Assessment of Flexural Strengths and Flexural Load Bearing Capacity of Bamboo Grids-Reinforced Soil Beam

ME Ole Onyia, So
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Abstract

Soil improvement techniques have become a major solution to soil related problems. Thus, this paper aims to determine the flexural strengths and flexural load bearing capacity of bamboo grids-reinforced soil beam using standard methods and experiments at 7 days, 14 days, 21 days and, 28 days curing ages. The findings of this study showed that the mean flexural strength of uniaxial bamboo grid reinforced soil beam gave 3.50 N/mm² while flexural strength of biaxial bamboo grid reinforced soil beam gave 3.86 N/mm². The result indicates that biaxial bamboo reinforced soil beam has the tendency to maximize the flexural load bearing capacity of soil beams when compared with the use of uniaxial bamboo grid orientation technique. This paper, therefore, recommends that flexural strength and flexural load bearing capacity of inorganic clays of low to medium plasticity should be improved using biaxial grid type of bamboo grid orientation technique.
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竹格栅加固土梁的抗弯强度和抗弯承载力评估
土壤改良技术已成为土壤相关问题的主要解决方案。因此,本文旨在采用标准方法,通过 7 天、14 天、21 天和 28 天固化龄期的实验,确定竹格栅加固土梁的抗弯强度和抗弯承载力。研究结果表明,单轴竹格栅加固土梁的平均抗弯强度为 3.50 牛顿/平方毫米,而双轴竹格栅加固土梁的抗弯强度为 3.86 牛顿/平方毫米。结果表明,与使用单轴竹网格定向技术相比,双轴竹网格加筋土梁具有最大限度提高土梁抗弯承载力的趋势。因此,本文建议采用双轴网格竹网格定向技术来提高中低塑性无机粘土的抗弯强度和抗弯承载力。
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