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Si-Ca-Ba三元合金熔体热力学性质的计算 被引量:2
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作者 李阳 姜周华 刘杨 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2007年第2期229-232,共4页
根据Miedema二元合金生成热模型和Toop非对称几何模型,对1 873 K时Si-Ca-Ba三元合金熔体过剩自由能、生成热、过剩熵以及各组元间的活度交互作用系数等热力学性质进行了计算.结果表明,在1 873 K时Si-Ca-Ba合金熔体的过剩自由能、生成热... 根据Miedema二元合金生成热模型和Toop非对称几何模型,对1 873 K时Si-Ca-Ba三元合金熔体过剩自由能、生成热、过剩熵以及各组元间的活度交互作用系数等热力学性质进行了计算.结果表明,在1 873 K时Si-Ca-Ba合金熔体的过剩自由能、生成热和过剩熵均为负值.在富硅区域和硅含量较少的区域,各热力学性质的变化趋势较大.过剩自由能、生成热和过剩熵的最小值均出现在xSi=55%,xCa=45%,xBa=0成分处.Si-Ca-Ba合金中组元钡的加入,对合金的过剩自由能、生成热和过剩熵影响不大,随钡含量的增加,各热力学性质无显著变化. 展开更多
关键词 si—Ca-Ba合金熔体 二元合金 miedema生成热模型 Toop非对称几何模型 热力学性质
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Thermodynamic Calculations of Melt in Melt Pool During Laser Cladding High Silicon Coatings
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作者 DONG Dan-yang LIU Chang-sheng ZHANG Bin 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2008年第3期5-10,共6页
Based on the Miedema's formation heat model for binary alloys and the Toop's asymmetric model for ternary alloys, the formation heat, excess entropy, and activity coefficients of silicon ranging from 1 900 K to 4 10... Based on the Miedema's formation heat model for binary alloys and the Toop's asymmetric model for ternary alloys, the formation heat, excess entropy, and activity coefficients of silicon ranging from 1 900 K to 4 100 K in the Fe-Si-C melt formed during the laser cladding high silicon coatings process were calculated. The results indicated that all values of lnγ^0Si, ε^CSi,ρ^SiSi and ρ^CSi are negative in the temperature range and these values increase as the temperature increases. And all values of ε^SiSi and ρ^Si-CSi are positive and these values decrease with increasing temperature. The iso-activity lines of silicon are distributed axisymmetrically to the incident laser beam in the melt pool vertical to the laser scanning direction. And the iso-activity lines of silicon in the front of the melt pool along the laser scanning direction are more intensive than those in the back of the melt pool. The activity of silicon on the bottom of the melt pool is lower than that in the effecting center of laser beam on the top surface of the melt pool and it may be the important reason for the formation of the silicides and excellent metallurgical bonding between the laser cladding coating and the substrate. 展开更多
关键词 laser cladding silicon steel high silicon content coating thermodynamic calculation miedema's formation heat model
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