Modeling of corrosion-mechanical behavior of multi-element metal structures of transport works in real-world conditions

V. Chernykh
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Abstract

The article is part of the author’s dissertation research. Multi-element metal structures are widely used in the construction of transport structures (metal spans, trusses of railway bridges, overpasses, etc.). During operation, such structures are subjected to the joint effect of loads, temperatures, and corrosive media. In accordance with this, the task of predicting the behavior of such structures seems to be relevant. It consists in the development of effective models oriented to the calculation of the bearing capacity of structural elements subjected to corrosive wear. The article discusses the most common corrosion damage to metal multi-element structures of transport facilities, the classification of corrosion processes according to the nature of the surface destruction, the main types of metal elements and bridge structures. The main parameters characterizing the corrosive wear of metal structures were determined. Ways to account for the effect of aggressive environment on metal structures, i.e. well-known mathematical models and work, in which attention is paid to the problem of corrosion, wear modeling. The process of identifying corrosion wear models (determining unknown model coefficients) is described. The system of equations for determining the coefficients of a mathematical model of corrosive wear is given. The values of the coefficients of the models used to predict the behavior of structures, with a different choice of an intermediate point are given. A statically indefinable flat five-element truss of arbitrary cross section, part of the rods of which works in tension and part in compression is considered. For this design solves the problem of assessing durability. To solve this problem, use the corrected Euler method. The obtained numerical values of the durability of trusses of five rods, depending on the lengths of the rods.
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现实条件下运输工程多单元金属结构腐蚀力学行为建模
本文是作者论文研究的一部分。多单元金属结构广泛应用于交通结构(铁路桥、立交桥等金属跨、桁架)的施工中。在运行过程中,这些结构受到载荷、温度和腐蚀性介质的共同影响。根据这一点,预测这种结构的行为的任务似乎是相关的。它包括开发有效的模型,以计算结构构件在腐蚀磨损下的承载力。论述了交通设施金属多构件结构最常见的腐蚀损伤,根据表面破坏的性质对腐蚀过程进行了分类,并对金属构件和桥梁结构的主要类型进行了分析。确定了表征金属结构腐蚀磨损的主要参数。如何解释腐蚀环境对金属结构的影响,即众所周知的数学模型和工作,其中关注的问题是腐蚀,磨损建模。描述了识别腐蚀磨损模型(确定未知模型系数)的过程。给出了确定腐蚀磨损数学模型系数的方程组。给出了在选择不同中间点的情况下,用于预测结构性能的模型的系数值。考虑了一种任意截面的平面五元桁架,其中部分杆处于受拉状态,部分杆处于受压状态。因为这种设计解决了耐久性评估的问题。为了解决这个问题,可以使用修正后的欧拉法。得到的五根杆桁架的耐久性数值,取决于杆的长度。
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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