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A design tool for resource-efficient fabrication of 3d-graded structural building components using additive manufacturing

机译:利用增材制造技术高效地制造3d级结构建筑构件的设计工具

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摘要

The construction sector is under increasing pressure to improve its efficiency and effectiveness, reducing environmental impacts, material use and costs. A computational tool was developed to design and fabricate functionally graded building components. The material composition was defined based on voxel determination in order to design building elements with varying material stiffness. A cement-based conceptual building wall was investigated with a varied material composition, using two different lightweight aggregates, a granulated cork one and the other with expanded clay. This functionally graded material concept applied to lightweight building components will allow producing resource-efficient graded building components tailored to specific loading conditions, minimizing waste generation, emissions and resource consumption.
机译:建筑部门承受着提高其效率和效果,减少环境影响,减少材料使用和成本的越来越大的压力。开发了一种计算工具来设计和制造功能分级的建筑构件。基于体素确定来定义材料成分,以便设计具有不同材料刚度的建筑元素。使用两种不同的轻质骨料(一种是颗粒状的软木,另一种是用膨胀的粘土)对具有不同材料成分的水泥基概念建筑墙进行了研究。这种应用于轻质建筑构件的功能分级材料概念将允许生产针对特定负载条件量身定制的资源节约型建筑构件,从而最大程度地减少废物的产生,排放和资源消耗。

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