首页> 外文会议>International Conference on Proceeding amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Fabrication Method for Metallic Closed Cellular Materials Containing Different Materials from That of Cell Walls by SPS Method
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Fabrication Method for Metallic Closed Cellular Materials Containing Different Materials from That of Cell Walls by SPS Method

机译:SPS法制备与泡孔壁材料不同的金属闭孔材料

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Several methods of fabricating metallic closed cellular materials a spark plasma sintering (SPS) system have been developed. Powdered polymer particles coated with a nickel-phosphorus alloy layer using electro-less plating were pressed into pellets and sintered at high temperatures in a furnace using SPS system. Metallic closed cellular materials containing different materials from the cell walls were then fabricated. The physical, mechanical and damping properties of these materials were measured. The results of the compressive tests show that this material has different stress-strain curves among the specimens that have different cell wall thicknesses and the sintering temperatures of the specimens affect the compressive strength of each specimen. Also, it seems that the results of the compressive tests show that this material has a high-energy absorption. The internal friction of this material was measured and the results show that this internal friction is the same as that of pure aluminum. These results suggest that this material can be utilized as an energy absorbing and passive damping material.
机译:已经开发了几种制造金属闭孔材料的方法,即火花等离子体烧结(SPS)系统。将使用化学镀覆有镍-磷合金层的粉末状聚合物颗粒压制成丸,并在高温下使用SPS系统在炉中烧结。然后制造包含与孔壁不同材料的金属封闭孔材料。测量了这些材料的物理,机械和阻尼性能。压缩试验的结果表明,该材料在具有不同孔壁厚度的样品之间具有不同的应力-应变曲线,并且样品的烧结温度影响每个样品的抗压强度。另外,压缩试验的结果似乎表明该材料具有高能量吸收。测量了该材料的内摩擦,结果表明该内摩擦与纯铝的内摩擦相同。这些结果表明,该材料可用作能量吸收和被动阻尼材料。

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