首页> 外文期刊>Journal of Materials Engineering and Performance >Intergranular fracture on fatigue fracture surface of 2.25Cr-1Mo steel at room temperature in air
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Intergranular fracture on fatigue fracture surface of 2.25Cr-1Mo steel at room temperature in air

机译:室温下2.25Cr-1Mo钢疲劳断裂面上的晶间断裂

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摘要

Low-alloy steels serving for a long time at high temperature (∼500 °C) are very sensitive to temper embrittlement due to segregation of various trace elements at prior austenite grain boundaries and/or carbide/matrix interfaces. This type of segregation in combination with various environmental effects can adversely affect the fracture resistance and fatigue crack propagation rate with subsequent change in the fracture morphology of low-alloy steels. The present work describes the effects of heat treatments on impurity element segregation and its subsequent effects on fatigue fracture behavior of 2.25Cr-1Mo steel under different environmental conditions and temperatures. It has been found that either prior impurity element segregation caused during the heat treatment or hydrogen-induced embrittlement due to the presence of water vapor in laboratory air alone cannot produce intergranular fracture on the fatigue surfaces of 2.25Cr-1Mo steel at room temperature in air. The occurrence of intergranular fracture on the fatigue surfaces results from the combined effect of impurity element segregation-induced grain boundary embrittlement and hydrogen-induced embrittlement, and that the proportion of intergranular fracture is a function of prior impurity element segregation provided that the grain boundary segregation level exceeds a certain critical value.
机译:在高温(〜500°C)下长时间工作的低合金钢对回火脆化非常敏感,这是由于各种痕量元素在先前的奥氏体晶界和/或碳化物/基体界面处的偏析。这种类型的偏析与各种环境影响相结合,会对耐断裂性和疲劳裂纹扩展速率产生不利影响,并随之改变低合金钢的断裂形态。本工作描述了热处理对2.25Cr-1Mo钢在不同环境条件和温度下杂质元素偏析的影响及其对疲劳断裂行为的后续影响。已经发现,无论是在热处理过程中导致的先前杂质元素偏析,还是仅在实验室空气中由于水蒸气的存在而导致的氢致脆化,都无法在室温下于空气中在2.25Cr-1Mo钢的疲劳表面上产生晶间断裂。 。疲劳表面晶间裂纹的发生是由于杂质元素偏析引起的晶界脆化和氢致脆化的共同作用所致,并且只要晶界偏析,晶间断裂的比例是先前杂质元素偏析的函数。级别超过某个临界值。

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