环境荷载作用下高级钢筋混凝土路面早期开裂行为

M. Kashif, Ahsan Naseem, Nouman Iqbal, P. D. Winne, H. Backer
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引用次数: 0

摘要

先进钢筋混凝土路面(ARCP)是连续钢筋混凝土路面(CRCP)的技术创新,其包含的钢筋量显著减少,基本性能与连续钢筋混凝土路面相同。这种刚性路面结构的新概念是通过在预定裂缝位置使用部分长度钢筋来消除CRCP的不必要的连续纵向钢筋。在比利时,采用局部表面锯切作为最有效的诱导裂纹方法,通过在CRCP的预定位置诱导裂纹来消除早期裂纹模式的随机性。基于CRCP中连续纵向钢筋的应力分布和局部表面锯切作为诱导裂缝方法的有效性,设计了ARCP的配筋布设。建立了具有部分表面锯切的ARCP的三维有限元模型。通过对比利时CRCP断面裂纹特征的现场观测,验证了有限元模拟所得的早期裂纹萌生和扩展特征。结果表明,即使在显著减少连续加筋量的情况下,ARCP也表现出与CRCP相同的开裂特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Early-age cracking behavior of advanced reinforced concrete pavement under environmental loading
The technological innovation of continuously reinforced concrete pavement (CRCP) that contains a significantly reduced amount of reinforcement and the same fundamental behaviour as CRCP is called advanced reinforced concrete pavement (ARCP). This new concept of a rigid pavement structure is developed to eliminate unnecessary continuous longitudinal steel bars of CRCP by using partial length steel bars at predetermined crack locations. In Belgium, partial surface saw-cuts are used as the most effective crack induction method to eliminate the randomness in early-age crack patterns by inducing cracks at the predetermined locations of CRCP. The reinforcement layout of ARCP is designed based on the distribution of steel stress in continuous longitudinal steel bar in CRCP and the effectiveness of partial surface saw-cuts as a crack induction method. The 3D finite element (FE) model is developed to evaluate the behaviour of ARCP with partial surface saw-cuts. The early-age crack characteristics in terms of crack initiation and crack propagation obtained from the FE simulation are validated with the field observations of cracking characteristics of the CRCP sections in Belgium. The finding indicates that ARCP exhibits the same cracking characteristics as CRCP even with a significantly reduced amount of continuous reinforcement.
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