The effect of microwave energy on sintering of an austenitic stainless steel reinforced with boron carbide

Ederson Bitencourt das Neves, Edilson Nunes Pollnow, Alice Goní§alves Osorio
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Abstract

Microwave heating has emerged as an alternative to traditional sintering methods because it consumes less energy and requires shorter processing times. The use of microwave energy in the processing of austenitic stainless steel AISI 316L reinforced with dispersed boron carbide particles was investigated in this study. Different processing parameters were used to investigate the effect of sintering time and temperature, as well as the weight percentage of the ceramic added to the steel matrix, on the final material properties. The compressibility curve, elastic relaxation, and geometric density of green compacts were used to investigate their physical properties. The Archimedes method was used to determine density, and the statistical treatment of analysis of variance was used to determine porosity. Images obtained using optical microscopy and scanning electron microscopy revealed the formation of a second phase in different volumes. The results showed that 1100 °C and a 15-minute plateau were sufficient to sinter the material. AISI 316L samples containing 3 wt.% boron carbide demonstrated greater volumetric formation of secondary phases, resulting in a significant increase in the hardness of the austenitic composite developed.
微波能量对碳化硼增强奥氏体不锈钢烧结的影响
微波加热已经成为传统烧结方法的替代品,因为它消耗更少的能量,需要更短的处理时间。研究了微波能在分散碳化硼颗粒增强奥氏体不锈钢AISI 316L中的应用。采用不同的工艺参数考察了烧结时间、烧结温度以及陶瓷加入钢基体的质量百分比对最终材料性能的影响。利用压缩率曲线、弹性松弛和几何密度对绿色压实材料的物理性质进行了研究。密度采用阿基米德法测定,孔隙度采用方差分析的统计处理。使用光学显微镜和扫描电子显微镜获得的图像显示了第二相在不同体积中的形成。结果表明,1100℃和15分钟的平台足以使材料烧结。含有3wt .%碳化硼的AISI 316L样品显示出更大体积的二次相形成,导致奥氏体复合材料的硬度显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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