首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >ESTIMATION OF RESIDUAL STRESSES IN STEEL WELDED JOINTS USING THREE DIMENSIONAL FINITE ELEMENT ANALYSIS
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ESTIMATION OF RESIDUAL STRESSES IN STEEL WELDED JOINTS USING THREE DIMENSIONAL FINITE ELEMENT ANALYSIS

机译:基于三维有限元分析的钢焊接接头残余应力估算

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Welding is one of the most used joining methods in the ship industry. However, residual stresses are induced in the welded joints due to the rapid heating and cooling leading to inhomogenously distributed dimensional changes and non-uniform plastic and thermal strains. A number of factors, such as welding speed, boundary conditions, weld geometry, weld thickness, welding current/voltage, number of weld passes, pre-/post-heating etc, influence the residual stress distribution. The main aim of this work is to estimate the residual stresses in welded joints through finite element analysis and to investigate the effects of boundary conditions, welding speed and plate thickness on through the thickness/surface distributions of residual stresses. The welding process is simulated using 3D Finite element model in ABAQUS FE software in two steps: 1. Transient thermal analysis and 2. Quasi-static thermo-elasto-plastic analysis. The normal residual stresses along and across the weld in the weld tow region are found to be significant with nonlinear distribution. The residual stresses increase with the increase in the thickness of the plates being welded. The nature of the normal residual stress along the weld is found to be tensile-compressive-tensile and the nature of normal residual stress across the weld is found to be tensile along the thickness direction.
机译:焊接是船舶工业中最常用的连接方法之一。但是,由于快速加热和冷却,在焊接接头中会产生残余应力,从而导致尺寸分布不均匀分布以及塑性和热应变不均匀。许多因素会影响残余应力分布,例如焊接速度,边界条件,焊接几何形状,焊接厚度,焊接电流/电压,焊道数量,预加热/后加热等。这项工作的主要目的是通过有限元分析来估计焊接接头中的残余应力,并通过残余应力的厚度/表面分布来研究边界条件,焊接速度和板厚度对焊接接头的影响。使用ABAQUS FE软件中的3D有限元模型对焊接过程进行仿真,分两个步骤:1.瞬态热分析和2.准静态热弹塑性分析。发现在焊丝束区域中沿焊缝和跨焊缝的法向残余应力在非线性分布下很明显。残余应力随着被焊接的板的厚度的增加而增加。发现沿着焊缝的法向残余应力的性质为拉伸-压缩-拉伸,发现沿着焊缝的法向残余应力的性质为沿厚度方向的拉伸。

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