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Indentation plastic displacement field: Part I. The case of soft films on hard substrates

机译:压痕塑性位移场:第一部分。硬质基材上的软膜情况

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The plastic deformation behavior of Knoop indentations made in a soft, porous titanium/aluminum multilayered thin film on a hard silicon substrate is studied through use of the focused-ion-beam milling and imaging technique. Pileup is observed for indentations with depths larger than 30 of the total film thickness. Analysis of the indentation cross sections shows that plastic deformation around the indentation is partly accommodated by the closing of the pores within the multilayers. This densification process reduces the amount of pileup formed below that predicted by finite element simulations. Experimental results show that the pileup is formed by an increase of the titanium layer thickness near the edges of the indentation. The thickness increase is largest near the film/substrate interface and decreases toward the surface of the multilayered film. The amount of normal compression near the center of the indenter is characterized, and it is demonstrated that the deformation becomes more nonuniform with increasing indentation depth.
机译:通过使用聚焦离子束铣削和成像技术,研究了在硬硅衬底上的多孔多孔钛/铝多层薄膜中制作的努氏压痕的塑性变形行为。对于深度大于总膜厚30的压痕观察到堆积。对压痕横截面的分析表明,压痕周围的塑性变形部分地由多层内孔的封闭来解决。这种致密化过程减少了形成的堆积量,使其低于有限元模拟所预测的堆积量。实验结果表明,堆积是由压痕边缘附近的钛层厚度增加而形成的。厚度增加在膜/基材界面附近最大,而向多层膜的表面减小。对压头中心附近的法向压缩量进行了表征,并证明了随着压痕深度的增加,变形变得更加不均匀。

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