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Influence of controlled permeable formwork liner on surface quality of self compacting concrete

机译:控制可渗透模板衬里对自压力混凝土表面质量的影响

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The resilience of strengthened or reinforced concrete is dependent upon the superior nature of concrete and its overall quality and excellence as a suitable cover material. Concrete acting as cover material is the only means by which destructive agents or other elements can access or infiltrate the structure resulting in corrosive damage to the rebar and causing other types of damage to occur. As a liner, the controlled permeable formwork (CPF), is an active technique that enhances concrete as a cover material. Moreover, this liner allows for air and water that is trapped inside to drain or spill out from the concrete's surface while retaining small particles and cement. Accordingly, this not only minimises the porosity of the surface area of concrete, but it also helps towards improving or enriching the actual content. However, it also reduces the size and proportion of water to cement ratio (w/c). This paper aims to present the influence of CPF liner concerning the resilience of surface quality properties of self compacting concrete (SCC). To achieve this aim, concrete samples were cast in relation to the impermeable formwork (IMF) and CPF liner. A series of experimental tests were then conducted at different stages in order to determine rebound number, dynamic hardness number, superficial Rockwell hardness number, wear resistance and abrasion resistance. The findings from conducting the experimental investigations revealed that CPF concrete acquired excellent resistance against the abrasion resistance ranging between 46% and 60%. Furthermore, the results showed that by the application of CPF liner, the cover concrete (thickness: 20 mm) turned harder, when compared to core concrete. The cover concrete (thickness: 15-mm) turned softer than core concrete in conventional cast concrete. (C) 2020 Elsevier Ltd. All rights reserved.
机译:加强或钢筋混凝土的可抵御性取决于混凝土的优越性及其整体质量和卓越,作为合适的覆盖材料。作为覆盖材料的混凝土是唯一可以通过该破坏性药物或其他元素可以访问或渗透结构的唯一方法,从而导致钢筋腐蚀损坏并导致发生其他类型的损害。作为衬里,受控渗透性模板(CPF)是一种激活技术,可增强混凝土作为覆盖材料。此外,该衬里允许空气和水被捕获以排出或从混凝土表面排出或溢出,同时保持小颗粒和水泥。因此,这不仅最小化了混凝土的表面积的孔隙,而且还有助于改善或富集实际内容。然而,它还将水的尺寸和比例降低到水泥比(w / c)。本文旨在展示CPF衬里关于自压力混凝土(SCC)表面质量特性的影响。为了实现这种目的,将混凝土样品与不可渗透的模板(IMF)和CPF衬里相对施放。然后在不同阶段进行一系列实验测试,以确定回弹数,动态硬度数,表面岩石硬度数,耐磨性和耐磨性。进行实验研究的发现表明,CPF混凝土获得了耐磨损性的优异抗性,范围为46%和60%。此外,结果表明,与核心混凝土相比,通过施加CPF衬里的应用,盖子混凝土(厚度:20mm)变硬。盖子混凝土(厚度:15毫米)比传统铸混凝土中的芯混凝土更柔软。 (c)2020 elestvier有限公司保留所有权利。

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