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Applicability of Decorative Concrete Overlays as a Context Sensitive Solution for Transportation Infrastructure

机译:装饰性混凝土覆盖层作为交通运输基础设施的上下文相关解决方案的适用性

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This research seeks to determine the feasibility of decorative concrete overlay (DCO) as an aesthetic treatment for new and existing concrete infrastructure components. The research approach includes exposing DCO-treated concrete samples to various strength and environmental conditions in the laboratory and field. Laboratory testing such as ultraviolet light exposure, flexural fatigue strength, 90-day salt-ponding and 90-day sodium-chloride tank submersion were conducted on two sets of concrete specimens aged 28 days and 125 days. The DCO designs evaluated in the research included a monochromatic-textured brick pattern and a polished multi-tone stone pattern. After 1500 hours of exposure to cycles of moisture and light, the accelerated ultraviolet light exposure showed no visual signs of surface degradation on DCO in terms of fading, color change, lustre, or cracking. The flexural fatigue testing results proved very effective given that the bond between concrete and DCO remained intact under cyclical loading. Also, the 90-day salt-ponding test displayed expected side effects of rusting under their metal embankment walls. Only sections in direct contact with the metal were permanently stained while all other sections were not affected. The sodium chloride submersion brick-designed specimens left behind minor salt-like residues on portions of the surface. Ultimately, the durability, versatility, and ease of application of DCO allude to its viability for aesthetically treating infrastructure.
机译:这项研究旨在确定装饰性混凝土覆盖层(DCO)作为新的和现有的混凝土基础设施组件的美学处理方法的可行性。研究方法包括将DCO处理过的混凝土样品暴露在实验室和现场的各种强度和环境条件下。对两组分别为28天和125天的混凝土标本进行了实验室测试,例如紫外线照射,弯曲疲劳强度,90天的盐浸和90天的氯化钠罐浸没。在研究中评估的DCO设计包括单色纹理的砖图案和抛光的多色调石头图案。在暴露于水分和光的循环下1500小时后,加速的紫外线暴露在DCO上没有出现褪色,变色,光泽或开裂的表面退化迹象。考虑到混凝土和DCO之间的粘结在循环载荷下保持不变,弯曲疲劳测试结果证明是非常有效的。此外,为期90天的盐浸试验还显示了其金属路堤壁下生锈的预期副作用。仅与金属直接接触的部分被永久性染色,而其他所有部分均不受影响。氯化钠浸没砖设计的标本在表面的某些部分上留下了少量的盐状残留物。最终,DCO的耐用性,多功能性和易用性暗示了其在美学处理基础设施方面的可行性。

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