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首页> 外文期刊>International Journal of Fracture >Subcritical crack growth and long-term strength in rock and cementitious material
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Subcritical crack growth and long-term strength in rock and cementitious material

机译:岩石和水泥质材料中的亚临界裂纹扩展和长期强度

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High-strength and ultra low-permeability concrete (HSULPC) is a strong candidate for a radioactive waste package containing transuranic radionuclides (TRU waste) for geological disposal. Knowledge of the time-dependent fracturing of HSULPC and surrounding rock mass is'essential to assess the long-term stability of such underground repositories. We have measured crack velocity in andesite and HSULPC both in air and water to examine subcritical crack growth by the Double-Torsion method. In air, the crack velocity in andesite increased when the temperature and relative humidity increased. On the other hand, the temperature and relative humidity had little effect on the crack velocity in HSULPC in air. In water, the crack velocity increased when the temperature was higher for both andesite and HSULPC. Using these experimental results, the long-term strength was estimated. It was shown that the long-term strength of HSULPC was higher than that of andesite. In air, the long-term strength for andesite was affected by the temperature and relative humidity. The long-term strength for andesite decreased when the temperature or relative humidity increased. For HSULPC, the change of the long-term strength with varying temperature or relative humidity was smaller than andesite in air. In water, the long-term strength for both materials decreased with increasing the temperature. Comparing the long-term strength of andesite and HSULPC at the same environmental conditions, it was recognized that the decrease of the long-term strength of HSULPC is smaller than that of andesite. The long-term strength in water was smaller than that in air for both materials.
机译:高强度和超低渗透率混凝土(HSULPC)是用于地质处置的含有超铀放射性核素(TRU废物)的放射性废物包的有力候选者。对HSULPC和周围岩体随时间变化的压裂知识的了解对于评估此类地下储层的长期稳定性至关重要。我们已经测量了安山岩和HSULPC在空气和水中的裂纹速度,以通过Double-Torsion方法检查亚临界裂纹的生长。在空气中,随着温度和相对湿度的增加,安山岩中的裂纹速度增加。另一方面,温度和相对湿度对空气中HSULPC的裂纹速度影响很小。在水中,安山岩和HSULPC的温度都较高时,裂纹速度会增加。使用这些实验结果,可以估算长期强度。结果表明,HSULPC的长期强度高于安山岩。在空气中,安山岩的长期强度受温度和相对湿度的影响。当温度或相对湿度增加时,安山岩的长期强度降低。对于HSULPC,随着温度或相对湿度的变化,长期强度的变化小于空气中的安山岩。在水中,两种材料的长期强度都随着温度的升高而降低。比较相同环境条件下安山岩和HSULPC的长期强度,可以认识到HSULPC的长期强度下降幅度小于安山岩。两种材料在水中的长期强度都小于在空气中的长期强度。

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