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A Probabilistic Approach to Investigate the Size and Boundary Condition Effects on the Fracture Response of Brittle Materials Loaded in Diametral Compression

机译:研究直径压缩条件下脆性材料的尺寸和边界条件对脆性材料断裂响应影响的概率方法

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The focus in this work is toward an investigation of the fracture response of brittle materials with different specimen size loaded in diametral compression using different boundary conditions. The compacted zone underneath the loading points is assumed to be limited and only responsible for the load transition to the rest of the material. Therefore, the theory of elasticity is used to define the stress state within a circular specimen. A tensile failure criterion is used, and the final load capacity is related to the formation of a subsurface crack initiated in a probabilistic manner in a region in the vicinity of the loaded diameter of the specimen. This process is described by Weibull theory, and it is assumed here that the growth of the subsurface crack occurs in an unstable manner. Therefore, the assumption in Weibull theory that the final failure occurs as soon as a macroscopic fracture initiates from a microcrack is fulfilled. The concept of disk effective volume used in Weibull size effect is presented in a convenient way that facilitates the application of the model to transfer the tensile strength obtained from different methods such as three point bending and Brazilian test. The experimental results for Brazilian test on a selected hard rock are taken from the literature and a fairly close agreement is obtained with the model predictions.
机译:这项工作的重点是研究在不同的边界条件下,在径向压缩下加载不同试样尺寸的脆性材料的断裂响应。假定载荷点下方的压实区域是有限的,并且仅负责载荷向其余材料的过渡。因此,弹性理论用于定义圆形试样内的应力状态。使用拉伸破坏准则,并且最终载荷能力与在试样的载荷直径附近的区域中以概率方式引发的地下裂纹的形成有关。威布尔理论描述了该过程,在此假定地下裂纹的扩展以不稳定的方式发生。因此,满足了威布尔理论中的假设,即一旦从微裂纹开始宏观断裂,就将发生最终破坏。威布尔尺寸效应中使用的圆盘有效体积的概念以一种方便的方式提出,它有助于模型的应用,以传递通过不同方法(例如三点弯曲和巴西测试)获得的拉伸强度。巴西对选定硬岩进行测试的实验结果取自文献,并与模型预测获得了相当接近的一致性。

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