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Design of interlocking bricks for enhanced wall construction, flexibility, alignment accuracy and load bearing

机译:用于增强墙体结构,柔韧性,对准精度和承重的互锁砖设计

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摘要

The worldwide housing shortage has stimulated a search for appropriate, easy, fast and cost-effective new ways of wall construction. Among many technologies found to have promise is mortarless technology using dry-stack interlocking bricks/blocks. This thesis is about such mortarless walling technology and in particular: how to improve wall-construction flexibility, the effects of brick irregularities on wall alignment accuracy and wall behaviour (stiffness, strength) when subject to lateral forces. The flexibility of mortarless technology (MT) has been enhanced by the development of new bricks (centre-half bat and tee brick): the introduction of closer bricks led to the formation of two new bonds (patterns) namely Shokse and Lijuja bonds. It is now possible to construct more than half-brick-thick walls, to attach more than half-brickwide piers (buttresses) onto walls, and, using special bricks, to construct polygonal and curved walls using interlocking bricks. Three methods (theoretical modeling, physical experiments and computer simulation) were used to analyze the effects of brick imperfections on wall alignment accuracy. Theoretical analysis confirmed that brick moulders should concentrate on achieving parallel top and bottom faces rather than achieving true square-ness. Physical column assembly compared three brick-laying strategies namely: “random”, “reversing” and “replace”. The columns assembled using the “reversing” and “replace” strategies realized alignment improvement factors of 1.6 and 2.9 respectively over “random” strategy. The research also revealed that grooving, to prevent bricks making contact near their centre lines, improved column alignment by factor 2.13 and stiffness by factor 2.0, thus allowing construction of longer and higher walls without strengthening measures. In order to attain alignment accuracy in accordance with BS 5628-3:2005 in a dry-stack mortarless wall, this research recommends using full bricks with top and bottom surface irregularities not exceeding ±0.5mm for un-grooved bricks, and up-to ±0.9mm for grooved bricks. Further analysis was undertaken with respect to resource-use implications (cement, water, soil) of employing MT. Using MT will save 50% of wall construction cost and 50% cement consumption, which ultimately will reduce 40% of carbon emissions.
机译:全球住房短缺促使人们寻求合适,容易,快速和具有成本效益的墙体建造新方法。在发现的许多技术中,有使用无烟技术的干式叠砖/砌块技术。本论文的主题是这种无砂浆砌墙技术,尤其是:如何提高砌墙施工的灵活性,砖不规则结构在承受侧向力时对砌墙对齐精度和墙体行为(刚度,强度)的影响。通过开发新砖(中半球和三通砖),提高了无迫击炮技术(MT)的灵活性:引入更紧密的砖导致形成了两个新的债券(模式),即Shokse和Lijuja债券。现在可以建造超过半砖厚的墙,将超过一半砖宽的墩(支撑)附着到墙上,并使用特殊的砖,使用互锁砖来建造多边形和弯曲的墙。三种方法(理论建模,物理实验和计算机仿真)用于分析砖缺陷对墙面对准精度的影响。理论分析证实,砖制模具应专注于实现平行的顶面和底面,而不是真正的方形。物理色谱柱组装比较了三种砌砖策略,即“随机”,“反转”和“置换”。与“随机”策略相比,使用“反向”和“替换”策略组装的色谱柱分别实现了1.6和2.9的比对改善因子。研究还表明,为防止砖在其中心线附近接触,开槽可将立柱对齐方式提高2.13倍,将刚度提高2.0倍,从而可在不采用加强措施的情况下建造更长,更高的墙体。为了在干式无灰浆干墙中获得符合BS 5628-3:2005的对准精度,本研究建议对未开槽的砖使用顶部和底部表面不规则度不超过±0.5mm的完整砖,并且带槽砖的精度为±0.9mm。关于使用MT的资源使用影响(水泥,水,土壤)进行了进一步分析。使用MT将节省50%的墙体建设成本和50%的水泥消耗,最终将减少40%的碳排放。

著录项

  • 作者

    Kintingu Simion Hosea;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 English
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