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Experimental Study on Dynamic Mechanical Properties and Energy Evolution Characteristics of Limestone Specimens Subjected to High Temperature

机译:高温耐石灰石试样动态力学性能和能量演化特性的实验研究

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摘要

To study the effect of high temperature on the dynamic mechanical properties and energy evolution characteristic of limestone specimens, the basic physical parameters of limestone specimens that cool naturally after experiencing high temperatures of room temperature (25°C), 200°C, 400°C, and 600°C were tested. In addition, compression tests with 6 impact loading conditions were conducted using SHPB device. The changes of basic physical properties of limestone before and after temperature were analyzed, and the relationship among dynamic characteristic parameters, energy evolution characteristics, and temperature was discussed. Test results indicated that, with the increase of temperature, the surface color of specimen changed from gray-black to gray-white, and its volume increased, while the mass, density, and P-wave velocity of specimen decreased. The dynamic compressive stress-strain curve of limestone specimens after different high-temperature effects could be divided into three stages: elasticity stage, yield stage, and failure stage. Failure mode of specimen was in the form of spalling axial splitting, and the degree of fragmentation increased with the increase of the temperature and incident energy. With the increase of the temperature, the reflection energy, the absorption energy, the dynamic compressive strength, and dynamic elastic modulus of rock decreased, while its transmission energy, the dynamic peak strain, and strain rate increased. The dynamic compressive strength, dynamic elastic modulus, dynamic strain, and strain rate of limestone specimens all increased with the increase of incident energy, showing a quadratic function relationship.
机译:为了研究高温对石灰石标本动态力学性能和能量演化特性的影响,在经历高温的室温(25°C),200°C,400°C后,自然凉爽的石灰石标本的基本物理参数和600°C进行测试。此外,使用SHPB器件进行具有6个冲击负载条件的压缩试验。分析了温度前后石灰石的基本物理性质的变化,并讨论了动态特征参数,能量进化特性和温度之间的关系。测试结果表明,随着温度的增加,样品的表面颜色从灰黑为灰白色变为灰白色,其体积增加,而样品的质量,密度和P波速度降低。在不同高温效应后的石灰石样品的动态压缩应力 - 应变曲线可分为三个阶段:弹性级,产量阶段和失效阶段。试样的失效模式是剥落轴向分裂的形式,并且随着温度和入射能的增加而增加的碎片程度增加。随着温度的增加,反射能量,吸收能量,动态抗压强度和岩石的动态弹性模量减少,而其传输能量,动态峰值应变和应变速率增加。随着事件能量的增加,耐石灰石标本的动态抗压强度,动态弹性模量,动态应变和应变率随,显示出二次函数关系。

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