Study on bending performance of prefabricated glulam-cross laminated timber composite floor with screw connections

Author:

Du Hao1,Chen Gang2,Fu Weijie3,Hu Xiamin3

Affiliation:

1. Nanjing Forestry University

2. China Construction Eighth Bureau Third Construction Co. LTD

3. Sanjiang University

Abstract

Abstract The glulam-cross laminated timber (CLT) composite floor is a type of prefabricated composite floor that integrates glulam beams and CLT slab into a unified structure using shear connectors. To investigate the bending performance of the glulam-CLT composite floor, the bending test was conducted on a full-scale composite floor under static load. The study comprehensively analyzed the failure mechanism, load-deflection behavior, interface slip and strain distribution of the glulam-CLT composite floor. The test results of the composite floor indicated that the failure mode was tensile fracture of the wood beam at the bottom. As the load increased, the relative slips extended towards the mid-span, and the rate of increase in relative slip gradually increased, which could be attributed to the decrease in shear stiffness of the screw connections and the overall composite action. In the earlyloading phase, the strain distribution of the composite section satisfied the assumption of a plane section. However, the strain distribution deviated from this assumption with the increased load due to the relative slips between the glulam beam and CLT flange. To calculate the bending performance of the composite floor, the M-shaped section of the glulam-CLT composite floor was simplified as T-section composite beams. The linear-elastic method for determining the flexural rigidity and ultimate bearing capacity of the glulam-CLT composite floors was proved to be accurate and reliable.

Publisher

Research Square Platform LLC

Reference26 articles.

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