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New design for assembly methodology adapted to large size products: Application on a solar tracker design

机译:适用于大尺寸产品的组装方法的新设计:在太阳能跟踪器设计上的应用

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This paper describes a new design methodology for long life and large size (Ll-Ls) product assembly, which has been developed modifying and merging existing Design for Assembly (DfA) methodologies to adapt them to the particularities of this kind of products. These goods are often formed by different large and heavy subcomponents that need to be assembled and commissioned on field, which require the use of several people or special machinery, aspects that are not considered in traditional DfA methodologies. The new methodology, through a Lucas-Hull DfA methodology based approach, gives the chance to evaluate and enhance different design options in the design phase without the need to construct and test prototypes, which are usually quite expensive for this typology of products. An in-house tool has been created to help the designer in the evaluation of different options, where the identifications of the critical features that penalize the assembly of Ll-Ls products are easily identifiable. A case study has been carried out over a solar tracker to test the new approach where design efficiency has been optimized up to 20.4 percentage points through the advices given by the methodology. This means that the optimized design can save up to the 22.8% of the assembly cost in an standard 4.6MW plant, which usually has up to 850 solar trackers. Yet, although the results are really promising, the need to study and add logistic factors to the methodology for this kind of products has been proven, as involved high costs in the whole installation process need to be considered.
机译:本文介绍了一种适用于长寿命和大尺寸(Ll-Ls)产品组装的新设计方法,该方法已经过修改和合并现有的“组装设计”(DfA)方法,以使其适应此类产品的特殊性。这些商品通常由需要在现场组装和调试的不同的大型和重型子组件组成,这需要使用多个人员或专用机械,而传统DfA方法中并未考虑这些方面。通过基于Lucas-Hull DfA方法论的方法,新的方法论可以在设计阶段评估和增强不同的设计方案,而无需构建和测试原型,而这种原型对于这种产品类型而言通常是相当昂贵的。已经创建了一种内部工具来帮助设计人员评估不同的选择,在该工具中,可以容易地识别出不利于组装Ll-Ls产品的关键特征。通过太阳能跟踪器进行了案例研究,以测试新方法,其中通过该方法给出的建议将设计效率优化至20.4个百分点。这意味着优化的设计可以在标准的4.6MW工厂中节省多达22.8%的组装成本,该工厂通常具有850个太阳能跟踪器。然而,尽管结果确实令人鼓舞,但由于需要考虑整个安装过程中的高成本,因此已经证明需要研究并为此类产品的方法添加逻辑因素。

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