Long-term high-temperature exposure effects on mechanical properties and structure of the 42XNM alloy after neutron irradiation in the VVER-1000. Part 1. Mechanical tests

B. Gurovich, A. Frolov, E. Kuleshova, I. Fedotov
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Abstract

The paper presents the results of mechanical tests of ring specimens made of the 42XNM alloy after irradiation as part of the control and protection system of the VVER-1000 reactor to a damaging dose of ~12 dpa at a temperature of ~350°C and subsequent isothermal annealings in the temperature range of 400– 1150°C (heating and holding for ~2 h). A model was constructed and validated by the finite element method, it describes the mechanical characteristics of irradiated and non-irradiated samples from the 42XNM alloy during tests in the temperature range from 500 to 1000°C. The model was used to plot the temperature dependences of the maximum local plastic deformation and the yield strength of the material under study.
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VVER-1000中子辐照后42XNM合金长期高温暴露对力学性能和组织的影响第1部分。机械测试
本文介绍了作为VVER-1000反应堆控制和保护系统的一部分,42XNM合金制成的环形试样在350℃的~12 dpa的损伤剂量下辐照,并在400 ~ 1150℃的等温退火(加热保温~2 h)后的力学试验结果,建立了模型,并用有限元法进行了验证。它描述了42XNM合金在500至1000℃温度范围内的辐照和未辐照样品的力学特性。该模型用于绘制研究材料的最大局部塑性变形和屈服强度的温度依赖性。
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