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Experimental investigation of a novel concrete-timber floor panel system with digitally fabricated FRP-timber hollow core component

机译:新型数字化玻璃钢空心构件的混凝土木地板系统的实验研究

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摘要

Concrete-timber composite floor systems have become increasingly popular due to their high sustainability and ease of construction. This paper presents a novel lightweight concrete-timber floor panel system with a fibre reinforced polymer-timber waffle-shaped core between the concrete and timber layers. Digital fabrication techniques and computer-numerical control machines were used in the core component fabrication, resulting in ease of fabrication, high accuracy, and streamlined manufacture process. Four 2.25?m span floor panels were manufactured and tested under four-point bending to investigate their flexural behaviour. Results show that the proposed system has an excellent flexural capacity, and demonstrated a high ductility before ultimate failure. Comparison shows the proposed system outperformed the equivalent reinforced concrete and hybrid timber-concrete panels regarding weight specific moment capacity. The consistent flexural behaviour of the tested specimens also proved the effective quality control from CNC manufacturing. (C) 2019 Elsevier Ltd. All rights reserved.
机译:混凝土木复合地板系统由于其高度的可持续性和易于施工而变得越来越受欢迎。本文提出了一种新型的轻质混凝土-木地板面板系统,在混凝土和木材层之间具有纤维增强的聚合物-木材华夫格状芯。在核心部件的制造中使用了数字制造技术和计算机数字控制机器,从而简化了制造过程,提高了准确性并简化了制造过程。制造了四块2.25?m跨距地板,并在四点弯曲下进行了测试,以研究其弯曲性能。结果表明,所提出的系统具有出色的抗弯能力,并在最终破坏之前表现出很高的延展性。比较表明,在重量比弯矩承载力方面,拟议的系统优于同等的钢筋混凝土和混合木材-混凝土面板。测试样品的一致弯曲行为也证明了CNC制造的有效质量控制。 (C)2019 Elsevier Ltd.保留所有权利。

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