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Pulsed Photonic Curing of Conformal Printed Electronics.

机译:保形印刷电子的脉冲光子固化。

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摘要

As next-generation electronic products emerge, there is a need to create more electronic functionality in compact spaces. One of the techniques to achieve this is by integrating electronic circuitry on mechanical stress bearing parts of electro-mechanical products. Direct-write printing processes like inkjet printing and aerosol jet printing can be used to print conductive inks on conformal surfaces of mechanical components. Advanced curing/sintering processes such as pulsed photonic curing can be used to cure/sinter printed inks to produce conductive traces. However, the use of photonic curing on conformal surfaces introduces two sources of variability into the process, which are the distance and slope between the flash lamps and the conformal substrate. This research studies the effects that distance and slope between the flash lamps and substrate have on the characteristics of the photonically cured material. Screen printed samples of copper nanoparticle ink on paper substrates were photonically cured at various distances and slope settings in a Novacentrix Pusleforge 3300 machine. Analysis of the experimental data reveals that there is significant decrease in the conductivity of the cured copper ink with increase in both the distance and slope between the flash lamps and the substrate. The lowering of conductivity of the coupons with increase in distance was correlated to the reduction in the intensity of pulsed light with distance from the source. Similarly, the lowering of conductivity of the coupons with increase in slope was correlated to the reduction in the intensity of pulsed light with increase in angle between the incident light and the surface normal. A spectrophotometer was used to correlate the lowering of the conductivity of the printed coupon to the reduction in the amount of light absorbed by the coupon surface with increase in the slope from the flash lamps. This research highlights that distance and slope variations are important considerations to achieve uniform electrical properties in conformal printed electronics undergoing photonic curing.
机译:随着下一代电子产品的出现,需要在紧凑的空间中创建更多的电子功能。实现此目的的技术之一是将电子电路集成在机电产品的承受机械应力的零件上。诸如喷墨印刷和气溶胶喷射印刷的直接写入印刷工艺可用于在机械部件的保形表面上印刷导电油墨。先进的固化/烧结工艺(例如脉冲光子固化)可用于固化/烧结印刷油墨以产生导电迹线。然而,在共形表面上使用光子固化将两个可变性源引入该过程中,这是闪光灯和共形衬底之间的距离和斜率。这项研究研究了闪光灯与基板之间的距离和倾斜度对光固化材料特性的影响。在Novacentrix Pusleforge 3300机器中,以各种距离和坡度设置对纸基上的铜纳米颗粒油墨的丝网印刷样品进行光子固化。对实验数据的分析表明,随着闪光灯和基材之间的距离和斜率的增加,固化铜油墨的电导率会显着降低。试片的电导率随距离的增加而降低,与脉冲光强度随距光源的距离的降低有关。类似地,随着斜率的增加,试样的电导率的降低与脉冲光强度的降低相关,脉冲光的强度随着入射光和表面法线之间的角度的增加而降低。使用分光光度计将打印的试样的电导率的降低与试样表面吸收的光的减少与闪光灯的斜率的增加相关联。这项研究强调,距离和斜率变化是在经历光子固化的共形印刷电子中实现均匀电性能的重要考虑因素。

著录项

  • 作者

    Das, Sourav.;

  • 作者单位

    Rochester Institute of Technology.;

  • 授予单位 Rochester Institute of Technology.;
  • 学科 Mechanical engineering.;Industrial engineering.
  • 学位 M.S.
  • 年度 2016
  • 页码 91 p.
  • 总页数 91
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 公共建筑;
  • 关键词

  • 入库时间 2022-08-17 11:40:00

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