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首页> 外文期刊>Advances in civil engineering >Determining Tensile Strength of Rock by the Direct Tensile, Brazilian Splitting, and Three-Point Bending Methods: A Comparative Study
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Determining Tensile Strength of Rock by the Direct Tensile, Brazilian Splitting, and Three-Point Bending Methods: A Comparative Study

机译:通过直接拉伸,巴西分裂和三点弯曲方法确定岩石的拉伸强度:比较研究

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To accurately obtain the tensile strength of rock and fully understand the evolution process of rock failure is one of the key issues to the research of rock mechanics theories and rock mass engineering applications. Using direct tensile, Brazilian splitting, and three-point bending test methods, we performed indoor and numerical simulation experiments on marble, granite, and diabase and investigated the tensile strength and damage evolution process of several typical rocks in the three different tests. Our experiments demonstrate that (1) the strength is about 10% greater in the Brazilian splitting than in the direct tensile, while the tensile modulus is lower; it is the highest in the three-point bending, which is actually subjected to the bending moment and suggested as one of the indexes to evaluate the tensile strength of rock; (2) the strength in splitting tests is strikingly different, while the strain law is basically similar; the direct tensile test with precut slits is more attainable than that with no-cut slits, with an uninfluenced strength; (3) the failure modes of rocks using different methods are featured by different lithology, while their final modes are basically the same under the same method; (4) PFC and RFPA numerical simulation tests are effective to analyze the internal crack multiplication and acoustic emission changes in the rock as well as the damage evolution process of rock in different tests.
机译:为了准确地获得岩石的拉伸强度,充分了解岩石破坏的演化过程是岩石力学理论和岩石群体应用研究的关键问题之一。采用直接拉伸,巴西分裂和三点弯曲试验方法,我们在大理石,花岗岩和玻璃浆化上进行室内和数值模拟实验,并研究了三种不同测试中几种典型岩石的拉伸强度和损伤演化过程。我们的实验表明,(1)巴西分裂的强度大约在直接拉伸中大约10%,而拉伸模量较低;它是三点弯曲中的最高,其实际上经受弯矩,并被建议为评估岩石拉伸强度的指标之一; (2)分裂试验中的强度尖锐地不同,而应变法基本相似;具有重生狭缝的直接拉伸试验比具有无切割狭缝的狭缝更可达,具有不受影响的强度; (3)使用不同方法的岩石的故障模式由不同的岩性特征,而它们的最终模式基本相同的方法基本相同; (4)PFC和RFPA数值模拟试验有效分析岩石内的内部裂缝倍增和声发射变化以及岩石中的损伤进化过程。

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