三维打印钢筋混凝土梁的弯曲和剪切性能试验研究

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引用次数: 0

摘要

3D混凝土打印(3DCP)为建筑业提供了许多优势,尤其是在生产力、废物、劳动力和环境方面。对3DCP的材料开发进行了大量的研究。然而,研究3DCP结构行为的研究并不多。本实验研究旨在分析3D打印钢筋混凝土梁的弯曲和剪切性能。采用五种纵向配筋率对这些梁的裂缝模式、破坏模式、延性和承载力进行了分析。然后将实验结果与ACI设计规范的分析结果进行了比较。研究结果表明,纵向配筋率越高,3DCP梁的抗弯和抗剪承载力越高。由于逐层印刷工艺,3DCP光束容易发生灯丝局部失效。纵向钢筋的放置可能会引发宏观孔隙,从而导致承载力的滑移和突然下降。此外,ACI规范在一定程度上低估了3DCP梁的抗剪承载力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexural and Shear Behavior of 3D Printed Reinforced Concrete Beams: An Experimental Study
3D Concrete Printing (3DCP) provides many advantages for construction industry especially on productivity, waste, labor, and environment. Many researches have been conducted on the material development for 3DCP. However, there are not many researches which study the structural behavior of 3DCP. This experimental research aims to analyze flexural and shear behavior of 3D printed reinforced concrete beams. Five longitudinal reinforcement ratios were used to analyze crack patterns, failure mode, ductility, and capacity of those beams. The experimental results were then compared with analytical results by using ACI design code. The results show that higher longitudinal reinforcement ratio yields higher flexural and shear capacity of 3DCP beams. Due to layer-by-layer printing process, 3DCP beams are prone to local failure of filaments. Placement of longitudinal reinforcement might initiate macroscopic voids which could cause slippage and sudden drop on the capacity. Furthermore, ACI code underestimates the capacity of 3DCP beams failing in shear by some margins.
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