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Discrete fiber reinforcement efficiency in the mechanical properties and wet-dry performance of fat clay treated with industrial sewage sludge ash

机译:工业污水污泥灰治疗脂肪粘土机械性能和湿干性能的离散纤维增强效率

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This paper presents a laboratory evaluation of the strength and durability behavior of treated clay with industrial sewage sludge ash (ISSA) and Polyvinyl alcohol (PVA) fiber. Unconfined compressive strength (UCS) and ultrasonic pulse velocity (UPV) tests were conducted on treated clay with different percentages of ISSA and short PVA fiber content after different curing period to evaluate strength properties. In this study, UPV tests were used as a non-destructive method to determine the optimum curing period. The UCS test results indicated that the ISSA inclusion caused an increase in UCS values and a decrease in the axial strain at failure, while fiber inclusion within the ISSA treated soil increases UCS and failure strain, hence decreases brittle index. A good correlation of UPV values (P-wave velocity or V-P) and UCS test results is seen by an exponential function. The microstructure of untreated and ISSA treated soil as well as the interaction between PVA fiber surface and ISSA treated soil matrix were investigated by scanning electron microscopy (SEM) tests and image processing analysis. SEM images show that soil porosity increases with the addition of ISSA and, the created scratches and formation of cement bonding on fiber surface increase the interlocking force. This study also assessed the durability of ISSA treated and fiber-reinforced soil against wetting-drying (W-D) cycles. UCS and UPV tests were performed after wetting-drying cycles for this study. Results showed that in ISSA treated soil with fiber inclusion, strength increased with an increase in W-D cycles from zero to three cycles and decreased afterward. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文提出了对具有工业污水污泥灰(ISSA)和聚乙烯醇(PVA)纤维的处理过粘土的强度和耐久性行为的实验室评价。在不同的固化期后,在处理粘土上进行了非束缚的压缩强度(UCS)和超声波脉冲速度(UPV)测试,以评估强度性能的不同百分比。在本研究中,UPV测试被用作非破坏性方法以确定最佳固化期。 UCS测试结果表明,ISSA包含引起UCS值的增加和失效时的轴向菌株的降低,而在ISSA处理的土壤中的纤维夹杂物增加了UCS和失效应变,因此降低了脆性指数。通过指数函数看到UPV值(P波速度或V-P)和UCS测试结果的良好相关性。通过扫描电子显微镜(SEM)测试和图像处理分析研究了未处理和ISSA处理土壤的微观结构以及PVA纤维表面和ISSA处理的土壤基质的相互作用。 SEM图像表明,通过添加ISSA的土壤孔隙率增加,并且在纤维表面上产生的划痕和水泥键合的形成增加了互锁力。本研究还评估了ISSA处理和纤维增强土壤耐润湿干燥(W-D)循环的耐久性。在该研究的润湿干燥循环后进行UCS和UPV测试。结果表明,在纤维夹杂物的ISSA处理的土壤中,强度增加了W-D循环从0到三个循环的增加,然后减少。 (c)2021 elestvier有限公司保留所有权利。

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