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Error Estimation of Nanoindentation Mechanical Properties Near a Dissimilar Interface via Finite Element Analysis and Analytical Solution Methods.通过有限元分析和解析解方法对异种界面附近纳米压痕力学性能的误差估计
J Mater Res. 2010 Dec;25(12):2308-2316. doi: 10.1557/jmr.2010.0295.
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An understanding of the mechanism that promotes adhesion between roughened titanium implants and mineralized tissue.对促进粗糙钛植入物与矿化组织之间粘附的机制的理解。
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通过有限元分析和解析解方法对异种界面附近纳米压痕力学性能的误差估计

Error Estimation of Nanoindentation Mechanical Properties Near a Dissimilar Interface via Finite Element Analysis and Analytical Solution Methods.

作者信息

Zhao Y, Ovaert T C

机构信息

Department of Aerospace and Mechanical Engineering, University of Notre Dame, Notre Dame, IN 46556.

出版信息

J Mater Res. 2010 Dec;25(12):2308-2316. doi: 10.1557/jmr.2010.0295.

DOI:10.1557/jmr.2010.0295
PMID:21528107
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3082209/
Abstract

Nanoindentation methods are well suited for probing the mechanical properties of a heterogeneous surface, since the probe size and contact volumes are small and localized. However, the nanoindentation method may introduce errors in the computed mechanical properties when indenting near the interface between two materials having significantly different mechanical properties. Here we examine the case where a soft material is loaded in close proximity to an interface of higher modulus, such as the case when indenting bone near a metallic implant. Results are derived from both an approximate analytical quarter-space solution and a finite element model, and used to estimate the error in indentation-determined elastic modulus as a function of the distance from the apex of contact to the dissimilar interface, for both Berkovich and spherical indenter geometries. Sample data reveal the potential errors in mechanical property determination that can occur when indenting near an interface having higher stiffness, or when characterizing strongly heterogeneous materials. The results suggest that caution should be used when interpreting results in the near-interfacial region.

摘要

纳米压痕方法非常适合探测异质表面的力学性能,因为探针尺寸和接触体积小且局部化。然而,当在两种力学性能显著不同的材料之间的界面附近进行压痕时,纳米压痕方法可能会在计算出的力学性能中引入误差。在这里,我们研究了一种软材料靠近较高模量界面加载的情况,例如在金属植入物附近压痕骨时的情况。结果来自近似解析四分之一空间解和有限元模型,并用于估计对于Berkovich和球形压头几何形状,压痕确定的弹性模量误差作为从接触顶点到不同界面距离的函数。样本数据揭示了在靠近具有较高刚度的界面进行压痕或表征强异质材料时,力学性能测定中可能出现的潜在误差。结果表明,在解释近界面区域的结果时应谨慎。