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首页> 外文期刊>Sensors and Actuators, A. Physical >Analysis of electro-active polymer bending: A component in a low cost ultrathin scanning endoscope
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Analysis of electro-active polymer bending: A component in a low cost ultrathin scanning endoscope

机译:电活性聚合物弯曲的分析:低成本超薄扫描内窥镜的组成部分

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The development of a low-cost active tip bending system for a scanning fiber endoscope or catheterscope has been initiated and proof-of-concept fabrication and testing have been conducted. The actuator material chosen for the design is an ionic conductive polymer metal composites (IPMC) type electro-active polymer (EAP). IPMC materials are inexpensive, especially in small sizes required for ultrathin scopes, allowing the possibility of an active-bending mechanism for the single-use endoscope. The charge and the strain distribution across the 200 mu m thick membrane are simulated using finite element analysis (FEA). The deformation results from the numerical analysis agree within 8.5% error of the experimental outcome. An IPMC strip actuator made from a Nafion (c) membrane and a platinum-plating recipe is developed. The generative force of the actuator is measured and demonstrated to be sufficient to lift the rigid tip of the scanning fiber endoscope. Therefore, this IPMC material is a candidate to be used as a low-cost active bending mechanism for the ultrathin scanning fiber endoscopes and future catheterscopes. (c) 2006 Elsevier B.V. All rights reserved.
机译:已经开始开发用于扫描纤维内窥镜或导管镜的低成本主动尖端弯曲系统,并且已经进行了概念验证的制造和测试。设计中选择的执行器材料是离子导电聚合物金属复合材料(IPMC)型电活性聚合物(EAP)。 IPMC材料价格便宜,尤其是超薄示波器所需的小尺寸,这为一次性内窥镜提供了主动弯曲机制的可能性。使用有限元分析(FEA)模拟了整个200微米厚膜的电荷和应变分布。数值分析得出的变形结果与实验结果的误差在8.5%以内。开发了由Nafion(c)膜和镀铂配方制成的IPMC条形执行器。测量并证明执行器的产生力足以提升扫描光纤内窥镜的刚性尖端。因此,这种IPMC材料是候选材料,可以用作超薄扫描纤维内窥镜和未来导管镜的低成本主动弯曲机构。 (c)2006 Elsevier B.V.保留所有权利。

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