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Comparison of compressive and splitting tensile strength of autoclaved aerated concrete (AAC) containing water hyacinth and polypropylene fibre subjected to elevated temperatures

机译:含有水葫芦和聚丙烯纤维的高温高压加气混凝土(AAC)的压缩和抗张拉伸强度在高温下的比较

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This paper described the results of an extensive experimental study on the comparative between compressive and splitting tensile behavior of autoclaved aerated concrete (AAC) containing water hyacinth fibre (WHF) with AAC mixed with polypropylene (PP) fibre. The specimens of AAC-WHF and the AAC-PP were subjected to elevated temperatures (100, 200, 400, 800 and 1000 A degrees C). Test results indicated that an optimum water hyacinth and PP fibre dosage was at 0.5 and 0.75 % by volume respectively. The maximum residual in compressive strength and the splitting tensile strength of AAC-WHF and AAC-PP were 0.43 and 0.16 N/mm(2) and 0.51 and 0.18 N/mm(2) respectively. In addition, the loss in residual strength of AAC mixed PP fibre was slower than AAC mixed WHF. The splitting tensile strength of AACs was more sensitive to high temperatures than the compressive strength. A severe strength loss was observed for all of the AAC after exposure to 800 A degrees C. Based on the test results, it can be concluded that the addition of PP fibers can significantly promote the residue mechanical properties of AAC during heating.
机译:本文描述了一项广泛的实验研究结果,比较了包含水葫芦纤维(WHF)和AAC与聚丙烯(PP)纤维的高压灭菌加气混凝土(AAC)的压缩和劈裂拉伸性能。将AAC-WHF和AAC-PP的样品置于高温下(100、200、400、800和1000 A摄氏度)。试验结果表明,最佳的水葫芦和PP纤维的用量分别为0.5和0.75%(体积)。 AAC-WHF和AAC-PP的最大抗压强度残余强度和劈裂抗拉强度分别为0.43和0.16 N / mm(2)和0.51和0.18 N / mm(2)。此外,AAC混合PP纤维的残余强度损失比AAC混合WHF慢。 AAC的劈裂抗张强度比抗压强度对高温更敏感。暴露于800 A的温度下,所有AAC均观察到严重的强度损失。基于测试结果,可以得出结论,添加PP纤维可以显着提高加热过程中AAC的残余机械性能。

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