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Compressibility of 304 Stainless Steel Powder Metallurgy Materials Reinforced with 304 Short Stainless Steel Fibers

机译:304不锈钢短纤维增强的304不锈钢粉末冶金材料的可压缩性

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摘要

Powder metallurgy (P/M) technique is usually used for manufacturing porous metal materials. However, some P/M materials are limitedly used in engineering for their performance deficiency. A novel 304 stainless steel P/M material was produced by a solid-state sintering of 304 stainless steel powders and 304 short stainless steel fibers, which were alternately laid in layers according to mass ratio. In this paper, the compressive properties of the P/M materials were characterized by a series of uniaxial compression tests. The effects of fiber content, compaction pressure and high temperature nitriding on compressive properties were investigated. The results indicated that, without nitriding, the samples changed from cuboid to cydariform without damage in the process of compression. The compressive stress was enhanced with increasing fiber content ranging from 0 to 8 wt.%. For compaction pressure from 55 to 75 MPa, greater compaction pressure improved compressive stress. Moreover, high temperature nitriding was able to significantly improve the yield stress, but collapse failure eventually occurred.
机译:粉末冶金(P / M)技术通常用于制造多孔金属材料。但是,某些P / M材料因其性能不足而在工程中受到限制。通过对304不锈钢粉末和304短不锈钢纤维进行固态烧结,生产出一种新颖的304不锈钢P / M材料,这些粉末根据质量比交替放置。本文通过一系列单轴压缩试验表征了P / M材料的压缩性能。研究了纤维含量,压实压力和高温渗氮对压缩性能的影响。结果表明,在不进行渗氮的情况下,样品在压缩过程中从长方体转变为cydariform,而没有破坏。压缩应力随着纤维含量从0到8 wt。%的增加而增加。对于55至75 MPa的压实压力,更大的压实压力可改善压应力。而且,高温氮化能够显着改善屈服应力,但最终发生塌陷破坏。

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