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Optimization of chipping parameters to mitigate the damage in a concrete substrate using a discontinuum modelling approach

机译:利用离区模型方法减轻混凝土基板损伤的切削参数优化

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Concrete chipping is frequently employed to remove the surface of deteriorated concrete substrate to allow the placement of repair material. Previous studies have revealed that subsurface microfractures generated during chipping is one of the most influential factors that decreases the interfacial bond strength between the old concrete and the repair material. This study focuses on the damage mechanism in a concrete substrate caused by a breaker chisel and aims to propose a chipping method to control the damage severity. To achieve this, a numerical model simulating a concrete substrate composed of mortar and coarse aggregates was constructed in the framework of the discrete element method. Concrete chipping simulations with the numerical model illustrated the mechanism of microfractures extending to a deeper region from the chipped surface with the penetration of coarse aggregates impacted by the breaker chisel. The numerical simulation further demonstrated that the chisel tip shape, chipping depth, and chipping velocity play a pivotal role in controlling the near-surface damage, whilst chipping inclination does not. A stepwise chipping method that removes the concrete in layers with a sharp-pointed chisel tip was proposed, since based on the numerical result the subsurface damage depth was reduced. Consequently, using this approach may improve the bond strength for concrete repair. (C) 2020 Elsevier Ltd. All rights reserved.
机译:通常采用混凝土碎屑去除劣化的混凝土基板的表面,以允许放置修复材料。以前的研究表明,在切削过程中产生的地下微裂缝是最有影响力的因素之一,可以降低旧混凝土和修复材料之间的界面粘结强度。本研究专注于破碎机凿引起的混凝土基材中的损伤机制,并旨在提出一种控制伤害严重程度的切屑方法。为此,在离散元件方法的框架中构建模拟由砂浆和粗聚集体组成的混凝土基板的数值模型。使用数值模型的混凝土碎屑模拟示出了从切屑表面延伸到深层区域的微折射机制,粗糙的聚集体受到破碎器凿的渗透。数值模拟进一步证明了凿尖形状,切削深度和切碎速度在控制近表面损伤时起着枢转作用,而碎裂倾斜度不存在。提出了一种逐步碎裂的方法,其在具有尖尖的凿尖端的层中除去混凝土,因为基于数值结果,降低了地下损伤深度。因此,使用这种方法可以改善混凝土修复的粘合强度。 (c)2020 elestvier有限公司保留所有权利。

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