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Laboratory Characterization of The Load Transfer-Crack Width Relation for Innovative Short Concrete Slabs Pavements

机译:创新的短混凝土板路载荷传递裂纹宽度关系的实验室表征

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摘要

Aggregate interlock is the dominant load transfer mechanism in non-dowelled Jointed Plain Concrete Pavements, as the innovative short concrete slabs. Although the Load Transfer Efficiency of this pavement innovation is based on that mechanism, the structural design methods do not relate the Load Transfer Efficiency by aggregate interlock with its direct cause, which is the Crack Width under the joints. The objective of the present article is to characterise in the laboratory the Load Transfer Efficiency−Crack Width relation for innovative short slabs Jointed Plain Concrete Pavements. Additionally, as an alternative to large-scale laboratory tests to study the Load Transfer Efficiency, a practical test on a reduced scale is proposed. The results confirmed that short slabs Jointed Plain Concrete Pavements with high-quality aggregates are able to provide adequate Load Transfer Efficiency (above 70%) without dowels bars. Based on the laboratory results, complemented with previous field data, a Load Transfer Efficiency−Crack Width curve is proposed and made available for structural design methods of short slabs Jointed Plain Concrete Pavements. Finally, the laboratory test on a reduced scale is useful to develop specific Load Transfer Efficiency−Crack Width relations using standard equipment available in traditional concrete laboratories.
机译:聚集互锁是非销钉连接普通混凝土路面中的主要负载转移机制,作为创新的短混凝土板。虽然这种路面创新的负载转移效率是基于该机制,但结构设计方法不会通过其直接原因与聚集互锁的负载转移效率相关,这是关节下方的裂缝宽度。本文的目的是在实验室中表征载荷转移效率 - 裂缝宽度关系,用于创新的短平板连接普通混凝土路面。另外,作为研究负载转移效率的大规模实验室测试的替代方案,提出了对降低规模的实际测试。结果证实,短平板与高质量聚集体的简短平板普通的混凝土路面能够提供足够的负载转移效率(超过70%),没有销钉棒。基于实验室结果,补充了先前的现场数据,提出了一种负载转移效率 - 裂纹宽度曲线,并可用于短平板连接普通混凝土路面的结构设计方法。最后,在减少规模上的实验室测试可用于使用传统混凝土实验室中可用的标准设备开发特定的负载转移效率 - 裂缝宽度关系。

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