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首页> 外文期刊>American journal of applied sciences >Strength and Ductility of Randomly Distributed Palm Fibers Reinforced Silty-Sand Soils | Science Publications
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Strength and Ductility of Randomly Distributed Palm Fibers Reinforced Silty-Sand Soils | Science Publications

机译:随机分布的棕榈纤维增强粉质砂土的强度和延性科学出版物

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> This paper investigates the resultant strength and ductility behavior when randomly distributed palm fibers are used to reinforce silty-sand soils. The composite soils were tested under laboratory conditions and examined for unconfined compression strength (UCS), California Bearing Ratio (CBR) and compaction test. The results indicated that; the maximum and residual strengths, orientation of surface failures, ductility and the stress-strain relationship of the specimens were substantially affected by the inclusion of palm fibers. A significant result was the determination that the sliding failure strength controlled the failure of the specimens rather than the rupture failure strength. Overall it was found that reinforced soil using palm fibers as the primary reinforcement are beneficial engineering materials and could potentially be used more often, though additional field use and testing should be carried out. Given the current concern over the environment and greenhouse gas emissions, strengthening soil through the use of natural materials (in this case palm fibers) and the promotion of the cultivation of palm groves is one way that engineers and designers can contribute to a greener earth. Add to this the fact that the date palm is one of the most cultivated tree crops in the world with a worldwide distribution of around 100 million palms distributed in 30 countries including the Middle East, Asia, Africa, North America, Mediterranean countries and Australia in a bountiful resource that is available in many places where high technology engineering practices are either not available or too expensive. The use of the date palm for soil reinforcement means that in many areas of the world there is a readily available, effective local source of material for road foundation construction.
机译: >本文研究了使用随机分布的棕榈纤维加固粉质砂土时的强度和延性。在实验室条件下对复合土进行了测试,并进行了无侧限抗压强度(UCS),加利福尼亚承载比(CBR)和压实测试。结果表明:试样的最大和残余强度,表面破坏的方向,延展性以及试样的应力-应变关系都受到棕榈纤维的影响。一个重要的结果是确定滑动破坏强度控制了试样的破坏,而不是断裂破坏强度。总的来说,发现使用棕榈纤维作为主要增强材料的增强土壤是有益的工程材料,尽管应进行更多的现场使用和测试,但仍可能会更频繁地使用。考虑到当前对环境和温室气体排放的关注,通过使用天然材料(在这种情况下为棕榈纤维)加强土壤质量并促进种植棕榈树林是工程师和设计师为绿色地球做出贡献的一种方式。此外,椰枣是世界上种植最多的树木之一,在全世界分布约1亿棵棕榈,分布在30个国家/地区,包括中东,亚洲,非洲,北美,地中海国家和澳大利亚。一种丰富的资源,可在无法使用或过于昂贵的高科技工程实践的许多地方使用。使用枣椰子进行土壤加固意味着在世界上许多地区,都有随时可用,有效的本地道路基础建设材料来源。

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