughness (Rz) of 3 to 20 μm, having an average spacing of surface relief shapes (Sm) of 300 μm or less, having values of a warp rate and twist rate of a separator of 0.1 or less, and having a contact resistance value with respect to carbon paper of 15 mωcm2 or less at a surface pressure of 1 MPa.
机译:本发明提供了一种通过使用不锈钢,钛或钛合金来制造用于固体聚合物燃料电池的金属隔板的方法,在此期间,通过使用具有高加工性的材料以高成本形成复杂形状来确保较低的成本和批量生产性。生产率,然后使用廉价的喷砂工艺将导电物质驱入金属隔板构件的表面,即提供由不锈钢,钛或钛合金组成的不锈钢,钛或钛合金固体聚合物燃料电池隔板在埋入低离子释放导电性物质的表面中,隔板表面的算术平均粗糙度(Ra)为0.5至5.0μm,十点平均粗糙度(Rz)为3至20μm,具有表面起伏形状(Sm)的平均间隔为300μm或更小,隔板的翘曲率和扭曲率的值为0.1或更小,相对于碳的接触电阻值为n张15mωcm 2 的纸,表面压力为1 MPa。

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