传感技术学报
傳感技術學報
전감기술학보
Journal of Transduction Technology
2014年
2期
162-167
,共6页
张海霞%崔建伟%陈丹凤%陈杨洋
張海霞%崔建偉%陳丹鳳%陳楊洋
장해하%최건위%진단봉%진양양
三维力传感器%结构解耦%有限单元法%路径映射
三維力傳感器%結構解耦%有限單元法%路徑映射
삼유력전감기%결구해우%유한단원법%로경영사
three-dimensional force sensor%adopted structure%finite element method%mapping results onto a path
维间耦合一直是制约多维力传感器精度提高的重要因素,结构解耦也一直是多维力传感器追求的目标。提出了一种新型三维力传感器,可用于Fx、Fz、My 3个维度广义力的测量,其敏感原理是结构解耦的,因此可具有更高的精度。介绍了这种新型三维力传感器的结构并分析其敏感原理。采用有限单元法对应变式三维力传感器进行结构静力仿真,利用ANSYS后处理器提供的路径映射技术,精确地获得了应变片的贴片区域。仿真结果表明,该新型传感器与目前的应变式多维力传感器相比,维间耦合误差有明显改善,维间干扰由传统结构的3.56%降低至0.40%。
維間耦閤一直是製約多維力傳感器精度提高的重要因素,結構解耦也一直是多維力傳感器追求的目標。提齣瞭一種新型三維力傳感器,可用于Fx、Fz、My 3箇維度廣義力的測量,其敏感原理是結構解耦的,因此可具有更高的精度。介紹瞭這種新型三維力傳感器的結構併分析其敏感原理。採用有限單元法對應變式三維力傳感器進行結構靜力倣真,利用ANSYS後處理器提供的路徑映射技術,精確地穫得瞭應變片的貼片區域。倣真結果錶明,該新型傳感器與目前的應變式多維力傳感器相比,維間耦閤誤差有明顯改善,維間榦擾由傳統結構的3.56%降低至0.40%。
유간우합일직시제약다유력전감기정도제고적중요인소,결구해우야일직시다유력전감기추구적목표。제출료일충신형삼유력전감기,가용우Fx、Fz、My 3개유도엄의력적측량,기민감원리시결구해우적,인차가구유경고적정도。개소료저충신형삼유력전감기적결구병분석기민감원리。채용유한단원법대응변식삼유력전감기진행결구정력방진,이용ANSYS후처리기제공적로경영사기술,정학지획득료응변편적첩편구역。방진결과표명,해신형전감기여목전적응변식다유력전감기상비,유간우합오차유명현개선,유간간우유전통결구적3.56%강저지0.40%。
The coupling error of directions has been the important factor of restricting the improving of the accuracy of multi-dimensional force sensor. Decoupling structure has been also a goal of multi-axis force sensor. This paper presents a new type of three-dimensional force sensor. It can be used for measuring three-dimensional forces Fx,Fz and My , sensitive principle is structure decoupling, therefore expected to have higher accuracy. First, this paper discusses the three-dimensional force sensor structure and the sensitive principle. Secondly, the finite element method for three-dimensional strain gauge force sensor structure is adopted in static analysis. Using the path mapping technology provided by the processor,the strain gage placement area is accurately obtained. The simulation results show that,compared with the cross beam structure of traditional multi-dimensional force sensor,the coupling error of directions has improved significantly, dimensional interference decreases from the traditional structure of 3. 56% to 0 . 4%.