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Estimating Method for Creep Property of GFRP Laminated Pipe

机译:GFRP层压管蠕变性能估算方法

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The purpose of the present work is to estimate the behavior of creep deformation of GFRP pipe under an internal hydraulic pressure where the both ends are free. The GFRP pipe is developed for renewal of an overage drain pipe or gas pipe. It is mainly made up of two layers where the glass fiber mat is used in the inside layer for corrosion resistance and the woven roving cloth is as the outside layer for pressure resistance.Before the internal hydraulic pressure creep test, the tensile creep tests are carried out with the dumbbell type specimen which is cut from the uncured laminated pipe and then is cured. The creep constitutive equation is obtained using the tensile creep data of short-term tests, by taking account of stress, temperature and tensile angle to reinforced glass fiber. Based on this creep constitutive equation, long-term creep behavior can be predicted. A reasonable comparison between the prediction and the tensile experiment is observed at time up to 10~6 second. The internal hydraulic pressure creep test on the pipe verified the creep constitutive equation.
机译:本作作品的目的是估计在内部液压下GFRP管道的蠕变变形的行为,其中两端是自由的。 GFRP管是开发的,用于更新过量排水管或气管。它主要由两层组成,其中玻璃纤维垫用于耐腐蚀性的内层,编织粗纱作为用于耐压的外层。在内部液压蠕变试验中,携带拉伸蠕变试验用哑铃型样品,由未固化层压管切割,然后固化。通过考虑到增强玻璃纤维的应力,温度和拉伸角度,使用短期试验的拉伸蠕变数据获得蠕变构成方程。基于该蠕变本构方程,可以预测长期蠕变行为。预测和拉伸实验之间的合理比较在时间上观察到高达10〜6秒。管道上的内部液压蠕变试验验证了蠕变本构方程。

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