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Manipulation of electrospun fibres in flight: the principle of superposition of electric fields as a control method

机译:飞行中电纺纤维的操纵:电场叠加原理作为一种控制方法

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摘要

This study investigates the magnitude of movement of the area of deposition of electrospun fibres in response to an applied auxiliary electric field. The auxiliary field is generated by two pairs of rod electrodes positioned adjacent and parallel to the line of flight of the spun fibre. The changes in shape of the deposition area and the degree of movement of the deposition area are quantified by optical scanning and image analysis. A linear response was observed between the magnitude of movement of the deposition area and voltage difference between the auxiliary and deposition electrodes. A squeezing effect which changed the aspect ratio of the deposition area was also observed to result from the application of symmetric electrical fields. Statistical analysis showed that the deflection and squeezing responses can be thought of as independent control actions. The results from this experiment suggest this particular application of superposition of electric fields could be used as to control the flight path of an electrospun fibre.
机译:这项研究调查了电纺纤维沉积区域响应施加的辅助电场的运动幅度。辅助场是由两对成对的棒状电极产生的,这些成对的棒状电极位于并平行于纺丝纤维的飞行线。通过光学扫描和图像分析来量化沉积区域的形状变化和沉积区域的移动程度。在沉积区域的移动幅度与辅助电极和沉积电极之间的电压差之间观察到线性响应。还观察到由于对称电场的施加而导致改变沉积区域的长宽比的挤压效应。统计分析表明,挠曲和挤压响应可被视为独立的控制动作。该实验的结果表明,电场叠加的这种特殊应用可以用来控制电纺纤维的飞行路径。

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  • 来源
    《Journal of Materials Science》 |2012年第3期|p.1156-1163|共8页
  • 作者单位

    Faculty of Mechanical Engineering, Universiti Teknikal Malaysia Melaka, 76100, Melaka, Malaysia;

    Department of Mechanical Engineering, University of Canterbury, Private Bag 4800, Christchurch, 8020, New Zealand;

    The New Zealand Institute for Plant &amp Food Research Limited, Gerald Street, Lincoln, 7608, New Zealand;

    Electrospinz Ltd, Blenheim, New Zealand;

    The New Zealand Institute for Plant &amp Food Research Limited, Gerald Street, Lincoln, 7608, New Zealand;

    Department of Mechanical Engineering, University of Canterbury, Private Bag 4800, Christchurch, 8020, New Zealand;

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