段重达,胡南,崔朝,姚顺超,李广悦.铀尾砂水性聚氨酯固化体的力学性能研究[J].南华大学学报(自然科学版),2023,(5):15~19.[DUAN Chongda,HU Nan,CUI Zhao,YAO Shunchao,LI Guangyue.Experimental Study on Mechanical Characteristics of Uranium Tailings Solidified by Waterborne Polyurethane Complex[J].Journal of University of South China(Science and Technology),2023,(5):15~19.]
铀尾砂水性聚氨酯固化体的力学性能研究
Experimental Study on Mechanical Characteristics of Uranium Tailings Solidified by Waterborne Polyurethane Complex
投稿时间:2023-03-15  
DOI:10.19431/j.cnki. 1673-0062.2023.05.003
中文关键词:  水性聚氨酯  三轴压缩试验  应力应变
英文关键词:waterborne polyurethane  triaxial compression tests  stress-strain behavior
基金项目:国家自然科学基金项目(U20A20267)
作者单位E-mail
段重达 南华大学 资源环境与安全工程学院,湖南 衡阳 421001 duanchongda123@163.com 
胡南 南华大学 资源环境与安全工程学院,湖南 衡阳 421001  
崔朝 南华大学 资源环境与安全工程学院,湖南 衡阳 421001  
姚顺超 南华大学 资源环境与安全工程学院,湖南 衡阳 421001  
李广悦 南华大学 资源环境与安全工程学院,湖南 衡阳 421001  
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中文摘要:
      为研究水性聚氨酯对铀尾砂的固化效果,开展了不同质量比的水性聚氨酯固化铀尾砂试验,采用三轴压缩试验研究了水性聚氨酯质量比对铀尾砂试样的应力-应变行为、破坏强度、抗剪强度参数的影响,并采用扫描电子显微镜表征了固化前后铀尾砂的微观特征。结果表明,当水性聚氨酯的质量比为5%~10%时,随着围压的增加,试样的应力-应变曲线由软化型向硬化型转变;当水性聚氨酯的质量比为15%时,皆为强软化型。随着水性聚氨酯质量比的增加,试样的破坏强度增大,内摩擦角下降,内聚力提高。扫描电子显微镜表征表明水性聚氨酯通过充填到尾砂颗粒间的孔隙中,并将其包裹和黏结在一起,由此形成空间网状结构,提高了试样的力学性能。
英文摘要:
      To verify the solidification effect of waterborne polyurethane on uranium tailings, solidification experiments of uranium tailings using waterborne polyurethane with different mass ratio were carried out. The effects of the mass ratio of waterborne polyurethane to uranium tailings on the stress-strain behavior, failure strength and shear strength parameters of uranium tailings samples were investigated through triaxial compression tests. Furthermore, scanning electron microscope was used to characterize microscopic characteristics of uranium tailings before and after solidification. Experimental results showed that for the mass ratios of waterborne polyurethane to uranium tailings of 5%~10%, the stress-strain behavior of the solidified sample changed from strain softening to strain hardening with the increase of confining pressure; at a mass ratio of waterborne polyurethane to uranium tailings of 15%, the stress-strain behavior of the solidified sample exhibited strong strain softening. With the increase of the mass ratio of waterborne polyurethane to uranium tailings, the failure strength of the sample increased, the internal friction angle decreased, and the cohesion increased. Scanning electron microscope results showed that waterborne polyurethane was filled into the pores between tailings particles which were wrapped and bonded together. Therefore, the spatial reticular structure was formed, resulting in the improvement of the mechanical properties of the samples solidified by waterborne polyurethane.
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