首页> 外文会议>ASME Pressure Vessels and Piping conference >RESIDUAL STRESS ANALYSIS OF BEAD WELDED LOW ALLOY STEEL PLATE SPECIMENS SUBJECTED TO POST WELD HEAT TREATMENT
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RESIDUAL STRESS ANALYSIS OF BEAD WELDED LOW ALLOY STEEL PLATE SPECIMENS SUBJECTED TO POST WELD HEAT TREATMENT

机译:胎圈焊接低合金钢板标本的残余应力分析经受焊接后热处理

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We developed a residual stress analysis method for bead welded low alloy steel JIS SQV2A (equivalent to ASTM A533B cl. 1) plates subjected to post weld heat treatment (PWHT). Two specimens were fabricated; each was a bead welded low alloy steel plate. One was in the as-welded condition (as-welded specimen) and the other was subjected to PWHT at 625°C (PWHT specimen). Strain gauges were used to measure the distributions of the residual stress in these specimens. The measurement data showed that the longitudinal stress at the center of a bead was 0 MPa and that in the heat-affected zone was 100 MPa. The transverse stress at the center of a bead was 200 MPa in the as-welded specimen. The absolute residual stress was decreased to less than 50 MPa for the PWHT specimen. We conducted finite element analyses to predict the distributions of welding residual stress in these specimens. The amount of phase transformation strain in low alloy steel was taken into account in the welding residual stress analysis, and creep strain was taken into account in the stress mitigation analysis. The results from the analyses agree well with the experimental results. These findings prove that welding residual stress can be simulated during a thermal elastic plastic (TEP) analysis by conducting a phase transformation and taking the generation of creep strain in the PWHT samples into consideration can be used to simulate that stress mitigation.
机译:我们开发了珠焊焊接低合金钢JIS SQV2A的残余应力分析方法(相当于ASTM A533B Cl.1)板经过焊接热处理热处理(PWHT)。制造两种样品;每个都是珠焊的低合金钢板。一种在焊接条件下(用焊接试样),另一个在625℃(pWHT样品)上进行PWHT。应变仪用于测量这些样本中残余应力的分布。测量数据表明,珠子中心的纵向应力为0MPa,在热影响区中的纵向应力为100MPa。珠子中心处的横向应力在焊接标本中为200MPa。对于PWHT样本,绝对残留应力降至小于50MPa。我们进行了有限元分析,以预测这些样本中焊接残余应力的分布。在焊接残余应力分析中考虑了低合金钢中相变应变的量,在应力缓解分析中考虑了蠕变菌株。分析结果与实验结果很好。这些发现证明,通过进行相变在热弹性塑料(Tep)分析期间可以模拟焊接残余应力,并考虑到PWHT样品中的蠕变菌株的产生可用于模拟压力减轻。

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