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Evaluation of Novel Seat Cushions to Mitigate Helicopter Aircrew Exposure to Vibration

机译:缓解直升机机组人员振动的新型座垫评估

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Undesired vibration transmitted through the helicopter seats has been known to cause fatigue and discomfort to thernaircrew in the short-term as well as neck strain and back pain injuries due to long-term exposure. This researchrnstudy investigated the use of novel energy absorbing cushion materials integrated into helicopter seats to mitigaternthe aircrew whole-body exposure to high vibration levels. Replacing the cushion material on a helicopter seat was arnlow cost solution with less certification effort that provided a reduction in the vibration transmitted to the aircrew.rnNovel energy absorbing cushion material, namely, the Hybrid Air Cushioning System known as Mitigator and arnviscoelastic polyurethane material known as Sorbothane, were evaluated using flight tests on the NRC Bell-412rnhelicopter. The test results confirmed that the aircrew vibration levels can be effectively reduced through properrnoptimization of the seat cushion impedance properties. In particular, integration of the Hybrid Air CushioningrnSystem into the seat significantly reduced the 1/rev peak while marginally reducing the 4/rev peak that resulted in anrnoverall reduction in the aircrew vibration.
机译:众所周知,通过直升机座椅传播的不希望的振动会在短期内导致机组人员疲劳和不适,以及由于长期暴露而导致颈部劳损和背部疼痛。这项研究研究了将新颖的能量吸收垫材料整合到直升机座椅中的使用,以减轻机组人员的全身暴露于高振动水平。替换直升机坐垫​​上的坐垫材料是一项成本低,成本低的认证工作,减少了传递给机组人员的振动。新颖的吸能坐垫材料,即被称为减震器的混合气垫系统和被称为粘滞弹性的聚氨酯粘弹性材料在NRC贝尔412型直升机上使用飞行测试评估了戊二烷。测试结果证实,可以通过适当优化座垫阻抗特性来有效降低机组人员的振动水平。特别是,将混合气垫系统集成到座椅中可显着降低1 / rev峰值,同时略微降低4 / rev峰值,从而可大幅减少机组人员的振动。

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