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Self-tensioning system for long-span wooden structural floors

机译:大跨度木结构地板的自张紧系统

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摘要

A patented self-tensioning system for long-span wooden structural floors is described that increases the performance of the deflected sections in terms of both resistance and deformation. The system is based on a force multiplier mechanism composed by two connecting rods which are secured to a post-stressing tendon. The mechanical device is activated by the transmission of the load from the structural element to the supports, causing an elongation and stressing the tendon. This transmission comes with a slight vertical displacement of the supports. Throughout this system, the intensity of the tensioning force varies with the applied load; thus, a more favorable bending moment distribution from the load is obtained, and the relative deformations of the different sections of the piece are reduced. This article presents a comparative study of the structural behavior of pi-shape cross section wooden structural floors with Spans from 9 m to 18 m, comparing sections with and without pre-stress, and sections with the self-tensioning system. (C) 2015 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.orgilicenses/by-nc-nd/4.0/).
机译:描述了一种获得专利的用于大跨度木质结构地板的自张紧系统,该系统在阻力和变形方面都提高了挠曲部分的性能。该系统基于力倍增机构,该力倍增机构由固定在后应力筋上的两个连杆组成。通过将负载从结构元件传递到支撑件来激活机械设备,从而导致伸长并向肌腱施加压力。这种传输伴随着支架的垂直位移。在整个系统中,张紧力的强度随所施加的载荷而变化。因此,从载荷获得了更有利的弯矩分布,并且减少了工件不同部分的相对变形。本文对跨度为9 m至18 m的pi形截面木结构地板的结构性能进行了比较研究,比较了有无预应力的截面和有自张紧系统的截面。 (C)2015作者。由Elsevier Ltd.发布。这是CC BY-NC-ND许可下的开放获取文章(http://creativecommons.orgilicenses/by-nc-nd/4.0/)。

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