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Characterization of dry-stack interlocking compressed earth blocks

机译:干式堆砌互锁压缩土块的表征

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摘要

Earth has been a traditional building material to construct houses in Africa. One of the most common techniques is the use of sun dried or kiln fired adobe bricks with mud mortar. Fired bricks are the main cause for deforestation in countries like Malawi. Although this technique is low-cost, the bricks vary largely in shape, strength and durability. This leads to weak houses which suffer considerable damage during floods and seismic events. One solution is the use of dry-stack masonry with stabilized interlocking compressed earth blocks (ICEB). This technology has the potential of substituting the current bricks by a more sustainable kind of block. This study was made in the context of the HiLoTec project, which focuses on houses in rural areas of developing countries. For this study, Malawi was chosen for a case study. This paper presents the experimental results of tests made with dry-stack ICEBs. Soil samples from Malawi were taken and studied. Since the experimental campaign could not be carried out in Malawi, a homogenization process of Portuguese soil was made to produce ICEBs at the University of Minho, Portugal. Then, the compression and tensile strength of the materials was determined via small cylinder samples. Subsequently, the compression and flexural strength of units were determined. Finally, tests to determine the compressive strength of both prisms and masonry wallets and to determine the initial shear strength of the dry interfaces were carried out. This work provides valuable data for low-cost eco-efficient housing
机译:地球一直是在非洲建造房屋的传统建筑材料。最常见的技术之一是将太阳晒干或窑烧的土坯砖与泥浆一起使用。在马拉维等国家,烧砖是造成森林砍伐的主要原因。尽管这种技术是低成本的,但是砖的形状,强度和耐用性差异很大。这导致房屋薄弱,在洪水和地震事件中遭受严重破坏。一种解决方案是使用带有稳定联锁压缩土块(ICEB)的干砌砖石。这项技术有潜力用一种更具可持续性的砖块替代目前的砖块。这项研究是在HiLoTec项目的背景下进行的,该项目侧重于发展中国家农村地区的房屋。在本研究中,选择了马拉维进行案例研究。本文介绍了使用干式ICEB进行测试的实验结果。采集并研究了来自马拉维的土壤样品。由于无法在马拉维进行实验,因此在葡萄牙米尼奥大学进行了葡萄牙土壤的均质化处理,以生产ICEB。然后,通过小圆筒样品确定材料的压缩和拉伸强度。随后,确定单元的抗压强度和抗弯强度。最后,进行测试以确定棱柱和砌体钱包的抗压强度并确定干燥界面的初始剪切强度。这项工作为低成本的生态高效住房提供了有价值的数据

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