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Brick-mortar interface effects on masonry under compression

机译:砖混砂浆界面对受压砖石的影响

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Masonry component products are increasingly made industrially with reduced variation in mechanical properties. The joint is the only part of the masonry that is affected by manual action and so the load bearing capacity is not only determined by the quality of the bricks and mortar used but moreover by the way the masonry has been built and cured. As a result, it may be expected that the largest material variations are at the brick-mortar interfaces. This has been observed as irregular interface bonding with a bonded central area surrounded by fissures. As a consequence of the final shape of the joint, forces concentrate in the central part of the joint and strain variations occur near fissure tips which result in spalling of bricks in experiments. This paper demonstrates the need for detailed deformational measurements in the brick-mortar interface region. To overcome the limitations with traditional measuring instruments, a refined methodology based on the laser speckle technique is introduced in a companion paper [Canadian Journal of Civil Engineering, 34(11), 1467 (2007)] by the authors of this paper.
机译:工业上越来越制造出具有较低机械性能变化的砖石构件产品。接缝是砌体中唯一受手动作用影响的部分,因此承重能力不仅取决于所用砖和砂浆的质量,而且还取决于砌体的建造和固化方式。结果,可以预期最大的材料变化在砖砂浆界面处。已经观察到这是不规则的界面结合,结合的中央区域被裂缝包围。由于接缝的最终形状,力集中在接缝的中心部分,并且应变变化发生在裂缝尖端附近,这导致了实验中砖的剥落。本文证明了需要在砖砂浆界面区域进行详细的变形测量​​。为了克服传统测量仪器的局限性,本文作者将一种基于激光散斑技术的改进方法引入了伴随论文中[加拿大土木工程学报,34(11),1467(2007)]。

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