首页> 外文期刊>South African journal of industrial engineering >DIE SHEET HYDROFORMING OF A COMPLEX-SHAPED AA2024-W AIRCRAFT SKIN PANEL — FROM CONCEPT TO FINAL COMPONENT
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DIE SHEET HYDROFORMING OF A COMPLEX-SHAPED AA2024-W AIRCRAFT SKIN PANEL — FROM CONCEPT TO FINAL COMPONENT

机译:复杂形状的AA2024-W飞机皮肤面板的模具液压成形 - 从概念到最终组件

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Product design in the early stages requires a more quantitative process to ensure that the simulation study's outcome will meet expectations. The purpose of this study was to determine whether a manufacturing simulation software package could effectively evaluate and validate the conceptualised blank and tooling to manufacture a sizeable complexshaped aluminium alloy aircraft panel using die sheet hydroforming. Blank and tool concepts were conceptualised, evaluated, and validated digitally using the forming process conceptualisation cycle. Without the need to trial several blank and tool concepts physically, a significant saving was achieved using a resource-efficient development process. Even without modelling the hyperelastic rubber elements, a successful die sheet hydroformed simulation result was conducted. However, the study showed that a rubber-to-metal friction coefficient must be incorporated appropriately. The study further showed the lack of standard metrology methods in commercial simulation packages to evaluate a simulation result accurately. Simulation metrology is a new area of interest that requires further development. This research contributes to improving the sheet metal forming simulation process and, specifically, die sheet hydroforming process simulation. The study will benefit the aerospace and automotive industry and promote the adoption of digital manufacturing processes.
机译:早期阶段的产品设计需要更加定量的过程,以确保模拟研究的结果将满足预期。本研究的目的是确定制造模拟软件包是否可以有效地评估和验证概念性的坯料和工具,以使用模具液压成形制造型型复杂的铝合金飞机板。使用成形过程概念概念周期概念化,评估和验证空白和工具概念。无需在物理上进行实际试验几种空白和工具概念,使用资源有效的开发过程实现了显着的储蓄。即使在不建模超弹性橡胶元件时,也进行了成功的模板液压成形模拟结果。然而,该研究表明必须适当地掺入橡胶 - 金属摩擦系数。该研究进一步表明,在商业仿真包中缺乏标准计量方法,以准确评估模拟结果。仿真计量是一个需要进一步发展的新领域。该研究有助于改善钣金成型仿真过程,具体地,模具液压成形过程模拟。该研究将有利于航空航天和汽车行业,促进采用数字制造过程。

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