建立电子束焊接过程的仿真模型,为航天结构焊接过程中形成有效的工艺参数提供依据

S. Kurashkin, V. Bukhtoyarov, Aleksander Myrugin, A. Bocharov, Yu. N. Seregin, D. Rogova
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引用次数: 0

摘要

工艺参数的设定,特别是电子束焊接中的光束电流和速度,是整个过程中不可缺少的一部分。然而,在焊接新产品或更换设备时(如购买新装置或更换电子束枪或转盘旋转驱动器),要设置模式,目前需要通过进行全尺寸实验来寻找工艺参数(焊接速度,光束电流),这是一种资源和经济成本。因此,本文提出在COMSOL Multiphysics中对钛合金(Ti-4Al-3Mo-1V)圆柱体与圆盘的电子束焊接过程进行仿真建模,以开发所提出的技术,从而获得电子束焊接的最佳工艺参数。薄壁结构。待焊结构由两部分组成:直径为78毫米,高度为80毫米的空心圆柱体和直径为76毫米,厚度为12毫米的通孔圆盘,沿其焊接的圆柱体壁厚为3毫米。因此,作者进行了建模,得到了产品加热的图形,描绘了温度的分布。根据提出的要求,在焊接速度1.2 cm/s,光束电流67 mA,加速电压30 kV,聚焦电流139 mA的条件下,得到了焊缝宽度2 mm,焊缝高度1mm的焊接模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation model of the electron beam welding process for the formation of the effective technological parameters during the welding of aerospace structures
The setting of technological parameters, in particular the beam current and speed in electron beam welding, are an integral part of the process. However, to set the mode when welding a new product or changing equipment (for example, buying a new installation or replacing an electron-beam gun or a drive for rotating a turntable), it is currently necessary to search for technological parameters (welding speed, beam current) by carrying out full-scale experiments, which is a resource and financially costly. Thus, in this work, the authors propose to carry out imitation modeling of the process of electron beam welding of a disk with a cylinder made of titanium alloy (Ti-4Al-3Mo-1V) in COMSOL Multiphysics, in order to develop the proposed technology to obtain optimal technological parameters in electron beam welding. thin-walled structures. The structure to be welded consists of two components: a hollow cylinder with a diameter of 78 mm, a height of 80 mm and a disc with a diameter of 76 mm, a thickness of 12 mm with a through hole, the wall thickness of the cylinder along which welding is 3 mm. As a result, the authors carried out modeling and obtained graphs of product heating, which depict the temperature distribution. The mode corresponding to the requirements put forward, the width of the weld 2 mm, the height of the seam 1mm was obtained with the following technological parameters: welding speed 1.2 cm/s, beam current 67 mA, accelerating voltage 30 kV, focusing current 139 mA.
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