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Mathematical modelling of die pressure of a screw briquetting machine

机译:螺旋压块机模具压力的数学建模

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The screw briquetting machine has problems which have been attributed to poor design. There are limited theoretical studies targeted at solving problems of biomass briquetting machines. The briquetting die determines the final shape and quality of the biomass briquettes. The performance of the screw briquetting machine is also dependent on the design of the briquetting die. In this paper, mathematical models were developed to study the die pressure using a plug flow theory. Effects of die entry angle, die reduction ratio, length of briquetting die, biomass compact yield strength and friction on the die pressure were investigated using the models. Increasing the die entry angle, reduction ratio, compact yield strength and friction coefficient resulted in increase in the die pressure. Increase in length of briquetting die and friction coefficient also resulted in increase in the die pressure. Optimum die entry angle was dependent on the yield strength of compacted material and the friction coefficient at the interface between the die and the compacted material. This study is useful in developing improved screw briquetting machines.
机译:螺旋压块机具有归因于差的设计。有限的理论研究旨在解决生物质压块机的问题。压块模具决定了生物量压块的最终形状和质量。螺旋压块机的性能也取决于压块模具的设计。在本文中,开发了数学模型来使用插头流理论研究模具压力。采用模型研究了模具入口角度,模具减小率,压力率长度,生物质紧凑率强度和摩擦力的效果。增加模具进入角度,减少率,紧凑的屈服强度和摩擦系数导致模具压力增加。压力和摩擦系数的长度增加也导致模具压力增加。最佳模具入口角度取决于压实材料的屈服强度和模具和压实材料之间的界面处的摩擦系数。本研究可用于开发改进的螺旋压块机。

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