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首页> 外文期刊>Physics of atomic nuclei >Temperature Dependences of Mechanical Properties and Fracture Features of Low-Activation Ferritic-Martensitic EK-181 Steel in a Temperature Range from-196 to 720 degrees C
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Temperature Dependences of Mechanical Properties and Fracture Features of Low-Activation Ferritic-Martensitic EK-181 Steel in a Temperature Range from-196 to 720 degrees C

机译:低激活铁素体 - 马氏体EK-181钢的力学性能和裂缝特征的温度依赖性在-196至720摄氏度的温度范围内

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摘要

The features of the microstructure, structural-phase transformations, and regularities of the change in the short-term mechanical properties of low-activation 12% chromium ferritic-martensitic steel EK-181 together with the features of its plastic deformation and fracture by the active stretching method in a temperature range from -196 to 720 degrees C are investigated. The high efficiency of dispersive hardening by nanoscale particles V(C, N) provides a weak temperature dependence of the steel strength properties with increasing temperature from 20 to 450 degrees C. A significant increase in the temperature dependence of the steel yield strength is observed in the ductile-to-brittle transition interval (below T similar to 20 degrees C). In a temperature range from -196 to 720 degrees C, the change in the plasticity regularities and the mode of steel fracture are closely related to the features of the temperature dependence of the yield stress and ultimate tensile strength. In the region of temperatures above 0 degrees C (up to similar to 450 degrees.), these features are determined by the weak temperature dependence of the value of dispersion hardening by nanoscale vanadium carbonitride particles; in the temperature range below 0 degrees C, they are determined by a strong temperature dependence of the thermally activated mobility of dislocations in the crystalline relief (the Peierls barrier, solid solution of impurities).
机译:低激活12%铬铁素体 - 马氏体钢EK-181的短期力学性能变化的微观结构,结构相变化和规律的特征以及活性物质变形和骨折的特征研究了从-196至720℃的温度范围内的拉伸方法。纳米级粒子V(C,N)的色散硬化的高效率提供钢强度性能较弱的温度依赖性,其温度升高到20至450℃。观察到钢屈服强度的温度依赖性的显着增加延性到脆性过渡间隔(低于T类似于20℃)。在-196至720摄氏度的温度范围内,塑性规律的变化和钢断裂模式与屈服应力和最终拉伸强度的温度依赖性的特征密切相关。在0℃的温度范围内(高达相似至450度。),这些特征由纳米级钒碳氮化物颗粒的分散化硬化值的弱温依赖性确定;在低于0℃的温度范围内,它们是通过在晶体浮雕中脱位的热活化迁移率的强烈温度依赖性来确定(Peierls屏障,杂质的固体溶液)。

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