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Double Adjustable Shock Absorbers Utilizing Electrorheological and Magnetorheological Fluids

机译:采用电流和磁流变流体的双可调节减震器

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摘要

Double adjustable shock absorbers allow for independent adjustment of the yield force and post-yield damping in the force versus velocity response. To emulate the performance of a conventional double adjustable shock absorber, an electrorheological (ER) and magnetorheo-logical (MR) automotive shock absorber were designed and fabricated at the University of Maryland. For the ER shock absorber, an aplied electric field between two tubular electrodes, located in the piston heat, increases the force required for a given piston rod velocity. For the MR shock absorber, an applied magnetic field between the core and flux return increases the force required for a given piston rod velocity. For each shock absorber, two different shaped gaps meet the controllable performance requirements of a double adjustable shock absorber. A uniform gap allows for control of the yield force of the shock absorber, while a non-uniform gap allows for control of the post-yield damping. Force measurements from sinusoidal displacement cycles, recorded on a mechanical damper dynamometer, validate the performance of uniform and non-uniform gaps for adjustment of the yield force and post-yield damping, respectively.
机译:双可调节减震器允许在力与速度响应中的屈服力和产量后阻尼的独立调节。为了模拟传统的双可调节减震器的性能,在马里兰大学设计和制造了一种电气流变学(ER)和磁电磁(MR)汽车减震器。对于ER减震器,位于活塞热的两个管状电极之间的应用增加,增加了给定活塞杆速度所需的力。对于MR减震器,芯和磁通返回之间的施加磁场增加了给定的活塞杆速度所需的力。对于每个减震器,两种不同的形状间隙满足双可调节减震器的可控性能要求。均匀间隙允许控制减震器的屈服力,而非均匀间隙允许控制产率后阻尼。从机械阻尼器测力计上记录的正弦位移循环力测量,验证了均匀和不均匀间隙的性能,以便分别调节屈服力和产率后阻尼。

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