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作 者:沈玉蓉[1,2] 卞玉玲[1,3] 周爱萍[1,2] 黄东升[1,2]
机构地区:[1]南京林业大学土木工程学院,江苏南京210037 [2]南京林业大学江苏省林业资源高效利用协同创新中心,江苏南京210037 [3]无锡商业职业技术学院,江苏无锡214153
出 处:《建筑结构学报》2017年第8期150-155,共6页Journal of Building Structures
基 金:国家自然科学基金项目(51378263);林业科学技术成果国家级推广项目([2015]21号);江苏省高校优势学科建设项目
摘 要:重组竹是一种类似于木材的定向复合材料,其顺纹受压应力-应变非线性特征显著,故重组竹受弯构件和压弯构件在承载能力极限状态下亦呈明显的非线性特征。而现行相关设计规范仍采用线弹性计算方法,不能准确预估压弯构件的承载力。为此,将重组竹受弯构件和偏心受压构件统一为压弯构件,基于Euler梁理论,考虑材料的非线性应力-应变关系,建立了压弯构件在非弹性工作状态下的承载力计算方法。通过重组竹梁受弯试验和重组竹柱偏心受压试验,验证了所提方法的准确性。Parallel strand bamboo (PSB) is a wood-like oriented composite, of which the stress-strain relationship exhibits pronounced nonlinearity. The failure of the PSB bending and compressive-bending members presents nonlinear progressive process under the ultimate state. However, current correlative design specifications are all based on the linear elastic theory, which cannot accurately estimate the load-carrying capacity of members. In this study, the PSB beams and columns with eccentrically compressive loading are generally treated as PSB compressive-bending members. With considering the nonlinear stress-strain relationships of PSB composites, the inelastic method to calculate the load- carrying capacity of PSB compressive-bending members under ultimate state was established based on Euler beam theory. Eventually, the method proposed in this paper was validated through the bending experiments of PSB beams and PSB columns under eccentrically compressive loading.
关 键 词:重组竹 压弯构件 非线性应力-应变关系 非弹性分析 承载力
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