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MLPS透明土强度时效特性的试验研究

Experimental Study on the Time-Dependent Characteristics of MLPS Transparent Soil Strength.

作者信息

Que Xinzhe, Jin Zhao, Hou Yixuan, Zhou Yongchao, Zhang Yiping

机构信息

College of Civil Engineering and Architecture, Zhejiang University, 866 Yuhangtang Rd., Hangzhou 310058, China.

出版信息

Materials (Basel). 2022 Jul 18;15(14):4990. doi: 10.3390/ma15144990.

Abstract

The time-dependent characteristics of transparent soil strength, composed of magnesium lithium phyllosilicate, is important for applying a thixotropic clay surrogate. The gas injection method was employed to obtain the strength, represented as cracking pressure, which was then correlated to variables including rest time, disturbance time, and recovery time. Three concentrations (3, 4, and 5%) were tested. The results show that the strength was directly proportional to the rest time, recovery time, and concentration while the disturbance time reversed. The calculated limit strengths for 3%, 4%, and 5% transparent soils were 3.831 kPa, 8.849 kPa, and 12.048 kPa, respectively. Experimental data also showed that the residual strength for higher concentration transparent soil was more significant than the lower ones. The elastic property immediately generated partial strength recovery after disturbance, while the viscosity property resulted in a slow recovery stage similar to the rest stage. The strength recovery rate was also sensitive to concentration. Furthermore, the strength with 3%, 4%, and 5% concentrations could regain limit values after sufficient recovery, which were calculated as 4.303 kPa, 8.255 kPa, and 14.884 kPa, respectively.

摘要

由镁锂层状硅酸盐组成的透明土强度的时变特性对于应用触变黏土替代物很重要。采用气体注入法获得强度,以开裂压力表示,然后将其与包括静置时间、扰动时间和恢复时间在内的变量相关联。测试了三种浓度(3%、4%和5%)。结果表明,强度与静置时间、恢复时间和浓度成正比,而与扰动时间成反比。3%、4%和5%透明土的计算极限强度分别为3.831 kPa、8.849 kPa和12.048 kPa。实验数据还表明,较高浓度透明土的残余强度比较低浓度的更显著。弹性性质在扰动后立即产生部分强度恢复,而黏性性质导致类似于静置阶段的缓慢恢复阶段。强度恢复率也对浓度敏感。此外,3%、4%和5%浓度的强度在充分恢复后可重新获得极限值,分别计算为4.303 kPa、8.255 kPa和14.884 kPa。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce68/9317852/28deba0b9d7c/materials-15-04990-g001.jpg

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