基于纯金属杨氏模量的实验信息,本研究对纯金属的杨氏模量随温度变化的半经验模型中的参数进行了优化.借鉴相图计算的CALPHAD(calculation of phase diagram)方法,构建了多元合金杨氏模量计算的模型.基于二元合金的杨氏模量实验信息,对F...基于纯金属杨氏模量的实验信息,本研究对纯金属的杨氏模量随温度变化的半经验模型中的参数进行了优化.借鉴相图计算的CALPHAD(calculation of phase diagram)方法,构建了多元合金杨氏模量计算的模型.基于二元合金的杨氏模量实验信息,对Fe-Ni和Ta-Mo二元系的杨氏模量计算参数进行了优化,计算了合金在不同温度和成分时的杨氏模量,计算结果与实验数据取得了良好的一致性.基于二元合金的优化参数,运用三元合金的计算模型,预测了TaNb-W和Ta-Nb-Mo在不同温度和成分时的杨氏模量.展开更多
A thermodynamic study has been carried out on M-Si-B (M=Fe, Ni) ternary systems. A regular solution approximation based on the sublattice model was adopted to describe the Gibbs energy for the individual phases in the...A thermodynamic study has been carried out on M-Si-B (M=Fe, Ni) ternary systems. A regular solution approximation based on the sublattice model was adopted to describe the Gibbs energy for the individual phases in the binary and ternary systems. Thermodynamic parameters for each phase were evaluated by using the experimental data. These parameters enabled us to obtain reproducible calculations of the isothermal and vertical section diagrams. The amorphous-forming ability of M-Si-B ternary alloys has been evaluated by introducing thermodynamic quantities obtained from the phase diagram calculations into Davies-Uhlmann kinetic formulations. For the computation, the time-temperature- transformation (TTT) diagram, which gives the time necessary for the formation of the detectable amount of crystal during transformation, was obtained at a finite temperature. The critical cooling rate for amorphization could be defined as the minimum cooling speed that does not intersect the TTT curve and, hence, these critical cooling rates enable us to evaluate the glass-forming ability of M-Si-B ternary alloys. The driving force for the crystallization of the crystalline phase was derived, on the basis of the thermodynamic functions of each phase formulated by the present study. The calculated results showed good agreement with the experimental data on the compositional range of amorphization in these alloy systems.展开更多
相图计算(Calculation of Phase Diagram,CALPHAD)是冶金、化工、材料设计等各个领域的重要研究工具,随着传统材料体系的研究深入和新材料体系的不断被发现,相关的相图和热力学实验数据愈显匮乏.基于电子层面的第一性原理计算(First-pri...相图计算(Calculation of Phase Diagram,CALPHAD)是冶金、化工、材料设计等各个领域的重要研究工具,随着传统材料体系的研究深入和新材料体系的不断被发现,相关的相图和热力学实验数据愈显匮乏.基于电子层面的第一性原理计算(First-principles Calculations),可以从体系基态性质出发,研究亚稳相、金属间化合物的结构、合金的稳定性,促进CALPHAD的发展.文中关注了近年来第一性原理计算在CALPHAD技术当中的应用研究进展,从计算化合物的能量性质,相图,动力学性质等方面进行系统阐述.展开更多
以立方结构的纯金属为研究对象,在文献报道的实验信息的基础上,运用改进的半经验模型优化并计算了金属在不同温度时的杨氏模量.借鉴相图计算的CALPHAD(calculation of phase diagrams)方法,构建了二元合金杨氏模量计算的新模型.基于二...以立方结构的纯金属为研究对象,在文献报道的实验信息的基础上,运用改进的半经验模型优化并计算了金属在不同温度时的杨氏模量.借鉴相图计算的CALPHAD(calculation of phase diagrams)方法,构建了二元合金杨氏模量计算的新模型.基于二元合金的实验信息,对Ag-Au、Ta-W、Pt-Rh和Pt-Ir 4个二元合金的杨氏模量计算参数进行了优化,计算了合金在不同温度、成分时的杨氏模量,计算结果与实验信息取得了良好的一致性.展开更多
对相图的常用实验测定方法进行综述,以Cr-Ni-Ru三元体系相图的高通量测定为例,展示高效测定二元、三元相图的扩散多元节方法。基于相图计算(Calculation of phase diagrams,CALPHAD)方法,以Cr-Ru二元体系和Cr-Ni-Ru三元体系的热力学优...对相图的常用实验测定方法进行综述,以Cr-Ni-Ru三元体系相图的高通量测定为例,展示高效测定二元、三元相图的扩散多元节方法。基于相图计算(Calculation of phase diagrams,CALPHAD)方法,以Cr-Ru二元体系和Cr-Ni-Ru三元体系的热力学优化为例,阐述Cr-Ni-Ru三元体系热力学数据库建立的具体流程,分析当前镍基高温合金研究效率低下的原因。结果表明:快速建立与定量预测材料成分、相、组织、性能关系的高通量实验和计算方法是促进未来镍基高温合金研究发展的重点。展开更多
文摘基于纯金属杨氏模量的实验信息,本研究对纯金属的杨氏模量随温度变化的半经验模型中的参数进行了优化.借鉴相图计算的CALPHAD(calculation of phase diagram)方法,构建了多元合金杨氏模量计算的模型.基于二元合金的杨氏模量实验信息,对Fe-Ni和Ta-Mo二元系的杨氏模量计算参数进行了优化,计算了合金在不同温度和成分时的杨氏模量,计算结果与实验数据取得了良好的一致性.基于二元合金的优化参数,运用三元合金的计算模型,预测了TaNb-W和Ta-Nb-Mo在不同温度和成分时的杨氏模量.
