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Creep Crack Growth in P92 and P122 Alloy Steel Weldment

机译:P92和P122合金钢焊缝的蠕变裂纹扩展

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摘要

The structures connected by welding are fractured often in Heat Affected Zone (HAZ) when cracks grow under high-temperature and high-pressure conditions. In this study, the creep crack growth tests of P92 and P122 steels were performed and the creep fracture characteristics were evaluated. Degradation rate by cavities was investigated and the influence of degradation rate on crack growth rate Was evaluated. Crack growth rate of new material was compared with that of the degraded material to confirm the influence of the degradation rate by cavities on the crack growth rate. From these results, the crack growth rates in welded joints were determined. The crack growth rate of the step test specimen was much faster than that of new material under the same test conditions of step temperature, while it was slower than that of new material under the same step loading conditions. It implies that crack growth rate of the welded specimen is faster when degradation rate by cavities is high even under the same temperature and stress conditions. HAZ and weld metal have faster cavity nucleation and growth rates than base metal. Therefore, the HAZ and weld metal specimens showed shorter crack initiation time and the initial crack growth rate (da/dt)_c of the HAZ and weld metal was faster than the base metal. If (da/dt)_c is fast, fracture life will be reduced.
机译:当在高温和高压条件下裂纹扩展时,通过焊接连接的结构经常在热影响区(HAZ)中断裂。在这项研究中,进行了P92和P122钢的蠕变裂纹扩展测试,并评估了其蠕变断裂特性。研究了空洞的降解速率,并评估了降解速率对裂纹扩展速率的影响。将新材料的裂纹扩展速率与降解材料的裂纹扩展速率进行比较,以确认空腔的降解速率对裂纹扩展速率的影响。根据这些结果,确定了焊接接头的裂纹扩展速率。在相同的台阶温度测试条件下,台阶试样的裂纹扩展速率比新材料快得多,而在相同的台阶载荷条件下,裂纹扩展速率比新材料慢。这意味着即使在相同的温度和应力条件下,由于空洞导致的降解率较高时,焊接试样的裂纹扩展速率也会更快。 HAZ和焊接金属比母材具有更快的型腔成核和生长速率。因此,热影响区和焊缝金属试样显示出较短的裂纹萌生时间,热影响区和焊缝金属的初始裂纹生长速率(da / dt)_c比母材快。如果(da / dt)_c很快,则断裂寿命将缩短。

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