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Experimental Study on the Thermal Damage Characteristics of Limestone and Underlying Mechanism

机译:石灰石热损伤特征及其机理的实验研究

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摘要

This work discusses an experimental investigation on the thermal damage characteristics of limestone and underlying mechanism. Cylindrical rock samples were heated to a specific temperature level of 25, 100, 200, 300, 400, 500, 600, 700, 800, and 900 A degrees C. Then the thermal damage evolution equation was established based on the experimental results and the characteristics of thermal damage were analyzed. Last, possible mechanisms for the observed thermo-physical and mechanical response are discussed. The results show that with the increase of temperature in the tested range of temperature, the P-wave velocity, peak compressive strength and elastic modulus decrease, but the peak strain increases; the damage factors increase faster in 200-600 A degrees C; the development of high-temperature-induced cracks conforms to the dislocation theory; the decomposition of magnesium carbonate and dolomite is the main reaction in the tested temperature range.
机译:这项工作讨论了对石灰石的热损伤特征及其潜在机理的实验研究。将圆柱形岩石样品加热到25、100、200、300、400、500、600、700、800和900 A的特定温度水平。然后根据实验结果和分析了热损伤的特征。最后,讨论了观察到的热物理和机械响应的可能机理。结果表明,在试验温度范围内,随着温度的升高,纵波速度,峰值抗压强度和弹性模量均减小,但峰值应变增大。损伤因子在200-600 A摄氏度下增长更快;高温裂纹的发展符合位错理论。在测试温度范围内,碳酸镁和白云石的分解是主要反应。

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