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基于原子力显微镜和分子动力学的纳米压痕技术研究

STUDY ON THE NANOINDENTATION VIA ATOMIC FORCE MICROSCOPE AND MOLECULAR DYNAMICS SIMULATION

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【作者】 霍德鸿梁迎春程凯董申

【Author】 Huo Dehong;Liang Yingchun;Cheng Kai;Dong Shen Precision Engineering Research Institute,Harbin Institute of Technology, Harbin 150001

【机构】 哈尔滨工业大学精密工程研究所哈尔滨工业大学精密工程研究所 哈尔滨 150001哈尔滨 150001哈尔滨 150001

【摘要】 利用原子力显微镜对真空蒸发镀膜技术制得的单晶铜薄膜试件进行了纳米压痕试验。通过进行各种压痕深度下的试验,获得了压痕深度对试件力学性能的影响关系。试验得到的试件弹性模量为67.0 GPa±6.9 GPa。试件的硬度值随着压痕深度的减小而不断增大,表现出强烈的尺寸效应。在原子力显微镜试验的同时,使用分子动力学仿真方法对单晶铜薄膜的纳米压痕过程进行了研究。仿真结果表明单晶铜薄膜的纳米压痕的力学机理不是位错在晶体中运动产生的塑性变形,而是非晶态产生的变形,从而解释了尺寸效应产生的原因。

【Abstract】 Nanoindentation tests performed in an atomic forcemicroscope have been utilized to directly measure the me-chanical properties of single crystal copper thin films fabricatedby the vacuum vapor deposition technique. Nanoindentationtests are conduted at various indentation depths to study theeffect of indentation depths on the mechanical properties of thinfilms. The elastic modulus of the single crystal copper film atvarious indentation depths is determined as 67.0 GPa±6.9 GPaon average which is in reasonable agreement with the resultsreported in literature. The indentation hardness constantly in-creases with decreasing indentation depth,indicating a strongsize effects. In addition to the experimental work, moleculardynamics simulations of nanoindentation process have beenconducted to elucidate the mechanics and mechanisms of na-noindentation of thin films. MD simulations results show thatdue to size effect the plastic deformation via amorphous trans-formation is more favorable than via the generation and propa-gation of dislocations in nanoindenation of single crystal cop-per thin films. Simulations results also elucidate the reason ofsize effects from the atomistic point of view.

【基金】 国家自然科学基金(50175017);哈尔滨工业大学跨学科交叉性研究基金(HIT.MD.2000.9)
  • 【文献出处】 机械工程学报 ,Chinese Journal of Mechanical Engineering , 编辑部邮箱 ,2004年06期
  • 【分类号】TB383
  • 【被引频次】59
  • 【下载频次】1612
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