首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >RESIDUAL STRESS RELAXATION IN A TUBE ATTACHMENT WELD INSIDE A PRESSURE VESSEL FORGING DURING POST WELD HEAT TREATMENT
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RESIDUAL STRESS RELAXATION IN A TUBE ATTACHMENT WELD INSIDE A PRESSURE VESSEL FORGING DURING POST WELD HEAT TREATMENT

机译:焊后热处理过程中压力容器内锻造的管件焊接中的残余应力松弛

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This paper presents analyses done to determine residual stress relief achieved by post weld heat treatment (PWHT) of tube attachment welds inside a thick SA508 steel pressure vessel forging. Finite element (FE) analyses were performed modelling the manufacturing operations in detail including welding, machining and PWHT. The analyses demonstrate that PWHT at 600?for 8 hours is effective in reducing as-welded residual stress levels from tensile yield magnitude (+500MPa approx) to <100MPa. The maximum residual stress was computed to be 90MPa sub-surface in a region of hydrostatic (tri-axial tensile) stress. Secondary creep was modelled using data from creep tests on SA508 steel uni-axial tensile specimens. Practically all of the stress relaxation is due to creep strain with minimal additional plastic strain. Most stress relief occurs during the first hour of soak, with diminishing benefit thereafter. Analysis results also indicate that PWHT effectiveness is more sensitive to soak temperature than hold time. These FE results are considered slightly pessimistic but are reasonably consistent with other analytical predictions. By comparison surface hole drilling stress measurements of <50MPa (10% yield strength) were recorded from a representative welded test block. Analysis pessimism was attributed to ignoring both primary creep and relaxation during the slow warm up phase of the heat treatment cycle.
机译:本文介绍了为确定厚SA508钢制压力容器锻件内的管道连接焊缝的焊后热处理(PWHT)而进行的残余应力释放分析。进行了有限元(FE)分析,对制造操作进行了详细建模,包括焊接,机械加工和PWHT。分析表明,在600℃下进行8小时的PWHT可以有效地将焊后残余应力水平从拉伸屈服强度(大约+ 500MPa)降低到<100MPa。计算出在静水(三轴拉伸)应力区域内的最大残余应力为90MPa次表面。二次蠕变使用SA508钢单轴拉伸试样的蠕变试验数据建模。实际上,所有应力松弛都归因于蠕变应变,而附加的塑性应变最小。大部分压力缓解发生在浸泡的第一个小时,其后收益逐渐减少。分析结果还表明,PWHT有效性对保温温度的影响比保持时间更为敏感。这些有限元分析结果被认为有些悲观,但与其他分析预测相当一致。通过比较,从代表性的焊接测试块记录了<50MPa(10%屈服强度)的表面孔钻孔应力测量值。分析悲观主义归因于忽略了热处理周期的缓慢预热阶段中的主要蠕变和松弛。

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