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Optimization of Tail Rotor Spar Press Cure Using Six-Sigma Process Certification

机译:使用六西格玛工艺认证优化尾桨翼梁压力机的硫化

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A carbon-fiber laminated tail rotor spar is manufactured via a press cure operation that is highly sensitive to process variability. Process Certification, Sikorsky Aircraft's six-sigma program, was applied to identify and control sources of variation to a level that was previously unattainable with traditional trial and error methods. Aided by computational fluid dynamics (CFD) modeling, the raw material (prepreg) manufacturing process was optimized to produce a more consistent product. These improvements resulted in a significant reduction in the cost of poor quality and increased part production rates at Sikorsky Aircraft. The statistical methodology reported here is demonstrated to resolve complex composite process issues and may potentially be used to design robust processes that are tolerant of process variability.
机译:碳纤维叠层尾翼翼梁是通过对工艺变化高度敏感的压力固化操作制造的。西科斯基飞机公司(Sikorsky Aircraft)的6-sigma程序“过程认证”用于将变化源识别和控制到以前用传统的试错法无法达到的水平。在计算流体动力学(CFD)建模的辅助下,对原材料(预浸料)的制造过程进行了优化,以生产出更加一致的产品。这些改进大大降低了质量差的成本,并提高了西科斯基飞机公司的零件生产率。此处报告的统计方法论已证明可解决复杂的复合过程问题,并且可能潜在地用于设计可耐受过程可变性的稳健过程。

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