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首页> 外文期刊>International journal of steel structures >Numerical Study on Post-weld Heat Treatment of Non-stiffened Welded Box-Section Member and Its Compressive Behavior
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Numerical Study on Post-weld Heat Treatment of Non-stiffened Welded Box-Section Member and Its Compressive Behavior

机译:非加筋焊接箱形截面焊后热处理的数值研究及其压缩行为

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摘要

Weld-related problems such as residual stress and deformation on the performance of the steel structural members are of crucial concerns for not only fabricating the new structures but also repairing the existing structures in the civil engineering industry. The effectiveness of post-weld heat treatment (PWHT) for reducing the residual stress is well known and it is widely applied on the fabrication of the welded members in pressure vessels and pipelines by using a large furnace in a factory. However, there is a need to find an alternative heat source for PWHT applicable for the existing steel structural members on site. In this study, a sheet-type ceramic heater is noted as a portable heat source for PWHT on the existing structural members on site. For investigating the effect of PWHT with the ceramic heater on the residual stress release and the load-carrying capacity of the welded members under the compressive load, a 3D finite element (FE) model considering creep strain properties was developed. The numerical model was verified by comparing with the experimental results on the non-stiffened welded box-section member. The FE model could simulate the compressive behavior of the experimental specimens with PWHT. It provided a good agreement in the residual stress reduction and a resemblance of the out-of-plane deformation with the experimental results. From this fundamental investigation, it was confirmed that the FE model for the PWHT simulation and loading analysis was established.
机译:与焊接相关的问题,例如钢结构构件的残余应力和变形对钢结构构件的性能至关重要,这不仅是制造新结构,而且还需要维修土木工程行业中的现有结构。降低残余应力的焊后热处理(PWHT)的有效性是众所周知的,并且已通过在工厂中使用大型熔炉广泛用于压力容器和管道中的焊接构件的制造。但是,有必要为现场的现有钢结构构件寻找适用于PWHT的替代热源。在这项研究中,片状陶瓷加热器被认为是现场现有结构构件上用于PWHT的便携式热源。为了研究陶瓷加热器的PWHT对残余应力释放和在压缩载荷下焊接构件的承载能力的影响,建立了考虑蠕变应变特性的3D有限元(FE)模型。通过与非加劲焊接箱形截面构件的实验结果进行比较,验证了该数值模型。有限元模型可以模拟带有PWHT的实验样品的压缩行为。它在减小残余应力和使平面外变形与实验结果相似方面提供了良好的一致性。通过基础研究,可以确认建立了用于PWHT仿真和载荷分析的有限元模型。

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