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首页> 外文期刊>Composite Structures >Short-term flexural behaviour of concrete filled pultruded GFRP cellular and tubular sections with pin-eye connections for modular retaining wall construction
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Short-term flexural behaviour of concrete filled pultruded GFRP cellular and tubular sections with pin-eye connections for modular retaining wall construction

机译:带钉眼连接的模块化拉挤玻璃纤维增​​强挤塑GFRP蜂窝和管状截面的短期挠曲特性

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摘要

A retaining wall system modularly assembled from pultruded glass fibre reinforced polymer (GFRP) sections filled with concrete is introduced in this paper. Two main components (i.e., plank and pile) of the modular system are investigated experimentally at different spans under four-point bending to understand different failure modes. The effect of concrete filling, infill concrete modulus, and section shape (round and square), section size (300-600 mm) and spacing (0-600 mm) are studied through validated finite element modelling and results are compared with the existing reinforced concrete solution. Results show that the concrete filling increases the bending stiffness and prevents premature local crushing, tendency of ovalisation and local buckling by providing lateral supports to GFRP walls. Depending on pile spacing, the square pile deflects 7-13% less than the round pile with equivalent cross-sectional area. It has been found that the existing concrete pile may be replaced by a similar size of concrete filled GFRP pile for comparable performance in terms of stiffness.
机译:本文介绍了一种由填充混凝土的拉挤玻璃纤维增​​强聚合物(GFRP)部分模块化组装而成的挡土墙系统。在四点弯曲的情况下,在不同跨度上对模块化系统的两​​个主要组件(即木板和桩)进行了实验研究,以了解不同的失效模式。通过验证的有限元模型研究了混凝土填充,填充混凝土模量和截面形状(圆形和正方形),截面尺寸(300-600毫米)和间距(0-600毫米)的影响,并将结果与​​现有的钢筋混凝土进行了比较具体的解决方案。结果表明,通过为GFRP墙提供侧向支撑,混凝土填料可提高弯曲刚度并防止过早的局部压碎,椭圆化和局部屈曲的趋势。根据桩间距的不同,方形桩的挠度比具有相同横截面面积的圆形桩小7-13%。已经发现,现有的混凝土桩可以用类似尺寸的混凝土填充的GFRP桩代替,从而在刚度方面具有可比的性能。

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