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首页> 外文期刊>Journal of Materials Processing Technology >Resistance spot welding simulation: a general finite element formulation of electrothermal contact conditions
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Resistance spot welding simulation: a general finite element formulation of electrothermal contact conditions

机译:电阻点焊模拟:电热接触条件的一般有限元公式

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摘要

Spot welding is an usual joining process for assembling steel sheets but its simulation requires the modelling of complex interactions between electrical, thermal, metallurgical and mechanical phenomena. From the physical point of view, the simulation of such a process needs a high coupling level to take account of the interactions between electrical and thermal phenomena coming from the Joule effect and the temperature dependence of the electrical conductivity. Moreover contact conditions between sheets and electrodes need to be carefully accounted for. Most finite element studies taking the electrothermal contact conditions into account use the assumption that both contact surfaces are close enough to consider a normal flux exchange. From the numerical point of view, it is generally assumed with this kind of mod that contact conditions are ensured through elements linking two nodes face to face and therefore, only small relative displacements; considered. In order to accurately account for the relative displacements of contact surfaces, a general finite element formulation of the electrothermal contact is proposed in this paper. The electrothermal model is described and the general formulation of electrical and thermal contact conditions is detailed. A finite element simulation of the welding of three steel sheets is presented. The results are discussed and compared to a micrographic cut.
机译:点焊是组装钢板的常用连接工艺,但其模拟需要对电,热,冶金和机械现象之间的复杂相互作用进行建模。从物理的角度来看,这种过程的模拟需要很高的耦合度,以考虑到焦耳效应和电导率的温度依赖性所产生的电和热现象之间的相互作用。此外,需要仔细考虑薄片和电极之间的接触条件。大多数将电热接触条件考虑在内的有限元研究都采用这样的假设,即两个接触面都足够靠近以考虑正常的通量交换。从数值的角度来看,通常假设使用这种mod可以通过将两个节点面对面连接的元件来确保接触条件,因此只有很小的相对位移。考虑过的。为了准确说明接触面的相对位移,提出了电热接触的一般有限元公式。描述了电热模型,并详细介绍了电和热接触条件的一般公式。提出了三种钢板焊接的有限元模拟。对结果进行了讨论,并与显微切割相比较。

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