EXPERIMENTAL RESEARCH ON BEARING CAPACITY OF JOIST CONSISTING OF ORTHOGONAL OBLIQUE PLACEMENT BAMBOO STRIPS AND A WOODEN FRAME
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摘要: 正交斜放竹条覆面桁架搁栅的构造特征是把两层正交斜放的竹条钉接在矩形木骨架的两个侧面,形成一种新型竹木复合搁栅。通过对2组不同木骨架形式共计4根竹木复合搁栅进行受弯承载力试验,观察搁栅的变形和破坏特征,得到每根搁栅的荷载-变形曲线。试验表明:随着荷载不断增加,竹木复合搁栅表层竹条破坏前有明显征兆,从初步损伤到产生破坏的过程一般较长,变形较大,且具有良好的变形恢复能力。试验数据分析表明:新型竹木复合搁栅满足轻型木结构楼面搁栅以及低层冷弯薄壁型钢房屋楼面搁栅在楼面荷载作用下的强度和变形要求,在允许挠度范围内不会发生强度破坏。正交斜放竹条覆面桁架搁栅承载力试验研究证明了此类构件的工程应用价值,为后续技术优化和理论分析提供了有益参考。Abstract: A new type of bamboo-wood composite joist consisting of a rectangular timber frame and two layers of orthogonal oblique placement bamboo strips connected on both sides was proposed. In order to investigate the flexural capacity of the joists, a total of 4 bamboo-wood composite joists in 2 groups of different timber frame forms were tested respectively, the deformation and failure characteristics of the joists were observed. The load-deflection curves of the specimens were obtained. During the test, the split of bamboo strips showed the sign of joist wreck. The joists performed very good ductility because large deflection occurred from the initial wreck to final failure accompanied with the increasing of load. The results showed that the new type of bamboo-wood composite joists could meet the strength and deformation requirements of floor joists for light wooden structures and low-rise cold-formed thin-walled steel buildings under floor load, and strength failure should not occur within the allowable deflection range. The study could prove the engineering application value of such components, and provide a reference for further technical optimization and theoretical analysis.
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Key words:
- bamboo structure /
- joist /
- bamboo strip /
- truss
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[1] 聂圣哲. 美制木结构住宅导论[M]. 北京:科学出版社,2011. [2] 费本华,周海滨. 轻型木结构住宅建造技术[M]. 北京:中国建筑工业出版社,2009. [3] 叶继红,冯若强,陈伟. 村镇轻钢结构建筑抗震技术手册[M]. 南京:东南大学出版社,2013. [4] 中华人民共和国住房和城乡建设部.低层冷弯薄壁型钢房屋建筑技术规程:JGJ 227-2011[S].北京:中国建筑工业出版社,2011. [5] 国务院办公厅. 国务院办公厅关于大力发展装配式建筑的指导意见:国办发[2016] 71号[Z].北京:国务院办公厅,2016. [6] 柏文峰,黄文昆. 装配式建筑背景下的云南竹产业发展前景广阔[J].云南林业,2017(6):37-39. [7] 叶盛,柏文峰. 基于文献分析的我国竹建筑研究现状与趋势[J]. 世界竹藤通讯,2019,17(2):48-52. [8] 苏毅,宗生京. 竹集成材简支梁抗弯性能试验研究[J].建筑科学与工程学报,2016,33(1):54-60. [9] 郝济平,寇跃峰,田黎敏. 喷涂复合材料-原竹组合梁受弯性能试验研究[J].建筑结构学报,2018,39(增刊2):242-246. [10] 高黎,王正,常亮. 建筑结构用竹质复合材料的性能及应用研究[J].世界竹藤通讯,2008,6(5):1-5. [11] 中国工程建设协会.圆竹结构建筑技术规程:CECS 434:2016[S].北京:中国计划出版社,2016. [12] 李磊.现代新型胶竹材料蠕变性能及组合结构蠕变研究[D]. 长沙:湖南大学,2012. [13] 黄成建,赵荣军,任海青,等. 竹质复合工程材料受弯构件试验研究进展[J].世界林业研究,2018(5):39-43. [14] XIAO Y,SHAN B. Modern Bamboo Structures[M]. Leiden:The Netherlands:2008. [15] GERNOT M. Design and Technology of a Sustainable Architecture[M].Basel:Birkhauser Verlag GmbH,2016. [16] 杨宝璋. 竹与竹建筑[M]. 昆明:云南出版集团,2014. [17] 柏文峰,唐芷晨,范文辰,等. 短竹片钉接腹板楼面搁栅[J].土木工程,2017, 6(5):447-452. [18] 中华人民共和国住房和城乡建设部. 木结构设计标准:GB 50005-2017[S]. 北京:中国建筑工业出版社,2018. [19] JANSSEN J A. Designing and Building with Bamboo[M]. Beijing:Technical Report no.20, INBAR, 2000. [20] 中华人民共和国住房和城乡建设部. 木结构试验方法标准:GB/T 50329-2012[S]. 北京:中国建筑工业出版社,2012. [21] 辉朝茂,刘蔚漪,史正军,等. 巨龙竹一新变种:厚壁巨龙竹[J].竹子学报,2019(1):18-19,2.
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