Evaluation of the adhesion of TiN films using nanoindentation and scratch testing

M. Toparli, S. Sasaki
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引用次数: 15

Abstract

Abstract The scratch test method is applied to the coated sample using a diamond indenter. This sample is displaced at a constant speed and certain load damage occurs along the scratch path. Using a nanoindentation and nanoscratch technique, the mechanical properties of physically vapour-deposited films were investigated experimentally and numerically. In order to evaluate the microhardness and adhesive properties of thin films, we applied a nanoindentation and scratch test experimentally. The TiN films were deposited on silicon wafers at a thickness of about 1.2 μm by physical vapour deposition. The elastic stress distribution was calculated on the coating material for different loads, friction coefficients and directions using three-dimensional finite-element models. A FORTRAN computer program was developed for the study. The coating material was assumed to be a homogeneous, isotropic and infinite body. This paper compares the measured critical load and calculated critical load for different directions using the scratch test and finite-element method respectively. It has been seen that agreement is reasonably good.
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用纳米压痕和划痕测试评价TiN薄膜的附着力
摘要采用金刚石压头对涂层试样进行划痕试验。该样品以恒定速度位移,沿着划痕路径发生一定的载荷损伤。采用纳米压痕和纳米划痕技术,对物理气相沉积薄膜的力学性能进行了实验和数值研究。为了评估薄膜的显微硬度和粘附性能,我们进行了纳米压痕和划痕实验。采用物理气相沉积法在厚度约1.2 μm的硅片上沉积TiN薄膜。采用三维有限元模型计算了不同载荷、摩擦系数和摩擦方向下涂层材料的弹性应力分布。为此研究开发了一个FORTRAN计算机程序。假设涂层材料是均匀的、各向同性的无限大体。本文分别用划痕试验和有限元法对不同方向的实测临界载荷和计算临界载荷进行了比较。人们已经看到,协议是相当好的。
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