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Thermal behavior of resistive ribbon for single-stylus excitation

机译:单笔触激励的电阻带的热性能

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This paper provides a quantitative description of the heating and cooling behavior of the resistive ribbon used in resistive ribbon thermal transfer printing. Since the focus is upon the ribbon, this description has been facilitated by substituting a single, tapered tungsten stylus as a model for a single printhead element. The experiment used an infrared spot pyrometer to measure ribbon surface temperatures downstream from the stylus while a laminate of ribbon and paper was continuously moved beneath the stylus and subjected to current pulses. Measured cooling rates under steady-state excitation at different ribbon velocities showed a behavior consistent with two simple analytic models which describe heat loss into the stylus during heating and two-dimensional diffusion into a half-plane during cooling. A detailed, time-dependent computer simulation using finite-element methods was used to provide a more detailed description of the process by taking into account the local geometry of the heat input distribution and the layered nature of the ribbon-paper laminate. The resulting three-dimensional temperature distributions are given for the steady-state case.
机译:本文定量描述了用于电阻色带热转移打印的电阻色带的加热和冷却行为。由于重点放在色带上,因此通过将单个锥形钨笔替换为单个打印头元件的模型来简化了此说明。该实验使用红外点高温计来测量手写笔下游的色带表面温度,同时使色带和纸张的层压板连续移动到手写笔下方并受到电流脉冲的影响。在不同的碳带速度下,在稳态激发下测得的冷却速率显示出与两个简单的分析模型相一致的行为,该模型描述了加热过程中热量损失到触控笔中以及冷却过程中二维扩散到半平面中。通过考虑热输入分布的局部几何形状和带状纸层压板的分层性质,使用了有限元方法进行了详细的基于时间的计算机模拟,从而对该过程进行了更详细的描述。给出了稳态情况下的三维温度分布。

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