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Elasticity mapping of delta precipitate in alloy 625 using atomic force acoustic microscopy with a new approach to eliminate the influence of tip condition

机译:使用原子力声学显微镜和消除尖端条件影响的新方法对合金625中的δ析出物进行弹性映射

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摘要

We describe a novel approach to eliminate the effect of change in tip condition on mapping of elastic properties by atomic force acoustic microscopy. The method involves simultaneous acquisition of two contact resonances and using the contact stiffness of the matrix in every scan line as reference for finding the indentation modulus of fine precipitates. The methodology is demonstrated by mapping the indentation modulus of a 200 nm wide delta precipitate in a nickel-base superalloy.
机译:我们描述了一种新颖的方法,通过原子力声学显微镜消除了尖端条件变化对弹性特性映射的影响。该方法包括同时获取两个接触共振,并使用每条扫描线中基质的接触刚度作为寻找细小沉淀物压痕模量的参考。通过绘制镍基高温合金中200 nm宽的δ析出物的压痕模量来证明该方法。

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