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Design, simulation, and testing of a magnetorheological fluid-based haptic actuator for mobile applications

机译:基于磁流变流体的触觉致动器的设计,仿真和测试,可用于移动应用

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This article presents a novel design of a miniature haptic actuator based on magnetorheological fluids for mobile applications with the aim of providing various haptic sensations to users in mobile devices. The primary design goal for a haptic actuator for mobile applications is to miniaturize its size while achieving large forces and low power consumption. To this end, this study proposes to design the actuator's piston head (or plunger) in cone shape and activate multiple modes of magnetorheological fluids. A prototype actuator was designed and fabricated based on a simulation model. Using a dynamic test frame, the performance of the prototype actuator was evaluated in terms of the force (resistive force) produced by the prototype. The results show that the small actuator (10 mm x 10 mm x 6.5 mm) produced a maximum resistive force of about 5 N and the force rate of nearly 80% at 0.3 W. This change in resistive force or the force rate is sufficient to provide several steps of force variation that is explicitly perceivable for operators, depending on the input power. The results demonstrate a feasibility of using the proposed actuator's applications in mobile devices, conveying realistic haptic sensations to users.
机译:本文提出了一种基于磁流变流体的微型触觉致动器的新颖设计,旨在为移动应用提供各种触觉感。用于移动应用的触觉致动器的主要设计目标是在实现大力和低功耗的同时将其尺寸最小化。为此,本研究建议将执行器的活塞头(或柱塞)设计为圆锥形,并激活磁流变流体的多种模式。基于仿真模型设计并制造了原型执行器。使用动态测试框架,根据原型产生的力(阻力)评估原型执行器的性能。结果表明,小型致动器(10毫米x 10毫米x 6.5毫米)在0.3 W时产生的最大阻力约为5 N,作用力比率接近80%。这种抵抗力或作用力的变化足以根据输入功率的不同,提供了几步力变化的方法,对于操作员而言,这是显而易见的。结果证明了在移动设备中使用建议的执行器应用程序,向用户传达逼真的触感的可行性。

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