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Processing of Ni-WC-Cr3C2-based metal matrix composite cladding on SS-316L substrate through microwave irradiation

机译:通过微波辐射在SS-316L基板上加工Ni-WC-CR3C2基金金属基质复合物包层

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摘要

The present paper reports on the development of metal matrix composite clads of Ni-WC-Cr3C2-based materials through microwave heating route. In this study, metal matrix composite clads were deposited on austenitic stainless steel (SS-316 L) inside a multimode-type domestic microwave oven. Experiment trials were carried out at a microwave power of 900 W and frequency of 2.45 GHz. The optimal exposure time for processing of metal matrix composite clads was varied from 60 to 360 s. The microstructural analysis of processed clads revealed that the metal matrix composite clads of approximately 0.85 mm thickness were free from any type of voids and cracks. The WC and Cr3C2 particles were dispersed inside the Ni matrix. The phase analysis results revealed the formation of Cr7Ni3, NiC, Fe6W6C, Co3W3C4, FeNi3, NiW phases inside the clad layer. The formation of hard carbide phases resulted in higher microhardness of the clad layer. The average value of Vicker's microhardness was observed to be 503 +/- 34 HV, which is almost 1.6 times that of the substrate.
机译:本文通过微波加热路径向Ni-WC-CR3C2基材料的金属基质复合材料的发展进行了报道。在该研究中,将金属基质复合包层沉积在多模型国内微波炉内的奥氏体不锈钢(SS-316L)上。实验试验以900 W的微波功率和2.45GHz的频率进行。金属基质复合包层的处理的最佳暴露时间从60-360秒变化。加工包层的微观结构分析显示,约0.85mm厚的金属基质复合包覆不含任何类型的空隙和裂缝。将WC和Cr3C2颗粒分散在Ni基质内。相分析结果表明,CR7NI3,NIC,FE6W6C,CO3W3C4,FENI3,覆盖层内的NIW相的形成。碳化物阶段的形成导致覆层覆盖层更高的微硬度。观察到维氏微硬度的平均值为503 +/- 34HV,这几乎是底物的1.6倍。

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