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Study on energy properties and failure behaviors of heat-treated granite under static and dynamic compression

机译:静态压缩下热处理花岗岩能量性能和失效行为研究

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摘要

The material testing machine and the split Hopkinson pressure bar (SHPB) were adopted, respectively, to conduct the static and dynamic compression tests on granite specimens heat treated by different temperatures. The effects of strain rate and heat-treatment temperature on the mechanism of energy evolution of the specimen during deformation and failure process were studied. The results show a significant strain rate effect on the granite, with the energy dissipation density increasing with increasing impact velocity (or strain rate), regardless of the treatment temperature. The specimens heat treated at 300 degrees C and 700 degrees C have the minimum and maximum energy dissipation densities, respectively. The specimen in the SHPB tests easily broke into pieces or even powder; while under static compression, only macroscopic fracture surfaces and spalling phenomenon on the specimen were detected. The energy dissipation density is inversely proportional to the compressive strength of the specimen. The rate of energy dissipation change is defined, which can be used to identify the stages in the deformation process of rock and to determine the position of the failure point in the stress-strain curve. For both the dynamic and static compression tests, the value of energy utilization ratio is relatively low, with a maximum value of about 35%.
机译:材料试验机和分裂霍普金森压力棒(SHPB)分别采用,进行不同温度处理的花岗岩试样上的静态和动态压缩试验。研究了应变率和热处理温度对变形及破坏过程中标本能量演化机理的影响。结果对花岗岩具有显着的应变速率效应,随着耐冲击速度(或应变速率),不管治疗温度如何,都随能量耗散密度增加。在300摄氏度和700℃下处理的试样热分别具有最小和最大的能量耗散密度。 SHPB测试中的样本易于折成碎片甚至粉末;虽然在静态压缩下,但检测到样本上的宏观骨折表面和剥落现象。能量耗散密度与样品的抗压强度成反比。定义能量耗散变化率,可用于识别岩石变形过程中的阶段,并确定应力 - 应变曲线中的故障点的位置。对于动态和静态压缩测试,能量利用率的值相对较低,最大值为约35%。

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