木梁—夯土界面粘结滑移性能及其计算方法
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TU361

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国家自然科学基金(51878302、52078225、51808235);中央高校基本科研业务费(ZQN-813)


Bond slip performance and calculation method of rammed earth-timber interface
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    摘要:

    福建土楼中夯土与木梁的界面性能是二者能够共同工作的基础,而木梁与夯土界面的粘结滑移关系是其界面性能的综合反映。为探讨木梁—夯土界面的粘结滑移性能,进行了8个木梁—夯土节点试件的拉拔模型试验,考虑竖向压力、木梁伸入长度和木梁表面粗糙度对其粘结力组成、极限荷载等的影响,对木梁—夯土界面进行有限元建模分析,并提出粘结力的计算方法。结果表明:夯土与木梁的界面破坏形态包括木梁的拔出破坏和夯土的开裂破坏,此类界面的粘结滑移曲线可以分为线性上升段、滑移过渡段和摩擦残余段3个阶段;有限元模拟表明,连接器弹簧能够很好地表达木梁—夯土墙界面性能;木梁—夯土界面粘结力包括胶结力、木梁与夯土接触面的摩擦力和基质吸力,随着滑移的不断进行,胶结力不断失效趋近于零,摩擦残余段只存在摩擦力与基质吸力。

    Abstract:

    The interface performance of rammed earth and timber beam of Fujian Tulou buildings determines the interaction of the two, and the bond slip relationship of rammed earth and wooden beam is a comprehensive reflection of the interfacial performance. In order to investigate the bond-slip performance of rammed earth-timber beam joints, eight pull-out tests of rammed earth-timber beam joint specimens were conducted. The test parameters included the vertical load, the timber beam penetration length, and surface roughness. The influences of these parameters on the maximum load and the composition of the bonding force were analyzed.The interface between timber beam and rammed earth was modeled and analyzed by finite element method, and the calculation method of bonding force was put forward. The results show that the interface failure modes of rammed earth and timber beam include pull-out failure of timber beam and cracking failure of rammed earth. The bond slip curve of such interfaces can be divided into three stages, including the linear ascending stage, the slip transition stage and the residual friction stage; the finite element simulation shows that the connector spring can well represent the interface performance of rammed earth-timber beam joints; the bonding force at the interface between timber beam and rammed earth includes the cementation force, the friction force between timber beam and the contact surface of rammed earth, and the matrix suction of soil. With continuous sliding, the cementation force keeps failing and approaches zero, and only the friction force and matrix suction exist in the friction residual section.

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陈明杰,罗漪,郑双杰,杨志林,丁楠.木梁—夯土界面粘结滑移性能及其计算方法[J].土木与环境工程学报(中英文),2022,44(2):184-194. CHEN Mingjie, LUO Yi, ZHENG Shuangjie, YANG Zhilin, DING Nan. Bond slip performance and calculation method of rammed earth-timber interface[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2022,44(2):184-194.10.11835/j. issn.2096-6717.2021.161

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  • 收稿日期:2021-05-17
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  • 在线发布日期: 2022-02-14
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