电子束焊接温度分布建模软件系统

D. Rogova, S. Kurashkin, V. Tynchenko, E. Shutkina, Nazar Saidov, A. Bocharov
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引用次数: 0

摘要

目前,电子束焊接已广泛应用于航空航天产品的制造中。然而,为了获得稳定的焊缝质量和所需的几何尺寸,必须设置适当的工艺参数,这在调试另一种合金的新产品或购买焊接设备(特别是电子束焊接设备;一种具有不同加速电压的电子束枪。同时,在航空航天用薄壁结构的生产中,最常遇到的技术问题有以下几个:(1)根部缺陷;(2)缺乏EBW过程的计算模型。本工作的作者建议开发一个软件系统,它将允许:(1)模拟几乎任何产品和合金的电子束焊接过程,这将使确定最佳工艺参数成为可能,从而防止根本缺陷;(2)简化EBW建模过程,与MATLAB、ANSYS和Comsol等系统相比,这些程序的特点、对计算模型知识的要求、对它们的编程能力以及CAD系统中产品草图的创建使EBW建模过程变得复杂。本文提出的软件系统可以简化建模过程,减少建模时间,考虑产品的热物理和几何特性,同时存储所开发的工艺过程的结果和仿真结果。因此,作者开发的电子束焊接过程温度分布建模软件系统,可以防止生产中遇到的工艺问题,保证电子束焊接过程中焊缝质量的稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Software System for Modeling Temperature Distribution During the Electron Beam Welding
Now, electron beam welding (EBW) has become widespread in the manufacture of aerospace products. However, to achieve a stable quality of the weld and the required geometric dimensions, it is necessary to set the appropriate technological parameters, which causes difficulties when commissioning a new product from another alloy or purchasing welding equipment (in particular, an electron beam welding equipment; an electron beam gun with a different accelerating voltage from used). At the same time, there are the following most common technological problems that are encountered in the production of thin-walled structures for aerospace purposes: (1) root defects; (2) the absence of computational models of the EBW process. The authors of this work propose to develop a software system that will allow: (1) to simulate the process of electron beam welding for almost any products and alloys, which will make it possible to determine the optimal technological parameters and, therefore, prevent root defects; (2) to simplify the EBW modeling process, in comparison with such systems as MATLAB, ANSYS and Comsol, in which the EBW modeling process is complicated by the features of these programs, the requirements for knowledge of calculation models, the ability to program them and the creation of a product sketch in CAD systems. The software system proposed by the authors will make it possible to simplify the modeling process, reduce the time of modeling the EBW process, considering the thermophysical and geometric characteristics of the product, store both the results of the developed technological process and the simulation results. Thus, the software system developed by the authors for modeling the temperature distribution in the process of electron beam welding will prevent the technological problems encountered in production and obtain a stable quality of the weld in the process of electron beam welding.
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