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预张拱桥 被引量:1
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作者 向桂兵 邓小康 谢肖礼 《广西大学学报(自然科学版)》 CAS 北大核心 2019年第1期183-190,共8页
为了提高拱桥的刚度、稳定性、动力性能,提出了一种新的拱桥——预张拱桥,其结构原理是在1/4、1/2和3/4拱肋处设置刚性竖联连接拱肋与主梁,分别用预张索将跨中刚性竖联底部与1/4、3/4截面刚性竖联顶部连接,并施加预张力。从而预张拱桥... 为了提高拱桥的刚度、稳定性、动力性能,提出了一种新的拱桥——预张拱桥,其结构原理是在1/4、1/2和3/4拱肋处设置刚性竖联连接拱肋与主梁,分别用预张索将跨中刚性竖联底部与1/4、3/4截面刚性竖联顶部连接,并施加预张力。从而预张拱桥的整体性、刚度和稳定性得到大幅提高,同时预张索的水平分力减小了部分拱脚推力。有限元分析表明,在不增加材料用量的前提下,通过减少横撑和吊杆材料用量来设置刚性竖联和预张索,预张拱桥的刚度、稳定性、动力性能等多项力学指标均优于传统柔性吊杆拱桥,拱肋最大压应力略有增加。新的结构体系对拱桥实现刚度提升、突破稳定性瓶颈提供了新的有效途径,并具有一定的美学价值和较好的工程应用前景,是一种具有竞争力的新桥型。 展开更多
关键词 拱桥 预张索 刚性竖联 稳定性 刚度 动力性能
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奥格斯堡市马克西姆博物馆的玻璃屋顶,德国 被引量:1
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作者 郝琳 《世界建筑》 北大核心 2002年第1期44-46,共3页
关键词 玻璃屋顶 德国 博物馆 建筑设计 稳定性 预张索结构
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半刚性自适应可展开伞状减速装置设计与分析
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作者 耿坤 张静 +2 位作者 郭宏伟 刘荣强 寇子明 《真空科学与技术学报》 CAS CSCD 北大核心 2023年第12期1021-1032,共12页
针对可展开式减速器的辐条在复杂气动载荷下易发生弯曲变形的问题,提出一种具有刚度自适应性可展开伞状减速装置,通过合理布置预张紧柔索使辐条的抗弯刚度随外界气动载荷的增大而增强。首先,基于载荷方程建立减速装置支撑结构的理论模型... 针对可展开式减速器的辐条在复杂气动载荷下易发生弯曲变形的问题,提出一种具有刚度自适应性可展开伞状减速装置,通过合理布置预张紧柔索使辐条的抗弯刚度随外界气动载荷的增大而增强。首先,基于载荷方程建立减速装置支撑结构的理论模型,分析刚度自适应性的作用原理,其次,利用有限元分析软件创建无索与含索减速装置的对照模型,验证含索减速装置的刚度自适应性。最后,建立运动微分方程与虚拟样机模型,分析减速装置展开过程。分析结果表明,在直径10 mm,初始应力10 MPa的预张紧柔索作用下,辐条最大挠度随载荷的变化曲线变为单调递增的平滑凹曲线,曲率随预张紧柔索初始应力的增大逐渐减小;含索减速装置整体的最大变形在0~60%极限载荷区间低速稳定增长,最大挠度减小超过50%,展现出较理想的刚度自适应性。 展开更多
关键词 伞状减速装置 紧柔 刚度自适应 静力学分析 动力学分析
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Controlling deflection of long steel I-shaped girder bridge using two V-shaped pre-tensioning cables 被引量:1
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作者 Fatemeh PARTOVI Nader FANAIE 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第2期566-577,共12页
Despite appropriate design of girder under bending and shear,the deflection of long steel girders usually exceeds the allowable range,and therefore the structural designers encounter challenges in this regard.Consider... Despite appropriate design of girder under bending and shear,the deflection of long steel girders usually exceeds the allowable range,and therefore the structural designers encounter challenges in this regard.Considering significant features of the cables,namely,low weight,small cross section,and high tensile strength,they are used in this research so as to control the deflection of long girder bridges,rather than increasing their heights.In this study,theoretical relations are developed to calculate the increase in pre-tensioning force of V-shaped steel cables under external loading as well as the deflection of steel girder bridges with V-shaped cables and different support conditions.To verify the theoretical relations,the steel girder bridge is modeled in the finite element ABAQUS software with different support conditions without cable and with V-shaped cables.The obtained results show that the theoretical relations can appropriately predict the deflection of girder bridge with V-shaped cables and different support conditions.In this study,the effects of the distance from support on the deflection of mid span are studied in both simply supported and fixed supported girder bridge so as to obtain the appropriate distance from support causing the minimum deflection. 展开更多
关键词 DEFLECTION steel bridge I-shaped girder V-shaped cable pre-tensioning least work
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Computational Method for Prestress Developing of Tensile Cable-Net Structures
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作者 赵俊钊 陈务军 付功义 《Journal of Shanghai Jiaotong university(Science)》 EI 2013年第2期197-204,共8页
The prestress developing of tensile cable-net structures is a state transforming process from the initial unstressed state to the final prestressed state, and it is rather complicated because the elastic deformation i... The prestress developing of tensile cable-net structures is a state transforming process from the initial unstressed state to the final prestressed state, and it is rather complicated because the elastic deformation is normally coupled with the kinematic mechanism movement. Firstly, the basic equations of prestress developing by moving boundary joint are derived from the total potential energy equation. Secondly, the presumed initial tension is proposed to impose into the elements and avoid the singularity of global stiffness matrix. And the self-stress mode which is calculated from the equilibrium matrix with singular vMue decomposition is employed as basically presumed initial tension. By applying boundary movement increment, an iterative computation is developed to calculate the updating geometric configuration and tension evolution. Finally, the MATLAB program is coded from the presented method, and numerical examples indicate that this computational method is effective and has theoretical significance and valuable guide to design and construction of tensile cable-net structure. 展开更多
关键词 tensile cable-net structures prestress developing presumed initial tension self-stress mode singular value decomposition
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