具有封闭截面的薄壁复合结构在压缩条件下的稳定性

Kuba Rosłaniec, P. Różyło
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引用次数: 0

摘要

研究的目的是分析横截面类型对封闭(矩形)横截面薄壁复合材料柱稳定性的实验-数值影响。研究对象是由 CFRP 复合材料(碳纤维增强聚合物)制成的薄壁复合材料结构,其特点是截面形状为封闭的矩形,且具有相同的层配置。本研究对轴向受压柱进行了实验和数值研究,以确定屈曲载荷值和屈曲形式。实验研究使用带有光学变形测量系统的万能试验机进行。在进行实验测试的同时,还使用有限元法(FEM)进行了数值模拟。通过使用专用数值模型进行的数值研究和实验研究,可以全面分析横截面形状对结构屈曲现象的影响。本文的新颖之处在于使用跨学科测试方法来比较横截面几何形状对薄壁复合材料柱稳定性的影响。
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Stability of Thin-Walled Composite Structures with Closed Sections Under Compression
The purpose of the research was to analyze the experimental-numerical influence of the type of cross-section on the stability of thin-walled composite columns with closed (rectangular) cross-sections. The subject of the investigation was thin-walled composite structures made of CFRP composite (carbon fiber reinforced polymer), characterized by a closed rectangular cross-section shape of the profile and a identical ply configuration. In this study, experimental and numerical investigations of axially compressed columns were performed to determine the values of buckling loads and buckling forms. Experimental investigations were performed using a universal testing machine with an optical deformation measurement system. In parallel with the experimental tests, numerical simulations were made using the Finite Element Method (FEM). The numerical studies conducted using dedicated numerical models and the experimental studies made it possible to carry out a thorough analysis of the impact of the cross-sectional shape on the buckling phenomenon of the structure. The novelty of the present paper is the use of interdisciplinary testing methods to compare the effect of cross-sectional geometry on the stability of thin-walled composite columns.
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