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首页> 外文期刊>International Journal of Smart and Nano Materials >Piezoelectric d15 shear response-based torsion actuation mechanism: an experimental benchmark and its 3D finite element simulation
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Piezoelectric d15 shear response-based torsion actuation mechanism: an experimental benchmark and its 3D finite element simulation

机译:基于压电d 15 剪力响应的扭转驱动机理:实验基准及其3D有限元模拟

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摘要

An experimental benchmark is proposed for piezoelectric, direct-torsion actuation using mono-morph piezoceramic d15 shear patches. This is reached by designing and assembling an adaptive plate having two identical composite faces sandwiching a core made of connected six oppositely polarized (OP) piezoceramic d15 shear patches along the length. An electronic speckle pattern interferometry system was used to measure the static tip deflection of the adaptive sandwich composite plate that was mounted in a cantilever configuration and actuated in torsion by progressively applied voltages on the piezoceramic shear core electroded major surfaces. Then, the effective rate of twist was post-processed and proposed as an evaluation criterion for smart composites under piezoelectric torsion actuation. For verification of the experimental results, the proposed experimental benchmark was simulated using three-dimensional piezoelectric finite elements (FE) within ABAQUS® commercial software. The comparison of the obtained experimental and simulation results showed reasonable agreement, but the slight nonlinear experimental response was not confirmed by the linear FE analysis. The experimentally proved torsion actuation mechanism, produced by OP piezoceramic d15 shear patches, can be applied actively to prevent torsion in many applications, such as in wind turbines, helicopter blades, robot arms, flexible space structures, etc.View full textDownload full textKeywordstorsion actuation, shear-mode piezoceramic, benchmark, experiment simulationRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/19475411.2010.510265
机译:提出了使用单晶压电陶瓷d 15 剪切斑片进行压电直接扭转驱动的实验基准。这是通过设计和组装一个自适应板来实现的,该板具有两个相同的复合面,这些复合面将沿长度方向连接的六个相反极化(OP)压电陶瓷d 15 剪切补片组成的芯夹在中间。使用电子散斑图案干涉仪系统来测量自适应夹芯复合板的静态尖端挠度,该自适应夹芯复合板以悬臂形式安装,并通过在压电陶瓷剪切芯电极主表面上逐渐施加电压来扭转驱动。然后,对有效扭转率进行了后处理,并提出了压电扭转驱动下智能复合材料的评价标准。为了验证实验结果,在ABAQUS®商业软件中使用三维压电有限元(FE)对拟议的实验基准进行了仿真。所得实验结果与仿真结果的比较显示出合理的一致性,但线性有限元分析并未证实轻微的非线性实验响应。由OP压电陶瓷d 15 剪切补片产生的经过实验证明的扭转致动机制,可以在许多应用中积极应用,以防止扭转,例如在风力涡轮机,直升机叶片,机器人手臂,柔性空间结构,查看全文下载全文关键词扭转致动,剪切模式压电陶瓷,基准测试,实验仿真digg,google,more“,发布号:” ra-4dff56cd6bb1830b“};添加到候选列表链接永久链接http://dx.doi.org/10.1080/19475411.2010.510265

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