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Numerical Simulation of Residual Stresses due to Multipass Welding in High Strength Steel Plates and Validation against Experimental Measurements

机译:高强度钢板多道次焊接残余应力的数值模拟及实验验证

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Multipass arc welding is commonly used for thick plates assemblies in shipbuilding. Sever thermal cycles induced by the process generate inhomogeneous plastic deformation and residual stresses. Metallurgical transformations contribute at each pass to the residual stress evolution. Since residual stresses can be detrimental to the performance of the welded product, their estimation is essential and numerical modelling is useful to predict them. Finite element analysis of multipass welding of a high strength steel is achieved with a special emphasis on mechanical and metallurgical effects on residual stress. A welding mock-up was specially designed for experimental measurements of in-depth residual stresses using contour method and deep hole drilling and to provide a simplified case for simulation. The computed results are discussed through a comparison with experimental measurements.
机译:多道电弧焊通常用于造船中的厚板组件。该过程引起的严重热循环会产生不均匀的塑性变形和残余应力。在每次通过时,冶金相变都会对残余应力产生影响。由于残余应力可能对焊接产品的性能有害,因此残余应力的估算至关重要,数值模型可用于预测残余应力。实现了高强度钢多道次焊接的有限元分析,并特别强调了机械和冶金学对残余应力的影响。焊接模型专门设计用于使用轮廓法和深孔钻进进行深度残余应力的实验测量,并提供了简化的模拟案例。通过与实验测量结果的比较来讨论计算结果。

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