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PMID: 31936577 Published · epublish English Journal Article

Prediction of the Weld Pool Stability by Material Flow Behavior of the Perforated Weld Pool.

Materials (Basel, Switzerland) ·Vol. 13 ·No. 2 ·2020-01-09

Lang R, Han Y, Bai X, Hong H

Abstract

This article presents the application of a computational fluid dynamics (CFD) finite volume method (FVM) model for a thermo-mechanical coupling simulation of the weld pool used in variable polarity plasma arc welding (VPPAW). Based on the mechanism of the additional pressure produced through self-magnetic arc compression and the jet generated from mechanical plasma arc compression, and considering the influence of arc height and keyhole secondary compression on arc pressure, a three-dimensional transient model of variable polarity plasma arc (VPPA) arc pressure was established. The material flow behaviors of the perforated weld pools were studied. The results show that three kinds of flow behavior existed in the perforation weld pools and it is feasible to predict the weld pool stability by the material flow behaviors of the perforated weld pools. The weld pools can exist stably if the material flow in the bottom of the perforated weld pools can form confluences with moderate flow velocities of 0.45 m/s, 0.55 m/s and 0.60 m/s. The weld pools were cut when the material flowed downward and outward with the maximum velocity of 0.70 m/s, 0.80 m/s. When the maximum material flow velocity was 0.40 m/s, the weld pool collapsed downward under the action of larger gravity. The thermo-mechanical coupling model was verified by the comparison of the simulation and experimental results.

Keywords
VPPAW aluminum alloy 2219 arc pressure secondary compression material flow behavior weld pool stability
作者与单位
共 4 位作者,点击展开单位 / ORCID
Lang Ruiqing
College of Materials Science and Engineering, No. 49 Ai Min Road, Xin Cheng Qu, Inner Mongolia University of Technology, Hohhot 010051, Inner Mongolia Autonomous Region, China.
Han Yongquan
College of Materials Science and Engineering, No. 49 Ai Min Road, Xin Cheng Qu, Inner Mongolia University of Technology, Hohhot 010051, Inner Mongolia Autonomous Region, China.
Bai Xueyu
College of Materials Science and Engineering, No. 49 Ai Min Road, Xin Cheng Qu, Inner Mongolia University of Technology, Hohhot 010051, Inner Mongolia Autonomous Region, China.
Hong Haitao
College of Materials Science and Engineering, No. 49 Ai Min Road, Xin Cheng Qu, Inner Mongolia University of Technology, Hohhot 010051, Inner Mongolia Autonomous Region, China.
Article Info
Journal
Materials (Basel, Switzerland)
Abbr.
Materials (Basel)
ISSN
1996-1944
Published
2020-01-09
电子出版
2020-00-09
Language
English
Country/Region
Switzerland
NLM ID
101555929
基金资助
National Natural Science Foundation of China · 51665044
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