|Table of Contents|

Experimental Study on Bending Resistance of Original Bamboo Material(PDF)

《建筑科学与工程学报》[ISSN:1673-2049/CN:61-1442/TU]

Issue:
2021年04期
Page:
101-109
Research Field:
Publishing date:

Info

Title:
Experimental Study on Bending Resistance of Original Bamboo Material
Author(s):
LIU Peng-cheng ZHOU Qi-shi TIAN Jie-fu ZHANG Hai LI Wei FU Fei-yang
(School of Civil Engineering, Central South University, Changsha 410075, Hunan, China)
Keywords:
bamboo bending resistance Bootstrap method reliability theory
PACS:
TU311
DOI:
10.19815/j.jace.2021.03041
Abstract:
The bending resistance test of the original bamboo material was carried out, the relationship between the bending strength, elastic modulus of bamboo and the height, wall thickness, and circumference was explored. The Bootstrap method was used to analyze the standard value of bending strength of bamboo. Based on the reliability theory, the design value of bending strength of the original bamboo material was calculated. The results show that the bending loading of bamboo slices goes through a longer elastic stage, and the plastic stage is shorter. The bending bearing capacity of bamboo decreases with the increase of height. The bending strength and elastic modulus of bamboo slices increase with the increase of height, and decrease with the increase of the wall thickness and circumference. The bending strength and elastic modulus of bamboo have good goodness of fit with height, wall thickness and circumference. The fitting formula can predict the mechanical properties of bamboo. The number of samples has a significant impact on the sampling error of the bending strength of bamboo. The standard value of the Bootstrap re-sampling method can effectively reduce the error. The standard value of original bamboo material strength obtained by the method for 10 000 re-sampling analysis is 126.75 MPa. The reliability index β increases with the increase of the resistance sub-factor γR and the load ratio ρ. When the load ratio ρ>0, the resistance sub-factor γR under target reliability in the case of dead load + snow load is the largest, and is the smallest in the case of dead load + office floor live load. The calculated bending strength design values of the original bamboo material under the three safety levels are 27.670, 29.884, 32.084 MPa respectively.

References:

