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Effect of high-temperature degradation on microstructure evolution and mechanical properties of austenitic heat-resistant steel

机译:高温降解对奥氏体耐热钢组织演变和力学性能的影响

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21-4N austenitic heat-resistant steel is widely used as the material for automobile engine valves because of its high strength, excellent creep resistance, oxidation resistance and corrosion resistance under high-temperature circumstances. Engine valves, which are exposed to high temperatures for long periods, undergo material degradation in which the initial microstructure of the material is changed, resulting in deterioration of mechanical properties. This degradation can cause valve failure. Therefore, the microstructure and mechanical characteristics of degraded valves are important issues in designing the hot-section engine components. In this study, the changes in the microstructure evolution and mechanical properties of 21-4N austenitic steel were investigated after exposure at high temperature (1123K) for 10–200h, using accelerated degradation testing. To evaluate the degradation characteristics of 21-4N austenitic heat-resistant steel, we analyzed the microstructure evolution (e.g., grains, surface oxides, carbides, and phase) and the change in mechanical properties (e.g., tensile strength and, hardness) for virgin and degraded specimens. Finally, analyses and tests results demonstrate the correlation between microstructure evolution and changes in mechanical properties.
机译:21-4N奥氏体耐热钢由于其高强度,优异的耐蠕变性,耐氧化性和在高温环境下的耐腐蚀性而被广泛用作汽车发动机气门嘴的材料。长时间暴露在高温下的发动机气门会发生材料降解,从而改变材料的初始微观结构,从而导致机械性能下降。这种降级会导致阀门故障。因此,退化气门的微观结构和机械特性是设计热切发动机组件的重要问题。在这项研究中,使用加速降解试验,研究了在高温(1123K)下暴露10–200h后21-4N奥氏体钢的组织演变和力学性能的变化。为了评估21-4N奥氏体耐热钢的降解特性,我们分析了原始材料的微观组织演变(例如晶粒,表面氧化物,碳化物和相)以及机械性能的变化(例如拉伸强度和硬度)和退化的标本。最后,分析和测试结果证明了微观结构演变与力学性能变化之间的相关性。

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