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Analysis and testing of composite wood-concrete floor/deck systems

机译:复合木混凝土地板/甲板系统的分析和测试

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Experimental and analytical studies of composite wood-concrete floor/deck systems have been ongoing at Colorado State University. A novel shear key/anchor detail of overlaying solid wood floors in office buildings with a concrete layer, thus creating a composite floor, was adapted for this study. The detail utilizes a notch to transfer bearing stress and shear stress in the joined materials for interlayer force transfer, rather than connector shear. Compared to ordinary mechanical connectors, the connection detail develops a substantially higher degree of composite action. Systems are being studied for residences, offices etc. and short span bridges. Laboratory testing included pull-out tests on the anchors, interlayer slip tests on connection details, pilot load tests of full-scale beams and one-way floors and thick decks. This paper also describes the analytical study of the mechanics of the interlayer force transfer, surface to surface contact stresses at the notched-anchor connection and nearby continuum behavior. A finite element formulation that includes line-to-line (L-L) and node-to-node (N-N) link elements was utilized. It is applied to interlayer slip specimens and layered beam test specimens. In the latter the degree of composite action is examined by comparing experimental results with rigorous layered finite element modeling of the global systems, with connection modeling included. To date the model is successful within the early limitations enacted for initially simplifying the simulation.
机译:科罗拉多州立大学正在进行复合木混凝土地板/甲板系统的实验和分析研究。这项研究采用了新颖的剪力键/锚固细节,在办公大楼的实木地板上覆盖了混凝土层,从而形成了复合地板。详细信息利用缺口传递接合材料中的轴承应力和剪切应力以进行层间力传递,而不是连接器剪切力。与普通的机械连接器相比,连接细节产生了更高程度的复合作用。正在研究用于住宅,办公室等和短跨度桥梁的系统。实验室测试包括对锚的拉拔测试,对连接细节的层间滑移测试,全尺寸梁以及单向地板和厚甲板的先导载荷测试。本文还描述了层间力传递的力学分析,切口-锚固连接处的表面间接触应力以及附近连续体行为的分析研究。利用了包括线到线(L-L)和节点到节点(N-N)链接元素的有限元公式。适用于层间滑移试样和分层梁试验试样。在后者中,通过将实验结果与全局系统的严格分层有限元建模(包括连接建模)进行比较来检查复合作用的程度。迄今为止,该模型在为最初简化模拟而制定的早期限制范围内是成功的。

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