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EFFECTS OF POST WELD HEAT TREATMENT RESIDUAL STRESS ON THE CREEP OF ELBOW WELDED JOINT

机译:焊后热处理残余应力对弯头焊接接头蠕变的影响

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It is well known that type IV crack emerges in the high temperature welded components. Although the welding residual stress will drop after post weld heat treatment (PWHT), the PWHT residual stress still remains in the welded joint. When the joint is in service at high temperature and under high pressure, the PWHT stress and pressure will induce the creep strain in the welded joint of the elbow of T91 boiler tubes. Usually, it is considered that the PWHT stress will relax at high temperature environment and is ignored by many researchers. In this paper, by the finite element analysis codes ABAQUS and the function of RESTART, a sequential coupling calculating program for creep based on welding residual stress has been developed by establishing the model of temperature field, residual stress and creep analysis. The welding residual stress and creep of elbow welded joint for T91 boiler tubes was simulated by the program. According to the finite element calculation results, the PWHT stress has a great influence on the T91tube creep. This method established the basis of calculating the effects of welding residual stress on the creep of welded joint. Firstly, the welding residual stress and the PWHT stress was simulated by ABAQUS. Based on the work, the stress distribution of the T91 tube elbow can be obtained under internal pressure and the PWHT stress. Secondly, for the elbow welded joint the creep under the internal pressure only and the creep under internal pressure and PHWT stress can be simulated by the ABAQUS codes. Then comparison of creep strain in the elbow welded joint with PWHT stress and with internal pressure is made in the paper. Although the stress induced by the PWHT and internal pressure would relax in a short time, the creep strain of the elbow welded joint is still influenced by initial stress state. The results shown that the PWHT stress can not be ignored for the creep analysis of the elbow welded joint. So it can be considered that the PWHT residual stress is one of possible failure factors for the elbow welded joint. The design of high temperature elbow weldedjoint need to consider the influence of the PWHT residual stress. This paper will provide a more comprehensive means for life assessment of the welded joint in service.
机译:众所周知,在高温焊接部件中出现IV型裂缝。虽然焊接焊接热处理(PWHT)后焊接残余应力将掉落,但是焊接接头仍保留在焊接接头中的PWHT残余应力。当关节在高温下使用,在高压下,PWHT应力和压力将诱导T91锅炉弯管的焊接接头中的蠕变应变。通常,认为PWHT应力将在高温环境下放松,并且由许多研究人员忽略。本文通过有限元分析代码ABAQUS和重启功能,通过建立温度场,残余应力和蠕变分析的模型开发了基于焊接残余应力的蠕变顺序耦合计算程序。通过该程序模拟了T91锅炉管的弯头焊接接头的焊接残余应力和蠕变。根据有限元计算结果,PWHT应力对T91Tube蠕变具有很大的影响。该方法建立了计算焊接残余应力对焊接接头蠕变的影响的基础。首先,通过ABAQUS模拟焊接残余应力和PWHT应力。基于该工作,可以在内部压力和PWHT应力下获得T91管弯管的应力分布。其次,对于肘部焊接接头,仅通过ABAQUS码模拟内部压力下的蠕变和内部压力和PHWT应力下的蠕变。然后在纸上进行弯头焊接接头中的蠕变菌株比较PWHT应力和内部压力。虽然由PWHT和内部压力引起的应力在短时间内放松,但弯头焊接接头的蠕变应变仍然受到初始应力状态的影响。结果表明,对于弯头焊接接头的蠕变分析,不能忽略PWHT应力。因此,可以认为PWHT残留应力是弯头焊接接头的可能失效因子之一。高温弯头焊接设计 联合需要考虑PWHT残余应力的影响。本文将为焊接联合服务的终身评估提供更全面的手段。

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