首页> 外文会议>Powder Metallurgy Congress amp; Exhibition(Euro PM205) vol.2; 20051002-05; Prague Congress Centre(CZ) >Formation Mechanism of Micro Porous Metals Produced By Powder Space Holder Method
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Formation Mechanism of Micro Porous Metals Produced By Powder Space Holder Method

机译:粉末空间支架法制备微孔金属的形成机理

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摘要

A novel production method for the metal components with micro-sized porous structures has been developed by applying powder space holder (PSH) method to metal powder injection moulding (MIM) process. The representative materials are stainless steels. The aim of this study is to clarify the effects of material combinations on the pore formation and some physical properties of sintered porous specimens. The green compacts were moulded by hot pressing for simplification using various porous compounds which were prepared with changing the combinations in size of metal powder and space holding particle, and were sintered at various temperatures. It was confirmed that the size of metal powder and space holding particle in addition to sintered temperature was main factors affecting significantly for the pore size, porosity, surface area and shrinkage of sintered porous specimens. It was confirmed that the method proposed was useful in producing the metal components with micro-sized porous structures.
机译:通过将粉末空间保持器(PSH)方法应用于金属粉末注射成型(MIM)工艺,开发了一种具有微孔结构的金属部件的新型生产方法。代表性的材料是不锈钢。这项研究的目的是阐明材料组合对烧结多孔试样的孔形成和某些物理性能的影响。为了简化,使用各种多孔化合物通过压制将生坯成型,所述多孔化合物是通过改变金属粉末和空间保持颗粒的尺寸的组合而制备的,并在各种温度下烧结。可以确定的是,除了烧结温度以外,金属粉末的尺寸和保持空间的颗粒是显着影响烧结多孔试样的孔径,孔隙率,表面积和收缩率的主要因素。证实了所提出的方法可用于生产具有微米尺寸的多孔结构的金属部件。

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