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Adhesive and cohesive properties of nanostructured ZrO_2 coatings by the original Vickers Indentation Cracking technique

机译:原始的维氏压痕开裂技术在纳米ZrO_2涂层中的粘合和内聚性能

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摘要

In order to characterize the adhesion of nanostructured plasma-sprayed Y_20_3-Zr0_2 coatings presenting some geometrical specificities, it is here suggested to apply the Vickers Indentation Cracking (VIC) technique, which is capable of initiating a crack at the interface by performing the indentation test close to the interface within the substrate. This method renders it possible to overcome the difficulties concerning the characterization of the adhesion of nanostructured Y_2O_3-ZrO_3 (YSZ) coatings. It was suggested to calculate an adhesive stress parameter by employing two physical parameters, i.e., the critical load to initiate the crack and the indentation distance measured between the interface and the indent center. In addition, for the case of brittle coatings, the crack was found to deviate from the interface toward the coating. Under such conditions and on the basis of the critical point (given by the two parameters: load and indentation distance), a stress parameter representative of the cohesive properties of the coating was defined according to the crack deviation conditions.
机译:为了表征呈现某些几何特性的等离子喷涂纳米结构Y_20_3-Zr0_2涂层的附着力,建议使用维氏压痕开裂(VIC)技术,该技术能够通过执行压痕测试在界面处引发裂纹靠近基板内的界面。该方法使得可以克服关于表征纳米结构的Y_2O_3-ZrO_3(YSZ)涂层的粘附性的困难。建议通过采用两个物理参数来计算粘合应力参数,即引发裂纹的临界载荷和在界面与压痕中心之间测得的压痕距离。另外,对于脆性涂层,发现裂纹从界面向涂层偏离。在这种条件下,根据临界点(由两个参数:载荷和压痕距离确定),根据裂纹偏差条件定义了代表涂层内聚性能的应力参数。

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