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回轉窯內二元顆粒物料的徑向混合

Transverse mixing of binary solid materials in a rotating kiln

  • 摘要: 研究了顆粒尺寸差異和密度差異對二元物料在回轉窯內混合的影響.采用離散單元法建立顆粒物料的運動模型,模擬滾落運動模式下二元物料在回轉窯內的徑向混合過程;通過顆粒接觸數定義混合程度評價指數,結合Hong的滲流與凝聚競爭理論分析顆粒體積比σ和密度比η對二元物料混合程度的影響.結果表明:增大體積比σ會增強滲流作用,增大密度比η會增強凝聚作用,無論滲流或凝聚占據主導作用,均會導致物料在混合過程中產生徑向分離,使混合程度降低;對ση進行配置后,可以使滲流與凝聚兩種機理彼此平衡,達到物料混合均勻的目的;物料的滲流-凝聚平衡曲線中,ση呈冪函數關系.

     

    Abstract: In order to investigate the effect of particle size difference and density difference on the mixing mechanism of binary granular materials within a rotating kiln, a kinematic model of particles was established using the discrete element method, and the transverse mixing process of granular materials in the rolling regime within the rotating kiln was simulated. The mixing index was defined by contact-number between particles, and the effects of particle volume ratio and density ratio on the mixing index were analyzed using Hong's theory:competition between percolation and condensation. The results show that the percolation mechanism improves with increasing volume ratio σ between particles, but the condensation mechanism improves with increasing density ratio η. Segregation will occur in the radial direction of the rotating kiln no matter percolation or condensation plays the leading role resulting in the decrease of mixing degree. Percolation and condensation can balance each other for some reasonable particle volume and density combinations, where the binary granular materials could get uniformly mixed. There is a power function relationship between particle volume ratio and density ratio when percolation and condensation balance each other.

     

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