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Fabrication of various micropatterns by maskless micro-electrochemical texturing

机译:通过无掩模微电化学纹理制造各种微图案

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In this paper, an innovative and alternative concept of maskless micro-electrochemical texturing is exploited for the fabrication of simple and complex micropatterns. In this process, the tool is masked incorporated with the textured patterns and the workpiece has no mask. This research study concentrates on generation of simple micropattern, i.e. linear micropattern, and complex micropattern, i.e. cascade micropattern using maskless micro-electrochemical texturing method without repeated use of photolithography process. A single masked patterned tool with SU-8 2150 mask can produce many high-quality simple and complex micropatterns economically using this method. A well-planned experimental set-up consisting of electrochemical micromachining (EMM) cell, electrode fixtures, electrical connections and constricted vertical cross-flow electrolyte system has been designed and developed indigenously for carrying out the experiments. Influences of major influencing parameters, i.e. machining voltage, interelectrode gap, flow rate and machining time, are investigated on width overcut and machining depth of micropatterns. For higher machining accuracy, controlled depth and lower standard deviations, machining with lower machining time, lower voltage, lower interelectrode gap and higher flow rate is recommended. From the detailed experimental investigation, the best parametric combination are voltage of 8 V, duty ratio of 30%, pulse frequency of 15 kHz, electrolyte of NaCl (0.34 M)+NaNO_3 (0.23 M), flow rate of 5.35 m~3/h, interelectrode gap of 50 m and machining time of 40 s.
机译:在本文中,利用无掩模微电化学纹理化的创新和替代概念,用于制造简单和复杂的微图案。在该过程中,掩蔽工具与纹理图案结合,工件没有掩模。该研究专注于一代简单的微图案,即线性微图案和复杂的微图案,即使用掩模微电化学纹理化的级联微图案,而无需反复使用光刻工艺。具有SU-8 2150掩模的单个遮罩图案化工具可以使用此方法在经济上经济地生产许多高质量的简单和复杂的微图案。由电化学微机械线(EMM)电池,电极固定装置,电连接和收缩垂直的横流电解质系统组成的良好规划的实验设置已经设计和开发用于进行实验。主要影响参数的影响,即加工电压,电极间隙,流量和加工时间,对微图案的加工深度进行研究。对于更高的加工精度,受控深度和更低的标准偏差,建议使用较低的加工时间,较低电压,较低电极间隙和更高的流速加工。从详细的实验研究中,最佳的参数组合为8 V,占空比为30%,脉冲频率为15kHz,NaCl电解质(0.34米)+纳米_3(0.23μm),流速为5.35 m〜3 / H,电极间隙为50米,加工时间为40秒。

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