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Determination of the Shear Buckling Load of a Large Polymer Composite I-Section Using Strain and Displacement Sensors

机译:使用应变和位移传感器确定大型聚合物复合材料I型截面的剪切屈曲载荷

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摘要

This paper presents a method and procedure of sensing and determining critical shear buckling load and corresponding deformations of a comparably large composite I-section using strain rosettes and displacement sensors. The tested specimen was a pultruded composite beam made of vinyl ester resin, E-glass and carbon fibers. Various coupon tests were performed before the shear buckling test to obtain fundamental material properties of the I-section. In order to sensitively detect shear buckling of the tested I-section, twenty strain rosettes and eight displacement sensors were applied and attached on the web and flange surfaces. An asymmetric four-point bending loading scheme was utilized for the test. The loading scheme resulted a high shear and almost zero moment condition at the center of the web panel. The web shear buckling load was determined after analyzing the obtained test data from strain rosettes and displacement sensors. Finite element analysis was also performed to verify the experimental results and to support the discussed experimental approach.
机译:本文介绍了一种使用应变花环和位移传感器来感测和确定相当大的复合材料I型截面的临界剪切屈曲载荷和相应变形的方法和过程。被测样品是由乙烯基酯树脂,电子玻璃和碳纤维制成的拉挤复合梁。在剪切屈曲测试之前进行了各种试样测试,以获得I型截面的基本材料性能。为了灵敏地检测测试的I型截面的剪切屈曲,应用了二十个应变花环和八个位移传感器,并将其附着在腹板和法兰表面上。测试采用非对称四点弯曲加载方案。加载方案在腹板的中央产生了高剪切力和几乎为零的弯矩条件。在分析了从应变花环和位移传感器获得的测试数据后,确定了腹板剪切屈曲载荷。还进行了有限元分析,以验证实验结果并支持所讨论的实验方法。

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