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Characterization of a resistive ribbon thermal transfer printing process

机译:电阻色带热转移印刷工艺的特征

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Resistive ribbon thermal transfer printers transfer ink from a ribbon to paper as the result of localized Joule heating of the ribbon structure. For this printing process, this paper discusses the voltage-versus-current response of the electrode-ribbon current path, the temperature distributions throughout the ribbon structure, and the correlation of print response with electrical input power and average ribbon temperatures. Nominal input power per electrode is approximately 190 mW. For input power near this level, thermal models predict that ribbon materials which pass directly under energized electrodes reach the highest temperatures; the hottest zone in the ribbon surrounds the composite-aluminum interface. Approximately 0.1 mm downstream from the electrodes, the heated ribbon materials come to nearly constant temperature. The area of the printed image correlates with this average ribbon temperature and input power.
机译:电阻式色带热转印打印机通过色带结构的局部焦耳加热将油墨从色带转移到纸张上。对于此打印过程,本文讨论了电极带电流路径的电压对电流响应,整个色带结构的温度分布以及打印响应与电输入功率和平均色带温度之间的关系。每个电极的标称输入功率约为190 mW。对于接近此水平的输入功率,热模型预测直接在通电电极下通过的带状材料会达到最高温度。功能区中最热的区域围绕着复合铝界面。在电极下游约0.1毫米处,加热的带状材料达到几乎恒定的温度。打印图像的面积与此平均色带温度和输入功率相关。

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