[1] RASSIAH K,MEGAT AHMAD M M H,ALI A.Mechanical Properties of Laminated Bamboo Strips from Gigantochloa Scortechinii/Polyester Composites[J].Materials & Design,2014,57:551-559.
[2]ZHANG T,WANG A,WANG Q,et al.Bending Characteristics Analysis and Lightweight Design of a Bionic Beam Inspired by Bamboo Structures[J].Thin-walled Structures,2019,142:476-498.
[3]LI H,QIU Z,WU G,et al.Compression Behaviors of Parallel Bamboo Strand Lumber Under Static Loading[J].Journal of Renewable Materials,2019,7(7):583-600.
[4]WANG F,SHAO Z.Study on the Variation Law of Bamboo Fibers' Tensile Properties and the Organization Structure on the Radial Direction of Bamboo Stem[J].Industrial Crops and Products,2020,152:112521.
[5]车慎思.毛竹细观结构与力学性能试验研究[D].南京:南京航空航天大学,2011.
CHE Shen-si.Experimental Research on Microstructure and Mechanical Performance of Bamboo[D].Nanjing:Nanjing University of Aeronautics and Astronautics,2011.
[6]杨宝璋.竹与竹建筑[M].昆明:云南人民出版社,2014.
YANG Bao-zhang.Bamboo and Bamboo Architecture[M].Kunming:Yunnan People's Publishing House,2014.
[7]SASSU M,DE FALCO A,GIRESINI L,et al.Structural Solutions for Low-cost Bamboo Frames:Experimental Tests and Constructive Assessments[J].Materials,2016,9(5):346.
[8]陈 国.现代竹结构房屋的试验研究与工程应用[D].长沙:湖南大学,2011.
CHEN Guo.Experimental Study and Engineering Application of Light Frame Bamboo Structure[D].Changsha:Hunan University,2011.
[9]田黎敏,郝际平,寇跃峰.喷涂保温材料-原竹骨架组合墙体抗震性能研究[J].建筑结构学报,2018,39(6):102-109.
TIAN Li-min,HAO Ji-ping,KOU Yue-feng.Research on Seismic Behavior of Bamboo Framing Walls with Sprayed Thermal Insulation Material[J].Journal of Building Structures,2018,39(6):102-109.
[10]SA RIBEIRO R A,SA RIBEIRO M G,MIRANDA I P A.Bending Strength and Nondestructive Evaluation of Structural Bamboo[J].Construction and Building Materials,2017,146:38-42.
[11]NURMADINA,NUGROHO N,BAHTIAR E T.Structural Grading of Gigantochloa Apus Bamboo Based on Its Flexural Properties[J].Construction and Building Materials,2017,157:1173-1189.
[12]李光荣,辜忠春,李军章.毛竹竹材物理力学性能研究[J].湖北林业科技,2014,43(5):44-49.
LI Guang-rong,GU Zhong-chun,LI Jun-zhang.Study on Physical and Mechanical Performance of Phyllostachy Pubescens[J].Hubei Forestry Science and Technology,2014,43(5):44-49.
[13]于金光,郝际平,田黎敏,等.圆竹的力学性能及影响因素研究[J].西安建筑科技大学学报:自然科学版,2018,50(1):30-36.
YU Jin-guang,HAO Ji-ping,TIAN Li-min,et al.The Study on the Main Influencing Factors and Mechanical Properties of Phyllostachys Pubescens[J].Journal of Xi'an University of Architecture and Technology:Natural Science Edition,2018,50(1):30-36.
[14]张 丹,王 戈,张文福,等.毛竹圆竹力学性能的研究[J].中南林业科技大学学报,2012,32(7):119-123.
ZHANG Dan,WANG Ge,ZHANG Wen-fu,et al.Mechanical Properties of Phyllostachys Pubescens[J].Journal of Central South University of Forestry & Technology,2012,32(7):119-123.
[15]上官蔚蔚.重组竹物理力学性质基础研究[D].北京:中国林业科学研究院,2015.
SHANGGUAN Wei-wei.Research on Physical and Mechanical Properties of Bamboo Scrimber[D].Beijing:Chinese Academy of Forestry,2015.
[16]JG/T 199—2007,建筑用竹材物理力学性能试验方法[S].
JG/T 199—2007,Testing Methods for Physical and Mechanical Properties of Bamboo Used in Building[S].
[17]CECS 434:2016,圆竹结构建筑技术规程[S].
CECS 434:2016,Technical Specification for Round Bamboo-structure Building[S].
[18]GB 50068—2018,建筑结构可靠度设计统一标准[S].
GB 50068—2018,Unified Standard for Reliability Design of Building Structures[S].
[19]钟 永,武国芳,任海青.国产结构用规格材的抗弯强度可靠度分析和设计值[J].建筑结构学报,2018,39(12):119-127.
ZHONG Yong,WU Guo-fang,REN Hai-qing.Reliability Analysis and Design Value on Bending Strength of Domestic Dimension Lumber for Structural Purpose[J].Journal of Building Structures,2018,39(12):119-127.
[20]GB 50005—2017,木结构设计规范[S].
GB 50005—2017,Standard for Design of Timber Structures[S].
[21]肖 岩,杨瑞珍,单 波,等.结构用胶合竹力学性能试验研究[J].建筑结构学报,2012,33(11):150-157.
XIAO Yan,YANG Rui-zhen,SHAN Bo,et al.Experimental Research on Mechanical Properties of Glulam[J].Journal of Building Structures,2012,33(11):150-157.
[22]张秀华,鄂 婧,李玉顺,等.重组竹抗压和抗弯力学性能试验研究[J].工业建筑,2016,46(1):7-12.
ZHANG Xiu-hua,E Jing,LI Yu-shun,et al.Experimental Research on Compression and Flexural Mechanical Performance of Recombinant Bamboo[J].Industrial Construction,2016,46(1):7-12.
[23]肖纲要,李霞镇,钟 永.结构用重组竹抗弯力学性能[J].安徽农业大学学报,2017,44(1):60-64.
XIAO Gang-yao,LI Xia-zhen,ZHONG Yong.Bending Properties of the Structural Recombinant Bamboo[J].Journal of Anhui Agricultural University,2017,44(1):60-64.

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Last Update: 2021-07-10