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A Framework for Optimizing Lap Splice Positions within Concrete Elements to Minimize Cutting Waste of Steel Bars

机译:用于优化混凝土元件内的液体剪接位置的框架,以最大限度地减少钢筋的切割浪费

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One of the material waste streams in the construction of concrete structures is the waste generated during cutting of steel bars to their final required length. The amount of waste generated to produce the required length of steel bars can be affected considerably by the cutting patterns adopted. Waste can, therefore, be minimized by optimizing the cutting pattern to be selected. Cutting patterns are a combination of bar lengths and, thus any change in the required lengths directly affects cutting patterns and the final amount of waste. This paper presents a framework for selection of the location of lap splices, through generating all possible lapping patterns, which define the bar lengths in cutting patterns. The focus is placed on steel bars used in concrete columns as their arrangement is affected by multiple parameters that make the manual preparation of shop drawings a tedious job. The developed framework is applied to a case study involving the construction of columns for an actual 6 storey building. The estimated waste produced after the adoption of optimal lapping patterns is compared with the actual waste generated based on the project shop drawings. The results indicate that considerable reduction in the steel bars wasted is achievable by optimizing the lapping patterns.
机译:混凝土结构建造中的材料废气流是在将钢筋切割到最终所需长度期间产生的废物。通过采用的切割图案,可以大大影响以产生所需长度的钢筋产生的废物量。因此,通过优化要选择的切割图案,可以最小化废物。切割图案是条形长度的组合,因此所需长度的任何变化直接影响切割图案和最终废物量。本文通过产生所有可能的研磨模式,提供了一种选择液体接头的位置的框架,其定义切割图案中的条形长度。将重点放在混凝土柱中使用的钢筋上,因为它们的布置受到多个参数的影响,使手动准备商店图纸是一个繁琐的工作。发达的框架适用于涉及实际6层建筑专栏施工的案例研究。将最佳研磨模式采用后产生的估计废物与基于项目店图纸产生的实际废物进行比较。结果表明,通过优化研磨模式,可以实现浪费的钢筋的大约减少。

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