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中國有色金屬學報

ZHONGGUO YOUSEJINSHU XUEBAO

第25卷    第7期    總第196期    2015年7月

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文章編號:1004-0609(2015)-07-1904-07
懸臂梁基板對壓電纖維復合物驅(qū)動性能的影響
朱 松1,陳子琪1,林秀娟1, 2,周科朝1,張 斗1

(1. 中南大學 粉末冶金國家重點實驗室,長沙 410083;
2. 濟南大學 材料科學與工程學院,濟南 250022
)

摘 要: 壓電纖維復合物在驅(qū)動、傳感、結(jié)構(gòu)健康檢測等領(lǐng)域具有廣泛應用,研究壓電纖維復合物的驅(qū)動性能對于壓電纖維復合物實際應用具有重要意義。通過實驗研究不同驅(qū)動電壓條件(峰值、頻率及偏置)對壓電纖維復合物懸臂梁結(jié)構(gòu)頂端位移的影響,探討懸臂梁基板材料與壓電纖維復合物驅(qū)動性能的關(guān)系,基于歐拉-伯努利梁理論利用懸臂梁頂端位移計算壓電纖維復合物的驅(qū)動力。結(jié)果表明:壓電纖維復合物的驅(qū)動性能具有明顯的遲滯性。懸臂梁頂端位移的大小與驅(qū)動電壓峰的峰值呈線性關(guān)系,且其不僅與驅(qū)動電壓的峰值有關(guān),還與驅(qū)動電壓的偏置、頻率有關(guān)。壓電纖維復合物的驅(qū)動性能隨基板不同而不同,其對剛性鋁板的驅(qū)動力為5.2 mN,對柔性麥拉膜的驅(qū)動力為0.2 mN。

 

關(guān)鍵字: 壓電纖維復合物;歐拉-伯努利梁;驅(qū)動力;遲滯性;壓電陶瓷

Effect of cantilever substrate on actuation characteristics of piezoelectric fiber composites
ZHU Song1, CHEN Zi-qi1, LIN Xiu-juan1, 2, ZHOU Ke-chao1, ZHANG Dou1

1. State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China
2. School of Materials Science and Engineering, Jinan University, Jinan 250022, China

Abstract:The piezoelectric fiber composites have important application in the field of actuation, sensing, structural health monitoring and etc. It is important to study the actuation characteristics of piezoelectric fiber composites for a range of applications. The influences of driving voltage conditions (peak-to-peak voltage, frequency, bias) on the actuation characteristics of piezoelectric fiber composites were studied. The relationship between cantilever beam actuation performance of DFCs was investigated through the tip displacement of the cantilever, which was also used to calculate the blocking force based on Euler-Bernoulli beam theory. The results show that the hysteresis of piezoelectric fiber composite exists obviously. The tip displacement of the cantilever has a linear relationship with the driving voltage amplitude, and also is influenced by the driving voltage bias and frequency. The actuation characteristics of the piezoelectric fiber composites differ with different substrates. The blocking force for aluminum-based substrate is 5.2 mN, while it is 0.2 mN for mylar-based substrate.

 

Key words: piezoelectric fiber composites; Euler-Bernoulli beam; blocking force; hysteresis; piezoelectric ceramics

ISSN 1004-0609
CN 43-1238/TG
CODEN: ZYJXFK

ISSN 1003-6326
CN 43-1239/TG
CODEN: TNMCEW

主管:中國科學技術(shù)協(xié)會 主辦:中國有色金屬學會 承辦:中南大學
湘ICP備09001153號 版權(quán)所有:《中國有色金屬學報》編輯部
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