西安交通大学机械工程学院,西安,710049
网络首发:2014-10-10,
纸质出版:2014
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王延杰 1, 陈花玲 1, 罗斌 2, 等. 金型与钯型离子聚合物金属复合材料的含水量与变形规律[J]. 西安交通大学学报, 2014,48(10):90-95.
Water Content and Deformation of Au- and Pd-Typed Ionic Polymer Metal Composites[J]. 2014, 48(10): 90-95.
王延杰 1, 陈花玲 1, 罗斌 2, 等. 金型与钯型离子聚合物金属复合材料的含水量与变形规律[J]. 西安交通大学学报, 2014,48(10):90-95. DOI: 10.7652/xjtuxb201410014.
Water Content and Deformation of Au- and Pd-Typed Ionic Polymer Metal Composites[J]. 2014, 48(10): 90-95. DOI: 10.7652/xjtuxb201410014.
以具有典型工艺特征的金型和钯型离子聚合物金属复合材料(Au-IPMC 和Pd-IPMC)为研究对象
旨在阐释不同工艺过程和电极制备的IPMC材料随含水量变化其机电性能存在差异的现象。测量了两种IPMC材料静态含水量和环境湿度之间的关系
探讨了材料在湿态和干态下与室温湿度交换平衡过程中含水量的动态变化规律
测试了不同含水量下IPMC材料的力电响应关系
并将其转换为不同的湿度环境下的响应关系。实验结果表明:两种电极的IPMC材料在不同的湿度条件下含水量及变形规律具有相似性
即高含水量下呈现松弛变形
低含水量下无松弛变形; 与Pd-IPMC材料相比
不同湿度条件下对应的Au-IPMC含水量相对偏低
且在95%稳态湿度下
Au-IPMC材料具有更好的驱动性能
变形达到17.4 mm。
To clarify the performance difference dependent on the water content of IPMCs with different fabrication process and electrodes
the relation between the static water content and steady-state humidity is determined firstly
and the dynamic change processes of water content then are tested by exchanging equilibrium with room temperature humidity in full wet state and full dry state respectively. The electro-mechanical response of Au-and Pd-based IPMC materials with different water content is characterized and converted to the response under different humidity environment. The experiments show that both deformation processes get similar with different water content and humidity
and the relaxation deformation appears for high water content and disappears for low water content. The water content of Au-IPMC is lower with different humidity than Pd-IPMC
and under RH 95%
Au-IPMC has better driving performance with deformation up to 17.4 mm.
MOJARRAD M, SHAHINPOOR M. Soft actuators and artificial muscles: USA. 6109852[P]. 2000-08-29.
SHAHINPOOR M, KIM K J. Ionic polymer-metal composites: IV industrial and medical applications[J]. Smart Materials and Structures, 2005, 14(1): 197-214.
王延杰, 王永泉, 陈花玲, 等. 新型智能材料微小型光学镜头致动器的设计与性能研究[J]. 西安交通大学学报, 2012, 46(5): 79-84.
WANG Yanjie, WANG Yongquan, CHEN Hualing, et al. Design and performance investigation for miniature optical lens IPMC actuators[J]. Journal of Xi'an Jiaotong University, 2012, 46(5): 79-84.
JO C, PUGAL D, OH I K, et al. Recent advances in ionic polymer-metal composite actuators and their modeling and applications[J]. Progress in Polymer Science, 2013, 38(7): 1037-1066.
KIM K J, MOHSEN Shahinpoor. Ionic polymer-metal composites: II manufacturing techniques[J]. Smart Materials and Structures, 2003, 12(1): 65.
LEE S, PARK H, PANDITA S D, et al. Performance improvement of IPMC(ionic polymer metal composites)for a flapping actuator[J]. International Journal of Control Automation and Systems, 2006, 4(6): 748.
龚亚琦, 樊建平, 王乘. 水分子扩散阻力对IPMC致动特性的影响[J]. 力学学报, 2009, 41(3): 342-349.
