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Uncracked joints in plain concrete pavements: causes, effects and possibilities of improvements

机译:普通混凝土路面中未破裂的缝:成因,影响和改进的可能性

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AbstractDuring the construction of Jointed Plain Concrete Pavements (JPCPs) in Chile, it was observed that joints remained uncracked. The objectives of this paper are to evaluate the effects of uncracked joints (UnCrJ) in JPCPs and to propose possible solutions or improvements to avoid or minimize this phenomenon. Considering low thermal amplitude as cause of UnCrJ, a rational-based, detailed and empirically validated model is used to predict UnCrJ and crack width. The modelled results are not only due to material changes but also to the location of the series of cracks in time in the JPCP system. The paper contributes with this rational approach, instead of an empirical-simplified one, to achieve the objectives. For the modelled conditions, the "as-built" slab length range is 8 m to 56 m instead of the 4 m designed one. Then, more curling, joint faulting, water infiltration in sealed joints and load transfer efficiency ≤ 70% are expected. The alternative solutions proposed are associated to innovations as short joints spacing, unsealed joints and saw-cuts up to 50% thickness made with thin blade (≤ 3mm), which was verified with new field evidence provided in the article.
机译:摘要在智利建造节理式普通混凝土路面(JPCP)期间,观察到节理没有破裂。本文的目的是评估JPCP中未破裂的接头(UnCrJ)的影响,并提出可能的解决方案或改进措施,以避免或最小化此现象。考虑到低的热振幅是造成UnCrJ的原因,使用了基于理性,详细且经过经验验证的模型来预测UnCrJ和裂纹宽度。建模结果不仅取决于材料变化,而且还取决于JPCP系统中一系列裂纹的及时位置。本文通过这种理性的方法,而不是经验简化的方法,来实现目标。对于建模条件,“已建成”的平板长度范围为8 m至56 m,而不是设计的4 m。然后,预计会出现更多的卷曲,接头断裂,密封接头中的水渗透以及载荷传递效率≤70%。提出的替代解决方案与创新相关联,如节距短,未密封节和用薄刀片(≤3mm)制成的厚度最大为50%的锯切,已在本文中提供了新的现场证据进行了验证。

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