高温应力断裂试验中MarM247定向凝固过程中碳化物的形成

Daniel Moreno, Itzik Mizrahi, Yuri Lipkin, Vasiliy Zevin, Elinor Itzhak, Zion Harush
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引用次数: 0

摘要

在我们的研究中,在高温下进行了应力破裂试验,以研究高温对MarM247 LC(低碳)的影响。我们的主要目的是研究在长期应力断裂试验中微观结构的变化,特别是碳析出。观察到裂纹沿碳化物和γ基体的路径在试样颈部附近发展,而不是发生在γ - γ素共晶中。尽管由于长时间暴露在高温和载荷下形成了碳化物,但裂纹扩展并没有遵循这一路径。基于以上结果,我们认为降低Mar-M247 LC的碳含量可以提高样品在低于760˚C和690 MPa应力下的寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Carbides Formation in MarM247 Directional Solidified during Stress-Rupture Test at High Temperature
In our study, stress-rupture tests were conducted at elevated temperatures to examine the impact of high temperature on MarM247 LC (low carbon). Our main objective was to investigate the alterations in the microstructure, particularly the carbon precipitation, during long-term stress-rupture tests. It was observed that cracks developed near the sample neck, following the path of the carbides and the gamma matrix, rather than occurring in the gamma-gamma prime eutectic. This occurred despite the formation of carbides because of prolonged exposure to high temperature and load, and the crack propagation did not follow that path. Based on these findings, we suggest that a reduction in the carbon content of Mar-M247 LC can enhance the sample's lifespan when subjected to temperatures below 760˚C and a stress of 690 MPa.
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