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Concurrent design and manufacturing of aircraft torque tubes

机译:飞机扭矩管的并行设计与制造

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This paper presents an application of concurrent design and a manufacturing paradigm to aircraft torque tubes. The torque tubes are located inside the wing and push and pull the front leading flaps during landing. There are tubes on each side of the wing. The tubes are made up of magnesium through casting. The magnesium tubes are light but are poor in respect of corrosion-resistance. In addition, the casting process is extremely cost ineffective in supporting just-in-time manufacturing. Virtual prototyping and rapid prototyping techniques are employed to support both product and process re-engineering in a concurrent manner. The product re-engineering focuses on replacing magnesium with aluminum so as to eliminate the corrosion problems. A shape optimization technique was employed to reduce the weight of the tube whilst maintaining its strength A StereoLithography sample was fabricated using SLA 7000 to support design verification. In addition, the manufacturing process is re-engineered by replacing casting with machining. Significant savings in time and manufacturing cost have been realized through the use of the re-engineered tubes.
机译:本文介绍了并行设计和制造范例在飞机扭矩管中的应用。扭矩管位于机翼内部,着陆期间推拉前部前襟翼。机翼的每一侧都有管子。这些管子是通过铸造镁制成的。镁管重量轻,但耐腐蚀性差。此外,铸造工艺在支持即时生产方面成本极低。虚拟样机和快速样机技术被用于以并行方式支持产品和流程再造。产品重新设计的重点是用铝代替镁,以消除腐蚀问题。采用形状优化技术来减轻管子的重量,同时保持其强度。使用SLA 7000制作了立体光刻样品,以支持设计验证。另外,通过用铸造代替铸造来重新设计制造过程。通过使用重新设计的管子,已大大节省了时间和制造成本。

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