参考文献/References:
[1] 徐家凡.大吨位冲击疲劳试验机性能分析与研究[D].南京:南京理工大学,2011.
[2] Leonardo D A,Roberto M.A study on the measurement instrumentationfor a custom-made bipendulum impact testing machine[J].IEEE Transactions on Instrumentation and Measurement,2008,57(11):2487-2494.
[3] 夏学文,张俊彦,郭小刚,等.基于 ANSYS 的结构优化设计理论[J].煤矿机械, 2011,32(3):30-32.
[4] Hendry R E,Gilgrass T,Chung L,et al. A pilot study for evaluation of bond strength of orthodontic brackets to enamel using a new impact test machine[J]. Studies in health technology and informatics,2008,133:103-111.
[5] Chen R S,Cheng H E,Wu R W,et al.Optimal design of thin-profile fine-pitch ball grid array package under drop impact test[J].Proceedings of the Institution of Mechanical Engineers,2011,225(12):2775-2791.
[6] 陈敬辉.基于虚拟样机的航母跑道涂层耐冲击试验机的设计与仿真[D]. 哈尔滨:哈尔滨工业大学,2009.
[7] 赵志彬,贺尔铭,何秋荣,等.基于ANSYS的飞机炮舱段结构模态分析与结构优化[J].机械科学与技术,2008,27(3):297-300.
[8] 韩维涛,张亚新.基于ANSYS的承压齿盘结构优化设计[J].机械传动,2006,30(3):60-62.
[9] 李喆.机械设计的有限元分析及结构优化[J].机电工程技术,2008,37(7):128-130.
[10] 许佩霞,蔡炳芳.基于ANSYS的全地形车车架结构优化设计[J].机械设计, 2008,25(12):56-58.