A nonlinear finite element model of vacuum heat treatment process was developed. In this model, influence of many factors, such as nonlinear heat radiation, temperature-dependent thermal physical properties of materia...A nonlinear finite element model of vacuum heat treatment process was developed. In this model, influence of many factors, such as nonlinear heat radiation, temperature-dependent thermal physical properties of material are considered. The temperature field of GH4169 alloy workpiece during vacuum heat treatment process was calculated using finite element software MSC.Marc, and the thermal hysteresis time of the workpiece was predicted. An experiment of vacuum heat treatment of GH4169 superalloy workpiece was carried out to verify the calculation. The experimental results of temperature profile agree well with the simulated results. This work lays a theoretical foundation for optimizing technical parameter of vacuum heat treatment process.展开更多
为研究SF6分子筛吸附剂回收处理最经济有效的方法,提出了负压热处理再生技术,阐述了吸附剂的负压热处理再生原理,分析了再生过程中分子筛各参数的变化。最后,进行了负压热处理实验,结合红外光谱技术来分析吸附剂中有害成分的含量变化,...为研究SF6分子筛吸附剂回收处理最经济有效的方法,提出了负压热处理再生技术,阐述了吸附剂的负压热处理再生原理,分析了再生过程中分子筛各参数的变化。最后,进行了负压热处理实验,结合红外光谱技术来分析吸附剂中有害成分的含量变化,重点研究了SF6分子筛吸附剂负压热处理最佳再生温度、最佳再生时间以及最佳负压压强,并进行了吸附等温曲线测试验证来确定回收的SF6分子筛吸附剂的解吸能力。实验结果表明,KDHF-03型分子筛吸附剂在20 k Pa、200℃下热处理2 h,可以达到最佳处理效果,SF6有害分解气体产物去除比例约为85%—90%,其吸附能力能恢复至使用前吸附能力的90%左右。展开更多
文摘A nonlinear finite element model of vacuum heat treatment process was developed. In this model, influence of many factors, such as nonlinear heat radiation, temperature-dependent thermal physical properties of material are considered. The temperature field of GH4169 alloy workpiece during vacuum heat treatment process was calculated using finite element software MSC.Marc, and the thermal hysteresis time of the workpiece was predicted. An experiment of vacuum heat treatment of GH4169 superalloy workpiece was carried out to verify the calculation. The experimental results of temperature profile agree well with the simulated results. This work lays a theoretical foundation for optimizing technical parameter of vacuum heat treatment process.
文摘为研究SF6分子筛吸附剂回收处理最经济有效的方法,提出了负压热处理再生技术,阐述了吸附剂的负压热处理再生原理,分析了再生过程中分子筛各参数的变化。最后,进行了负压热处理实验,结合红外光谱技术来分析吸附剂中有害成分的含量变化,重点研究了SF6分子筛吸附剂负压热处理最佳再生温度、最佳再生时间以及最佳负压压强,并进行了吸附等温曲线测试验证来确定回收的SF6分子筛吸附剂的解吸能力。实验结果表明,KDHF-03型分子筛吸附剂在20 k Pa、200℃下热处理2 h,可以达到最佳处理效果,SF6有害分解气体产物去除比例约为85%—90%,其吸附能力能恢复至使用前吸附能力的90%左右。