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首页> 外文期刊>Agricultural Engineering International: CIGR Ejournal >Pressure build-up and wear analysis of tapered screw extruder biomass briquetting machines
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Pressure build-up and wear analysis of tapered screw extruder biomass briquetting machines

机译:锥形螺杆挤出机生物质团块机的压力建立和磨损分析

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The design of efficient screw extruder biomass briquetting machines is important for the utilization of loose biomass materials from wood and agricultural wastes for the production of solid fuel. In this study, the effects of geometrical parameters (channel depth and helix angle) and operational parameters (friction coefficient, mass flow rate and speed) on the performance and design of the briquetting machine were investigated using a pressure model based on the plug flow theory. An analytical model, which utilizes the pressure model, was also developed from Archard’s wear law to investigate screw wear of biomass briquetting machines. The study on the pressure model showed that a shallow screw channel and small helix angle resulted in rapid pressure build-up along the screw extruder biomass briquetting machine. High friction at the barrel-material interface, low friction at the screw-material interface, high screw speed and high mass flow rate also resulted in rapid pressure build-up along the screw extruder biomass briquetting machine. The geometrical and operational parameters which resulted in rapid pressure build-up required shorter screw length for the briquetting machine. The wear model developed predicted the screw wear satisfactorily and showed that the screw speed and the choice of material for screw affect the screw wear. The wear volume increased exponentially towards the end of the screw where pressure is the highest. Redesigning the screw to select optimum geometry and speed with appropriate choice of material could improve the screw life and performance of the biomass briquetting machine.
机译:高效的螺杆挤出机生物质团块机的设计对于利用木材和农业废料中的松散生物质材料来生产固体燃料非常重要。在这项研究中,使用基于塞流理论的压力模型,研究了几何参数(通道深度和螺旋角)和操作参数(摩擦系数,质量流量和速度)对压块机性能和设计的影响。 。阿卡德的磨损定律还开发了一种利用压力模型的分析模型,以研究生物质团块机的螺杆磨损。对压力模型的研究表明,较浅的螺杆通道和较小的螺旋角会导致沿螺杆挤出机生物质团块机的压力快速升高。机筒-物料界面处的高摩擦力,螺杆-物料界面处的低摩擦力,高螺杆速度和高质量流率也导致了沿螺杆挤出机生物质团块机快速建立压力。导致快速建立压力的几何和操作参数要求压块机的螺杆长度较短。建立的磨损模型可以令人满意地预测螺钉的磨损,并表明螺钉的速度和螺钉材料的选择会影响螺钉的磨损。在压力最高的螺杆末端,磨损量呈指数增长。重新设计螺杆以选择合适的材料选择最佳的几何形状和速度可以延长螺杆的使用寿命并提高生物质团块机的性能。

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