Study on Lateral Performance of Enhanced Light-Wood-Framed Shear Walls with Slotted Countersunk Head Tapping Screws
- Vol. 37, Issue 2, Pages: 35-42(2023)
DOI: 10.12326/j.2096-9694.2022173
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1.College of Civil Engineering,Northeast Forestry University,Harbin 150040,Heilongjiang,China
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张月,左宏亮,郭楠等.开槽沉头自攻螺钉增强轻型木结构剪力墙抗侧性能研究[J].木材科学与技术,2023,37(02):35-42.
ZHANG Yue,ZUO Hongliang,GUO Nan,et al.Study on Lateral Performance of Enhanced Light-Wood-Framed Shear Walls with Slotted Countersunk Head Tapping Screws[J].Chinese Journal of Wood Science and Technology,2023,37(02):35-42.
轻型木结构剪力墙在水平荷载作用下常发生墙骨柱上拔破坏,从而削弱剪力墙的抗侧性能。本研究提出采用自攻螺钉连接边墙骨柱与底梁板的轻型木结构剪力墙,并以骨架钉种类、自攻螺钉直径和长度为变量,对传统轻型木结构剪力墙和自攻螺钉增强轻型木结构剪力墙进行单调加载对比试验。结果表明:剪力墙破坏时,其边墙骨柱弯曲且上拔较小,覆面板与墙骨柱间破坏较轻。与普通剪力墙相比,自攻螺钉增强剪力墙抗剪强度提高16%~33%,弹性抗侧刚度提高27%~111%,延性系数提高1.7%~31.7%,耗能提高2%~18.8%。因此,采用自攻螺钉连接边墙骨柱与底梁板可以有效提高剪力墙抗侧性能。
The lateral force resistance of light-wood-framed shear wall under a large horizontal lateral load is often weakened by uplifting a stud. Based on this phenomenon, this study proposed a connection method to strengthen the shear walls, where the side studs and bottom plates were connected with tapping screws. The enhanced light-wood-framed shear walls with tapping screws and the traditional light-wood-framed shear walls were tested under monotonic loads, respectively. The effects of different skeleton fastener types, the diameters, and lengths of the tapping screws on the lateral performance of the shear walls above were studied. Experiment results showed that when the tapping screw enhanced light-wood-framed shear walls were damaged, the side studs occurred a bit bending and little uplift, the damage between the sheathing panel and skeleton was relatively light. Compared with the traditional light-wood-framed shear walls, the shear strength of the tapping screw enhanced light-wood-framed shear walls was increased by 16%~33%, the elastic lateral stiffness was increased by 27%~111%, the ductility coefficient was increased by 1.7%~31.7%, and the energy consumption was increased by 2%~18.8%. It improves the lateral performance of the shear walls effectively by connecting the side studs to the bottom plates with the tapping screws.
轻型木结构剪力墙抗侧性能自攻螺钉
light-wood-framed shear walllateral performancetapping screw
陈志军. 小径木组合搁栅楼盖面内抗剪性能研究[D]. 哈尔滨: 哈尔滨工业大学 , 2015.
ELLINGWOOD B R, ROSOWSKY D V, PANG W. Performance of light-frame wood residential construction subjected to earthquakes in regions of moderate seismicity[J]. Journal of Structural Engineering, 2008, 134(8): 1353-1363.
左宏亮, 邸静, 王桐, 等. 预应力交叉拉杆轻型木结构剪力墙低周往复荷载的抗侧性能[J]. 东北林业大学学报, 2019, 47(6): 61-64.
ZUO H L, DI J, WANG T, et al. Lateral performance of prestressed diagonal cross-bar reinforced timber shear walls under cyclic loading[J]. Journal of Northeast Forestry University, 2019, 47(6): 61-64.
李铁强. 配筋轻型木结构剪力墙低周反复荷载作用抗剪性能研究[D]. 哈尔滨: 东北林业大学, 2018.
Anderson E N, Leichti R, Sutt E G, et al. Sheathing nail bending-yield stress: effect on cyclic performance of wood shear walls[J]. Wood and Fiber Science, 2007, 39: 536-547.
Mckee S, Crandell J, Hicks R,et al. The performance of perforated shear walls with narrow wall segments, reduced base restraint, and alternative framing methods: DC(Contract H-21065CA)[R]. Upper Marlboro, MD:NAHB Research Center, Inc., 1998.
Spasojevic M, Daneshvar H, Niederwestberg J, et al. Structural performance of light wood shear walls built with insulated sheathing panels[J]. Engineering Structures, 2021, 241: 112449.
何敏娟, 周楠楠. 不同覆面材料木剪力墙抗侧性能试验研究[J]. 同济大学学报(自然科学版), 2011, 39(3): 340-345.
HE M J, ZHOU N N. Experimental study on racking performance of light-frame shear walls with various sheathing materials[J]. Journal of Tongji University (Natural Science), 2011, 39(3): 340-345.
邸静. 端部条带面板增强轻型木结构剪力墙单调荷载下抗侧性能研究[D]. 哈尔滨: 东北林业大学, 2019.
LAM F, PRION H G L, HE M. Lateral resistance of wood shear walls with large sheathing panels[J]. Journal of Structural Engineering, 1997, 123(12): 1666-1673.
杜敏, 费本华, 谢宝元, 等. 榫接木框架剪力墙受剪性能试验研究[J]. 建筑结构学报, 2012, 33(6): 144-150.
DU M, FEI B H, XIE B Y, et al. Shear performance of wood-frame shear walls with rabbet stud connection[J]. Journal of Building Structures, 2012, 33(6): 144-150.
武国芳, 钟永, 龚迎春, 等. 木结构梁柱间榫卯连接节点性能研究进展[J]. 木材工业, 2019, 33(5): 25-29.
WU G F, ZHONG Y, GONG Y C, et al. Review of performance of tenon-mortise joints between column and beam in timber structures[J]. China Wood Industry, 2019, 33(5): 25-29.
左宏亮, 刘翰然, 鲁建鑫. 新型自攻螺钉加固措施对胶合木梁受弯性能的影响[J]. 东北林业大学学报, 2020, 48(5): 112-116, 121.
ZUO H L, LIU H R, LU J X. Effect of new self-tapping screw reinforcement measures on bending performance of glulam beams[J]. Journal of Northeast Forestry University, 2020, 48(5): 112-116, 121.
ASTM E 2126-08, Standard test methods for cyclic (reversed) load test for shear resistance of vertical elements of the lateral force resisting systems for buildings[S].
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