The influence exerted by active cooling on the permanent connection formed as a result of electric arc welding

Q3 Materials Science
A. Tkacheva, E. E. Abashkin
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Abstract

The problem of temperature stresses is solved in the work. The process of electric arc welding with guaranteed penetration of steel plates of various thicknesses is simulated. The possibility of reducing residual stresses formed as a result of welding by applying heat removal from the surface of the near-weld region of a steel plate is being investigated. The temperature distribution is determined by solving a non-linear heat equation, in which the specific heat and thermal conductivity depend on temperature. The heat source is modeled using the double ellipsoid method proposed by John A. Goldak. The horseshoe-shaped heat sink follows immediately after the anode spot and is set by the heat flux in such a way that the main temperature of the plate does not decrease below its initial temperature. This limitation reduces the level of the temperature gradient, thereby reducing the stresses in the metal plate. To illustrate the effect of active heat sink, the temperature distribution in the top layer at the moment of termination of welding is compared with and without active heat sink. The material is assumed to be elastoviscoplastic, the deformations are small and consist of reversible and irreversible ones. Reversible deformations are related to stresses by the Duhamel - Neumann law. Irreversible strains increase when the von Mises plastic flow condition is satisfied, in which there is a plastic strain rate component responsible for the plastic flow viscosity. The elastic moduli (Young's modulus, Poisson's ratio) and the yield strength are assumed to be temperature dependent. The solution of the mechanical part of the problem is found by the method of simple iterations. For plates with different thicknesses, diagrams of residual stresses are given, located in the center of the plate from the seam to the periphery. As a result of the work, according to the obtained distributions of residual stresses in the plate material, it is concluded that the use of an active horseshoe-shaped heat sink from the near-weld zone when welding thin steel plates reduces residual stresses, therefore it is recommended to use in the welding process. The use of an active heat sink on the reverse side of the plate leads to an increase in the stress level, therefore it is not recommended for use.
主动冷却对电弧焊接形成的永久连接的影响
工作中解决了温度应力问题。模拟了不同厚度钢板的保焊透电弧焊过程。正在研究通过从钢板的近焊接区域的表面施加热去除来减少由于焊接而形成的残余应力的可能性。温度分布是通过求解非线性热方程来确定的,其中比热和热导率取决于温度。热源采用John A.Goldak提出的双椭球方法建模。马蹄形散热器紧跟在阳极点之后,并通过热通量设置,使得板的主温度不会降低到其初始温度以下。这种限制降低了温度梯度的水平,从而降低了金属板中的应力。为了说明有源散热器的效果,将焊接终止时顶层的温度分布与无有源散热器的情况进行了比较。假设材料为弹粘塑性,变形较小,由可逆和不可逆变形组成。可逆变形是与应力有关的杜哈默尔-诺依曼定律。当满足von Mises塑性流动条件时,不可逆应变增加,其中存在负责塑性流动粘度的塑性应变速率分量。假设弹性模量(杨氏模量、泊松比)和屈服强度与温度有关。通过简单迭代的方法找到问题的机械部分的解。对于不同厚度的板,给出了残余应力图,该图位于从接缝到周边的板的中心。研究结果表明,根据所获得的板材中残余应力的分布,在焊接薄钢板时,使用来自焊缝附近区域的主动马蹄形散热器可以降低残余应力,因此建议在焊接过程中使用。在板的背面使用有源散热器会导致应力水平增加,因此不建议使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
PNRPU Mechanics Bulletin
PNRPU Mechanics Bulletin Materials Science-Materials Science (miscellaneous)
CiteScore
1.10
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0.00%
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