金解放, 余雄, 钟依禄. 不同含水率红砂岩冲击过程中的能量耗散特性[J]. 有色金属科学与工程, 2021, 12(5): 69-80. DOI: 10.13264/j.cnki.ysjskx.2021.05.009
引用本文: 金解放, 余雄, 钟依禄. 不同含水率红砂岩冲击过程中的能量耗散特性[J]. 有色金属科学与工程, 2021, 12(5): 69-80. DOI: 10.13264/j.cnki.ysjskx.2021.05.009
JIN Jiefang, YU Xiong, ZHONG Yilu. Energy dissipation characteristics of red sandstone with different water content during impact loading[J]. Nonferrous Metals Science and Engineering, 2021, 12(5): 69-80. DOI: 10.13264/j.cnki.ysjskx.2021.05.009
Citation: JIN Jiefang, YU Xiong, ZHONG Yilu. Energy dissipation characteristics of red sandstone with different water content during impact loading[J]. Nonferrous Metals Science and Engineering, 2021, 12(5): 69-80. DOI: 10.13264/j.cnki.ysjskx.2021.05.009

不同含水率红砂岩冲击过程中的能量耗散特性

Energy dissipation characteristics of red sandstone with different water content during impact loading

  • 摘要: 地下岩体工程普遍处于不同水环境中,含水率成为影响工程岩体动态力学响应特性的重要因素,严重制约着其安全稳定性。选用红砂岩制备4种含水率试件,采用SHPB试验系统进行相同冲击速度的冲击试验。在分析红砂岩杨氏模量与含水率关系的基础上,基于能量计算方法,分别计算不同含水率红砂岩的总输入应变能、可释放弹性应变能和耗散能。研究3种能量随时间和应变的变化规律,并应用3种能量演化进行岩石微裂纹扩展和破坏判定以及损伤特性分析。结果表明,红砂岩的杨氏模量、起裂时间和破坏时间均随含水率的增加先减小后趋于平缓。随着含水率的增加,各能量演化阶段的起始应变先增大后减小,破坏(卸载)阶段起点处耗散能与总应变能的比值先上升后下降。红砂岩在时间尺度和应变尺度下的损伤累积速率随含水率的增加而增加。

     

    Abstract: Underground rock engineering is mostly in different water environments. Water content has become an important factor affecting the dynamic mechanical response characteristics of engineering rock mass, which seriously threatens its safety and stability. The red sandstone was used to prepare specimens with four water content, and the SHPB test system was used to conduct the impact test with the same impact velocity. On the premise of analyzing the relationship between the Young's modulus of red sandstone and water content, the total input strain energy, releasable elastic strain energy and dissipated energy of red sandstone with different water content were calculated, respectively by energy calculation. The evolution of three kinds of energy with time and strain were studied to judge the initial time of growth of microcracks and failure of rocks, and analyze the damage characteristics. The results showed that the Young's modulus, crack initiation time and failure time of red sandstone decreased first and then leveled off with the increase of water content. With the increase of water content, the initial strain of each energy evolution stage first increased and then decreased, and the ratio of dissipation energy to total strain energy increased first and then decreased at the beginning of the failure(unloading) stage. The damage accumulation rate of red sandstone increased in time scale and strain scale with the increase of water content.

     

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