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Numerical simulation and experiment of medium flow energy field in vibrating mill

机译:振动磨机中流场的数值模拟与实验

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In order to solve to the technical bottleneck that powder is easy to reunite and without refining in the vibration ultrafine grinding (UFG) technology, the energy field of medium flow was studied by analyzing crushing energy and energy transfer. The numerical simulation model of medium flow based on Particle Flow Code (PFC) was established. By setting four kinds of working conditions of amplitude and frequency, the dynamic graphics and curves of the energy field (such as kinetic energy, strain energy, velocity field, force chain and so on) were obtained. In the situation of mid-frequency with large amplitude, the average speed of front medium flow was 1.3-5.03 times that of others and the low-energy region was decreased by 6% to 10%. The largest kinetic energy and strain energy were 3.25 and 2.94 times the average value of others, respectively. The diamond UFG was analyzed in new vibration mills under the conditions of low frequency with large amplitude and mid-frequency with large amplitude. Utilizing a laser particle size analyzer, it was discovered that the particle sizes d(50) in these two models were 3.840μm and 0.260μm and bandwidths were 9.940μm and 3.825 μn. This highlights the effect of mid-frequency with large amplitude in particle refining and bandwidth narrowing, which is of great importance in the fields of ultra-hard particle refining research and energy utilization. Vibration mill; medium flow; energy field; numerical analysis; kinetic energy; strain energy
机译:为了解决振动超细粉碎(UFG)技术中粉末易于团聚而又不精制的技术瓶颈,通过分析粉碎能量和能量传递来研究介质流的能量场。建立了基于粒子流代码(PFC)的介质流动数值模拟模型。通过设置振幅和频率的四种工作条件,获得了能量场的动态图形和曲线(如动能,应变能,速度场,力链等)。在中频幅值较大的情况下,前介质的平均速度是其他介质的平均速度的1.3-5.03倍,低能量区域降低了6%至10%。最大动能和应变能分别是其他平均值的3.25和2.94倍。在新的振动磨机中,在低频大振幅和中频大振幅条件下对金刚石UFG进行了分析。利用激光粒度分析仪,发现这两个模型的粒度d(50)为3.840μm和0.260μm,带宽为9.940μm和3.825μn。这突显了中频大振幅对颗粒细化和带宽变窄的影响,这在超硬颗粒细化研究和能源利用领域具有重要意义。振动磨中等流量能量场数值分析;动能;应变能

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    Nanjing Institute of Technology Jiangsu, Nanjing 211167, P. R. China,Huanghe S & T University, Henan Zhengzhou 450015, P. R. Chinal;

    Nanjing Institute of Technology Jiangsu, Nanjing 211167, P. R. China;

    Nanjing Institute of Technology Jiangsu, Nanjing 211167, P. R. China;

    Nanjing Institute of Technology Jiangsu, Nanjing 211167, P. R. China;

    Nanjing Institute of Technology Jiangsu, Nanjing 211167, P. R. China;

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