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首页> 外文期刊>International Journal of Automotive Technology >Approach to assess a fast welding simulation in an industrial environment — Application for an automotive welded part
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Approach to assess a fast welding simulation in an industrial environment — Application for an automotive welded part

机译:在工业环境中评估快速焊接仿真的方法-在汽车焊接零件中的应用

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Fusion welding processes are widely used for joining metal structures, such as pipes, ships, and cars. In general, these joining processes offer a very good compromise between reliability, safety, cost and maintenance which are important issues in the current economical context. The negative heat effects of welding, i.e. distortions and residual stresses of the welded parts, are well known and many researches in this field have already been done in the last decades in order to minimize them. On the experimental side, many sophisticated procedures have become state of the art to deal with this problem. On the computational side, the improvement of the simulation algorithms and the computing power enables the simulations of many physical phenomena occurring during the welding process. The implementation of welding simulation techniques is nevertheless not an easy task and often associated with expert knowledge which hinders their global application in an industrial environment. This paper is focused on the industrial requirements of a welding simulation software with special respect to the needs of the automotive industry. The necessary information to run a welding simulation and the expectations of a weld specialist without deep knowledge in numerical methods are investigated. These expectations are tested on an automotive welded assembly with a commercially available welding simulation software designed especially for the needs of the automotive industry. A welding experiment is done and the measured temperature distributions and distortions serve as reference to validate the simulation results. The result quality of the simulations of temperature fields and distortions is in best agreement with experimental data. The workflow is well adapted for the considered industrial requirements and the time-tosolution as well as the computational costs are acceptable, whereas the efficient calibration of the heat input model is still a point which will be further investigated in current and future research works.
机译:熔焊工艺广泛用于连接金属结构,例如管道,轮船和汽车。通常,这些连接过程在可靠性,安全性,成本和维护之间提供了很好的折衷,这在当前的经济环境中是重要的问题。焊接的负热效应,即焊接零件的变形和残余应力,是众所周知的,并且在最近几十年中已经进行了该领域的许多研究,以使它们最小化。在实验方面,许多复杂的程序已成为解决该问题的最新技术。在计算方面,对仿真算法和计算能力的改进使得可以对焊接过程中发生的许多物理现象进行仿真。然而,焊接模拟技术的实施并不是一件容易的事,并且常常与专家知识相关联,这阻碍了它们在工业环境中的全球应用。本文着重于焊接仿真软件的工业需求,特别是针对汽车工业的需求。研究了进行焊接模拟所需的信息以及对焊接专家的期望,他们对数值方法没有深入的了解。使用专门为汽车行业的需求而设计的商用焊接模拟软件,可以在汽车焊接组件上测试这些期望。进行了焊接实验,测得的温度分布和变形可作为验证仿真结果的参考。温度场和畸变的仿真结果与实验数据最吻合。工作流程非常适合考虑的工业需求,解决时间和计算成本是可以接受的,而对热量输入模型的有效校准仍然是一个要点,将在当前和将来的研究工作中进一步进行研究。

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