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The performance of paving block structures with mortar filled joints under temperature loading, accessed by means of numerical simulations

机译:通过数值模拟获得在温度荷载下带有灰浆填充缝的铺路砖结构的性能

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摘要

Paving block structures with mortar filled vertical joints can exhibit a significantly higher load capacity as comparable structures with sand filled joints. For this reason, this pavement construction method is increasingly being used or would be used, respectively, if its performance could be estimated reliably. Specifically, the exact cause of cracks due to cooling in winter has not been fully understood yet and appropriate prediction tools do not exist. This motivated the development of a numerical simulation tool for such paving block structures under temperature loading, which is able to take the brittle failure mechanisms in-between paving blocks and paving blocks and the underlying mortar bed into account. By means of the proposed simulation tool in this paper, basic structural failure mechanisms of such paving block structures, due to different temperature events, could be identified and relationships between crack widths and different bonding strengths as well as installation temperatures were obtained. Finally, estimates for necessary bonding strengths between paving blocks and mortar bed to prevent large (visible) cracks due to temperature loads are given.
机译:与填充砂缝的类似结构相比,用砂浆填充垂直缝的铺砌块结构可以表现出更高的承载能力。由于这个原因,如果可以可靠地估计其性能,则越来越多地使用或将分别使用这种路面施工方法。具体而言,由于冬天降温导致的裂缝的确切原因尚未完全了解,并且不存在适当的预测工具。这促使开发了一种在温度载荷下用于此类铺路砖结构的数值模拟工具,该工具能够考虑铺路砖与铺路砖之间以及下方砂浆层之间的脆性破坏机理。借助本文提出的仿真工具,可以识别由于温度事件不同而导致的此类铺路砖结构的基本结构破坏机理,并获得裂缝宽度和不同粘结强度以及安装温度之间的关系。最后,给出了铺路砖与砂浆床之间必要的粘结强度的估计值,以防止由于温度负荷而产生大的(可见的)裂缝。

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