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Using the P-82 analysis to deconvolute the nanoindentation response of hard-coated systems

机译:使用P-82分析反卷积硬涂层系统的纳米压痕响应

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The continuously recording indentation responses of a number of coated systems, mainly thin (< l0 mu m) hard nitride coatings on stainless steels and a powder metallurgy tool steel, have been explored using nanoindentation with indenter displacements increasing progressively to values greater than the coating thickness. The resultant load-displacement data have been analyzed not only to produce conventional load-displacement (P-δ) plots but also to examine the relationship between P and δ~2. Recent models have proposed that there should be a linear P-δ~2 relationship for homogeneous systems and that such plots have the potential to reveal the load/displacement regimes in which either the coating or the substrate, or both, are dominant in controlling the overall behavior of the coated sys- tem. By utilizing point-to-point differentiation of the P-δ~2 relationship, this paper extends this approach to confirm not only that these different regimes of behavior may be readily experimentally identified in this way, but also that further details, such as the propagation of cracks, may be recognized. Our analysis also provides a valuable experimental link to models describing the near-surface deformation behavior of coated systems.
机译:使用纳米压痕技术探索了连续记录许多涂层系统的压痕响应的方法,主要是不锈钢和粉末冶金工具钢上的薄(<10μm)硬氮化物涂层,压头位移逐渐增加到大于涂层厚度的值。分析所得的载荷-位移数据不仅可以生成常规的载荷-位移(P-δ)图,还可以检查P和δ〜2之间的关系。最近的模型已经提出,对于均质系统,应该存在线性P-δ〜2关系,并且这种图有可能揭示载荷/位移状态,在该状态下,涂层或基体或两者在控制涂层中起主导作用。涂层系统的整体性能。通过利用P-δ〜2关系的点对点微分,本文扩展了这种方法,以确认不仅可以以这种方式通过实验轻松地识别出这些不同的行为方式,而且还可以进一步确认诸如可能会发现裂纹的扩展。我们的分析还为描述涂层系统近表面变形行为的模型提供了宝贵的实验链接。

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