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Structural optimization of modular product families with application to car space frame structures

机译:模块化产品系列的结构优化及其在汽车空间框架结构中的应用

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摘要

This paper extends classical structural optimization from single-product optimization to optimization of a whole family of products that have common modules. It integrates the family commonality problem with the finite element models of the structures. A general mathematical frame where optimization is seen as a balance between cost and performance is given. The most obvious cost function is mass, while performance is taken to be a weighted sum of compliances. As a case study, a car product family consisting of three products is presented. These three products are a base model, a seven-seat version, and a pickup version. The study shows how optimal results are effected by requiring modules to be shared between products. Loads emanating from prescribed acceleration fields that simulate crash situations are used. This is a proof-of-concept paper which is a first step toward including more general manufacturing costs than mass and performance measures other than compliance.
机译:本文将经典的结构优化从单产品优化扩展到具有通用模块的整个产品系列的优化。它将族共性问题与结构的有限元模型相结合。给出了将优化视为成本与性能之间的平衡的一般数学框架。最明显的成本函数是质量,而性能则是合规性的加权总和。作为案例研究,提出了一种汽车产品系列,该产品系列包括三种产品。这三个产品是基本型号,七座版本和皮卡版本。这项研究表明,要求产品之间共享模块如何影响最佳结果。使用了从模拟碰撞情况的规定加速度场发出的载荷。这是一种概念证明文件,是迈向包括比质量和性能指标(而非法规遵从性)更高的一般制造成本的第一步。

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