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Internal friction study of microplasticity in polycrystalline gold thin films

机译:多晶金薄膜微塑性的内摩擦研究

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Amplitude-dependent internal friction in polycrystalline gold films 0.2-1.0 μm thick on silicon substrates has been studied with attention to the influence of a titanium-capping layer deposited on top of the gold films. Analysis of the amplitude-dependent internal friction provides the relation between the plastic strain of the order of 10~(-9) and the effective stress on dislocation motion. For the capped gold films, the microflow stress at a constant level of the plastic strain varies inversely with the film thickness, as in the case for aluminum films. The uncapped gold films, however, show a deviation from the inverse thickness relationship in the range thinner than 0.5 μm. Substantial strengthening for the thinner films with a capping layer is most likely attributed to the suppression of diffusional relaxation near the free surface during steady-state vibration.
机译:已经研究了硅基底上厚度为0.2-1.0μm的多晶金膜中与振幅有关的内摩擦,并注意沉积在金膜顶部的钛覆盖层的影响。对振幅相关的内摩擦的分析提供了10〜(-9)量级的塑性应变与位错运动的有效应力之间的关系。对于盖金膜,与铝膜一样,在恒定塑性应变水平下的微流应力与膜厚成反比。然而,未覆盖的金膜在小于0.5μm的范围内显示出与反厚度关系的偏差。具有覆盖层的较薄薄膜的实质性增强最有可能归因于稳态振动期间自由表面附近扩散弛豫的抑制。

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