Fracture Mechanics Study of Ring Crack Initiation in Ceramics by Sphere Indentation

Kohji Ohgushi, M. Ichikawa
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引用次数: 7

Abstract

In our previous papers, we showed that the ring crack initiation strength (microfracture strength) of gas-pressure-sintered silicon nitride, evaluated by the sphere indentation method, is not related to the conventional flexural strength of the same material, using the concept of effective area based on the Weibull distribution function. In the present study, to clarify the reason for this, a model for initiation of a ring crack emanating from a surface microcrack was introduced. Using this model, the microfracture strength was discussed from the viewpoint of fracture mechanics. The dependence of the ring crack initiation load on the indenter radius was also examined. As a result, the essential difference between the microfracture and flexural strengths was well interpreted using this model.
陶瓷球形压痕引发环形裂纹的断裂力学研究
在我们之前的论文中,我们使用基于威布尔分布函数的有效面积概念,证明了用球体压痕法评估的气压烧结氮化硅的环裂纹起裂强度(微断裂强度)与相同材料的常规抗弯强度无关。在本研究中,为了澄清这一原因,引入了一个由表面微裂纹引发的环形裂纹的模型。利用该模型,从断裂力学的角度对微断裂强度进行了讨论。研究了环形裂纹起裂载荷与压头半径的关系。因此,使用该模型可以很好地解释微断裂和弯曲强度之间的本质差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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