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首页> 外文期刊>Journal of Aircraft >Semi-Active Magnetorheological Helicopter Crew Seat Suspension for Vibration Isolation
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Semi-Active Magnetorheological Helicopter Crew Seat Suspension for Vibration Isolation

机译:半主动磁流变直升机机组座椅悬架,用于隔振

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摘要

This study explores the use of magnetorheological dampers in a semi-active seat suspension system for helicopter crew seats to enhance occupant comfort. Key concepts in designing a magnetorheological seat suspension system to isolate the occupant from rotorcraft vibration are identified. Using these design concepts, a magnetorheological damper is designed, fabricated, and retrofitted into a tactical SH-60 Seahawk crew seat. This magnetorheological damper is implemented in series with the existing fixed load energy absorbers such that the crashworthiness capability of the seat is not impaired. Semi-active control is implemented and performance is evaluated both analytically and experimentally. Experimental test results have shown that this system reduced the dominant rotor-induced vertical vibration (4 per rev) transmitted to a 50th percentile male aviator by 76%, which is a 61-70% improvement over the unmodified SH-60 crew seat depending upon whether a soft seat cushion is used. Furthermore, these experimental tests also show that this system significantly reduces vertically induced seat rocking that occurs as a result of an offset center of gravity in the crew seat design.
机译:这项研究探索了在用于直升机机组人员座椅的半主动式座椅悬架系统中磁流变阻尼器的使用,以提高乘员的舒适度。确定了设计磁流变座椅悬架系统以隔离乘员与旋翼飞机振动的关键概念。利用这些设计概念,设计,制造了磁流变阻尼器,并将其改装到战术SH-60 Seahawk乘员座椅上。该磁流变阻尼器与现有的固定负载能量吸收器串联实施,以使得不会损害座椅的耐撞性。实施半主动控制,并通过分析和实验评估性能。实验测试结果表明,该系统将传递给第50个百分位男性飞行员的主要转子引起的垂直振动(每转4次)降低了76%,这比未修改的SH-60机组座位的改进幅度高61-70%,具体取决于是否使用软座垫。此外,这些实验测试还表明,该系统显着减少了由于乘员座椅设计中的重心偏移而引起的垂直引起的座椅晃动。

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