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Low-Cracking High-Performance Concrete (LC-HPC) for Durable Bridge Decks

机译:适用于耐用桥面板的低裂缝高性能混凝土(LC-HPC)

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摘要

The goal of this study was to implement cost-effective techniques for improving bridge deck service life through the reduction of cracking. Work was performed both in the laboratory and in the field, resulting in the creation of Low-Cracking High-Performance Concrete (LC-HPC) specifications that minimize cracking through the use of low slump, low paste content, moderate compressive strength, concrete temperature control, good consolidation, minimum finishing, and extended curing. This paper documents the performance of 17 decks constructed with LC-HPC specifications and 13 matching control bridge decks based on crack surveys. The LC-HPC bridge decks exhibit less cracking than the matching control decks in the vast majority of cases. Only two LC-HPC bridge decks have higher overall crack densities than their control decks, which are the two best performing control decks in the program, and the differences are small. The majority of the cracks are transverse and run parallel to the top layer of the deck reinforcement. The results of this study demonstrate the positive effects of reduced cement paste contents, concrete temperature control, limitations on or de-emphasis of maximum concrete compressive strength, limitations on maximum slump, the use of good consolidation, minimizing finishing operations, and application of curing shortly after finishing and for an extended time on minimizing cracking in bridge decks.
机译:这项研究的目的是实施具有成本效益的技术,以通过减少开裂来延长桥面板的使用寿命。在实验室和现场都进行了工作,从而创建了低裂缝高性能混凝土(LC-HPC)规范,该规范通过使用低坍落度,低浆含量,适度的抗压强度,混凝土温度来最大程度地减少开裂控制,良好的固结性,最小的修整度和延长的固化时间。本文记录了根据LC-HPC规范构造的17个甲板的性能以及基于裂缝测量的13个匹配的控制桥面板的性能。在大多数情况下,LC-HPC桥面板的裂缝比相匹配的控制面板的裂缝少。只有两个LC-HPC桥面板的总体裂缝密度高于其控制面板,而控制面板是程序中性能最好的两个控制面板,差异很小。大多数裂缝是横向的,并且平行于甲板钢筋的顶层。这项研究的结果证明了降低水泥浆含量,控制混凝土温度,限制或降低最大混凝土抗压强度,限制最大坍落度,使用良好的固结,最大程度地减少了精加工操作和固化的作用。修整后不久,并延长时间以最大程度地减少桥面板的开裂。

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