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Microstructure and Failure Analysis of Austenitic Fe-Ni alloys and Ni-Cr-Fe alloys for Furnace Alloys and Fixtures

机译:奥氏体Fe-Ni合金和炉炉合金Ni-Cr-Fe合金的微观结构和失效分析

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The heat-treating industry is in need of heat-treatment furnace materials and fixtures that have a long service life and reduced heat capacity. Failure mechanisms on the effect of prolonged exposure to carburization heat treatment have been investigated. RA330, RA602CA, 304L,316L and Inconel 625 alloys were selected to study the anti-corrosion properties. The alloys were exposed to 0.7%C carburizing atmosphere at around 900°C for 3 months, 6months, and 12months. Based on microstructural analysis of components that were used until failure in carburization furnace application, it was found that the primary reason for failure was the excessive carburization that leads to "metal dusting" and subsequent cracking. In addition, metallographic analysis indicated that "flake offs" of Fe-Cr-Ni alloys were mainly graphite and chromium carbides. In this paper the failure analysis of industrial components will be presented. In addition, the preliminary analysis of microstructural development during long term exposure experiments in an industrial carburizing furnace will be presented. These samples were characterized using optical and scanning electron microscope and x-ray diffraction.
机译:热处理行业需要热处理炉材料和固定装置,其使用寿命长,以及减少热量。研究了对长期暴露于渗碳热处理效果的失效机制。选择Ra330,Ra602Ca,304L,316L和Inconel 625合金以研究抗腐蚀性能。将合金暴露于0.7%C渗碳气氛,约900℃,持续3个月,6个月和12个月。基于用于渗碳炉应用失效的组分的微观结构分析,发现失败的主要原因是过量的渗碳,导致“金属粉尘”和随后的开裂。此外,金相分析表明Fe-Cr-Ni合金的“剥落”主要是石墨和碳化铬。本文将提出工业部件的故障分析。此外,还将介绍工业渗碳炉长期暴露实验期间微观结构发育的初步分析。使用光学和扫描电子显微镜和X射线衍射表征这些样品。

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