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A novel approach for modelling of physical interactions between slurry, grinding media and mill structure in wet stirred media mills

机译:湿搅拌介质研磨浆料,磨削介质与轧机结构物理相互作用建模新方法

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摘要

Wet comminution is an important process in the mineral processing industry. Modelling of wet comminution in stirred media mills requires the simultaneous modelling of grinding media, a moving internal stirrer, and slurry. In the present study, a novel approach for modelling the physical interactions between slurry, grinding media and mill structure in a stirred media mill is presented. The slurry is modelled with the particle finite element method (PFEM). The grinding media is modelled using the discrete element method (DEM) and the mill structure is modelled using the finite element method (FEM). The interactions between slurry, grinding media and mill structure are modelled by two-way couplings between the PFEM, the DEM and the FEM models. The coupled model of the present study is used to predict the motion of slurry and grinding media, and to calculate the power draw during wet comminution in a pilot scale horizontal stirred media mill. Furthermore, the model is used to compare a Newtonian and a non-Newtonian model of the slurry, where the non-Newtonian model is used to capture experimentally observed shear-thinning. The coupled PFEM-DEM-FEM model preserves the robustness and efficiency of each of the methods and it gives the possibility to use large time increments for the fluid, greatly reducing the computational expense. The coupled model of the present work provide information on the complex dynamics of slurry and grinding media. The numerical model is shown to be a useful tool for increasing the knowledge and understanding of wet comminution in stirred media mills.
机译:湿粉碎是矿产加工行业的重要过程。搅拌介质磨机的湿法粉碎的建模需要同时建模研磨介质,移动内部搅拌器和浆料。在本研究中,提出了一种用于在搅拌介质研磨机中建模浆料,研磨介质和研磨结构之间的物理相互作用的新方法。浆料用颗粒有限元法(PFEM)建模。使用离散元件方法(DEM)建模研磨介质,并且使用有限元方法(FEM)建模研磨机结构。浆料,研磨介质和研磨机结构之间的相互作用是通过PFEM,DEM和FEM模型之间的双向耦合建模的。本研究的耦合模型用于预测浆料和研磨介质的运动,并在湿法搅拌介质研磨中计算湿法粉碎过程中的功率抽取。此外,该模型用于比较牛顿和非牛顿模型的浆料,其中非牛顿模型用于捕获实验观察的剪切变薄。耦合的PFEM-DEM-FEM模型可以保留每种方法的稳健性和效率,并且它可以大大降低计算费用来利用大量增量的可能性。本工作的耦合模型提供了有关浆料和研磨介质的复杂动态的信息。数字模型被证明是一种有用的工具,用于增加搅拌媒体磨机中湿粉碎的知识和理解。

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