Determination of optimal technological parameters of a horizontal mixer of loose compound feeds

P. A. Savinyh, N. Turubanov, A. J. Isupov
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Abstract

The quality of the compound feeds for animals and poultry directly depends not only on the components included in it but also on the type of mixer used. Horizontal mixers as compared to the vertical ones allow for a shorter period of time to obtain high-quality mixtures due to the intensification of the process of material movement by belt working bodies. The aim of the research is to determine optimal technological parameters of a horizontal mixer with a 0.3 m3 mixing chamber with a belt working body. The mixer is designed to produce mixed compound feeds of high uniformity in production lines, workshops or can be used as an independent machine for mixing loose components. The research was carried through multifactorial experiment. As the result, mathematical models of the mixer working process were obtained, two-dimensional cross sections of the response surfaces were built. The obtained mathematical models make it possible at the design stage to identify the dependence of qualitative and energy indicators on factors at the considered levels of variation. According to the results of the multifactorial experiment, it has been established that the best mixing quality of 94.8 % is achieved when the mixing chamber is loaded by 58 % at a speed of rotation of the mixer shaft of 30 min-1, mixing time of 6 minutes with simultaneous supply of the control and the main components. At the same time, the throughput is 0.78 t/h, and the specific energy consumption is 2.04 kWh/t.
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确定松散复合饲料卧式搅拌机的最佳技术参数
畜禽配合饲料的质量不仅直接取决于其中的成分,还取决于所用搅拌机的类型。与立式搅拌机相比,卧式搅拌机由于加强了带式工作机构的物料运动过程,因此可以在更短的时间内获得高质量的混合物。研究的目的是确定带式工作机构的 0.3 立方米混合室卧式搅拌机的最佳技术参数。该搅拌机的设计目的是在生产线、车间生产均匀度较高的混合饲料,也可作为独立机器用于混合松散成分。研究是通过多因素实验进行的。结果获得了搅拌机工作过程的数学模型,并建立了响应面的二维横截面。通过所获得的数学模型,可以在设计阶段确定质量和能量指标在所考虑的变化水平上对各种因素的依赖性。根据多因素实验的结果,可以确定在搅拌轴转速为 30 分钟/1,搅拌时间为 6 分钟,同时提供控制和主要成分的情况下,当搅拌室的装载量为 58%时,可以达到 94.8%的最佳搅拌质量。同时,产量为 0.78 吨/小时,能耗为 2.04 千瓦时/吨。
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