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Micro-mechanical damage model for Geomaterials behavior under indentation

机译:压痕下的岩石行为微机械损伤模型

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Rock drilling efficiency is nowadays a challenge for resource engineers. The present paper focuses on the numerical investigation of rock mass behavior under indentation characterized by various physical and microstructural properties. The numerical model is implemented to study the effects of normal percussion in rock drilling conditions. The response is predicted numerically using the multi-purpose finite element software Abaqus. The study is meant to model a previous experimental investigation. A comparison between the numerical and experimental results of indentation is performed on a limestone rock sample. The proposed model consists of an axisymmetric deformable anisotropic and a heterogeneous block indented by a regular shaped rigid body. First, an elastic behavior of materials was adopted. Afterwards, a damage based numerical model was proposed in order to take into account the damage evolution in the rock sample. Moreover, a model parameter identification procedure was performed to calibrate all necessary parameters using the simple indentation test. It has been shown that numerical model can reproduce the elastic damaged behavior of rocks, as limestone, subjected to a simple indentation mechanism during rock drilling. These results confirm the experimental data and reveal that it could be used efficiently to simulate rock damage under similar loading conditions.
机译:岩石钻井效率如今是资源工程师的挑战。本文重点介绍,压痕下岩体行为的数值研究,其特征在于各种物理和微观结构特性。实施数值模型,以研究正常打击乐在岩石钻井条件下的影响。使用多用途有限元软件ABAQU来数字地预测响应。该研究旨在模拟以前的实验调查。在石灰石岩石样品上进行压痕的数值和实验结果之间的比较。所提出的模型由轴对称可变形各向异性和由正形刚体凹入的异质块组成。首先,采用了材料的弹性行为。之后,提出了一种基于损坏的数值模型,以考虑岩石样本中的损伤演变。此外,执行模型参数识别过程以使用简单的缩进测试校准所有必要的参数。已经表明,数值模型可以再现岩石的弹性损坏行为,作为石灰石,在岩石钻井期间经受简单的压痕机制。这些结果证实了实验数据,并揭示了它可以有效地用于模拟类似的负载条件下的岩石损伤。

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