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The effect of materials, process settings and screw geometry on energy consumption and melt temperature in single screw extrusion

机译:材料,工艺设置和螺杆几何形状对单螺杆挤出中的能耗和熔融温度的影响

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Polymer extrusion is an energy intensive production process and process energy efficiency has become a key concern in the current industry with the pressure of reducing the global carbon footprint. Here, knowledge of the pattern of energy usage and losses of each component in the plant is highly useful in the process energy optimization. Moreover, it is essential to maintain the melt quality while improving the energy efficiency in polymer processing. In this work, an investigation was made on the total energy consumption, drive motor energy consumption, power factor and the melt temperature profile across the die melt flow (as an indication of the melt thermal quality) of an industrial scale extruder with three different screw geometries, three polymer types and wide range of processing conditions (altogether 135 different processing situations were observed). This aims to widen the knowledge on process energy and thermal behaviors while exploring possible correlation's between energy demand and melt quality (in terms of melt temperature fluctuations across the melt flow). The results showed that the level and fluctuations of the extruder's power factor is particularly dependent upon the material being processed. Moreover, it seems that there is a relation between the level of energy demand of the heaters and the level of melt temperature fluctuations. While the extruder specific energy consumption decreases with increasing screw speed, specific energy consumption of the drive motor may have either increasing or decreasing behavior. Overall, this study provides new insights in a wide range on process energy demand and melt thermal quality in polymer extrusion. Moreover, further research is recommended to establish strong correlation's between process energy consumption and melt thermal quality which should help to enhance process control and hence the product quality in single screw polymer extrusion. (C) 2016 Elsevier Ltd. All rights reserved.
机译:聚合物挤出是一种高能耗的生产工艺,随着降低全球碳足迹的压力,工艺能效已成为当前行业的主要关注点。在这里,了解能源使用方式和工厂中每个组件的损耗的模式对于过程能源优化非常有用。此外,必须在保持熔体质量的同时提高聚合物加工的能效。在这项工作中,对使用三种不同螺杆的工业规模挤出机的总能量消耗,驱动电机能量消耗,功率因数和整个模头熔体流动的熔体温度曲线(作为熔体热质量的指标)进行了调查。几何形状,三种聚合物类型和广泛的加工条件(共观察到135种不同的加工情况)。这旨在拓宽对过程能量和热行为的了解,同时探索能量需求与熔体质量之间的可能相关性(根据熔体流动中的熔体温度波动)。结果表明,挤出机功率因数的水平和波动特别取决于所加工的材料。而且,似乎在加热器的能量需求水平与熔体温度波动水平之间存在关系。虽然挤出机的单位能耗随螺杆速度的增加而降低,但驱动电机的单位能耗可能具有增加或减少的行为。总的来说,这项研究为聚合物挤出中的过程能量需求和熔体热质量提供了广泛的新见解。此外,建议进行进一步研究以建立工艺能耗与熔体热质量之间的强相关性,这应有助于增强工艺控制,从而提高单螺杆聚合物挤出的产品质量。 (C)2016 Elsevier Ltd.保留所有权利。

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