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Finite element modelling approach to determine optimum dimensions for interlocking concrete blocks used for road paving

机译:有限元建模方法确定用于道路铺路的互锁混凝土块的最优尺寸

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Interlocking concrete block paving (ICBP) is one of the foremost construction methods used in most of the developing countries due to its economic benefits. Although it has emerged as a cost-effective paving material, it is yet being developing as a full-fledged construction technique. The aim of this study was to develop a finite element modelling (FEM) approach to determine optimum dimensions for concrete blocks and to evaluate the deflections and stresses induced in pavements with the application of loads. A three-dimensional FEM was built using the ANSYS FEM software to analyse pavements with different block shapes and laying patterns. Uni 3 block in a herringbone bond pattern induced the lowest deflections and stresses, and therefore the dimensions of Uni 3 block were considered as the optimum dimensions in this analysis. Based on that, a new block shape which incorporated the same behaviour was proposed. Angles 110 degrees and 100 degrees were recommended instead of 137 degrees for the uni-style block shape. Furthermore, the stress and deflection distributions observed in the pavement for a change in the wheel wander indicated significant variations in the stresses when the wheel wander was closer to the pavement edge.
机译:互锁混凝土块铺路(ICBP)是由于其经济效益,大多数发展中国家所使用的最重要的建筑方法之一。虽然它被出现为一种经济高效的铺路材料,但它尚未作为全成熟的施工技术开发。本研究的目的是开发有限元建模(FEM)方法,以确定混凝土块的最佳尺寸,并评估载荷的路面中诱导的偏转和应力。使用ANSYS FEM软件建立了三维有限元素,以分析具有不同块形状和铺设图案的路面。在人字形键合图案中的UNI 3块诱导最低的偏转和应力,因此在该分析中被认为是UNI 3块的尺寸作为最佳尺寸。基于此,提出了一种结合相同行为的新块形状。建议将角度110度和100度代替137度,以供Uni型块形状。此外,当车轮漂移更靠近路面边缘时,在车轮漂移中观察到的路面中观察到的路面中的应力和偏转分布表明了应力的显着变化。

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