蠕动
材料科学
扩散蠕变
纳米压痕
应变率
变形机理
变形(气象学)
复合材料
缩进
穿透深度
渗透(战争)
光学
晶界
微观结构
工程类
物理
运筹学
作者
F. Wang,J.M. Li,Ping Huang,W.L. Wang,Tianjian Lu,K.W. Xu
标识
DOI:10.1016/j.intermet.2013.03.006
摘要
Nanoscale creep deformation in Zr61Al7.5Cu17.5Ni10Si4 thin films was investigated via instrumented nanoindentation testing. Over three decades of indentation strain rate with varying penetration depth were used to evaluate the effects of applied strain rate and initial creep depth on the creep deformation within small volumes of the metallic glass. A critical penetration depth was identified, below which the creep deformation was dependent upon the applied strain rate, and above which the strain rate sensitivity of the creep deformation reached a plateau value. It was proposed that an interface diffusion mechanism dominated the creep deformation within the shallow depth regime, whilst a transition from the interface diffusion dominant mechanism to the intrinsic creep behavior of the Zr-based metallic glass occurred within the deep depth regime.
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