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Condenser dryer analysis, design and research application.

机译:冷凝式干燥机的分析,设计和研究应用。

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This thesis analyzes the processes in condensation drying by constructing a theoretical model. The main processes are: (1) energy delivery from the heating plate to the coating; (2) solvent movement to the surface from within a coating by diffusion; (3) solvent evaporation; (4) solvent vapor removal from the outer surfaces of a coating by diffusion and diffusion induced convection through a stagnant thin air layer; (5) solvent vapor condensing on a grooved, chilled plate; (6) solvent condensate drainage on grooved plate and recovery.; The key is the condensing plate above the coating, within a narrow gap of less than 5 mm. The plate is grooved so that the condensate is transported to end collective devices by capillary pressure with or without the help of mechanical forces. The condensate flows from the land into the near grooves, then to the collective devices; otherwise liquid builds up and instability develops, eventually "rains" off. Analyses of one-dimensional groove flow along axial direction and land flow across the groove predict the drainage capacity of a designed grooved plate, which is a strong function of geometric parameters of the grooved plate. Condensation drying; including the processes above except 6, is modeled as one-dimensional coupled heat and mass transfer in a binary polymer-solvent system. Analysis of the model yields the time courses of composition in the coating and solvent vapor saturation ratio in the upper gap. Drying performance is characterized by the drying time to a desired solvent residual, the minimum difference between coating temperature and bubble point, and the maximum saturation ratio, which are functions of parameters such as gap widths and temperatures. A drying window is a region in the space of operating parameters within which a defect-free is available. Drying windows in this thesis are surrounded by three defects: slow drying, "fogging" and "raining"---operating limits of condensation drying and groove and land flow models.; A small bench-top batch condenser dryer was designed and built for laboratory studies of condenser dryer performance and for drying polymer sample coatings under controlled conditions. Further experimental validations about the drying window are need.
机译:本文通过建立理论模型,对冷凝干燥过程进行了分析。主要过程是:(1)从加热板到涂层的能量传递; (2)溶剂通过扩散从涂层内部移动到表面; (3)溶剂蒸发; (4)通过扩散和扩散引起的对流通过停滞的薄空气层而从涂层的外表面除去溶剂蒸气; (5)溶剂蒸气在开槽的冷却板上冷凝。 (6)溶剂冷凝水在开槽板上的排放和回收。关键是涂层上方的冷凝板,其间隙小于5 mm。在板上开槽,以便在有或没有机械力的帮助下,通过毛细管压力将冷凝水输送到末端集散装置。冷凝水从地面流到附近的凹槽,然后流到集尘装置。否则,液体会积聚,并且不稳定会发展,最终“流失”掉。沿轴向的一维沟槽流动和跨沟槽的陆面流动的分析预测了所设计沟槽板的排水能力,这是沟槽板的几何参数的强大函数。冷凝干燥;包括以上除6以外的过程的模型被建模为二元聚合物-溶剂系统中的一维传热和传质耦合。对模型的分析得出涂层中成分的时程和上部间隙中的溶剂蒸气饱和比。干燥性能的特征是至所需溶剂残留的干燥时间,涂层温度和起泡点之间的最小差以及最大饱和比,它们是诸如间隙宽度和温度之类的参数的函数。干燥窗口是运行参数空间中无缺陷的区域。本文的干燥窗存在三个缺陷:缓慢干燥,“起雾”和“下雨”-凝结干燥的运行极限以及沟渠和土地流模型。设计并制造了一个小型台式间歇式冷凝器干燥器,用于实验室研究冷凝器干燥器的性能以及在受控条件下干燥聚合物样品涂层。需要关于干燥窗口的进一步实验验证。

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