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Testing Method for Determination of Microscopic Fracture Toughness for Rock Materials

机译:测定岩石材料微观断裂韧性的测试方法

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The fracture behavior of rocks is known to depend on the microstructures of the rocks: the distribution and orientation of the microcracks, and the type, size, and shape of mineral grains. To explain quantitatively the effect of the microstructures on the fracture of rocks, the determination of the fracture toughness of grain and grain boundaries, namely, the microscopic fracture toughness (MFT), is necessary. The authors developed a testing method for determination of MFT for rock materials. A microsized specimen of a cantilever beam type with dimensions of 10 by 10 by 50 mu m was used in this testing method, and we built a special testing machine for this specimen. Microsized specimens were made within grains of Iksan granite by Focused Ion Beam machining, and the MFT of its constituents-plagioclase, alkali feldspar, and quartz-was determined using this testing method at room temperature. The MFT varied widely and the results are discussed based on the mineralogical knowledge. This testing method will be helpful to more accurately interpret the fracture behavior.
机译:已知岩石的断裂行为取决于岩石的微结构:微裂纹的分布和方向,以及矿物晶粒的类型,大小和形状。为了定量解释微观结构对岩石断裂的影响,必须确定晶粒和晶界的断裂韧性,即微观断裂韧性(MFT)。作者开发了一种测定岩石材料MFT的测试方法。在此测试方法中,使用了尺寸为10 x 10 x 50μm的悬臂梁式微型样品,我们为此样品建造了专用的测试机。通过聚焦离子束加工在益山花岗岩的晶粒内制作了微型试样,并在室温下使用该测试方法测定了其成分(斜长石,碱长石和石英)的MFT。 MFT变化很大,并根据矿物学知识讨论了结果。这种测试方法将有助于更准确地解释断裂行为。

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