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Repetitive nano-impact tests as a new tool to measure fracture toughness in brittle materials

机译:重复的纳米冲击试验作为测量脆性材料断裂韧性的新工具

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摘要

Along this work, the feasibility of using repetitive-impact tests with a cube-corner tip and low loads for obtaining quantitative fracture toughness values will be shown. It will be displayed that the impacts are able to produce a cracking similar to the pattern developed for the classical fracture toughness tests in structural ceramics. Moreover, it will be shown how it is possible to identify the crack geometry evolution from Palmqvist crack to half-penny crack with each new impact being able to study the proper evolution of fracture toughness in terms of different indentation models and as a function of the strain rate, ε˙. Fracture toughness values of AlO descend from ∼6.10 MPam (ε˙=10s), to ∼3.52 MPam (ε˙=10s). These values correspond to those found in the literature for α-AlO demonstrating that the use of repetitive-nano-impact tests provides good reproducibility, high accuracy for reliable fracture toughness testing.
机译:在这项工作中,将显示使用具有立方角尖端和低载荷的重复冲击试验以获得定量断裂韧性值的可行性。结果表明,这种冲击能产生类似于结构陶瓷经典断裂韧性试验所形成的裂纹。此外,还将展示如何识别从Palmqvist裂纹到半便士裂纹的裂纹几何演化,每一次新的冲击都能够根据不同的压痕模型以及作为函数的函数研究断裂韧性的适当演变。应变率ε˙。 AlO的断裂韧性值从〜6.10 MPam(ε˙= 10s)下降到〜3.52 MPam(ε˙= 10s)。这些值对应于文献中关于α-AlO的值,表明使用重复性纳米冲击试验可提供良好的可重复性和高精度,以进行可靠的断裂韧性试验。

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