首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Conventional and Microwave Sintering on the Properties of Yttria Alumina Garnet-Dispersed Austenitic Stainless Steel
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Effect of Conventional and Microwave Sintering on the Properties of Yttria Alumina Garnet-Dispersed Austenitic Stainless Steel

机译:常规和微波烧结对氧化钇氧化铝石榴石分散奥氏体不锈钢性能的影响

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摘要

The current study examines the effect of heating mode, temperature, and varying yttria alumina garnet (YAG) addition (5 and 10 wt pct) on the densification and properties of austenitic (316L) stainless steel. The straight 316L stainless steel and 316L-YAG composites were heated in a radia-tively heated (conventional) and 2.45 GHz microwave sintering furnace. The compacts were consolidated through solid state as well as supersolidus sintering at 1200 deg C and 1400 deg C, respectively. Both 316L and 316L-YAG compacts couple with microwaves and heat to the sintering temperature rapidly (-45 deg C/min). The overall processing time was reduced by about 90 pct through microwave sintering. As compared to conventional sintering, compacts sintered in microwaves exhibit higher densification and finer microstructure but no corresponding improvement in mechanical properties and wear resistance. This has been correlated to elongated, irregular pore structure in microwave-sintered compacts.
机译:当前的研究检查了加热方式,温度以及不同的氧化钇铝石榴石(YAG)添加量(5和10 wt pct)对奥氏体(316L)不锈钢致密化和性能的影响。将纯正316L不锈钢和316L-YAG复合材料在辐射加热(常规)和2.45 GHz微波烧结炉中加热。通过分别在1200℃和1400℃下的固态以及超固相线烧结来压实压块。 316L和316L-YAG压块均与微波耦合,并迅速加热至烧结温度(-45℃/ min)。通过微波烧结,总处理时间减少了大约90 pct。与常规烧结相比,在微波中烧结的压块具有更高的致密性和更精细的微观结构,但机械性能和耐磨性没有得到相应的改善。这与微波烧结压块中细长的不规则孔结构有关。

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