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高强度钢在管状型材中的利用效率

The Efficiency of Utilisation of High-strength Steel in Tubular Profiles.

作者信息

Misiūnaitė Ieva, Gribniak Viktor, Rimkus Arvydas, Jakubovskis Ronaldas

机构信息

Laboratory of Innovative Building Structures, Vilnius Gediminas Technical University, Sauletekio av. 11, LT-10223 Vilnius, Lithuania.

出版信息

Materials (Basel). 2020 Mar 6;13(5):1193. doi: 10.3390/ma13051193.

Abstract

The use of high-strength steel (HSS) is a current trend of the construction industry. Tubular profiles are widely used in various structural applications because of their high stiffness-to-weight ratio, exceptional resistance to torsion, and aesthetic appearance. However, the increase of the strength for the same elastic modulus of the material and geometry of tubular profiles is often not proportional to the rise of the load-bearing capacity of the structural element. The obtained experimental results support the above inference. The study was based on the flexural test results of two groups of HSS and normal-strength steel (NSS) tubular specimens with a 100 × 100 × 4 mm (height × width × thickness) cross-section. Numerical (finite element) simulation results demonstrated that the shape of the cross-section influenced the efficiency of utilisation of HSS. The relationship between the relative increase of the load-bearing capacity of the beam specimen and the corresponding change of the steel strength determined the utilisation efficiency.

摘要

使用高强度钢(HSS)是建筑行业当前的一种趋势。管状型材因其高刚度重量比、出色的抗扭性和美观的外观而广泛应用于各种结构应用中。然而,对于相同弹性模量的材料和管状型材几何形状,强度的增加往往与结构元件承载能力的提高不成正比。获得的实验结果支持上述推断。该研究基于两组横截面为100×100×4毫米(高×宽×厚)的高强度钢和普通强度钢(NSS)管状试件的弯曲试验结果。数值(有限元)模拟结果表明,横截面形状影响了高强度钢的利用效率。梁试件承载能力的相对增加与钢材强度的相应变化之间的关系决定了利用效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/daba/7085040/27ee523cd900/materials-13-01193-g001.jpg

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