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contributor authorWeidong Lu
contributor authorLu Wang
contributor authorJianjin Wu
contributor authorWeiqing Liu
contributor authorHuifeng Yang
contributor authorKong Yue
contributor authorXiaowu Chen
contributor authorXiaoluan Sun
contributor authorZhixuan Deng
date accessioned2017-12-16T08:59:34Z
date available2017-12-16T08:59:34Z
date issued2016
identifier other%28ASCE%29ST.1943-541X.0001585.pdf
identifier urihttp://138.201.223.254:8080/yetl1/handle/yetl/4237172
description abstractThis paper introduces simple glued laminated (glulam) timber columns reinforced by near-surface-mounted carbon-fiber-reinforced polymer (CFRP) laminates (GTMC columns). Twenty-four columns were fabricated and tested under eccentric compression loading to validate the effectiveness of this kind of column. In accordance with the degrees of eccentricity, specimens were divided into three groups. In each group, one column without inlaid CFRP laminates served as a control column, while the others were inlaid with CFRP laminates. All columns were tested for ultimate load capacity, displacement ductility, failure mode, and energy dissipation capacity. Test results show that inlaid CFRP laminates are effective in increasing ultimate load capacity and deformability. Meanwhile, the corresponding analytical model was also derived to predict the ultimate load capacity of GTMC columns. A comparison of the predicted and tested ultimate load capacities demonstrated that the analytical model is generally able to evaluate the ultimate load capacity of GTMC columns with an average underestimation of 8.7%. Furthermore, a finite-element analysis was conducted to investigate the effects of thickness and mounted depth of CFRP laminates on ultimate load capacity and initial stiffness.
publisherAmerican Society of Civil Engineers
titleBehavior of Glulam Columns Reinforced by Near-Surface-Mounted CFRP Laminates under Eccentric Compression Loading
typeJournal Paper
journal volume142
journal issue11
journal titleJournal of Structural Engineering
identifier doi10.1061/(ASCE)ST.1943-541X.0001585
treeJournal of Structural Engineering:;2016:;Volume ( 142 ):;issue: 011
contenttypeFulltext


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