Design and simulation of MEMS based 5-DOF tactile force sensor

T. Udayanga, W. Jayathilaka, Y. Amarasinghe, D. Dao
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引用次数: 1

Abstract

This paper describes design and simulation of five degrees of freedom (5-DOF) Micro-Electro-Mechanical systems (MEMS) based tactile force sensor. Tactile sensing involves with measuring physical parameters such as force, temperature, etc. with the aid of physical touch. Over the past decades tactile sensors are gaining popularity over non-contact sensors in biomedical and robotic applications. Proposed sensor design with 3mm × 3mm × 300μm dimensions, has the capability to measure not only the magnitude but also the direction of the force applied. A wagon wheel spring structure was proposed, where 8 beams work as springs to relief the force applied. Behavior of these 8 beams are monitored under each loading conditions using defused piezoresistive sensing elements. A finite element analysis of structure was performed to optimize and validate the structure and Multiphysics analysis was performed to validate the working principal of the proposed sensor.
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基于MEMS的五自由度触觉力传感器的设计与仿真
介绍了基于五自由度微机电系统的触觉力传感器的设计与仿真。触觉感知是指借助物理触摸来测量力、温度等物理参数。在过去的几十年里,在生物医学和机器人应用中,触觉传感器比非接触式传感器越来越受欢迎。设计的传感器尺寸为3mm × 3mm × 300μm,不仅可以测量力的大小,还可以测量力的方向。提出了一种货车车轮弹簧结构,其中8根梁作为弹簧,以减轻施加的力。在每个加载条件下,这8根梁的行为都是使用消磁压阻传感元件进行监测的。通过结构有限元分析对传感器结构进行优化和验证,通过多物理场分析对传感器工作原理进行验证。
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