基于分块压电悬臂梁的压电地板单元研制
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辽宁省科学技术计划基金资助项目(2014020009)

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Development of Piezoelectric Floor Using Piezoelectric Cantilever Blocks
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    摘要:

    为了提高压电地板的发电功率,将压电圆盘或正方形压电结构分块成悬臂梁。有限元静态分析表明,当承重和材料体积相近时,三角形分块的输出功率分别是方形分块和压电圆盘的20倍、7倍;对比分析了顶角为60°、90°、120°的三角形悬臂梁压电地板单元的发电性能,发现减薄压电片和基板厚度使踩踏位移相同时,3种压电地板单元的输出功率相同;若压电片和基板厚度相同,顶角为60°的三角形分块压电地板单元输出功率最大。用6个60°三角形压电悬臂梁制作压电地板单元,以手按压,可轮流点亮两个发光二极管。

    Abstract:

    In order to improve the generation power of piezoelectric floor,the piezoelectric disk or square structure is divided into blocks of cantilever beam.The finite element static analysis shows that the output power of the triangle cantilever beam is 20 times and 7 times of the piezoelectric square and disk respectively in the case of the same bearing and material volume.The generating performances of the triangle cantilever beam piezeoelectric florr units with the vertex angles of 60°,90° and 120° are compared and analyzed. It is found that these 3 kinds of piezoelectric floor generate same output power when the piezoelectric plates and substrate thickness are reduced to make the trample displacement same; when the piezoelectric plate and substrate thickness are the same,the triangle piezoelectric blocks with vertex angle of 60° generate the maximum power.Six triangular piezoelectric cantilevers with vertex angle of 60° are used for making the piezoelectric floor units,and two light emitting diodes are lightened in turn by hand pressing.

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董维杰, 金海泉, 谢颖.基于分块压电悬臂梁的压电地板单元研制[J].压电与声光,2017,39(4):544-548. DONG Weijie, JIN Haiquan, XIE Ying. Development of Piezoelectric Floor Using Piezoelectric Cantilever Blocks[J]. PIEZOELECTRICS AND ACOUSTOOPTICS

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  • 在线发布日期: 2017-08-14
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