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1-3型压电陶瓷纤维复合材料性能的理论分析与实验研究 被引量:5

THEORY ANALYSIS AND EXPERIMENT STUDY ON THE PROPERTY OF 1-3 MODE PIEZOCERAMICS FIBER COMPOSITE
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摘要 针对1-3型正交异性压电陶瓷纤维复合材料(Piezoceramics Fiber Composite,PFC)的构造原理,通过建立有限元模型,分析了叉指形电极关键尺寸和压电陶瓷纤维直径等对其传感性能的影响,并通过实验对制备的1-3型PFC传感元件的正交异性特性进行了验证,仿真及实验结果表明该传感元件具有明显的正交异性,能区分不同方向的应力波,减小电极中心距和纤维直径能提高传感元件的传感性能。 The piezoceramics composite possesses wide application prospect for its specific electric-mechanical and designable properties and its characteristic of overcoming the brittleness that single piezoelectric ceramics material has. The structure principle of 1-3 mode orthotropic piezoelectric fiber composite (PFC) is proposed. By finite element modeling, the influences of the key dimensions of interdigital electrode and the diameter of piezoelectric fiber on its sensing property are analyzed. In addition, the orthotropic characteristic is verified through experiment. The results show that the sensor has obvious orthotropic characteristic and can distinguish stress wave from different directions. We also found that the sensor performance can be improved by reducing the fiber diameter and the center distance of the electrode.
作者 戴永 骆英
出处 《陶瓷学报》 CAS 北大核心 2009年第4期432-437,共6页 Journal of Ceramics
基金 国家"863"基金资助项目(编号:2009AA03Z107) 国家自然科学基金资助项目(编号:50875114) 江苏省研究生创新基金(编号:CX08B-037Z)
关键词 PFC 有限元 性能参数 传感性能 正交异性 piezoceramics fiber composite material finite element performance sensor property orthotropic
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参考文献8

  • 1李光,王丽坤,栾桂冬,张福学.1-3-2型压电复合材料的研制[J].压电与声光,2005,27(1):71-73. 被引量:6
  • 2Satyajit Panda. Nonlinear fmite element analysis of functionally graded plates integrated with patches of piezoelectric fiber reinforced composite. Finite Elements in Analysis and Design, 2008, 44(8): 493-504.
  • 3Wilkie W, High J, Mirick P, Fox R, Little B, Bryant R, Hellbaum R and Jalink A. Low-Cost Piezocomposite Actuator for Structural Control Applications. Proceedings, SPIE's 7th International Symposium on Smart Structures and Materials, Newport Beach, California, March 5-9, 2000.
  • 4Rossetti Jr G, Pizzochero A and Bent A. Recent Advances in Active Fiber Composites Technology. Proceedings of 12th IEEE International Symposium on Applications of Ferroelectrics, 2000:753-756.
  • 5High J and Wilkie W. Method of Fabricating NASA-Standard Macro-Fiber Piezocomposite Actuators. NASA/TM-2003 -212427, ARL TR2833, June 2003.
  • 6王光庆,郭吉丰.压电叠层传感/致动器的特性研究[J].压电与声光,2005,27(4):375-378. 被引量:5
  • 7Ray M C and Reddy J N. Active control of laminated cylindrical shells using piezoelectric fiber reinforced composites.Composites Science and Technology, 2005, 65(7): 1226-1236.
  • 8Hagood N W, Kindel R and Ghandi K. Improving transverse actuation of piezoceramics using interdigitated surface electrodes. SPIE, 1993, 25:341-352.

二级参考文献8

  • 1吴德隆.航天Smart结构与材料的开发与进展——21世纪航天技术展望[J].导弹与航天运载技术,1996(4):1-13. 被引量:13
  • 2张福学 王丽坤.现代压电学(中册)[M].北京:科学出版社,2000..
  • 3NEWNHAM R E, SKINNER D P, CROSS L E.Connectivity and piezoelectric-pyroelectric composites[J]. Mat Res Bull, 1978,13:525-536.
  • 4ANSI/IEEE Std, 176-1987, An American National Standard IEEE Standard on Piezoelectricity [S].
  • 5KAWATITA Shinichiro, ISOGAI Toshiki, OHYA Nobuyuki. Multi-layer piezoelectric bimorph actuator[J]. International Symposium on Micromechatronics and Human Science, 1997 : 73-77.
  • 6UCHINO Kenji. Recent trend of piezoelectric actuator development [J] .International Symposium on Micromechatronics and Human Science, 1999 : 3-9.
  • 7VARADAN V V, VARADAN V K. Smart structures-modeling and application [J]. Ultrasonic Symposium, 1992 : 833-841.
  • 8李俊宝,吕刚.智能桁架结构振动控制中压电主动构件的研究:(一)压电主动构件设计[J].压电与声光,1998,20(2):89-94. 被引量:19

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