[1] |
张继民 . 单晶铜纳米切削过程分子动力学建模与仿真[D]. 秦皇岛:燕山大学, 2009.
|
|
Zhang Jimin . Molecular dynamics modeling and simulation for nanometric cutting of monocrystalline copper[D]. Qinhuangdao:Yanshan University, 2009.
|
[2] |
宿昊, 唐兴龄, 陈岑 . 金属铜纳米切削的分子动力学模拟[J]. 工具技术, 2018,52(1):89-92.
|
|
Su Hao, Tang Xingling, Chen Cen . Nanometric machining of copper by molecular dynamics simulation[J]. Tool Technology, 2018,52(1):89-92.
|
[3] |
李勇, 杨晓京 . 纳米尺度单晶铜材料表面切削特性分子动力学模拟[J]. 中国机械工程, 2016,27(6):721-726.
|
|
Li Yong, Yang Xiaojing . Molecular dynamics simulation of single crystal copper material surface cutting properties in nano-scale[J]. China Mechanical Engineering, 2016,27(6):721-726.
|
[4] |
毛杰伟, 刘文浩, 王增鹏 . 基于分子动力学单晶锗的纳米压痕特性分析[J].纳米技术与精密工程, 2015(6):454-457.
|
|
Mao Jiewei, Liu Wenhao, Wang Zengpeng . Nanoindentation characteristics analysis of single crystal germanium based on molecular dynamics[J]. Nanotechnology and Precision Engineering, 2015(6):454-457.
|
[5] |
金洙吉, 谢飞, 郭晓光 , 等. 单晶金刚石切削模具钢磨损机理的分子动力学仿真[J]. 纳米技术与精密工程, 2016,14(6):410-415.
|
|
Jin Zhuji, Xie Fei, Guo Xiaoguang , et al. Wear mechanism of single crystal diamond tool against mold steel by molecular dynamics simulation[J]. Nanotechnology and Precision Engineering, 2016,14(6):410-415.
|
[6] |
苗亚宁, 苗伟, 郑力 , 等. 缺陷对石墨烯电子结构的影响[J]. 电子科技, 2011,24(11):120-122.
|
|
Miao Yaning, Miao Wei, Zheng Li . Effect of several defects on the electronic structure of graphene[J]. Electronic Science and Technology, 2011,24(11):120-122.
|
[7] |
柳培, 韩秀丽, 孙东立 , 等. 材料摩擦磨损分子动力学模拟的研究进展[J]. 材料科学与工艺, 2017,25(3):26-34.
|
|
Liu Pei, Han Xiuli, Sun Dongli , et al. Research progress in the application of molecular dynamics simulation in the friction wear of materials[J]. Journal of Materials Science and Technology, 2017,25(3):26-34.
|
[8] |
李春艳, 刘华, 刘波涛 . 分子动力学模拟基本原理及研究进展[J]. 广州化工, 2011,39(4):11-13.
|
|
Li Chunyan, Liu Hua, Liu Botao . Basic principles and research progress of molecular dynamics simulation[J]. Guangzhou Chemical Industry, 2011,39(4):11-13.
|
[9] |
郭晓光, 张亮, 金洙吉 , 等. 考虑空位缺陷的单晶硅纳米级磨削过程的分子动力学仿真[J]. 中国机械工程, 2013,24(10):1284-1288.
|
|
Guo Xiaoguang, Zhang Liang, Jin Suji , et al. Molecular dynamics simulation of nano-scale grinding process of single crystal silicon considering vacancy defects[J]. China Mechanical Engineering, 2013,24(10):1284-1288.
|
[10] |
刘乔亚, 杨平 . 不同构型下ZnO基稀磁半导体的第一性原理研究[J]. 电子科技, 2018,31(2):44-47.
|
|
Liu Qiaoya, Yang Ping . First-principles study on ZnO-based diluted magnetic semiconductors in different doping configurations[J]. Electronic Science and Technology, 2018,31(02):44-47.
|
[11] |
向采金 . 分子动力学的有限元长时间计算研究[D]. 长沙:湖南师范大学, 2011.
|
|
Xiang Caijin . The research of the long-time calculation of finite element method for molecular dynamics[D]. Changsha:Hunan Normal University, 2011.
|
[12] |
解令令 . 基于分子动力学的多晶硅纳米切削加工机理研究[D]. 沈阳:沈阳航空航天大学, 2013.
|
|
Xie Lingling . The nano-cutting mechanism research of polysilicon based on molecular dynamics[D]. Shenyang: Shenyang Aerospace University, 2013.
|
[13] |
张文涛, 毛杰伟, 刘文浩 . 基于分子动力学单晶锗的切削特性分析[J]. 工具技术, 2012,46(9):54-57.
|
|
Zhang Wentao, Mao Jiewei, Liu Wenhao . Analysis of cutting characteristics based on molecular dynamics of single crystal germanium[J]. Tool Technology, 2012,46(9):54-57.
|
[14] |
赖敏 . 单晶锗纳米切削机理和切削极限的研究[D]. 天津:天津大学, 2016.
|
|
Lai Min . Study on nano-cutting mechanism of monocrystalline germanium[D]. Tianjin:Tianjin University, 2016.
|
[15] |
汪卫华 . 非晶态物质的本质和特性[J]. 物理学进展, 2013,33(5):177-351.
|
|
Wang Weihua . The essence and characteristics of amorphous materials[J]. Progress in Physics, 2013,33(5):177-351.
|
[16] |
Korchuganov A V, Zolnikov K P, Kryzhevich D S . Atomistic simulation of structural damage during ion irradiation of iron single crystals[J]. Journal of Physics: Conference Series, 2017,830(1):67-79.
|