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Microstructure evolution of laser solid forming of Ti-Al-V ternary system alloys from blended elemental powders

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【作者】 谭华张凤英陈静林鑫黄卫东

【Author】 Hua Tan 1 , Fengying Zhang 1,2 , Jing Chen 1 , Xin Lin 1 , and Weidong Huang 1 1 State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi’an 710072, China 2 School of Materials Science and Engineering, Chang’an University, Xi’an 710064, China

【机构】 State Key Laboratory of Solidification Processing,Northwestern Polytechnical UniversitySchool of Materials Science and Engineering,Chang’an University

【摘要】 Morphology evolution of prior β grains of laser solid forming (LSF) Ti-xAl-yV (x 11,y 20) alloys from blended elemental powders is investigated. The formation mechanism of grain morphology is revealed by incorporating columnar to equiaxed transition (CET) mechanism during solidification. The morphology of prior β grains of LSF Ti-6Al-yV changes from columnar to equiaxed grains with increasing element V content from 4 to 20 wt.-%. This agrees well with CET theoretical prediction. Likewise, the grain morphology of LSF Ti-xAl-2V from blended elemental powders changes from large columnar to small equiaxed with increasing Al content from 2 to 11 wt.-%. The macro-morphologies of LSF Ti-8Al-2V and Ti-11Al-2V from blended elemental powders do not agree with CET predictions. This is caused by the increased disturbance effects of mixing enthalpy with increasing Al content, generated in the alloying process of Ti, Al, and V in the molten pool.

【Abstract】 Morphology evolution of prior β grains of laser solid forming (LSF) Ti-xAl-yV (x 11,y 20) alloys from blended elemental powders is investigated. The formation mechanism of grain morphology is revealed by incorporating columnar to equiaxed transition (CET) mechanism during solidification. The morphology of prior β grains of LSF Ti-6Al-yV changes from columnar to equiaxed grains with increasing element V content from 4 to 20 wt.-%. This agrees well with CET theoretical prediction. Likewise, the grain morphology of LSF Ti-xAl-2V from blended elemental powders changes from large columnar to small equiaxed with increasing Al content from 2 to 11 wt.-%. The macro-morphologies of LSF Ti-8Al-2V and Ti-11Al-2V from blended elemental powders do not agree with CET predictions. This is caused by the increased disturbance effects of mixing enthalpy with increasing Al content, generated in the alloying process of Ti, Al, and V in the molten pool.

【关键词】 blendedpowdersequiaxedternarypriorcolumnargrainsmixingmoltendisturbance
【基金】 supported by the State Key Laboratory of Solidification Processing in NWPU (Nos.SKLSP201102 and 06-BZ-2010)L;the China Postdoc-toral Science Foundation (No.20100470040);the National Natural Science Foundation of China (No.50871089)
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2011年05期
  • 【分类号】TN249
  • 【被引频次】8
  • 【下载频次】97
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