首页> 外文会议>International Conference on Environmental degradation of Materials in Nuclear Power Systems-Water Reactors >AN INVESTIGATION INTO STRESS CORROSION CRACKING OF DISSIMILAR METAL WELDS WITH 304L STAINLESS STEEL AND ALLOY 82 IN HIGH TEMPERATURE PURE WATER
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AN INVESTIGATION INTO STRESS CORROSION CRACKING OF DISSIMILAR METAL WELDS WITH 304L STAINLESS STEEL AND ALLOY 82 IN HIGH TEMPERATURE PURE WATER

机译:用304L不锈钢和合金82在高温纯水中对不同金属焊缝应力腐蚀裂纹的研究

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For a better understanding toward stress corrosion cracking (SCC) in dissimilar metal welds with 304L stainless steel and Alloy 82, the SCC growth behavior in the transition regions of weld joints was investigated via slow strain rate tensile (SSRT) tests in 280 oC pure water with a dissolve oxygen level of 300 ppb. Prior to the SSRT tests, samples with dissimilar metal welds were prepared and underwent various pretreatments, including post-weld heat treatment (PWHT), shot peening, solution annealing, and mechanical grinding. In addition to the SSRT tests, measurements of degree of sensitization and micro-hardness on the transition regions of the metal welds were also conducted. According to the test results, the samples having undergone PWHTs exhibited relatively high degrees of sensitization. Distinct decreases in hardness were observed in the heat-affected zones of the base metals in all samples. Furthermore, the fracture planes of all samples after the SSRT tests were located at the stainless steel sides and were in parallel with the fusion lines. Among the treating conditions investigated in this study, a PWHT would pose a detrimental effect on the samples in the aspects of mechanical property and degree of SCC. Solution annealing would lead to the greatest improvement in ductility and SCC retardation, and shot peening would provide the treated samples with a positive improvement in ductility and corrosion retardation, but not to a great extent.
机译:为了更好地理解具有304L不锈钢和合金82的不同金属焊缝中的压力腐蚀裂解(SCC),通过280℃纯水中的慢菌株速率拉伸(SSRT)试验研究了焊接接头的过渡区域中的SCC生长行为溶解氧水平为300 ppb。在SSRT测试之前,制备具有不同金属焊缝的样品并进行各种预处理,包括焊接后热处理(PWHT),射击喷丸,溶液退火和机械研磨。除了SSRT测试之外,还进行了金属焊缝过渡区域的敏化度和微硬度的测量。根据测试结果,在经过PWHT的样品上表现出相对高的敏化程度。在所有样品中,在碱基金属的热影响区域中观察到硬度明显降低。此外,在SSRT测试之后的所有样品的断裂面位于不锈钢侧面,并与融合线平行。在本研究中调查的治疗条件中,PWHT将对机械性能和SCC程度的方面对样品产生不利影响。解决方案退火将导致延展性和SCC延迟的最大改善,射击喷丸将提供延展性和腐蚀延迟的积极提高的处理过的样品,但在很大程度上没有。

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