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Fracture scaling relations for scratch tests of axisymmetric shape

机译:轴对称形状刮擦试验的断裂比例关系

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Scratch testing and scratch test analysis continues to gain momentum in Applied Mechanics, due to the possibility offered by this method to assess fracture properties at very fine scales. In this paper, we derive general scratch force scaling relations for axisymmetric scratch probes defined by single variable monomial functions. These relations are used to define fracture criteria with and without consideration of the development of shear stresses at the probe-material interface. The approach is illustrated for common scratch probe geometries: conical probe, flat punch, and hemi-spherical probe. Application of the proposed method to micro-scratch tests on two materials (an aluminum alloy and a thermoplastic polymer) using a Rockwell probe (a conical probe ending in a hemi-spherical shape) illustrates the versatility of the approach: First, the scratch force-depth scaling relations provide a means to determine the degree of the homogeneous function characterizing the scratch probe. Second, the fracture criteria enable an experimental assessment of the fracture toughness. The good agreement between the fracture toughness determined by scratching and values reported in the open literature show the potential of the proposed method for determining fracture properties of materials at even smaller scales.
机译:刮擦测试和刮擦测试分析在应用力学中继续得到发展,这是因为这种方法提供了以非常精细的规模评估断裂性能的可能性。在本文中,我们推导了由单变量单项函数定义的轴对称划痕探头的一般划痕力缩放关系。这些关系被用来定义断裂标准,而不论是否考虑探针-材料界面处的切应力的发展。该方法针对常见的划痕探针几何形状进行了说明:圆锥形探针,扁平冲头和半球形探针。提议的方法在使用Rockwell探针(以半球形结束的圆锥形探针)对两种材料(铝合金和热塑性聚合物)进行微划痕测试中的应用说明了该方法的多功能性:首先,划痕力深度比例关系提供了一种确定划痕探针特征均匀函数程度的方法。其次,断裂标准可以对断裂韧性进行实验评估。通过刮擦确定的断裂韧性与公开文献中报道的值之间的良好一致性表明,所提出的方法甚至可以在更小的尺度下确定材料的断裂性能。

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