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Nailing of Layers: A Promising Way to Reinforce Concrete 3D Printing Structures

机译:层钉:增强混凝土3D打印结构的有前途的方法

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摘要

Today, the extrusion-based 3D printing of concrete is a potential breakthrough technology for the construction industry. It is expected that 3D printing will reduce the cost of construction of civil engineering structures (removal of formwork) and lead to a significant reduction in time and improve working environment conditions. Following the use of this additive manufacturing layer-wise process, it is required to change the way concrete structures are designed and reinforced, especially for the parts of the structure under tension loads. Indeed, the extrusion-based concrete 3D printing process does not allow for the production of conventional reinforced concrete, and there is a need to develop other ways of compensating for the low mechanical performances of concrete, particularly in tension. In this study, the reinforcement of printed structures by using steel nails through the deposited layers of fresh concrete was investigated. Additionally, three-layer and 10-layer samples were reinforced with nails with varying inclination and spacing. The results show that inclined nails can be used to provide a flexural strengthening of the printing material in different directions.
机译:如今,基于挤压的混凝土3D打印已成为建筑行业的一项潜在突破技术。预计3D打印将减少土木工程结构的建造成本(拆除模板),并显着减少时间并改善工作环境。在使用这种增材制造逐层工艺之后,需要改变混凝土结构的设计和加固方式,尤其是在承受拉力载荷的情况下。实际上,基于挤出的混凝土3D打印过程不允许生产常规的钢筋混凝土,并且需要开发其他方式来补偿混凝土的低机械性能,特别是在拉伸方面。在这项研究中,研究了通过使用钢钉穿过新鲜混凝土的沉积层来增强印刷结构。此外,用倾斜度和间距不同的钉子加固了三层和十层样品。结果表明,倾斜的钉子可用于在不同方向上增强打印材料的抗弯强度。

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