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Numerical Analysis of Thermal Behavior of Concrete Cover Around FRP-Bars in Cold Region

机译:寒冷地区FRP筋周围混凝土罩热性能的数值分析

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The coefficient of thermal expansion of fiber reinforced polymer (FRP) in transverse direction is 3-8 times greater than that of hardened concrete. This thermal incompatibility between FRP bar and concrete in transverse direction may cause circumferential cracks within concrete at FRP bar/concrete interface under low temperatures and eventually the debonding of FRP bar from concrete. This paper presents numerical analysis using ADINA finite element software to investigate the thermal behavior of concrete cylinders reinforced with glass FRP bar (GFRP) in cold regions. The non-linear numerical results show that the first circumferential cracks occur within concrete at FRP bar/concrete interface at thermal loads △T_cr varied between -35 and —25℃ for GFRP bar-reinforced concrete cylinders having a ratio of concrete cover thickness to FRP bar diameter (c/db) varied from 0.8 to 3.6 and a concrete tensile strength of 4.1 MPa. The numerical radial tensile stresses in concrete at the interface compared with those predicted from the analytical model are similar until the appearance of the circumferential cracks in concrete whose analytical results are greater. The ratio c/db has no significant effect on the transverse thermal strains at FRP bar/concrete interface and also at external surface of concrete cover for a ratio of c/db ≥1.5. Also, the transverse thermal strains, at external surface of concrete cover, predicted from non-linear numerical model are in good agreement with those obtained from the linear analytical model and experimental tests.
机译:纤维增强聚合物(FRP)在横向上的热膨胀系数是硬化混凝土的3-8倍。 FRP筋和混凝土之间在横向上的这种热不相容性可能会导致在低温下FRP筋/混凝土界面处的混凝土内部出现周向裂纹,并最终导致FRP筋与混凝土脱粘。本文介绍了使用ADINA有限元软件进行的数值分析,以研究玻璃纤维增​​强筋(GFRP)加固的混凝土圆筒在寒冷地区的热行为。非线性数值结果表明,当玻璃纤维增​​强混凝土钢筋的混凝土盖层厚度与玻璃纤维增​​强混凝土的比值达到一定值时,在玻璃纤维混凝土钢筋/混凝土界面处的热载荷△T_cr在-35至-25℃之间变化时,混凝土中会出现第一周向裂纹。钢筋直径(c / db)在0.8到3.6之间变化,混凝土抗拉强度为4.1 MPa。与分析模型预测的结果相比,界面处混凝土的径向径向张应力数值相似,直到出现分析结果更大的混凝土周向裂纹为止。 c / db比率对c / db≥1.5的比率在FRP钢筋/混凝土界面处以及混凝土外表面的横向热应变没有显着影响。而且,由非线性数值模型预测的混凝土外层表面的横向热应变与从线性分析模型和实验测试获得的热应变非常吻合。

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