Investigation of the Bearing Capacity of Transport Constructions Made of Corrugated Metal Structures Reinforced with Transversal Stiffening Ribs

IF 2.7 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
V. Kovalchuk, M. Sysyn, Majid Movahedi Rad, S. Fischer
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引用次数: 0

Abstract

Methods of increasing the bearing capacity of corrugated metal structures of transport constructions using transversal stiffening ribs in the form of additional corrugation and stiffeners are given. Based on the theory of elasticity, a mathematical model for estimating the stress-strain state of transport constructions made of corrugated metal structures reinforced with stiffening ribs in the form of double corrugation was developed. The method of determining equivalent forces during rolling stock passage is offered. It has been established that double corrugation increases the bearing capacity of corrugated metal structures. Therefore, additional corrugation of corrugated metal structures reduces stresses by up to 20% and deflections by 50%. The obtained results show that the increase in rolling stock speed does not lead to a significant increase in stresses and strains in CMS when the railway track corresponds to the design state.
横向加筋波纹金属结构运输结构承载力研究
给出了采用附加波纹筋和加劲筋形式的横向加劲肋提高运输结构波纹金属结构承载力的方法。基于弹性力学理论,建立了波纹金属结构运输结构双波纹加劲肋结构应力-应变状态的数学模型。提出了确定车辆通行等效力的方法。研究表明,双波纹结构可以提高波纹金属结构的承载力。因此,波纹金属结构的额外波纹可减少高达20%的应力和50%的挠度。结果表明,当轨道处于设计状态时,列车速度的增加不会导致CMS内应力应变的显著增加。
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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来源期刊
Infrastructures
Infrastructures Engineering-Building and Construction
CiteScore
5.20
自引率
7.70%
发文量
145
审稿时长
11 weeks
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