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Effect of neutron irradiation on the mechanical properties of weld overlay cladding for reactor pressure vessel

机译:中子辐照对反应堆压力容器堆焊堆焊层力学性能的影响

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This study investigates the effects of high fluence neutron irradiation on the mechanical properties of two types of cladding materials fabricated using the submerged-arc welding and electroslag welding methods. The tensile tests, Charpy impact tests, and fracture toughness tests were conducted before and after the neutron irradiation with a fluence of 1 × 10~(24) n/m~2 at 290 ?C. With neutron irradiation, we could observe an increase in the yield strength and ultimate strength, and a decrease in the total elongation. All cladding materials exhibited ductile-to-brittle transition behavior during the Charpy impact tests. A reduction in the Charpy upper-shelf energy and an increase in the ductile-to-brittle transition temperature was observed with neutron irradiation. There was no obvious decrease in the elastic–plastic fracture toughness (J_(Ic)) of the cladding materials upon irradiation with high neutron fluence. The tearing modulus was found to decrease with neutron irradiation; the submerged-arc-welded cladding materials exhibited low JIc values at high temperatures.
机译:本研究研究了高能流中子辐照对埋弧焊和电渣焊两种方法制备的两种熔覆材料力学性能的影响。在中子辐照前后,在290°C下,通量为1×10〜(24)n / m〜2时,进行了拉伸试验,夏比冲击试验和断裂韧性试验。用中子辐照,我们可以观察到屈服强度和极限强度的增加,以及总伸长率的减少。在夏比冲击试验中,所有的覆层材料都表现出从韧性到脆性的转变行为。用中子辐照可观察到夏比上架能量的减少和韧性至脆性转变温度的升高。高中子注量辐照后,覆层材料的弹塑性断裂韧性(J_(Ic))没有明显降低。发现撕裂模量随中子辐照而降低;埋弧焊熔覆材料在高温下表现出较低的JIc值。

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