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Vision of 3D printing with concrete — Technical, economic and environmental potentials

机译:三维印刷与混凝土 - 技术,经济和环境潜力的愿景

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摘要

A vision is presented on 3D printing with concrete, considering technical, economic and environmental aspects. Although several showcases of 3D printed concrete structures are available worldwide, many challenges remain at the technical and processing level. Currently available high-performance cement-based materials cannot be directly 3D printed, because of inadequate rheological and stiffening properties. Active rheology control (ARC) and active stiffening control (ASC) will provide new ways of extending the material palette for 3D printing applications. From an economic point of view, digitally manufactured concrete (DFC) will induce changes in the stakeholders as well as in the cost structure. Although it is currently too ambitious to quantitatively present the cost structure, DFC presents many potential opportunities to increase cost-effectiveness of construction processes. The environmental impact of 3D printing with concrete has to be seen in relation to the shape complexity of the structure. Implementing structural optimization as well as functional hybridization as design strategies allows the use of material only where is structurally or functionally needed. This design optimization increases shape complexity, but also reduces material use in DFC. As a result, it is expected that for structures with the same functionality, DFC will environmentally perform better over the entire service life in comparison with conventionally produced concrete structures.
机译:愿景与混凝土的3D打印介绍,考虑技术,经济和环境方面。虽然全球有几个展示3D印刷混凝土结构的陈列柜,但仍有许多挑战仍处于技术和处理水平。目前可用的高性能水泥基材料不能直接打印3D,因为流变和加强特性不足。主动流变控制(ARC)和主动加强控制(ASC)将提供延伸用于3D打印应用的材料调色板的新方法。从经济的角度来看,数字制造的混凝土(DFC)将诱导利益相关者的变化以及成本结构。虽然目前雄心勃勃地定量出现成本结构,但DFC呈现了许多潜在的机会,以提高施工过程的成本效益。必须与结构的形状复杂性相比,三维印刷与混凝土的环境影响。实施结构优化以及作为设计策略的功能杂交允许仅使用材料在结构上或功能上所需的位置。这种设计优化会增加形状复杂性,但也降低了DFC中的材料。结果,预期对于具有相同功能的结构,与常规产生的混凝土结构相比,DFC将在整个使用寿命期间更好地执行。

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