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首页> 外文期刊>Proceedings of the Institution of Civil Engineers. Structures and Buildings >Physical testing for concentrically loaded columns of pultruded glass fibre reinforced plastic profile
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Physical testing for concentrically loaded columns of pultruded glass fibre reinforced plastic profile

机译:拉挤玻璃纤维增​​强塑料型材的同心加载柱的物理测试

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摘要

This paper concerns polymeric composite columns manufactured by the pultrusion process. The behaviour of such members is investigated to provide a basis for future assessment of design methods. The minor-axis buckling characteristics of twelve wide-flange columns are presented. The main parameters varied are height (63·3 m, 4·8 m and 3·3 m) and nominal cross-sectional dimensions (152 x 152 x 9·53 mm, 203 x 203 x 9·53 mm and 203 x 203 x 12·7 mm). Deformation and failure characteristics are presented. It is found that theoretical Euler critical buckling loads generally correlate well with maximum test loads and critical loads derived from Southwell plots. A detailed discussion is presented to show that differences are due to imperfections in the column specimens and the test rig. At the shortest column height, the onset of local compression flange buckling is found to lower resistance by way of modal-coupling with the global bending deformation.
机译:本文涉及通过拉挤成型工艺制造的聚合物复合材料柱。对此类成员的行为进行了调查,以为将来评估设计方法提供基础。介绍了十二个宽法兰柱的短轴屈曲特性。变化的主要参数是高度(63·3 m,4·8 m和3·3 m)和标称横截面尺寸(152 x 152 x 9·53 mm,203 x 203 x 9·53 mm和203 x 203 x 12·7毫米)。给出了变形和破坏特征。发现理论上的欧拉临界屈曲载荷通常与最大试验载荷和从Southwell图得出的临界载荷具有良好的相关性。进行了详细的讨论,以表明差异是由于色谱柱样品和测试装置的缺陷造成的。在最短的柱高处,通过模态耦合与整体弯曲变形的方式,发现局部压缩凸缘屈曲的开始会降低阻力。

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