JUSTIFICATION OF THE DESIGN SCHEME OF THE INSTALLATION FOR PROCESSING GRANULAR MATERIAL WITH INFRARED RADIATION

Viktor Yemchyk, Yurii Polievoda, V. Revva
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Abstract

The article describes technologies for post-harvest processing of grain, the main components of which are interconnected cleaning and drying technologies. The technology of post-harvest processing of grain is carried out to a greater or lesser extent during the entire period of storage of grain of different purpose, state of clogging and moisture, differing in structural and mechanical properties and chemical composition, etc. Post-harvest processing of grain can be singled out among the main priority operations of this industry. The strategic importance of the development of this industry became the basis for the activity of one of the structural subdivisions of the Educational, Scientific and Production Complex (NNVK) «All-Ukrainian Scientific and Educational Consortium» - Scientific and Research Farm «Agronomichne». The article discusses the design schemes of devices for heat treatment of grain, micronizers, infrared dryers in which heat treatment of grain is carried out with the help of infrared radiation; their principle of operation, advantages and disadvantages are also studied. On the basis of the results of this study, an installation for processing granular material with infrared radiation was developed. The classification of grain processing technologies of cereal and leguminous crops has been carried out. The problems of minimizing thermal energy losses and improving the quality of material processing are solved by changing the design and increasing the efficiency of using the heat of infrared radiation due to the return of the heat of the cooling radiators of the material being processed. In this scientific work, the task set is solved by the fact that the heat taken from the air by the emitters (lamps or heating elements) is supplied by jets to the irradiating material and by the creation of a "running wave" on the surface of the conveyor belt, which is deformed, which ensures a pseudo-suspended state of the material due to the application of interaction ferromagnetic elements (rods, columns) placed on the tape with magnets placed under the tape at a certain distance from each other.
对红外辐射处理颗粒物料的装置设计方案进行论证
本文介绍了粮食收获后加工技术,其主要组成部分是相互关联的清洗和干燥技术。粮食的收获后加工技术或多或少地是在不同用途、堵塞状态、水分状况、结构、机械性能和化学成分等各不相同的粮食的整个贮存期间进行的。粮食的收获后加工可列为该行业的主要优先工序之一。该行业发展的战略重要性成为教育,科学和生产综合体(NNVK)“全乌克兰科学和教育联盟”的结构分支之一-科学和研究农场“agonomichne”活动的基础。本文论述了利用红外辐射对粮食进行热处理的粮食热处理装置、微粉机、红外干燥机的设计方案;研究了它们的工作原理、优缺点。在此基础上,研制了一种红外辐射处理颗粒物料的装置。对谷类和豆科作物的粮食加工技术进行了分类。通过改变设计,利用被加工材料的冷却散热器的热量返回,提高红外辐射热量的利用效率,解决了最大限度地减少热能损失和提高材料加工质量的问题。在这项科学工作中,任务集是通过以下事实来解决的:由发射器(灯或加热元件)从空气中吸收的热量由射流提供给照射材料,并通过在传送带表面上产生“运行波”,该传送带是变形的,这确保了由于相互作用铁磁元件(棒)的应用而使材料处于伪悬浮状态。柱子)放在胶带上,在胶带下面放置磁铁,彼此之间保持一定距离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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