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A MAGNETORHEOLOGICAL PIEZOHYDRAULIC ACTUATOR

机译:磁流变压电液压执行器

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摘要

Magnetorheological (MR) fluids can be used in a variety of smart semi-active systems. The MR damper shows an especially great potential to mitigate environmentally induced vibration and shocks. Another aspect of MR fluids is the construction of MR valve networks in conjunction with a hydraulic pump resulting in a fully active actuator. These devices are simple, have few moving parts and can be easily miniaturized to provide a compact, high energy density pressure source. The present study describes a prototype MR-piezo hybrid actuator that combines the piezopump and MR valve actuator concepts, resulting in a self-contained hydraulic actuation device without active electro-mechanical valves. Durability and miniaturization of the hybrid device are major advantages due to its low part count and few moving parts. An additional advantage is the ability to use the MR valve network in the actuator to achieve controllable damping. The design, construction and testing of a prototype MR-piezo hybrid actuator is described. The performance and efficiency of the device is derived using ideal, biviscous and Bingham-plastic representations of MR fluid behavior, and is evaluated with experimental measurements. This will provide a design tool to develop an actuator for a specific application.
机译:磁流变(MR)流体可用于各种智能半主动系统。 MR阻尼器显示出巨大的潜力,可减轻环境引起的振动和冲击。 MR流体的另一个方面是与液压泵结合构造MR阀网络,从而使致动器完全起作用。这些设备简单,运动部件少并且可以轻松地小型化以提供紧凑的高能量密度压力源。本研究描述了一种原型MR-压电混合执行器,该执行器结合了压电泵和MR阀执行器的概念,从而形成了一个独立的液压执行装置,而没有主动式机电阀。混合设备的耐用性和小型化是其主要优势,因为它的零件数量少且活动部件少。另一个优势是能够在执行器中使用MR阀网络来实现可控制的阻尼。描述了原型MR-压电混合执行器的设计,构造和测试。该设备的性能和效率是使用MR流体行为的理想,双粘和宾汉塑性表示得出的,并通过实验测量进行了评估。这将提供一种设计工具来开发用于特定应用的执行器。

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