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Studying Shear Performance of Flax Fiber-Reinforced Clay by Triaxial Test

机译:三轴试验研究亚麻纤维增强粘土的剪切性能

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摘要

Laboratory triaxial tests were carried out to investigate the reinforcement mechanism, to study the characteristics of flax fiber-reinforced clay, and to discuss the effect on stress-strain relationship and shear strength parameters of flax fiber-reinforced clay in different flax fiber content and different confining pressure. Respectively, the ratio of fiber content to clay by weight is 0.2%, 0.4%, 0.6%, 0.8%, and 1.0%, and the confining pressure is 100 kPa, 200 kPa, and 300 kPa in triaxial test. The test results show that, the shear strength of flax fiber-reinforced clay is greater than that of pure clay. Compared with the pure clay, the shear strength of flax fiber-reinforced clay increased as the cohesion and friction increased; while the increase of the friction is relatively small, the increase of cohesion is large. The shear strength firstly increased and then reduced with the increase of flax fiber content. When the fiber content was 0.8%, the shear strength reached a peak value, and the shear strength reduced with the further increase of fiber content.
机译:进行了实验室三轴试验,以研究增强机制,研究亚麻纤维增强粘土的特点,并探讨了亚麻纤维增强粘土中亚麻纤维增强粘土的应力 - 应变关系和剪切强度参数的影响限制压力。分别,纤维含量与粘土重量的比例为0.2%,0.4%,0.6%,0.8%和1.0%,狭窄压力为100kPa,200kPa和300kPa在三轴试验中。测试结果表明,亚麻纤维增强粘土的剪切强度大于纯粘土。与纯粘土相比,亚麻纤维增强粘土的剪切强度随着凝聚力和摩擦而增加;虽然摩擦的增加相对较小,但内聚力的增加很大。剪切强度首先增加,然后随着亚麻纤维含量的增加而降低。当纤维含量为0.8%时,剪切强度达到峰值,并且剪切强度随着纤维含量的进一步增加而降低。

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