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Design optimization application in accordance with product and process requirements

机译:根据产品和工艺要求设计优化应用

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Structural optimization techniques are a well-known approach for improving product performances. Often, optimization procedures do not include manufacturing constraints arising from corporate technologies. This aspect becomes a disadvantage in the design review phase when the final product release is a trade-off between optimization results and manufacturing constraints. This paper describes a specific new approach, which considers product/process guidelines an input/output data in the optimization phase. The study case is represented by a high performance aeronautic seat structure having as mission profiles the SAE-AS Standard, in order to demonstrate occupant protection when a seat/occupant/restraint system is subjected to statically applied ultimate loads and to dynamic impact test conditions. The authors' aim, in accordance with standards' requirements, is to achieve a final design based on an optimized structural solution for the chosen process technologies, taking into account the low volume production and typical attitude of the aeronautical industry. The presented study case offers the proper reference in order to extend this methodology to more complex structural applications.
机译:结构优化技术是提高产品性能知名的方法。通常情况下,优化程序不包括从企业技术产生制造约束。这一方面成为设计审查阶段的优点是当最终产品版本是优化结果和生产约束之间的权衡。本文介绍了一种具体的新的方法,它考虑产品/过程准则优化阶段的输入/输出数据。分析案例是由具有作为任务剖面的SAE-AS标准,以便证明当座椅/乘员/约束系统进行乘员保护静态施加最终载荷和动态冲击试验条件高性能航空座椅结构表示。作者的目的,按照标准的要求,是实现基于针对所选择的工艺技术的优化的结构解决方案的最终的设计,考虑到小批量的生产和航空工业的典型姿态。所提出的研究情况下,以这种方法扩展到更复杂的结构应用提供适当的参考。

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