小麦粉粒度检测装置喂料部件的设计与研究

Mingxu Wang, Haojun Zhao, Saiqiang Li, Jiangfeng Ouyang, Junyong Wu, Hengda Zhang
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引用次数: 0

摘要

针对传统小麦制粉工艺中人工粒度检测的时效性差、反馈延迟等问题,设计了一种小麦制粉在线粒度检测装置。本文重点对影响粒度检测精度的关键进料部件进行了优化设计。进料部件采用无轴螺旋叶片。通过理论分析,确定了影响无轴螺旋输送机吞吐能力的主要参数范围。设计了箱-贝肯实验,以获得各因素的最佳参数组合:螺旋叶片外径 23.8 mm、螺旋叶片内径 6.4 mm、螺距 11.2 mm、叶片转速 288.9 r/min。利用上述参数组合进行了仿真和试验台实验。仿真结果表明,喂料组件的平均吞吐能力为 2.85 kg/h,而试验台实验的平均吞吐能力为 2.84 kg/h,均匀性变异系数为 1.33%。这些结果表明,上述参数组合符合装置中喂料组件的设计要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DESIGN AND RESEARCH ON FEEDING COMPONENTS OF WHEAT FLOUR PARTICLE SIZE DETECTION DEVICE
To address the issues of poor timeliness and delayed feedback in traditional wheat milling processes for manual particle size detection, a wheat milling online particle size detection device has been designed. This paper focuses on the design optimization of the key feeding component in the device, which affects the accuracy of particle size detection. The feeding component adopts shaftless screw blades. Through theoretical analysis, the main parameter ranges affecting the throughput capacity of the shaftless screw conveyor are determined. A Box-Behnken experiment is designed to obtain the optimal parameter combination for each factor: outer diameter of screw blades 23.8 mm, inner diameter of screw blades 6.4 mm, pitch 11.2 mm, and blade rotation speed 288.9 r/min. Simulation and test stand experiments are conducted using the above parameter combination. The simulation results show that the average throughput capacity of the feeding component is 2.85 kg/h, while the average throughput capacity of the test stand experiment is 2.84 kg/h, with a coefficient of variation of uniformity of 1.33%. These results indicate that the above parameter combination meets the design requirements for the feeding component in the device.
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