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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Factors affecting reheat cracking in the HAZ of austenitic steel weldments
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Factors affecting reheat cracking in the HAZ of austenitic steel weldments

机译:影响奥氏体钢焊件热影响区中再热裂纹的因素

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Reheat cracking in the heat affected zones of austenitic stainless steels can occur during high temperature service and is thought to arise from the relaxation of welding residual stresses, resulting in creep damage. Key features of reheat cracking are the magnitude of the residual stresses, degree of triaxiality, extent of stress relaxation behaviour and the influence of triaxial stress on creep ductility. A thermo-mechanical pre-conditioning technique has been developed for testing specimens to represent the welding cycles experienced between 200 and 1100 deg C by the 'strain affected zone' of a weldment in a steam header during manufacture. Subsequent creep tests have been carried out at 550 deg C on pre-conditioned plain and notched specimens to identify the behaviour as regards creep rate and ductility in both the uniaxial and triaxial stress states. The results have been compared with data in the literature and with models of the influence of multiaxial stress on creep ductility. It has been found that certain types of pre-conditioning give a marked reduction in creep ductility as strain rate is reduced, which helps to explain the reheat cracking process.
机译:奥氏体不锈钢受热影响区的再热开裂可能在高温工作期间发生,并且被认为是由于焊接残余应力的松弛引起的,从而导致蠕变损坏。再热裂纹的关键特征是残余应力的大小,三轴度,应力松弛行为的程度以及三轴应力对蠕变延性的影响。已经开发出一种热机械预处理技术来测试样品,以表示在制造过程中蒸汽集管中焊件的“应变影响区”在200到1100摄氏度之间经历的焊接循环。随后在经过预处理的普通试样和带缺口试样上于550℃进行了蠕变试验,以确定在单轴和三轴应力状态下蠕变速率和延性的行为。将结果与文献中的数据以及多轴应力对蠕变延性的影响模型进行了比较。已经发现,随着应变速率的降低,某些类型的预处理会使蠕变延展性显着降低,这有助于解释再热裂解过程。

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