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Evaluation of the lubrication mechanism at various rotation speeds and granule filling levels in a container mixer using a thermal effusivity sensor

机译:使用热效率传感器评估容器混合器中各种转速和颗粒填充水平下的润滑机理

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摘要

To research the detailed mechanism of the lubrication process using the thermal effusivity sensor, the relationships of the lubrication progress with the pattern of powder flow, the rotation speed and the filling level were investigated. The thermal effusivity profile was studied as a function of the number of rotations at various rotation speeds. It was observed that at lower rotation speeds, the profiles of the lubrication progress were almost the same, regardless of the rotation speed. In this region, the highest speed was defined as the critical rotation speed (CRS), which was found to be one of the important factors. The CRS had close relations with avalanche flow in the blender. The first and the second phases were observed in the lubrication process. The first phase was influenced by the CRS and the filling level in the blender. The second phase was influenced by the rotation speed. The mechanism of two-phase process was proposed as a macro progression of the dispersion of the lubricant (first phase) and micro progression of the coating of the powder particles with lubricant (second phase). The accurate monitoring by the thermal effusivity sensor was able to help a better understanding in the lubrication process.
机译:为了研究使用热效率传感器的润滑过程的详细机理,研究了润滑过程与粉末流动方式,转速和填充量之间的关系。研究了在不同转速下热效率曲线与转数的关系。观察到,在较低转速下,无论转速如何,润滑过程的曲线几乎相同。在该区域,最高速度被定义为临界转速(CRS),这被认为是重要因素之一。 CRS与搅拌机中的雪崩流密切相关。在润滑过程中观察到第一阶段和第二阶段。第一阶段受CRS和搅拌机填充水平的影响。第二阶段受转速影响。提出了两相过程的机理,即润滑剂分散的宏观进程(第一阶段)和粉末颗粒涂覆润滑剂的微观进程(第二阶段)。热效率传感器的精确监控有助于更好地了解润滑过程。

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