施工阶段内早强砂浆和混凝土空心砖砌体棱柱体抗压性能的实验评估

Materials Pub Date : 2024-08-09 DOI:10.3390/ma17163970
Ali Abasi, Bennett Banting, Ayan Sadhu
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引用次数: 0

摘要

早期的砌体结构在达到完全强度之前需要临时支撑。然而,人们对新砌砌体的特性以及新建无支撑砌体墙的设计了解有限。这种情况导致了大量的结构损坏和工人受伤事件,促使人们采用保守的建筑支撑技术。本文介绍了对早龄期砂浆立方体和砌体棱柱体的综合实验研究,以评估固化时间对砌体组合体抗压性能的影响,这对临时支撑的设计非常必要。实验评估了砌体棱柱体和砂浆的弹性模量和抗压强度随固化时间的变化。结果表明,新浇筑的砂浆立方体的抗压强度相对较小,直到施工后约 24 小时后才出现对数增长。从性能角度来看,龄期较早的砌体棱柱体的抗压强度很小,在施工后第一天还不到全部强度的 15%。相比之下,从生命安全的角度来看,在测试的龄期范围内,砌体组件内砂浆接缝的抗压性能(这是更实际的问题)似乎对混凝土砌体棱柱体的破坏强度没有影响。龄期较早的砂浆立方体和龄期较早的砌体棱柱样本的破坏模式取决于养护时间,在初级水化阶段(即施工后 20.8 小时)开始前后出现了不同的破坏模式。预计拟议的研究将提供有价值的材料特性,从而有效地设计控制装置(如临时支撑),并改进混凝土砌块砌体施工指南。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Evaluation of Compressive Properties of Early-Age Mortar and Concrete Hollow-Block Masonry Prisms within Construction Stages
Early-age masonry structures require temporary support until they achieve full strength. Nevertheless, there is a limited understanding of the properties of freshly laid masonry and the design of newly constructed, unsupported masonry walls. This situation has led to numerous instances of structural damage and injuries to workers, prompting conservative construction bracing techniques. This paper presents comprehensive experimental studies on early-age mortar cubes and masonry prisms to assess the effects of curing time on the compressive properties of masonry assemblies, which is necessary for the design of temporary bracing. The change in modulus of elasticity and compressive strength of masonry prisms and mortar with curing time has been experimentally assessed. The results indicate that the compressive strength of freshly cast mortar cubes is relatively insignificant until approximately 24 h after construction, when it was observed to increase logarithmically. Regarding the performance perspective, the compressive strength of early-age masonry prisms is inconsiderable, less than 15% of full strength during the first day after construction. By contrast, regarding the life safety perspective, the compressive properties of a mortar joint within a masonry assembly (which is of more practical interest) appear to have no effect on the failure strength of concrete masonry prisms over the range of ages tested. The failure modes of the early-age mortar cubes and early-age masonry prism samples depend on the curing time, and different failure modes occurred before and after the start of the primary hydration phase, which is 20.8 h after construction. It is anticipated that the proposed research will provide valuable material properties leading to efficient design of control devices (e.g., temporary bracing) and improved guidelines for concrete-block masonry construction.
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