Lateral loading performance of end narrow panel reinforced light wood frame shear walls

Author:

Di JingORCID,Zuo HongliangORCID

Abstract

PurposeThe sheathing panels of traditional light wood frame shear walls mainly use oriented strand board (OSB) panels, and the damage of the traditional walls is mainly caused by the tear failure at the bottom corner of the OSB panel. In order to improve the lateral performance of the traditional light wood frame shear wall, a new type of end narrow panels reinforced light wood frame shear wall is proposed.Design/methodology/approachThe monotonic loading tests and finite element analysis of nine groups of walls, with different types of end narrow panel, types of fasteners used on the end narrow panels and the end narrow panels edge fastener spacing, are carried out. The effects of different characters on lateral performance of light wood frame shear walls are reported and discussed.FindingsThe failure modes of the wall reinforced by parallel strand bamboo narrow panels with 150 mm edge nails spacing are similar to the traditional wall. Conversely, the failure modes of other groups of walls reinforced by end narrow panels are the tears of the bottom narrow panel or the bottom beam. The end narrow panel reinforced light wood frame shear wall can make full use of the material property of sheathing panels. Compared with the lateral performance of traditional walls, the new-type end narrow panels reinforced walls have better lateral performance.Originality/valueA new type of end narrow panels reinforced light wood frame shear wall is proposed, which can enhance the lateral performance of the traditional light wood frame shear wall. The new-type walls have advantages of convenient operation, manufacture cost saving and important value of engineering application.

Publisher

Emerald

Subject

Mechanical Engineering,Mechanics of Materials,Civil and Structural Engineering

Reference18 articles.

1. Behavior of polypropylene fiber reinforced foam concrete beams laterally reinforced with/without glass fiber grid;International Journal of Structural Integrity,2021

2. Hysteretic behavior of timber framed shear wall with openings;Construction and Building Materials,2016

3. Seismic assessment of RC column under seismic loads;International Journal of Structural Integrity,2019

4. Performance assessment of steel structures with semi-rigid joints in seismic areas;International Journal of Structural Integrity,2020

5. The effect of simulated flooding on the structural performance of light frame timber shear walls - an experimental approach;Engineering Structures,2016

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