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Uniaxial creep behavior and prediction of recycled-PET polymer concrete

机译:再生PET聚合物混凝土的单轴蠕变行为及预测

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摘要

In this paper, we attempt to predict long-term creep using short-term creep and to define the characteristics of creep behavior of polymer concrete (PC) bound by recycled-polyester resign. Experimental variables are compressive stress/strength ratios and filler contents (CaCO_3 and fly-ash). The difference between the proposed model and the experimental long-term creep compliance was less than about 4%. The creep strain at early ages increases in PC more rapidly than in ordinary concrete. Creep occurs in PC as the result of molecular movement in the viscoelastic resign binder. The creep strain of PC without a filler was much higher than that of PC with a filler CaCO_3, which was more effective than the fly ash. The creep values increased with an increase in applied stress, although the values were not proportional to the stress ratio, because of the nonlinear viscoelastic behaviors of recycled-PET PC.
机译:在本文中,我们尝试使用短期蠕变来预测长期蠕变,并定义受再生聚酯辞职约束的聚合物混凝土(PC)的蠕变行为特征。实验变量是压应力/强度比和填料含量(CaCO_3和粉煤灰)。提出的模型与实验长期蠕变柔度之间的差异小于约4%。与普通混凝土相比,PC中早期蠕变应变的增长速度更快。蠕变是由于粘弹性签名粘合剂中分子运动的结果而在PC中发生的。没有填料的PC的蠕变应变比含有填料CaCO_3的PC的蠕变应变高得多,后者比粉煤灰更有效。蠕变值随施加应力的增加而增加,尽管该值与应力比不成正比,这是因为再生PET PC的非线性粘弹性行为。

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