Zuo Shanchao, Wang Ziran, Wang Decheng, Du Bing, Cheng Peng, Yang Yicheng, Zhang Ping, Lang Ning
China Productivity Center for Machinery, China Academy of Machinery Science & Technology, Beijing 100044, China.
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China.
Materials (Basel). 2020 Mar 9;13(5):1222. doi: 10.3390/ma13051222.
In this paper, a matrix equation for the welding heat source model was proposed to calculate the fillet welds temperature distribution based on the penetration depth and molten width. A double ellipsoid heat source model of fillet weld was established firstly by physical experiment and simulation calculation, and then the orthogonal experiment was constructed based on the previous calculation methods and experimentally measured data. Finally, the matrix equation of the heat source model parameters was obtained by regression analysis based on the joint penetration and width. The experimental and numerical simulation of the temperature distribution had been performed for the fillet weld and the results show that (1) the heat flux increases in one direction, while, oppositely, it decreased in another direction; (2) simulation results were highly in accordance with experiments results. The results indicated that the double ellipsoidal heat source model calculated by the matrix equation is quite appropriate for predicting the transient temperature distribution on the fillet welds for the gas metal arc welding process.
本文提出了一种用于焊接热源模型的矩阵方程,以基于熔深和熔宽计算角焊缝的温度分布。首先通过物理实验和模拟计算建立了角焊缝的双椭球体热源模型,然后基于先前的计算方法和实验测量数据构建了正交试验。最后,通过基于接头熔深和宽度的回归分析得到了热源模型参数的矩阵方程。对角焊缝进行了温度分布的实验和数值模拟,结果表明:(1)热流在一个方向上增加,而在另一个方向上相反地减小;(2)模拟结果与实验结果高度吻合。结果表明,由矩阵方程计算得到的双椭球体热源模型非常适合预测气体保护金属极电弧焊过程中角焊缝的瞬态温度分布。