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Light Weight Structures - Structural Analysis for Weight Optimization and Joining Techniques of Dissimilar Materials

机译:轻量级结构 - 体重优化的结构分析和不同材料的连接技术

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Light weight structures give significant advantages to products in the Industrial sector. Component weight-saving plays a major role in improving the efficiency and performance of assembled systems. The introduction of lighter materials into products using dissimilar material joining techniques can create more weight savings and leads to lighter structures. Structural optimization is another method to optimize the material layout without affecting overall performance of the product.This paper discusses the methods to create lighter structures by the introduction of lighter materials in structures and structural optimization methods. Lighter materials are introduced in the structure using dissimilar material joining techniques. Joining processes such as thermal shrink-fit and mechanical press-fit are useful for metal to metal components. Similarly, adhesively bonded joints are useful for both metal and non-metal (plastics and composites) components. The aim of this study is to combine the advantages of introducing lighter material in structures and optimized design using structural optimization. In this paper detailed study on the structural analysis approach for some of the common dissimilar material joining techniques is presented. Topology optimization methodology is discussed in detail using a case study on a lighter body which is introduced through joining techniques. A parametric optimization method is proposed in this paper to consider the optimal percentage of weight saving and the overall cost of the structure which includes the material and manufacturing cost. This paper presents a novel approach of introducing lighter materials in combination with structural optimization.
机译:轻量级结构对工业部门的产品具有显着的优势。组件重量在提高组装系统的效率和性能方面发挥了重要作用。使用不同材料连接技术将较轻的材料引入产品中可以节省更多的重量,并导致较轻的结构。结构优化是优化材料布局而不影响产品的整体性能的另一种方法。本文讨论了通过引入结构和结构优化方法的较轻的材料来创造较轻结构的方法。使用不同材料连接技术在该结构中引入较轻的材料。加入过程,如热收缩配合和机械压制配合可用于金属与金属组分。类似地,粘合接头可用于金属和非金属(塑料和复合材料)组分。本研究的目的是将在结构中引入较轻的材料和使用结构优化的优化设计来结合优势。本文提出了一些常见不同材料连接技术的结构分析方法的详细研究。使用案例研究使用在通过连接技术引入的较轻的主体上进行详细讨论拓扑优化方法。本文提出了参数优化方法,以考虑重量百分比的重量百分比和包括材料和制造成本的结构的总成本。本文介绍了一种与结构优化结合引入较轻材料的新方法。

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