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Design Considerations and Innovative Approach for Restoration of Historic Landmarks in Old Montreal

机译:旧蒙特利尔历史地标恢复的设计考虑因素与创新方法

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Restoration of some streets in Old Montreal is achieved using granite pavers bonded with a mortar bed to a concrete slab. The technique was originally used for the pavement of St-Paul Street with stone bricks back in the 1800's. A similar approach is being used in 2016 to renovate the very same street, except for the materials used in casting the foundation slab. In order to space out the expansion joints and prevent drying shrinkage cracking, fibre reinforcement and an expansive component are incorporated in the concrete. The concept was successfully used in bridge deck rehabilitation projects such as Girouard Overpass deck overlay. The basic principle of this approach is to generate a chemical expansion in the concrete (200 to 300 gm/m) using an expansive component, and to restrain the generated expansion through the combined action of ordinary peripheral steel reinforcement in the slab and steel fibre reinforcement in the concrete. The objective is to mitigate shrinkage stresses by keeping the strain balance as low as possible and allowing the concrete additional time to develop sufficient tensile strength, such that the stresses induced in the concrete slabs will remain lower than the concrete tensile strength.Restraint of expansion by the steel fibres and the peripheral reinforcement induces an initial compressive stress in the concrete slab. A part of this stress is used to compensate for the drying shrinkage, whereas the remaining part (if any) is used to resist incidental restrained deformation (e.g. thermal strains) cracking. Concrete mixture proportioning, placement, and curing need to be optimized in order to achieve enough expansion to adequately control cracking due to restrained shrinkage. After proper moist curing of the slab, the pavers are bonded to its top surface using a latex-modified mortar (latex to cement ratio of about 11% by mass). The latex-modified mortar used as a levelling bed underneath the pavers has a low vapour permeability that partially seals the concrete surface and further contributes to minimize drying shrinkage cracking. Since 2011, various historic landmarks in the City of Montreal have been restored using concrete containing an expansive component. To this date, monitoring and performance reports have showed that the chemical prestress approach is quite effective in decreasing shrinkage cracking in paved street foundations, thereby allowing the placement of longer slabs with significantly fewer expansion joints.
机译:使用与砂浆床合并到混凝土板的花岗岩摊铺机来恢复旧蒙特利尔的一些街道。该技术最初用于1800年代的石砖路面的路面。除了用于铸造基础板坯的材料外,2016年正在使用类似的方法来翻新相同的街道。为了使膨胀接头进行空间,防止干燥收缩裂化,纤维增强和膨胀部件掺入混凝土中。该概念已成功地用于桥牌康复项目,如Girouard立交桥覆盖层。这种方法的基本原理是使用膨胀部件在混凝土(200至300mg / m)中产生化学膨胀,并通过普通圆形钢筋在板坯和钢纤维增强件中的组合作用来抑制产生的膨胀在混凝土中。该目的是通过保持应变平衡尽可能低,并允许混凝土额外的时间来减轻收缩应力,并允许产生足够的拉伸强度,使得在混凝土板中诱导的应力将保持低于混凝土拉伸强度。通过钢纤维和周边增强件在混凝土板中引起初始压缩应力。这种应力的一部分用于补偿干燥收缩,而剩余部分(如果有的话)用于抵抗偶然抑制的变形(例如热菌株)开裂。需要优化混凝土混合,放置和固化,以便在抑制收缩率由于抑制而达到足够的扩张以充分控制裂缝。在适当的板坯湿润固化后,使用胶乳改性的砂浆(乳胶至水泥比为约11质量%)将摊铺机粘合到其顶表面上。用作摊铺机下方的水平床的乳胶改性砂浆具有低蒸汽渗透性,其部分密封混凝土表面并进一步有助于最小化干燥收缩裂缝。自2011年以来,蒙特利尔市的各种历史地标已经使用包含膨胀部件的混凝土恢复。在此日期,监测和绩效报告表明,化学预应力方法在铺砌的街道基础中减少收缩裂缝方面非常有效,从而允许将较长的板块放置在显着更少的膨胀接头中。

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