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Effect of Polypropylene Fiber Length on the Flexural and Compressive Strength of Compressed Stabilized Earth Blocks

机译:聚丙烯纤维长度对压缩稳定土块抗折强度和抗压强度的影响

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Earthen masonry is generally brittle, weak and poor in damage resilience. There is historic evidence that natural fibers such as straw and horsehair have been used to reinforce earthen masonry to prevent desiccation cracks and improve tensile strength. However, fibers have also been known to negatively affect mechanical properties such as compressive strength (an important quality control parameter for load bearing masonry) by creating voids and lowering density. This paper reports on findings of a study directed at investigating the feasibility of avoiding such problems in compressed and stabilized earth blocks through optimizing the fiber length when using soil from Newberry, Florida. Standard polypropylene fibers were selected for the study. The two different lengths of fibers studied were 54 mm and 27 mm. The test results showed a general improvement in compressive strength of the fiber reinforced matrices compared to the unreinforced ones. While an improvement in modulus of rupture (MOR) was observed for matrices reinforced with 54 mm fibers, results varied for the other fiber-reinforced matrices. An improvement in post-initial crack behavior was observed for all fiber-reinforced matrices compared to the unreinforced ones. The 54 mm fibers yielded the best results based on the influence on MOR, compressive strength, and deformability compared to the other matrices.
机译:土石砌通常是脆性的,脆弱的并且抗破坏性差。历史上有证据表明,天然纤维(如稻草和马毛)已用于加固土石,以​​防止干燥裂缝并提高抗拉强度。然而,还已知纤维会通过产生空隙和降低密度而对诸如抗压强度(承重砌体的重要质量控制参数)之类的机械性能产生负面影响。本文报告了一项研究结果,该研究旨在调查在使用佛罗里达州纽伯里市的土壤时,通过优化纤维长度来避免在压缩和稳定的土块中避免此类问题的可行性。选择标准聚丙烯纤维进行研究。研究的两种不同长度的纤维分别为54毫米和27毫米。测试结果表明,与未增强的相比,纤维增强的矩阵的抗压强度总体上有所提高。虽然观察到54毫米纤维增强的矩阵的断裂模量(MOR)有所改善,但其他纤维增强的矩阵的结果却有所不同。与未增强的纤维增强基体相比,所有纤维增强的基体的初始裂纹后行为均得到改善。与其他基质相比,基于对MOR的影响,抗压强度和可变形性,54 mm纤维产生了最佳结果。

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