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Optimization of casting process parameters for homogeneous aggregate distribution in self-compacting concrete: A feasibility study

机译:自密实混凝土中均质骨料分布的浇筑工艺参数优化:可行性研究

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The use of self-compacting concrete (SCC) as a construction material has been getting more attention from the industry. Its application area varies from standard structural elements in bridges and skyscrapers to modern architecture having geometrical challenges. However, heterogeneities induced during the casting process may lead to variations of local mechanical properties and hence to a potential decrease in load carrying capacity of the structure. This paper presents a methodology for optimization of SCC casting aiming at having a homogeneous aggregate distribution; a beam has been used as geometric example. The aggregate distribution is predicted by a numerical flow model coupled with a user defined volume fraction subroutine. The process parameters in casting with SCC in general are horizontal and vertical positions, movement, as well as the size of the inlet, and the duration of the filling etc., however since this work is the initial feasibility study in this field, only three process parameters are considered. Despite the reduction in the number of process parameters, the complexity involved in the considered casting process results in a non trivial optimal design set.
机译:自密实混凝土(SCC)作为建筑材料的使用已受到业界的更多关注。它的应用范围从桥梁和摩天大楼中的标准结构元素到具有几何挑战性的现代建筑,不一而足。然而,在铸造过程中引起的异质性可能导致局部机械性能的变化,并因此导致结构的承载能力的潜在降低。本文提出了一种优化SCC铸件的方法,其目的是使骨料分布均匀。光束已被用作几何示例。聚集分布是通过与用户定义的体积分数子例程结合的数字流模型来预测的。使用SCC进行铸造的工艺参数通常是水平和垂直位置,移动以及入口的大小和填充的持续时间等,但是由于这项工作是该领域的初步可行性研究,因此只有三个考虑工艺参数。尽管减少了工艺参数的数量,但是考虑的铸造工艺所涉及的复杂性却导致了非平凡的最佳设计方案。

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