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Ultrasonic, molecular and mechanical testing diagnostics in natural fibre reinforced, polymer-stabilised earth blocks

机译:天然纤维增强,聚合物稳定的土块中的超声波,分子和机械测试诊断

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摘要

The aim of this research study was to evaluate the influence of utilising natural polymers as a form of soil stabilization, in order to assess their potential for use in building applications. Mixtures were stabilized with a natural polymer (alginate) and reinforced with wool fibres in order to improve the overall compressive and flexural strength of a series of composite materials. Ultrasonic pulse velocity (UPV) and mechanical strength testing techniques were then used to measure the porous properties of the manufactured natural polymer-soil composites, which were formed into earth blocks. Mechanical tests were carried out for three different clays which showed that the polymer increased the mechanical resistance of the samples to varying degrees, depending on the plasticity index of each soil. Variation in soil grain size distributions and Atterberg limits were assessed and chemical compositions were studied and compared. X-ray diffraction (XRD), X-ray fluorescence spectroscopy (XRF), and energy dispersive X-ray fluorescence (EDXRF) techniques were all used in conjunction with qualitative identification of the aggregates. Ultrasonic wave propagation was found to be a useful technique for assisting in the determination of soil shrinkage characteristics and fibre-soil adherence capacity and UPV results correlated well with the measured mechanical properties.
机译:这项研究的目的是评估利用天然聚合物作为土壤稳定剂的影响,以评估其在建筑应用中的潜力。混合物用天然聚合物(藻酸盐)稳定,并用羊毛纤维增强,以提高一系列复合材料的整体压缩和弯曲强度。然后,使用超声波脉冲速度(UPV)和机械强度测试技术来测量制成的天然聚合物-土壤复合材料的多孔性能,这些复合材料形成了土块。对三种不同的粘土进行了机械测试,结果表明该聚合物根据每种土壤的可塑性指数不同程度地提高了样品的机械强度。评估了土壤粒度分布和阿特伯格极限的变化,并对化学成分进行了研究和比较。 X射线衍射(XRD),X射线荧光光谱(XRF)和能量色散X射线荧光(EDXRF)技术均与聚集体的定性鉴定结合使用。超声波传播被发现是有助于确定土壤收缩特性和纤维-土壤粘附能力的有用技术,而UPV结果与所测量的机械性能密切相关。

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