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首页> 外文期刊>KSCE journal of civil engineering >Mechanical Properties of GFRP Slip-Form for In-Situ Application
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Mechanical Properties of GFRP Slip-Form for In-Situ Application

机译:GFRP滑模的原位应用力学性能

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In this paper, a more effective construction method is introduced, wherein the mechanical advantages of Glass Fiber Reinforced Polymer (GFRP) are applied to the slip-form method. The slip-form method, which is a typical moving form method, has advantages such as reduced construction duration and simple components because it enables continuous forming work of concrete in a single construction. However, it is vulnerable to corrosion, quality control is difficult, and the form plate cannot be reused. In this study, a tensile test was carried out on a GFRP plate by using a new method to apply the steel form to the GFRP plate. Effective GFRP slip-form shape and the application method were proposed by conducting finite element analysis and parametric analysis based on the results of the GFRP plate tensile test; performance was verified through a structural test. From the test results, the GFRP slip-form showed better structural performance than the steel form, and the GFRP slip-form construction method may reduce costs because of its reusability, easy quality control, and reduced construction duration.
机译:本文介绍了一种更有效的施工方法,其中将玻璃纤维增​​强聚合物(GFRP)的机械优势应用到滑模法中。滑动成型法是一种典型的移动成型法,具有诸如缩短施工时间和简化部件的优点,因为它能够在单个施工中进行混凝土的连续成型工作。但是,它容易腐蚀,质量控制困难,并且模板不能重复使用。在这项研究中,通过使用新方法将钢模板应用于GFRP板,对GFRP板进行了拉伸试验。通过对玻璃钢拉力试验结果进行有限元分析和参数分析,提出了有效的玻璃钢滑模形状和应用方法。通过结构测试验证了性能。从测试结果来看,GFRP滑模显示出比钢模更好的结构性能,并且GFRP滑模的施工方法可重复使用,易于控制质量并缩短了工期,因此可以降低成本。

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