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Thermo-mechanical Fatigue Behavior Investigation and Fracture Analysis on Austenitic Stainless Steel of Surge Line in Nuclear Power Plant

机译:核电站奥氏体不锈钢的热机械疲劳行为调查与断裂分析

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In order to confirm the structural integrity of pressurizer surge line affected by thermal stratification and thermal shock, the thermo-mechanical fatigue (TMF) behavior of the material used for surge line was investigated based on the real situation in the pressurized water reactor (PWR). Smooth, hollow specimens were subjected to in-phase (IP) and out-of-phase (OP) cycling in air under a mechanical strain control mode. For the sake of comparison, low cycle fatigue (LCF) tests were also performed at the peak temperatures of TMF cycling. The Nano Hardness Tester was used to test the nano hardness of the sample on the cut section surface. The results are shown that there is no significant difference between the IP, OP and IF lives in the investigated temperature ranges. The fracture analysis reveals that the crack initiation and propagation occurred in a transgranular mode under OP, IP and IF cycling condition, and a harden layer occurrence may be the cause of the crack initiation
机译:为了确认受热分流和热冲击影响的加压浪涌线的结构完整性,基于加压水反应器(PWR)的实际情况,研究了用于电涌管线的材料的热机械疲劳(TMF)行为(PWR) 。在机械应变控制模式下,在空气中进行光滑,空心标本经受在空气中的同相(IP)和超相的(OP)。为了比较,在TMF循环的峰值温度下也进行低循环疲劳(LCF)试验。纳米硬度测试仪用于测试切割截面表面上样品的纳米硬度。结果表明,IP,OP和如果在调查的温度范围内没有显着差异。裂缝分析表明,在OP,IP和循环条件下发生响囊模式发生的裂纹引发和繁殖,并且硬化层发生可能是裂纹引发的原因

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