优化CRCP纵筋间距以避免水平裂缝

M. Kashif, P. De Winne, Muhammad Wisal Khattak, A. Outtier, H. De Backer
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摘要

连续配筋混凝土路面(CRCP)的特点是没有横向收缩缝,存在纵向和横向配筋。连续的纵向钢筋将由混凝土纵向收缩引起的横向裂缝紧紧地结合在一起,从而以最小的维护成本提供长期性能。对比利时弗兰德斯地区近期施工的CRCP进行的现场调查表明,横向裂缝下的纵向钢筋附近存在水平裂缝,最终导致铺装板边缘的打孔破坏。本文展示了在典型的佛兰德条件下,不同纵向配筋对CRCP水平开裂风险的影响的有限元研究结果。为此,使用有限元软件包Diana 10.2建立了CRCP的(3D)有限元模型。在保持CRCP配筋率不变的情况下,在铺装板外侧采用最窄间距为125mm的变纵向配筋。并与常规纵向配筋间距(170mm)进行了比较。纵向钢筋附近的混凝土应力发展随纵向钢筋间距的不同而变化。结果表明,当采用窄间距时,纵向钢筋附近的混凝土应力显著降低,最大可降低17%。此外,在铺装板外侧区域,纵向加筋中的钢筋应力最大降低了31.75%。
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Optimized Spacing Of The Longitudinal Reinforcement In CRCP To Avoid Horizontal Cracking
Continuously reinforced concrete pavement (CRCP) is characterized by the absence of transverse contraction joints and the presence of longitudinal and transverse reinforcement. The continuous longitudinal reinforcement holds the transverse cracks, caused by the longitudinal shrinkage of concrete, tightly together and thus provides long term performance with minimal maintenance cost. Field investigations on recently constructed CRCP's in Flanders region of Belgium indicated horizontal cracking in the vicinity of the longitudinal reinforcement under the transverse cracks which eventually causes the punch-out distress at the edge of the pavement slab. This paper shows the results of a finite element (FE) study to investigate the effect of varying longitudinal reinforcement on the risk of horizontal cracking in CRCP under typical Flanders conditions. For this purpose, a (3D) FE model of CRCP is developed using a FE package Diana 10.2. The varying longitudinal reinforcement with a most narrow spacing of 125mm in the outer region of the pavement slab is applied while keeping the same CRCP reinforcement ratio. A comparison is made with the conventional longitudinal reinforcement spacing (170mm). Development of concrete stress in the vicinity of the longitudinal reinforcement is plotted against the different longitudinal steel spacing. Findings show that the stress in concrete near longitudinal reinforcement is significantly reduced up to maximum 17% when the narrow spacing is used. In addition, the steel stress in the longitudinal reinforcing is reduced up to maximum 31.75% in the outer region of the pavement slab.
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