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振動磨簡體內部的能量傳遞規律

Energy transfer laws in a vibrating mill tube

  • 摘要: 在對大量攝像實驗反復觀測和研究后發現:磨筒內的磨介存在拋射、整體回轉和本身自轉3種運動狀態;磨介與筒壁的拋離與接觸是沿著振動方向發生的,此過程是周期性的,其周期與振動周期相同.在此基礎上,建立了粉磨介質沖量傳遞模型,探討了振動磨簡體內部的沖量傳遞、能量傳輸和能量耗散的分布規律,揭示了振動磨的粉碎機理.以此為理論依據,提出了減小磨筒內的惰性區、提高粉磨效率的途徑.

     

    Abstract: Based on lots of video observation tests, there are three motion states of grinding medium in a mill tube, including projection, revolution and autorotation. The movement cycle of grinding medium departing from and contacting with the inner liner is equal to the vibrating period. By building an impulse transfer model, the distribution laws of impulse transfer, energy transfer and energy dissipation are discussed, and the mechanism of the vibrating mill is revealed. Finally, this paper proposes the ways to reduce the inertia region in the grinding tube and to improve the efficiency of grinding.

     

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