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Harmony Search Optimization of Nozzle Movement for Additive Manufacturing of Concrete Structures and Concrete Elements

机译:混凝土结构和混凝土元件添加剂制造的喷嘴运动和谐搜索优化

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There are several ways of using three-dimensional printing techniques in the construction industry. One method that seems quite feasible is the concreting of walls and structural components starting at the bottom and progressing up in layers according to the principles of additive manufacturing. The goal of this study is to optimize the movements of a nozzle at one level that will result in this operation. This study considers that the movements of the nozzle can be of two types: rectangular only (i.e., only in x and y directions) or more freely, including moving in diagonal directions. Applications are performed on four hypothetical flats (with 7, 8, 14, and 31 walls, respectively) and a structural component with 17 members. It is shown that as the number of walls and members increase, the problem of optimizing the movements of the nozzle becomes increasingly difficult due to exponentially increasing path combinations. A comparison is presented in terms of the ratio of movements of the nozzle without concreting to total distances traveled. The optimization process is conducted using the Harmony Search algorithm with a special coding and encoding system.
机译:有几种在建筑业中使用三维印刷技术的方法。一种似乎是可行的一种方法是根据添加剂制造原理,在底部开始并在层中逐层进行壁和结构部件的混凝土。本研究的目标是在一个级别优化喷嘴的运动,这将导致该操作。本研究认为,喷嘴的运动可以是两种类型:仅限矩形(即,仅在x和y方向上)或更自由,包括在对角线方向上移动。应用在四个假想单位(分别有7,8,14和31个壁)和具有17个成员的结构部件进行。结果表明,随着墙壁和构件的增加,由于指数增加的路径组合,优化喷嘴运动的问题变得越来越困难。就喷嘴的运动比而没有混凝土的运动比较来呈现比较。使用具有特殊编码和编码系统的和声搜索算法进行优化过程。

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