基于扭曲盘绕聚合物致动器的轴向压力可调宏纤维复合双态致动器

IF 6.3 1区 工程技术 Q1 AUTOMATION & CONTROL SYSTEMS IEEE/ASME Transactions on Mechatronics Pub Date : 2024-11-08 DOI:10.1109/TMECH.2024.3483429
Kaiming Hu;Hao Chen;Huanhuan Lu;Hua Li;Qinfen Lu;Hongzhou Song;Ban Wang
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引用次数: 0

摘要

与电动伺服驱动器相比,超纤维复合材料预压缩双晶片驱动器(MFC-PBA)可以嵌入到翼型中驱动变形,从而节省布局空间并保证气动性能。然而,现有pba的轴向压力无法调节,这阻碍了MFC双晶片在外部负载下获得更高的致动性能。此外,长期的高轴向压力导致双晶结构永久变形和断裂。因此,本文提出了一种采用扭曲和卷曲聚合物致动器(TCPA)来调节MFC-PBA轴向压力的致动器,可简称TM-PBA。首先,建立热驱动张力灰盒模型,得到TCPA两端固定边界条件下的拉伸力;然后将热驱动张力模型与MFC双晶片的有限元模型相结合,建立TM-PBA的完整力学模型。随后,测试了TCPA的输出拉力以及TM-PBA的驱动性能、频率响应和滞后特性。结果表明:TCPA的热驱动张力灰盒模型和TM-PBA的完整力学模型能较准确地预测TCPA和TM-PBA的驱动能力;TCPA的输出拉力随温度和预伸长率的升高而增大;TM-PBA的驱动性能比MFC-PBA高130%。TM-PBA控制带宽大于10hz。此外,TM-PBA的磁滞与负载和驱动频率有关。最后,将TM-PBA应用于舵机的驱动,验证了其驱动能力优于MFC-PBA,但低于微伺服作动器。未来,并联多层TM-PBAs可以提高驱动能力。
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Axial-Pressure-Adjustable Macro-Fiber Composite Bimorph Actuator Based on Twisted and Coiled Polymer Actuator
Compared with the electric servoactuator, the macrofiber composite precompressed bimorph actuator (MFC-PBA) can be embedded into the airfoil to drive the deformation, thus saving the layout space and ensuring aerodynamic performance. However, the axial pressures of existing PBAs cannot be adjusted, which prevents MFC bimorph from achieving higher actuating performance under external load. Additionally, long-term high axial pressure causes permanent deformation and fracture of bimorph structure. Thus, an actuator using a twisted and coiled polymer actuator (TCPA) to regulate the axial pressure of MFC-PBA is proposed in this article, which can be referred to as the TM-PBA. First, a thermally driven tension gray-box model is established to obtain the tensile force of the TCPA under fixed boundary conditions at both ends. The thermally driven tension model is then combined with a finite-element model of the MFC bimorph to establish a complete mechanical model of the TM-PBA. Subsequently, the output tensile force of the TCPA and the actuation performance, frequency response, and hysteresis behavior of the TM-PBA were tested. The results show that the thermally driven tension gray-box model of the TCPA and the complete mechanical model of the TM-PBA can accurately predict the actuation capability of the TCPA and the TM-PBA; the output tensile force of the TCPA increased with increasing temperature and pre-elongation; and the actuation performance of the TM-PBA is 130% higher than that of the MFC-PBA. The control bandwidth of the TM-PBA is more than 10 Hz. Additionally, the TM-PBA hysteresis is related to load and driving frequency. Finally, the TM-PBA was applied to drive a rudder and its actuating capability was verified to be superior to MFC-PBA, but lower than that of the micro servoactuator. In future, the actuation capability can be increased by parallel multilayer TM-PBAs.
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来源期刊
IEEE/ASME Transactions on Mechatronics
IEEE/ASME Transactions on Mechatronics 工程技术-工程:电子与电气
CiteScore
11.60
自引率
18.80%
发文量
527
审稿时长
7.8 months
期刊介绍: IEEE/ASME Transactions on Mechatronics publishes high quality technical papers on technological advances in mechatronics. A primary purpose of the IEEE/ASME Transactions on Mechatronics is to have an archival publication which encompasses both theory and practice. Papers published in the IEEE/ASME Transactions on Mechatronics disclose significant new knowledge needed to implement intelligent mechatronics systems, from analysis and design through simulation and hardware and software implementation. The Transactions also contains a letters section dedicated to rapid publication of short correspondence items concerning new research results.
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