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InkJet printing of carbon black electrodes for dielectric elastomer actuators

机译:用于介电弹性体致动器的炭黑电极的喷墨印刷

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Inkjet printing is an appealing technique to print electrodes for Dielectric Elastomer Actuators (DEAs). Here we present the preparation and ink-jet printing of a carbon black electrode mixture and characterise its properties. Carbon black has been used extensively in the past because it is very compliant; however, it has a high resistance and can be very dirty to work with. In this paper we show that carbon black remains an appropriate electrode material, and when inkjet printed can be used to fabricate devices meeting today's demanding requirements. DEAs are becoming thinner to decrease actuation voltages and are shrinking in size to match the scale of the devices in the biomedical field, tuneable optics, and microfluidics. Inkjet printing addresses both of these problems. Firstly, Inkjet printing is a non-contact technique and can print on very thin freestanding membranes. Secondly, the high precision of inkjet printers makes it possible to print complex electrode geometries in the millimetre scale. We demonstrate the advantages of inkjet printing and carbon black electrodes by conducting a full characterisation of the printed electrodes. The printed carbon black electrodes have resistances as low as 13kΩ/□, an elastic modulus of approximately 1MPa, and a cyclic resistance swing which increases by 7% over 1500 cycles at 50% stretch. We also demonstrate a DEA with printed carbon black electrodes with a diametral stretch of 8.8% at an electric field of approximately 94V/μm. Finally a qualitative test is conducted to show that the printed carbon black electrode is extremely hardwearing.
机译:喷墨印刷是一种吸引人的技术,可印刷介电弹性体致动器(DEA)的电极。在这里,我们介绍了炭黑电极混合物的制备和喷墨印刷,并表征了其性能。炭黑在过去已经被广泛使用,因为它非常合规。但是,它具有很高的抵抗力,并且使用起来很脏。在本文中,我们表明炭黑仍然是合适的电极材料,并且当喷墨印刷可用于制造满足当今苛刻要求的设备时。 DEA越来越薄,以降低驱动电压,并且尺寸不断缩小,以匹配生物医学,可调谐光学器件和微流体领域中设备的规模。喷墨打印解决了这两个问题。首先,喷墨打印是一种非接触式技术,可以在非常薄的独立膜上进行打印。其次,喷墨打印机的高精度使得可以打印毫米级的复杂电极几何形状。我们通过对印刷电极进行全面表征来证明喷墨印刷和炭黑电极的优势。印刷的炭黑电极的电阻低至13kΩ/□,弹性模量约为1MPa,循环电阻摆幅在1500个循环中拉伸50%时增加了7%。我们还演示了在约94V /μm的电场下,直径为8.8%的印刷炭黑电极的DEA。最后,进行了定性测试,表明印刷的炭黑电极非常耐磨。

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