3-2型陶瓷-空气复合材料振动状态的研究
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作者单位:

1.北京信息科技大学 理学院,北京 100192 ;2.南京凯视迈科技有限公司,江苏 南京 210000

作者简介:

井苏杰(1999-),男,陕西省延安市人,硕士生。

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基金项目:

国家自然科学基金项目(61771060);北京市教委科研计划科技重点项目(KZ202111232050)

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Study of the Vibration State of 3-2 Ceramic-Air Composites
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Affiliation:

1.College of Science, Beijing Information Science and Technology University, Beijing 100192 , China ; 2.Nanjing KVM Technology Co., Ltd, Nanjing 210000 , China

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    摘要:

    3-2型陶瓷-空气复合材料是在1-3型压电复合材料的结构基础上改进而来。3-2型压电材料由PZT 5A和空气复合而成。首先使用ANSYS有限元仿真软件的模态分析研究了3-2型压电复合材料做厚度伸缩振动。 其次通过谐响应分析了敏感元件在正弦信号激励下的稳态响应,讨论了压电材料陶瓷体积分数对其振动特性的影响,研究了不同体积分数压电陶瓷材料在厚度振动谐振频率下的振动位移。最后通过实验制备了3-2型压电材料的实物样品,使用激光测振仪测量压电振子的振动状况,并对仿真数据进行验证。结果表明,在正弦信号激励下, 3-2型复合材料的振动模态为厚度伸缩振动,振动位移最大值为3.840 nm(单位电压下),陶瓷体积占比的变化不会对振动位移产生太大影响。

    Abstract:

    Type 3-2 ceramic-air composites were developed to improve the structure of type 1-3 piezoelectric composites. Type 3-2 piezoelectric materials are composites of PZT-5A and air. In this study, the possible vibration patterns of a type 3-2 piezoelectric material were first investigated through modal analysis using the ANSYS finite element simulation software. Then, the steady state response of the sensitive element under sinusoidal signal excita tion was analyzed based on the harmonic response. The effect of the ceramic volume percentage of the piezoelectric material on its vibrational characteristics was investigated, along with the variation of the vibrational displacement with frequency. Finally, a physical sample of a type 3-2 piezoelectric material was experimentally prepared, and the vibration condition of a piezoelectric oscillator was measured using a laser vibrometer to verify the simulation data. The results showed that under the excitation of a sinusoidal signal, the piezoelectric crystal column experienced length-stretching vibration, and the maximum value of the vibration displacement was 3.840 nm. Changing the ce ramic volume occupancy ratio did not significantly affect the vibration displacement

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井苏杰,于肇贤,王宏伟,邵震,李林诺.3-2型陶瓷-空气复合材料振动状态的研究[J].压电与声光,2024,46(5):716-721. JING Sujie, YU Zhaoxian, WANG Hongwei, SHAO Zhen, LI Linnuo. Study of the Vibration State of 3-2 Ceramic-Air Composites[J]. PIEZOELECTRICS AND ACOUSTOOPTICS

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  • 收稿日期:2024-04-28
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  • 在线发布日期: 2023-11-06
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