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Effect of temperature field on types and distribution of reinforcing phases in “in-situ” weld-alloying/PAW of SiC_p/6061Al

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【作者】 雷玉成朱飞陈希章袁为进程晓农

【Author】 Lei Yucheng Zhu Fei Chert Xizhang Yuan Weijin Cheng Xiaonong School of Material Science and Engineering,Jiangsu University,Zhenjiang,212013.

【机构】 School of Material Science and Engineering Jiangsu University Zhenjiang212013.School of Material Science and Engineering Jiangsu UniversityZhenjiang

【摘要】 <正>Based on theories of heat transfer,physical metallurgy and hydro-mechanical,in order to analyze the effect of welding parameters on species and distribution of reinforcing phases visually and legibly,finite element software ANSYS was used to simulate transient temperature field for SiC_p/AI in“in-situ”weld-alloying/plasma arc welding.The results show that the calculated results approximately agreed with the experimental measured results.So the model is basically correct and credible.Based on the numerical solutions and experimental results,effect of temperature field in different welding process parameters(welding current,welding velocity)on species and distribution of reinforcing phases is analyzed.The results show that adjusting and optimizing temperature field appropriately is an effective method to obtain welded joint with better microstructure and property.

【Abstract】 Based on theories of heat transfer,physical metallurgy and hydro-mechanical,in order to analyze the effect of welding parameters on species and distribution of reinforcing phases visually and legibly,finite element software ANSYS was used to simulate transient temperature field for SiC_p/AI in“in-situ”weld-alloying/plasma arc welding.The results show that the calculated results approximately agreed with the experimental measured results.So the model is basically correct and credible.Based on the numerical solutions and experimental results,effect of temperature field in different welding process parameters(welding current,welding velocity)on species and distribution of reinforcing phases is analyzed.The results show that adjusting and optimizing temperature field appropriately is an effective method to obtain welded joint with better microstructure and property.

【基金】 The research was supported by the National Natural Science Foundation of China(50475126); the province graduate student innovation plan of Jiangsu(xm04-27).
  • 【文献出处】 China Welding ,中国焊接(英文版) , 编辑部邮箱 ,2006年04期
  • 【分类号】TG457
  • 【下载频次】46
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