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An Investigation of Sheet-stiffener Panels Subjected to Compression Loads with Particular Reference to Torsionally Weak Stiffeners

机译:承受压缩载荷的片式加劲肋板的研究,特别是关于扭转弱加劲肋的研究

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摘要

A total of 183 panel specimens of 24ST aluminum alloy with nominal thickness of 0.020, 0.025, and 0.040 inch with extruded bulb-angle sections of 12 shapes spaced 4 and 5 inches as stiffeners were tested to obtain the buckling stress and the amplitude of the maximum wave when buckled. Bulb angles from 3 to 27 1/2 inches long were tested as pin-end columns. The experimental data are presented as stress-strain and column curves and in tabular form. Some comparisons with theoretical results are presented. Analytical methods are developed that make it possible for the designer to predict with reasonable accuracy the buckling stress and the maximum-wave amplitude of the sheet in stiffened-panel combinations. The scope of the tests was insufficient to formulate general design criteria but the results are presented as a guide for design and an indication of the type of theoretical and experimental work that is needed.
机译:总共测试了183个24ST铝合金面板样品,标称厚度为0.020、0.025和0.040英寸,以12个形状分别为4英寸和5英寸的挤压球形角型材作为加强筋进行测试,以获得屈曲应力和最大振幅。弯曲时挥手。测试了从3到27 1/2英寸长的灯泡角度作为销端圆柱。实验数据以应力-应变曲线和柱形曲线以及表格形式呈现。提出了一些与理论结果的比较。开发了分析方法,使设计人员可以以合理的精度预测加劲板组合中板材的屈曲应力和最大波幅。测试的范围不足以制定一般的设计标准,但结果作为设计指南和所需理论和实验工作类型的指示。

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    Dunn Louis G.;

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  • 年度 1940
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