GONG Yaqi, FAN Jianping, WANG Cheng. Influence of water molecule diffusion resistance force on electro-actuating characteristics of ionic polymer-metal[J]. Chinese Journal of Theoretical and Applied Mechanics, 2009, 41(3): 342-349.
LEE J H, LEE J H, NAM J D, et al. Water uptake and migration effects of electroactive ion-exchange polymer metal composite(IPMC)actuator[J]. Sensors and Actuators: A Physical, 2005, 118(1): 98-106.
SHOJI E, HIRAYAMA D. Effects of humidity on the performance of ionic polymer-metal composite actuators: experimental study of the back-relaxation of actuators[J]. The Journal of Physical Chemistry: B, 2007, 111(41): 11915-11920.
YEH Cheng-Chia, SHIH Wen-Pin. Effects of water content on the actuation performance of ionic polymer-metal composites[J]. Smart Materials and Structures, 2010, 19(12): 124007.
KOTHERA C, LEO D, ROBERTSON L. Hydration and control assessment of ionic polymer actuators[C] ∥AIAA Structures, Structural Dynamics, and Materials Conference. Norfolk, USA: American Institute of Aeronautics and Astronautics, 2003: 1-10.
KIM D, KIM K J, NAM J D, et al. Electro-chemical operation of ionic polymer-metal composites[J]. Sensors and Actuators: B Chemical, 2011, 155(1): 106-113.
KIKUCHI K, TSUCHITANI S. Effects of environmental humidity on electrical properties of ionic polymer-metal composite with ionic liquid[C]∥CCAS-SICE. Piscataway, NJ, USA: IEEE, 2009: 4747-4751.
ZHU Zicai, CHEN Hualing, WANG Yongquan, et al. NMR study on mechanisms of ionic polymer-metal composites deformation with water content[J]. Europhysics Letters, 2011, 96(2): 27005.1-27005.4.
卞侃, 熊克, 刘刚, 等. 多壁碳纳米管改性铂型IPMC的试验研究[J]. 复合材料学报, 2012, 29(4): 47-55.
BIAN Kan, XIONG Ke, LIU Gang, et al. Experiment study on IPMC with Pt as electrodes modified by multi-walled carbon nanotubes[J]. Acta Materiae Compositae Sinica, 2012, 29(4): 47-55.
焦战士, 何青松, 郭东杰, 等. 磺酸化石墨烯掺杂的离子交换聚合物电致动器[J]. 复合材料学报, 2012, 29(5): 24-31.
JIAO Zhanshi, HE Qingsong, GUO Dongjie, et al. Electro-actuators of sulfonated graphene hybrid ion-exchange polymer[J]. Acta Materiae Compositae Sinica, 2012, 29(5): 24-31.
FUJIWARA N, ASAKA K, NISHIMURA Y, et, al. Preparation of gold-solid polymer electrolyte composites as electric stimuli-responsive materials[J]. Chemistry of Materials, 2000, 12(6): 1750-1754.
CHANG Longfei, CHEN Hualing, ZHU Zicai, et al. Manufacturing process and electrode properties of palladium-electroded ionic polymer-metal composite[J]. Smart Materials and Structures, 2012, 21(6): 065018.
YOUNG J F. Humidity control in the laboratory using salt solutions: a review[J]. Journal of Applied Chemistry, 1967, 17(9): 241-245.
TAKASHIMA K, KAMAMICHI N, YAGI T, et al. Cytotoxicity test and mass spectrometry of IPMC[J]. Electronics and Communications in Japan, 2010, 93(1): 1-8.
ZHU Zicai, CHEN Hualing, CHANG Longfei, et al. Influence of fabrication process steps on Pd-IPMC electrode morphologies and mechano-electrical properties[C]∥Proceedings SPIE 7976, Electroactive Polymer Actuators and Devices 2011. San Diego, USA: SPIE, 2011: 1-10.
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