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NUMERICAL ANALYSIS OF THE INFLUENCE OF SAMPLE STIFFNESS AND PLATE SHAPE IN THE BRAZILIAN TEST

机译:样品刚度和板形对巴西试验影响的数值分析

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Due to the heterogeneity of rocks, their tensile strength is around 10% of their compressive strength, which means that breakage is mainly caused by tensile stress. The measure of tensile stress is very difficult due to rock fragility, so it has usually been measured by indirect measurement methods , including the Brazilian test. However, recent works indicate that the tensile strength values obtained through the Brazilian test must be increased by almost 26%. To understand this divergence, indirect tensile tests have been monitored. The aim is to know the material deformation and load increase by means of stepwise regression. Stress fields in slightly deformed samples are analyzed and modeled (3D finite differences) with loads applied on flat and curved plates and different Young's modulus. Finally, the results are analyzed and compared with strength values reported using Timoshenko theory and Hondros' approximation.
机译:由于岩石的非均质性,其抗拉强度约为抗压强度的10%,这意味着破损主要是由拉应力引起的。由于岩石易碎,拉伸应力的测量非常困难,因此通常通过间接测量方法(包括巴西试验)进行测量。但是,最近的工作表明,通过巴西试验获得的抗拉强度值必须提高近26%。为了理解这种差异,已经监测了间接拉伸试验。目的是通过逐步回归来了解材料变形和载荷增加。对轻微变形的样品中的应力场进行分析和建模(3D有限差分),并施加在平板和弯曲板上的载荷以及不同的杨氏模量。最后,分析结果并将其与使用Timoshenko理论和Hondros近似值报告的强度值进行比较。

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