承受弯矩和扭力的弹塑性结构的模型与实验结果比较

P. Purwanto, Han Ay Lie, Blinka Hernawan Prasetya
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引用次数: 0

摘要

对 20 × 20 毫米矩形截面的钢结构进行了实验测试和数值分析,并加载了弯矩(M)和扭力(T)组合,用于验证之前的研究。研究中使用的试样是悬臂网格梁,梁端有固定约束。试样平行于重力方向逐步加载,直至发生破坏。记录观察点上的载荷、位移和应变,根据 Von Mises 标准分析失效标准。使用 DIANA 数值模型进一步分析梁结构的内力和应力分布。数值分析使用了三维实体模型,以表示实验结果。与之前的研究相比,实验结果和数值分析结果非常吻合。实验应变数据显示,塑性接头在一个位置逐渐形成,其他位置也随之形成。使用 Von Mises 标准进行的分析表明,结构的屈服受弯曲的影响很大,比例为 ± 90%。与实验结果相比,数值模型确定的塑性接头位置相同。应力分布显示,最大应力位于截面的垂直外侧,这表明弯曲应力占主导地位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparation of Model and Experimental Results of Elastoplastic Structure Loaded with Bending Moment and Torsion
Experimental testing and numerical analysis were conducted on steel structure with 20 × 20 mm rectangular section loaded with combination of bending moment (M) and torsion (T), used to validated the previous study. Specimen used in the research was cantilever grid beam with fixed constraint at the end of the beam. The specimen was incrementally loaded parallel with gravity direction until failure occurred. Load, displacement and strain at observed point were recorded to analyze failure criteria based on Von Mises criteria. Numerical model using DIANA was used to analyze further the internal forces and stress distribution at the beam structure. 3D solid model was used for the numerical analysis in order to represent the experimental results. Experimental and numerical analysis results were in good agreement compared to the previous study. The experimental strain data shows that plastic joints formed gradually in one location and followed in other locations. Analysis using Von Mises criteria shows that the yield of the structure was significantly affected by bending with proportion of ± 90%. Numerical model located the same position of plastic joints compared to experimental. The stress distribution shows that the maximum stress is located at the vertical outer side of section which indicated that the bending stress is dominant.
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