冷弯型钢截面的残余应力:影响和测量技术概述

IF 3.2 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Ayad Mutafi , J.M. Irwan , Noorfaizal Yidris , Abdullah Faisal Alshalif , Yazid Saif , Hamdi Abdulrahman , Ala Mutaafi , Yasser Yahya Al-Ashmori , Mugahed Amran , Nelson Maureira-Carsalade , Siva Avudaiappan
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引用次数: 0

摘要

冷弯型钢(CFS)成员与热轧型钢相比具有显著的优势,主要是由于其高强度重量比和形成各种截面形状的通用性。这些特性使CFS成为设计和施工的有效选择。本文综述了现有的CFS设计方法,重点讨论了初始缺陷的影响。它还检查了各种技术测量残余应力在CFS部分,包括分析,实验和数值方法。该研究得出结论,虽然分析方法是有效的,但在考虑材料各向异性时,它们变得复杂。实验室技术提供了可靠的测量,但在检测厚度残余应力方面受到限制。数值方法提供了全面的见解,但需要进一步验证不同的材料和几何结构。本文强调需要先进的分析模型、改进的实验室方法和扩展的数值技术来解决现有的CFS结构残余应力评估的知识空白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Residual stresses in cold-formed steel sections: An overview of influences and measurement techniques
Cold-formed steel (CFS) members offer significant advantages over hot-rolled sections, primarily due to their high strength-to-weight ratio and versatility in forming various cross-sectional shapes. These attributes make CFS an efficient choice for design and construction. This paper reviews current design methods for CFS, focusing on the impact of initial imperfections. It also examines various techniques for measuring residual stress in CFS sections, including analytical, experimental, and numerical approaches. The study concludes that while analytical methods are effective, they become complex when accounting for material anisotropy. Laboratory techniques provide reliable measurements but are limited in detecting through-thickness residual stresses. Numerical approaches offer comprehensive insights but require further validation across different material and geometric configurations. The paper highlights the need for advanced analytical models, improved laboratory methods, and expanded numerical techniques to address existing knowledge gaps in residual stress assessment for CFS structures.
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来源期刊
Forces in mechanics
Forces in mechanics Mechanics of Materials
CiteScore
3.50
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0.00%
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