首页> 外文会议>ASME/AIAA smart materials, adaptive structures and intelligent systems conference >BEHAVIOR OF MAGNETORHEOLOGICAL FLUIDS EMPLOYING CARRIER FLUIDS CERTIFIED FOR LANDING GEAR USE
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BEHAVIOR OF MAGNETORHEOLOGICAL FLUIDS EMPLOYING CARRIER FLUIDS CERTIFIED FOR LANDING GEAR USE

机译:采用载体流体用于着陆齿轮使用的磁体流体的行为

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Magnetorheological (MR) fluids were prepared in order to investigate their performance for potential use in landing gear hydraulic systems, such as shock struts. MR fluids formulated here utilized three hydraulic oils certified for use in landing gear, two different average diameters of spherical magnetic particles, and a Lecithin surfactant. The fluids were characterized in order to measure and analyze their rheological behavior. Therefore, different characteristics were taken into consideration, such as 1) magnetorheology as a function of magnetic field, 2) cycling of a small-scale damper undergoing sinusoidal excitations at frequencies of 2.5 and 5 Hz, and 3) sedimentation analysis conducted with an inductance-based sensor. The goal of this research is to analyze the performance of these particular MR fluids, to compare their behavior to standard commercial MR fluids, and to determine their feasibility for use in helicopter landing gear.
机译:制备磁流变(MR)流体,以研究其在降落齿轮液压系统中的潜在使用,例如冲击支柱。此处配制的MR流体使用了三种用于着陆齿轮的液压油,用于落地齿轮,两种不同的球形磁性颗粒直径和卵磷脂表面活性剂。液体的特征是为了测量和分析它们的流变行为。因此,考虑了不同的特征,例如1)磁流理作为磁场的函数,2)在2.5和5Hz的频率下进行正弦波激励的小规模阻尼器的循环,3)沉降分析进行电感基于传感器。该研究的目标是分析这些特定MR流体的性能,将其行为与标准商业MR流体进行比较,并确定其在直升机着陆齿轮中使用的可行性。

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