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Design and experimental investigation of ultra-low frequency vibration isolation during neonatal transport

机译:新生儿运输中超低频隔振的设计与实验研究

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To resolve the tough issue of ultra-low frequency vibration isolation during neonatal transport, a new incubator with quasi-zero-stiffness (QZS) isolators is proposed. In the new incubator, the infant housing unit is supported by the QZS isolators to mitigate mechanical vibration being transmitted from the ambulance floor to the infant. Each of the QZS isolators is devised by combining a pair of permanent magnet rings and a coil spring, and the design parameters are realized by the equivalent magnetic charge method. Both the prototypes of the QZS isolator and incubator are manufactured, and their vibration isolation performances are tested. The results show that the QZS isolator can fulfil vibration isolation from 2 Hz, and the incubator with four such QZS isolators is effective from 3.2 Hz under the designated payload. Most importantly, the acceleration response of the infant model in the housing unit is much lower than the base excitation, when the incubator is driven by a random base excitation with frequency bandwidth from 2 Hz to 15 Hz.
机译:为了解决新生儿运输过程中超低频振动隔离的棘手问题,提出了一种具有准零刚度(QZS)隔离器的新型恒温箱。在新的保育箱中,婴儿住房单元由QZS隔离器支撑,以减轻从救护车地板传递给婴儿的机械振动。每个QZS隔离器都是通过将一对永磁体环和一个螺旋弹簧组合起来设计的,设计参数是通过等效磁力法实现的。 QZS隔离器和孵化器的原型均已制造,并测试了其隔振性能。结果表明,QZS隔离器可实现2 Hz的振动隔离,带有四个此类QZS隔离器的培养箱在指定的有效载荷下从3.2 Hz起有效。最重要的是,当孵化器由频率范围为2 Hz到15 Hz的随机基本激励驱动时,在容纳单元中婴儿模型的加速度响应远低于基本激励。

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