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Characterization of the mechanical properties of diamond-like carbon films

机译:类金刚石碳膜的机械性能表征

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摘要

A recently suggested method to measure the elastic modulus of diamond-like carbon (DLC) films was reviewed. This method used a DLC bridge or free overhang which is free from the mechanical constraint of the substrate. Because of the high residual compressive stress of the DLC film the bridge or the overhang exhibited a sinusoidal displacement on removing the mechanical constraint. Measuring the amplitude and wavelength of the sinusoidal displacement made it possible to measure the strain of the film which occurred by stress relaxation. Combined with independent stress measurement using the laser reflection method, this method allowed the calculation of the biaxial elastic modulus of the DLC film. This method was successfully applied to obtain the elastic properties of various DLC films from polymeric hydrogenated amorphous carbon (a-C:H) to hard tetrahedral amorphous carbon (ta-C) films. Since the substrate is completely removed from the measurement system, this method is insensitive to the mechanical properties of substrate. The mechanical properties of very thin DLC films could be thus measured and then can reveal the structural evolution of a-C:H firms during the initial stages of deposition.
机译:审查了最近建议的一种方法来测量类金刚石碳(DLC)膜的弹性模量。该方法使用了DLC电桥或自由悬伸,不受基材的机械约束。由于DLC膜的残余压缩应力较高,因此在消除机械约束时,桥或悬垂部会出现正弦形位移。通过测量正弦位移的幅度和波长,可以测量由于应力松弛而产生的薄膜应变。结合使用激光反射法的独立应力测量,该方法可以计算DLC膜的双轴弹性模量。此方法已成功应用于从聚合氢化非晶碳(a-C:H)到硬四面体非晶碳(ta-C)膜的各种DLC膜的弹性性能。由于基材已从测量系统中完全移除,因此该方法对基材的机械性能不敏感。因此可以测量非常薄的DLC膜的机械性能,然后可以揭示在沉积初期a-C:H硬质合金的结构演变。

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