Expanded range of testing of soil-steel bridge with use moving loads

C. Machelski, Politechnika Wrocławska, P. Tomala
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Abstract

n this paper the results of the live load tests of soil steel bridge are presented. The structure was designed with use of the largest possible corrugation type UltraCor. Parameters of analysed structure were referred to the current record structures in the term of span. Standard test procedure have been expended to check the efficiency of the position-changing loads i.e live loads but in a quasi-static approach. The measuring base was the upper part of the shell periphery equipped with inductive and dial gauges to determine deflections at regular layout. Paper presents another example of the formation of “hysteresis loop” where the live load is passing back and forth along the same path. In the case of a dense layout of measuring points it is possible to use a differential algorithm to estimate the bending moments in corrugated steel plates. Analysed case shows that the internal forces and displacements due to the live loads are much smaller than during construction. The purpose of the paper is to indicate the specific behaviour of soil-steel structures in relation to classical arch bridges.
移动荷载作用下土工钢桥试验范围的扩大
本文介绍了土工钢桥的活载试验结果。该结构是使用尽可能大的波纹型UltraCor设计的。所分析结构的参数在跨度方面参考了当前记录的结构。标准测试程序已扩展到检查位置变化负载(即活负载)的效率,但采用准静态方法。测量底座是外壳外围的上部,配有感应式和千分表,用于确定规则布局下的挠度。本文介绍了“磁滞回线”形成的另一个例子,其中活荷载沿着相同的路径来回传递。在测量点密集布局的情况下,可以使用微分算法来估计波纹钢板的弯矩。实例分析表明,活荷载引起的内力和位移比施工时小得多。本文的目的是指出土壤钢结构相对于经典拱桥的具体性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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