Effect of Waste Bamboo Fiber Addition on Mechanical Properties of Soil

Motohei Kanayama, S. Kawamura
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引用次数: 6

Abstract

For soil improvement, a method using plant fiber has been used since ancient times. In recent years, the construction method using plant fiber has attracted attention as a ground improvement technology with less environmental load. In this work, the soil improvement effect using waste bamboo fiber was experimentally examined. The liquid limit and plastic limit of the mixed soil tended to increase with increasing bamboo fiber content and there was no change in the plasticity index of the mixed soil by the difference of bamboo fiber content. As a result from the compaction test and unconfined compression test, it was revealed that mixing of bamboo fiber resulted in a reduction of soil material required for construction and increasing in strength. The maximum compressive stress of the bamboo fiber mixed soil at the mixing ratio of 0%, 1%, 3% and 5% were 115, 108, 130 and 152 kN/m2, respectively. As the soil with fiber showed the lower stiffness and higher strength than that without fiber in the dry region, it can be judged that the addition of fiber brought ductility to the soil. And it was found that the decrease in the stiffness of the specimen due to the increase of water content was suppressed by the addition of the bamboo fiber. From the results of the observation with the digital microscope, it was observed that the two-layer structure consisting of the main relatively thick fibrous structure and the secondary capillary fibrous structure were formed. Thus, it was found that the complex structure of the bamboo fiber is deeply involved in the strength of the mixed soil.
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废竹纤维添加对土壤力学性能的影响
为了改良土壤,自古以来就使用植物纤维的方法。近年来,植物纤维作为一种环境负荷较小的地基改造技术受到了广泛的关注。本文对废竹纤维的土壤改良效果进行了试验研究。随着竹纤维含量的增加,混合土的液限和塑性限均有增加的趋势,而竹纤维含量的不同对混合土的塑性指数没有影响。压实试验和无侧限压缩试验结果表明,竹纤维的掺入减少了施工所需的土料,提高了强度。竹纤维混合土在掺量为0%、1%、3%和5%时的最大压应力分别为115、108、130和152 kN/m2。在干旱区,添加纤维的土体刚度低于未添加纤维的土体,强度高于未添加纤维的土体,可以判断纤维的添加给土体带来了延性。结果表明,竹纤维的掺入抑制了由于含水率增加而引起的试件刚度下降的趋势。从数码显微镜的观察结果来看,形成了由较厚的主纤维结构和次级毛细纤维结构组成的两层结构。由此发现,竹纤维的复杂结构与混合土的强度密切相关。
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