为了更方便地评估和优化装甲车辆电传动系统的性能,基于M ATLAB下的S im u link和GU IDE建立了装甲车辆电传动系统仿真平台。该仿真平台由用户操作界面与底层仿真模型组成,用户可方便地在界面上设置底层仿真模型的参数,并对装甲车辆电...为了更方便地评估和优化装甲车辆电传动系统的性能,基于M ATLAB下的S im u link和GU IDE建立了装甲车辆电传动系统仿真平台。该仿真平台由用户操作界面与底层仿真模型组成,用户可方便地在界面上设置底层仿真模型的参数,并对装甲车辆电传动系统总体性能和其子系统仿真模型进行仿真、输出仿真结果。经仿真证明,该仿真平台能够方便地进行装甲车辆电传动系统仿真,其仿真结果可为装甲车辆电传动系统的性能评估提供依据。展开更多
The evolution of temperature field of the continual motion induction cladding and the depth of heat affected zone are studied in this study.A three-dimensional finite element model for the point type continual inducti...The evolution of temperature field of the continual motion induction cladding and the depth of heat affected zone are studied in this study.A three-dimensional finite element model for the point type continual induction cladding is established to investigate temperature distributions of fixed and motion induction cladding modes.The novel inductor is designed for cladding of curved surfaces.The modeling reliability is verified by the temperature measurements.The influence of process parameters on the maximum temperature and the generation and transfer of heat are studied.Quantitative calculation is performed to its melting rate to verify the temperature distribution and microstructures.The results show that a good metallurgical bond can be formed between the cladding layer and substrate.The melting rate gradually falls from the top of the cladding layer to the substrate,and the grain size in the substrate gradually rises.The heat affected zone is relatively small compared to integral heating.展开更多
文摘为了更方便地评估和优化装甲车辆电传动系统的性能,基于M ATLAB下的S im u link和GU IDE建立了装甲车辆电传动系统仿真平台。该仿真平台由用户操作界面与底层仿真模型组成,用户可方便地在界面上设置底层仿真模型的参数,并对装甲车辆电传动系统总体性能和其子系统仿真模型进行仿真、输出仿真结果。经仿真证明,该仿真平台能够方便地进行装甲车辆电传动系统仿真,其仿真结果可为装甲车辆电传动系统的性能评估提供依据。
基金Project(51575415)supported by the National Natural Science Foundation of ChinaProject(2016CFA077)supported by the Natural Science Foundation of Hubei Province of ChinaProject(2018-YS-026)supported by the Excellent Dissertation Cultivation Funds of Wuhan University of Technology,China。
文摘The evolution of temperature field of the continual motion induction cladding and the depth of heat affected zone are studied in this study.A three-dimensional finite element model for the point type continual induction cladding is established to investigate temperature distributions of fixed and motion induction cladding modes.The novel inductor is designed for cladding of curved surfaces.The modeling reliability is verified by the temperature measurements.The influence of process parameters on the maximum temperature and the generation and transfer of heat are studied.Quantitative calculation is performed to its melting rate to verify the temperature distribution and microstructures.The results show that a good metallurgical bond can be formed between the cladding layer and substrate.The melting rate gradually falls from the top of the cladding layer to the substrate,and the grain size in the substrate gradually rises.The heat affected zone is relatively small compared to integral heating.