Effect of Waste Bamboo Fiber Addition on Mechanical Properties of Soil
- 1 Department of Food Production and Environmental Management, Faculty of Agriculture, Iwate University, Morioka, Japan
- 2 Naigai Engineering Co., Ltd., Tokyo, Japan
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/m 2 , 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 w ere formed. Thus, it was found that the complex structure of the bamboo fiber is deeply involved in the strength of the mixed soil.
- Hejazi, S.M., Sheikhzadeh, M., Abtahi, S.M. and Zadhoush, A. (2012) A Simple Review of Soil Reinforcement by Using Natural and Synthetic Fibers. Construction and Building Materials, 30, 100-116. https://doi.org/10.1016/j.conbuildmat.2011.11.045
- Ramaswamy, S., Ahuja, M. and Krishnamoorthy, S. (1983) Behavior of Concrete Reinforced with Jute, Coir, and Bamboo Fibers. International Journal of Cement Composites and Lightweight Concrete, 5, 3-13. https://doi.org/10.1016/0262-5075(83)90044-1
- Coutts, P. and Ni, Y. (1995) Autoclaved Bamboo Pulp Fiber Reinforced Cement. Cement and Concrete Composites, 17, 99-106. https://doi.org/10.1016/0958-9465(94)00002-G
- Kalkan, E. (2013) Preparation of Scrap Tire Rubber Fiber—Silica Fume Mixtures for Modification of Clayey Soils. Applied Clay Science, 80-81, 117-125. https://doi.org/10.1016/j.clay.2013.06.014
- Anggraini, V., Asadi, A., Huat, B.B.K. and Nahazanan, H. (2015) Effect of Coir Fibers on Tensile and Compressive Strength of Lime Treated Soft Soil. Measurement, 59, 372-381. https://doi.org/10.1016/j.measurement.2014.09.059
- Ayeldeen, M. and Kitazume, M. (2017) Using Fiber and Liquid Polymer to Improve the Behaviour of Cement Stabilized Soft Clay. Geotextiles and Geomembranes, 45, 592-602. https://doi.org/10.1016/j.geotexmem.2017.05.005
- Nishida, M., Sato, K. and Fujikawa, T. (2011) Water Absorption Effect of Bamboo Flakes Contributing to Improvement of High Water Content Sediment. Proceedings of the JSCE Annual Meeting, 66, 545-546.
- Yamashita, R., Yamanaka, M., Kotake, N., Utsunomiya, N. and Miyamoto, M. (2013) Strength and Shrink Age Crack Properties of Wall Clay Reinforced by Bamboo Fiber. Geosynthetics Engineering Journal, 28, 149-154.
- Sako, K., Kitamura, R., Kawaji, T. and Yotsuda, T. (2013) Erosion Resistant Properties of Improved Soil Using Bamboo Chipsfor Erosion Prevention of Alameda in Historic Places. Journal of Disaster Mitigation for Urban Cultural Heritage, 7, 39-44.
- Otsubo, M., Sugimoto, A., Furuno, K., Tsuji, H. and Higashi, T. (2014) Resistance to Erosion of Bamboo Fiber as a Slope Greening Substrate. Science Bulletin of the Faculty of Agriculture, Kyushu University, 69, 47-54.
- Sato, K., Fujikawa, T. and Koga, C. (2014) Improved Effect of the High Water Content Clay Using the Water Absorptivity of Bamboo. Geosynthetics Engineering Journal, 29, 191-196.
- Brahmachary, T.K. and Rokonuzzaman, M. (2018) Investigation of Random Inclusion of Bamboo Fiber on Ordinary Soil and Its Effect CBR Value. International Journal of Geo-Engineering, 9, 10. https://doi.org/10.1186/s40703-018-0079-x