Residual thermal stress in the system is a serious problem that affects the application of tritium permeation barrier coatings in fusion reactors. The stress not only determines the adhesion between coating and substr...Residual thermal stress in the system is a serious problem that affects the application of tritium permeation barrier coatings in fusion reactors. The stress not only determines the adhesion between coating and substrate, but also changes the properties of the material. In this study,finite element analysis was used to investigate the relationship between the residual thermal stress and the mechanical properties of Al_2O_3 tritium penetration barrier systems. Moreover, the residual thermal stress influenced by factors such as different substrates, temperature, and substrate roughness was also analyzed. The calculation showed that the hardness and elastic modulus increased with increasing compressive stress. However, the hardness and elastic modulus decreased with increasing tensile stress. The systems composed of Al_2O_3 coatings and different substrates exhibited different trends in mechanical properties. As the temperature increased, the hardness and the elastic modulus increased in an Al_2O_3/316 L stainless steel system; the trend was opposite in an Al_2O_3/Si system.Apart from this, the roughness of the substrate surface in the system could magnify the change in hardness and elastic modulus of the coating. Results showed that all these factors led to variation in the mechanical properties of Al_2O_3 tritium permeation barrier systems. Thus, thedetailed reasons for the changes in mechanical properties of these materials need to be analyzed.展开更多
The central solenoid is an important part of the HT-7U device. In this paper, the computational analysis of the stress and the displacement on the pre-load structures of the central solenoid have been made by the fin...The central solenoid is an important part of the HT-7U device. In this paper, the computational analysis of the stress and the displacement on the pre-load structures of the central solenoid have been made by the finite element analysis system COSMOS/M2.0 under room and/or operating temperature. According to the analytical results, the clip aprons and compression plates are all satisfied with safety design criteria.展开更多
针对冷绝缘高温超导电缆(Cold Dielectric High Temperature Superconducting cable,CD HTS cable)在不同载流下的运行稳定性,采用有限元数值分析方法对超导电缆内部温度场进行准确计算和分析。根据超导电缆内部各层传热特征,建立基于AN...针对冷绝缘高温超导电缆(Cold Dielectric High Temperature Superconducting cable,CD HTS cable)在不同载流下的运行稳定性,采用有限元数值分析方法对超导电缆内部温度场进行准确计算和分析。根据超导电缆内部各层传热特征,建立基于ANSYS的CD HTS电缆有限元模型,给出正常载流及故障载流下超导电缆温度场分析传热边界条件,计算得到不同载流情况下超导电缆本体温度分布变化规律,从而为其通流能力影响下的运行稳定性分析提供参考依据,对超导电缆的故障保护具有一定的指导意义。展开更多
文摘Residual thermal stress in the system is a serious problem that affects the application of tritium permeation barrier coatings in fusion reactors. The stress not only determines the adhesion between coating and substrate, but also changes the properties of the material. In this study,finite element analysis was used to investigate the relationship between the residual thermal stress and the mechanical properties of Al_2O_3 tritium penetration barrier systems. Moreover, the residual thermal stress influenced by factors such as different substrates, temperature, and substrate roughness was also analyzed. The calculation showed that the hardness and elastic modulus increased with increasing compressive stress. However, the hardness and elastic modulus decreased with increasing tensile stress. The systems composed of Al_2O_3 coatings and different substrates exhibited different trends in mechanical properties. As the temperature increased, the hardness and the elastic modulus increased in an Al_2O_3/316 L stainless steel system; the trend was opposite in an Al_2O_3/Si system.Apart from this, the roughness of the substrate surface in the system could magnify the change in hardness and elastic modulus of the coating. Results showed that all these factors led to variation in the mechanical properties of Al_2O_3 tritium permeation barrier systems. Thus, thedetailed reasons for the changes in mechanical properties of these materials need to be analyzed.
文摘The central solenoid is an important part of the HT-7U device. In this paper, the computational analysis of the stress and the displacement on the pre-load structures of the central solenoid have been made by the finite element analysis system COSMOS/M2.0 under room and/or operating temperature. According to the analytical results, the clip aprons and compression plates are all satisfied with safety design criteria.
文摘针对冷绝缘高温超导电缆(Cold Dielectric High Temperature Superconducting cable,CD HTS cable)在不同载流下的运行稳定性,采用有限元数值分析方法对超导电缆内部温度场进行准确计算和分析。根据超导电缆内部各层传热特征,建立基于ANSYS的CD HTS电缆有限元模型,给出正常载流及故障载流下超导电缆温度场分析传热边界条件,计算得到不同载流情况下超导电缆本体温度分布变化规律,从而为其通流能力影响下的运行稳定性分析提供参考依据,对超导电缆的故障保护具有一定的指导意义。