Finite Element Modeling and Visualization of Additive Ring Growing by 3DMP Method

A. Kirichek, S. Barinov, S. Fedonina
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引用次数: 1

Abstract

The aim of the work is to obtain a finite element model of the additive growing process in the general case of a complex-shaped product using the 3DMP (3D Metal Print) method of wire deposition / surfacing by gas metal arc welding, visualization of the forming temperature fields. The problem is solved using the example of an elementary ring by creating a scalable model in the Ansys software package. The stages of creating a finite element model as well as the results of its approbation in the analysis of temperatures are given. The model visualizes the nature of the influence of the deposition / surfacing parameters on the temperature fields that are formed and dynamically change with the movement of the wire feedstock. In this case, the conditions of additive free shaping of a closed-form product are of no small importance. It becomes possible to visually assess the degree of heating and the volume of heated metal in the hazardous area, proceed further to the calculation of stress and strain fields in the grown product, and choose the correct technological parameters of the process. The obtained visual information makes it possible to perform a qualitative and quantitative assessment of the additive shaping result, to determine the required intensity of heat removal, which contributes to the grown product quality improvement as a whole.
加性环生长的三维建模与可视化
本工作的目的是利用气体金属弧焊沉积/堆焊的3DMP (3D Metal Print)方法,在复杂形状产品的一般情况下,获得增材生长过程的有限元模型,并对成形温度场进行可视化。以初等环为例,在Ansys软件包中建立可伸缩模型,解决了该问题。给出了建立有限元模型的步骤及其在温度分析中的应用结果。该模型可视化了沉积/堆焊参数对温度场影响的本质,温度场是随着线材的运动而形成并动态变化的。在这种情况下,封闭产品的加性自由成形的条件是非常重要的。可以直观地评估危险区域的加热程度和加热金属的体积,进一步计算生长产品的应力场和应变场,并选择正确的工艺参数。获得的可视化信息使得对添加剂成型结果进行定性和定量评估成为可能,以确定所需的散热强度,这有助于整体上提高产品质量。
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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