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Microstructure analysis of TC4/ZrO2 composites forming by laser engineered net shaping
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Key Laboratory for Precision and Non-traditional Machining Technology of Ministry of Education,Dalian University of Technology,Key Laboratory for Precision and Non-traditional Machining Technology of Ministry of Education,Dalian University of Technology,Key Laboratory for Precision and Non-traditional Machining Technology of Ministry of Education,Dalian University of Technology,Key Laboratory for Precision and Non-traditional Machining Technology of Ministry of Education,Dalian University of Technology,Key Laboratory for Precision and Non-traditional Machining Technology of Ministry of Education,Dalian University of Technology

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    Abstract:

    Different added proportion of ZrO2 in TC4/ZrO2 composite thin-wall samples were produced by laser engineered net shaping. Influence of scanning speed on thermal stress in forming process was studied. X-ray diffractometer analysis(XRD), scanning electron microscopy(SEM) and energy dispersive spectroscopy(EDS) were carried out for the sample phase composition, microstructure and elements distribution respectively. The research indicates that lower scanning speed can reduce the residual stress of thin-wall samples and the tendency to cracking. The result of XRD shows that when the proportion of ZrO2 is higher than 30%, nonstoichiometric compound ,TiO.325, is formed; The grain morphology of TC4 matrix changed from acicular, lamellar to bulk grain with the increasing of proportion of ZrO2; The result of EDS shows a segregation of ZrO2 at lamellar Ti grain boundaries; The content of Zr in Ti solid solution increases with the content of ZrO2increasing.A reliable technical support is provided by this study to finally form TC4/ZrO2 graded materials.

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[Shen Chen, Ma Guangyi, Yan Shuai, Niu Fangyong, Wu Dongjiang. Microstructure analysis of TC4/ZrO2 composites forming by laser engineered net shaping[J]. Rare Metal Materials and Engineering,2018,47(8):2465~2471.]
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History
  • Received:August 30,2016
  • Revised:September 22,2016
  • Adopted:October 18,2016
  • Online: October 17,2018
  • Published: