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FINITE ELEMENT ANALYSIS OF CERAMIC COATING SYSTEMS UNDER SPHERICAL INDENTATION WITH METALLIC INTERLAYER - PART II. RING CRACK ANALYSIS

机译:金属中间层 - 第二部分球形压痕下陶瓷涂层系统的有限元分析。环形裂纹分析

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Spherical indentation problems of ceramic coatings/metallic inter-layer/ductile substrate were investigated numerically by axisymmetric FEA for two typical ceramic coatings with relatively high and low elastic modulus deposited on aluminum alloy and carbon steel. The fracture mechanics of the ceramic coatings due to occurrence of surface ring cracks extending traverse coating thickness under spherical indenter were considered under the framework of linear fracture mechanics. The J-integral associated to such cracks was computed. The evolution of J-integral versus crack length and indentation depth was studied. The results show that metallic inter-layers can improve the fracture resistance of the ceramic layer under the same indentation conditions.
机译:通过轴对称FEA对铝合金和碳钢上的相对高且低弹性模量进行数值通过轴对称FEA来计算陶瓷涂层/金属层间/延展基板的球形压痕问题。在线性骨折力学框架下考虑了在球形压模下延伸横向涂层厚度延伸的表面环裂纹引起的陶瓷涂层的断裂力学。计算与这种裂缝相关的J-积分。研究了J-积分与裂缝长度和压痕深度的演变。结果表明,金属间层可以在相同的压痕条件下改善陶瓷层的断裂性。

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