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Thermodynamic Analysis of Burning Resistivity of Ti-Cr-V-Mo Alloys
作者姓名:刘玉芹  庄卫东  白克武  沈剑韵  张翥
作者单位:Liu Yuqin,Zhuang Weidong,Bai Kewu,Shen JianyunCorresponding author,professor and Zhang ZhuGeneral Research Institute for Nonferrous Metals,Beijing 100088,China
摘    要:ThermodynamicAnalysisofBurningResistivityofTiCrVMoAloys①LiuYuqin,ZhuangWeidong,BaiKewu,ShenJianyun②andZhangZhu(刘玉芹)(庄卫东)(白...


Thermodynamic Analysis of Burning Resistivity of Ti Cr V Mo Alloys
Liu Yuqin,Zhuang Weidong,Bai Kewu,Shen JianyunCorresponding author,professor and Zhang ZhuGeneral Research Institute for Nonferrous Metals,Beijing ,China.Thermodynamic Analysis of Burning Resistivity of Ti-Cr-V-Mo Alloys[J].Rare Metals,1997(4).
Authors:Liu Yuqin  Zhuang Weidong  Bai Kewu  Shen JianyunCorresponding author  professor and Zhang ZhuGeneral Research Institute for Nonferrous Metals  Beijing  China
Affiliation:Liu Yuqin,Zhuang Weidong,Bai Kewu,Shen JianyunCorresponding author,professor and Zhang ZhuGeneral Research Institute for Nonferrous Metals,Beijing 100088,China
Abstract:Burning resistivities of the Ti Cr V Mo alloys were investigated by means of their adiabatic flame temperatures. Calculated results show that the adiabatic flame temperature of the Ti Cr V Mo alloys is lower than that of the Ti Cr V alloys, most probably due to that the gas products of molybdenum oxide can be easily formed and the sublimation of more oxides leads to the reduction of T af . Therefore, the Ti Cr V Mo alloys would have better burning resistivity and their optimal composition is presented.
Keywords:Thermodynamics  Adiabatic flame temperature  Titanium alloys  Burning resistivity
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