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Effect of Bagasse Fiber on the Properties of Compressed Cement Stabilized Earth Blocks

机译:Bagasse纤维对压缩水泥稳定地球块性能的影响

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Concern and interest about the environment and ecologic systems have promoted the usage of earth as a construction material. Technology advancement has resulted in the evolution of old adobe and cob into compressed stabilized earth blocks (CSEBs). Compressed stabilized earth blocks are prepared by compressing the soil-stabilizer mixture at a particular stress. In order to accomplish the required strength, cement has been used in a regular basis as stabilizing agent, at proportions that are still harmful to the environment. CSEB blocks have various advantages related to cost reduction, energy efficiency and environmental friendly and therefore, it is of interest to find means to reduce the amount of cement used in their construction without affecting its dry strength and durability. In this study, natural fibers were used along with lower proportions of cement than those commonly used in practice and varying fine content in the soil to assess its effect on the dry strength and durability of the blocks. Blocks were compacted with 10MPa stress and prepared by using 7%, 5% and 3% cement along with varying fiber content ranging from 0.25% to 2%. The effect of fine content, cement and fibers on strength and durability of the natural fiber-reinforced blocks was studied. Sand/clay fractions of a native soil from the Phoenix area were used to fabricate the blocks. Preliminary results indicate that the compressive strength reaches a maximum value for blocks with 30% fine content; blocks with 5% cement withstand the durability test; an increase in fiber content decreases the strength of the material; and finally, the soil-cement loss was minimal for blocks with 50% fine content.
机译:对环境和生态系统的关注和兴趣促进了地球作为建筑材料。技术进步导致旧土坯和COB的演变为压缩稳定的地球块(CSEBS)。通过在特定应力下压缩土壤稳定剂混合物来制备压缩稳定的接地块。为了实现所需的强度,水泥已定期使用作为稳定剂,以仍然对环境有害的比例。 CSEB块具有与成本降低,能源效率和环境友好相关的各种优点,因此,找到减少其结构中使用的水泥量的手段感兴趣,而不会影响其干强度和耐用性。在该研究中,使用较低的水泥比例使用自然纤维,而不是实践中常用的那些,并在土壤中改变细细含量以评估其对块的干强度和耐久性的影响。块用10MPa应力压制,并通过使用7%,5%和3%水泥制备,以及不同的纤维含量为0.25%至2%。研究了细含量,水泥和纤维对天然纤维增强块的强度和耐久性的影响。来自凤凰区的天然土壤的砂/粘土级分用于制造块。初步结果表明,压缩强度达到30%细含量的块的最大值;具有5%水泥的块可承受耐用性测试;纤维含量的增加降低了材料的强度;最后,对于具有50%细含量的嵌段,土壤 - 水泥损失最小。

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