Metallographic examination as the feedback between product quality and manufacturing

D. Merson, A. A. Karavanova, A. V. Klimanov
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Abstract

Despite the increasing automation of the process of designing and manufacturing metal products, their failure remains a common phenomenon. The metallographic examination is appointed, which can only be carried out at a proper level by the specialized accredited organizations to identify the causes of such incidents. A metallographic examination is a tool that acts as feedback between the output quality of products and the entire chain of numerous operations during production. The purpose of this work is, using a practical example, to demonstrate the possibility and special significance of the conclusions of the metallographic examination for the development of the product manufacturing technology. Using the high-speed plasma spraying method, the authors applied the NiCrBSi coating to the surface of the locomotive wheel pair axle to increase its wear resistance. The life bench tests of the axle revealed the main fatigue crack, the tests were stopped, and the axle was artificially broken completely. The analysis of metal quality, including chemical composition, mechanical properties (strength, ductility, and impact hardness), microstructure, metal purity according to the non-metallic inclusions, and parameters of a surface layer hardened by rolling, showed its full compliance with the regulatory documentation. The thickness and hardness parameters of the NiCrBSi coating also corresponded to the declared ones. According to the fractographic analysis, the fatigue fracture was initiated at multiple points, which was a characteristic sign of a common objective reason for the insufficient strength of a product not associated with some random factor. The metallographic examination identified that the main reason for the failure of a wheelset axle is the coating's insufficient fatigue strength. The numerous fatigue microcracks that originated in the coating grew into the base metal and led to the fatigue macrocracks formation at different height levels. The merging of these cracks led to widespread fatigue fracture surface formation.
金相检验作为产品质量和制造之间的反馈
尽管设计和制造金属产品的过程越来越自动化,但它们的故障仍然是一个普遍现象。指定进行金相检查,这种检查只能由经认可的专门组织在适当级别上进行,以查明此类事件的原因。金相检验是一种工具,在产品的输出质量和生产过程中众多操作的整个链条之间起到反馈作用。本工作的目的是通过实例,论证金相检验结论对产品制造技术发展的可能性和特殊意义。采用高速等离子喷涂方法,在机车轮对轴表面喷涂NiCrBSi涂层,以提高其耐磨性。对车轴进行寿命台架试验,发现主要疲劳裂纹,停止试验,人为将车轴完全折断。对金属质量的分析,包括化学成分、机械性能(强度、延展性和冲击硬度)、显微组织、根据非金属夹杂物确定的金属纯度,以及通过轧制硬化的表面层参数,表明其完全符合法规文件。NiCrBSi涂层的厚度和硬度参数也符合申报参数。根据断口分析,疲劳断裂是在多个点开始的,这是产品强度不足的共同客观原因的特征标志,与某些随机因素无关。金相检验表明,导致轮对轴失效的主要原因是涂层疲劳强度不足。起源于涂层的大量疲劳微裂纹扩展到母材中,并在不同高度形成疲劳大裂纹。这些裂纹的合并导致广泛的疲劳断口形成。
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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