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Numerical analysis on the effect of process parameters on deposition geometry in wire arc additive manufacturing

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【作者】 樊世龙杨飞朱晓楠刁兆炜陈琳荣命哲

【Author】 Shilong FAN;Fei YANG;Xiaonan ZHU;Zhaowei DIAO;Lin CHEN;Mingzhe RONG;State Key Laboratory of Electrical Insulation and Power Equipment, School of Electrical Engineering,Xi’an Jiaotong University;

【通讯作者】 杨飞;荣命哲;

【机构】 State Key Laboratory of Electrical Insulation and Power Equipment, School of Electrical Engineering,Xi’an Jiaotong University

【摘要】 Here we develop a two-dimensional numerical model of wire and arc additive manufacturing(WAAM) to determine the relationship between process parameters and deposition geometry,and to reveal the influence mechanism of process parameters on deposition geometry. From the predictive results, a higher wire feed rate matched with a higher current could generate a larger and hotter droplet, and thus transfer more thermal and kinetic energy into melt pool, which results in a wider and lower deposited layer with deeper penetration. Moreover, a higher preheat temperature could enlarge melt pool volume and thus enhance heat and mass convection along both axial and radial directions, which gives rise to a wider and higher deposited layer with deeper penetration. These findings offer theoretical guidelines for the acquirement of acceptable deposition shape and optimal deposition quality through adjusting process parameters in fabricating WAAM components.

【Abstract】 Here we develop a two-dimensional numerical model of wire and arc additive manufacturing(WAAM) to determine the relationship between process parameters and deposition geometry,and to reveal the influence mechanism of process parameters on deposition geometry. From the predictive results, a higher wire feed rate matched with a higher current could generate a larger and hotter droplet, and thus transfer more thermal and kinetic energy into melt pool, which results in a wider and lower deposited layer with deeper penetration. Moreover, a higher preheat temperature could enlarge melt pool volume and thus enhance heat and mass convection along both axial and radial directions, which gives rise to a wider and higher deposited layer with deeper penetration. These findings offer theoretical guidelines for the acquirement of acceptable deposition shape and optimal deposition quality through adjusting process parameters in fabricating WAAM components.

【基金】 supported by National Natural Science Foundation of China (Nos. 52077172, U1966602);Shaanxi Province ‘Sanqin scholar-s’ Innovation Team Project (Key technology of advanced DC power equipment and its industrialization demonstration innovation team of Xi’an Jiaotong University)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2022年04期
  • 【分类号】TP391.73
  • 【下载频次】31
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