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Mathematical modelling of pressure distribution along the die of a biomass briquetting machine

机译:生物质团块机模具压力分布的数学模型

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The screw extruder briquetting die is critical to determining the quality of biomass briquettes. In this study, mathematical models were developed to study pressure distribution along the briquetting die using the hot extrusion scheme and assuming a plug flow. Parametric analysis to determine the effects of design variables on die pressure distribution was carried out by simulation using developed mathematical models. Results showed that pressure along the die entry decreases rapidly with high yield strength of compacted biomass and with increased friction coefficient at the briquetting die interface. As friction coefficient at the die interface increases, there is rapid decrease in pressure along the length of the die. Parameters resulting in rapid pressure decrease along the briquetting die length would result in increased die pressure at the end of the screw extruder. The developed mathematical models and the results obtained could significantly contribute to design of briquetting dies.
机译:螺杆挤出机压块模具对于确定生物质压块的质量至关重要。在这项研究中,开发了数学模型以使用热挤压方案并假设活塞流来研究沿团块模头的压力分布。使用已开发的数学模型通过仿真进行参数分析,以确定设计变量对模具压力分布的影响。结果表明,沿着压模入口的压力随着压实生物质的高屈服强度和压块模界面的摩擦系数的增加而迅速降低。随着模头界面处的摩擦系数的增加,沿模头长度的压力会迅速降低。导致沿着压块模头长度快速降低压力的参数将导致螺杆挤出机末端的模头压力增加。发达的数学模型和获得的结果可能对压块模具的设计有很大贡献。

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