基金Project(52071339)supported by the National Natural Science Foundation of ChinaProject(2020JJ4739)supported by the Natural Science Foundation of Hunan Province,ChinaProject(201009-K)supported by the Guangxi Key Laboratory of Information Materials(Guilin University of Electronic Technology),China。
文摘A thermodynamic study has been carried out on M-Si-B (M=Fe, Ni) ternary systems. A regular solution approximation based on the sublattice model was adopted to describe the Gibbs energy for the individual phases in the binary and ternary systems. Thermodynamic parameters for each phase were evaluated by using the experimental data. These parameters enabled us to obtain reproducible calculations of the isothermal and vertical section diagrams. The amorphous-forming ability of M-Si-B ternary alloys has been evaluated by introducing thermodynamic quantities obtained from the phase diagram calculations into Davies-Uhlmann kinetic formulations. For the computation, the time-temperature- transformation (TTT) diagram, which gives the time necessary for the formation of the detectable amount of crystal during transformation, was obtained at a finite temperature. The critical cooling rate for amorphization could be defined as the minimum cooling speed that does not intersect the TTT curve and, hence, these critical cooling rates enable us to evaluate the glass-forming ability of M-Si-B ternary alloys. The driving force for the crystallization of the crystalline phase was derived, on the basis of the thermodynamic functions of each phase formulated by the present study. The calculated results showed good agreement with the experimental data on the compositional range of amorphization in these alloy systems.
文摘相图计算(Calculation of Phase Diagram,CALPHAD)是冶金、化工、材料设计等各个领域的重要研究工具,随着传统材料体系的研究深入和新材料体系的不断被发现,相关的相图和热力学实验数据愈显匮乏.基于电子层面的第一性原理计算(First-principles Calculations),可以从体系基态性质出发,研究亚稳相、金属间化合物的结构、合金的稳定性,促进CALPHAD的发展.文中关注了近年来第一性原理计算在CALPHAD技术当中的应用研究进展,从计算化合物的能量性质,相图,动力学性质等方面进行系统阐述.
文摘以立方结构的纯金属为研究对象,在文献报道的实验信息的基础上,运用改进的半经验模型优化并计算了金属在不同温度时的杨氏模量.借鉴相图计算的CALPHAD(calculation of phase diagrams)方法,构建了二元合金杨氏模量计算的新模型.基于二元合金的实验信息,对Ag-Au、Ta-W、Pt-Rh和Pt-Ir 4个二元合金的杨氏模量计算参数进行了优化,计算了合金在不同温度、成分时的杨氏模量,计算结果与实验信息取得了良好的一致性.
文摘对相图的常用实验测定方法进行综述,以Cr-Ni-Ru三元体系相图的高通量测定为例,展示高效测定二元、三元相图的扩散多元节方法。基于相图计算(Calculation of phase diagrams,CALPHAD)方法,以Cr-Ru二元体系和Cr-Ni-Ru三元体系的热力学优化为例,阐述Cr-Ni-Ru三元体系热力学数据库建立的具体流程,分析当前镍基高温合金研究效率低下的原因。结果表明:快速建立与定量预测材料成分、相、组织、性能关系的高通量实验和计算方法是促进未来镍基高温合金研究发展的重点。