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Planning algorithms for in-situ production of free-form concrete panels

机译:自由形混凝土面板原位生产的规划算法

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Various materials are used when fabricating free-form panels, including glass, aluminum, titanium, and glass fiber reinforced concrete (GFRC), in addition to steel and concrete. Concrete has excellent structural stability, constructability, and economic efficiency, as well as the advantages of shape, thickness, forming of the finished surface and homogeneity of material. As a result, fast, low-cost technology has been developed to ensure the quality of free-form concrete panels (FCPs). FCPs, like precast concrete members, are generally constructed during in-plant production, on-site transportation, and installation. However, if FCPs are produced in site, cost savings of approximately 20% can be achieved due to savings in transportation and overhead at plants. In order to produce and install FCPs in site with restricted time and area, it is necessary to analyze and systematically link the related processes and influence factors. The purpose of this study is to develop planning algorithms for the in situ production of free-form concrete panels. For this study, the relationship between the factors affecting the production plan of FCPs was mathematically established. The algorithms proposed in this study support the quick and easy establishment of in-situ production plans, contributing to cost reduction, according to various influencing factors such as the number of CNC machines, number of production cycles, production time, production area, and lead time.
机译:在制造自由形式的面板时,除了钢和混凝土外,还使用各种材料,包括玻璃,铝,钛和玻璃纤维增​​强混凝土(GFRC)。混凝土具有出色的结构稳定性,可施工性和经济效率,以及形状,厚度,最终表面的形成和材料均质性的优点。结果,已经开发了快速,低成本的技术来确保自由形式混凝土面板(FCP)的质量。与预制混凝土构件一样,FCP通常在工厂内生产,现场运输和安装过程中构造。但是,如果现场生产FCP,则由于节省了运输和工厂的开销,可以节省大约20%的成本。为了在有限的时间和区域内生产和安装FCP,有必要对相关过程和影响因素进行分析和系统地链接。这项研究的目的是为自由形式混凝土面板的现场生产开发计划算法。对于本研究,数学上建立了影响FCP生产计划的因素之间的关系。本研究中提出的算法支持快速,轻松地建立原位生产计划,并根据各种影响因素(例如CNC机床的数量,生产周期数,生产时间,生产面积和生产线索)来降低成本。时间。

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