Systematization of end effectors of deep milling machines for peat extraction

D.S. Yusov, P.V. Ivanova, S.L. Ivanov
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Abstract

Currently, ensuring energy security is a key priority for the country. Peat resources account for one-third of the country's total energy potential. Apart from energy production, peat finds extensive use in agriculture, chemical industry, construction, and the production of construction materials. Presently, milled peat constitutes the main volume of production in the country. The technology of its extraction involves preparing areas and removing undergrowth, stumps, and wood debris during preparation of the deposit by trenching or deep milling. However, due to the imperfections of the equipment, peat contamination and loss of its quality occur. This article analyzes means for carrying out preparatory operations to condition the surface of the deposit. It discusses the designs of end effectors for deep milling machines, their cutting structures, and the specific features of the tools used, i.e. blades, cutters, mills, chains. Classification of end effectors for peat machines as well as tools for deep milling of the deposit surface is proposed. This systematization involves identifying classification features by the type of machines, impact on the wood debris, movement of the end effector, its arrangement and design, as well as by parameters and types of the end effector’s cutting structures. The article may be useful for engineers, researchers, graduate students, and organizations involved in designing and studying processes of peat deposits conditioning.
泥炭提取深层铣床末端效应器的系统化
目前,确保能源安全是该国的首要任务。泥炭资源占该国总能源潜力的三分之一。除能源生产外,泥炭还广泛用于农业、化工、建筑和建材生产。目前,碾磨泥炭是该国的主要产量。开采泥炭的技术包括在准备矿床的过程中,通过挖沟或深层碾磨,准备好区域并清除灌木丛、树桩和木屑。然而,由于设备不完善,泥炭污染和质量下降的情况时有发生。本文分析了进行准备作业以调节矿床表面的方法。文章讨论了深孔铣床末端效应器的设计、切削结构以及所用工具(即刀片、刀具、铣刀、链条)的具体特点。提出了泥炭机末端效应器以及矿床表面深层铣削工具的分类。这种系统化包括根据机器类型、对木屑的影响、末端效应器的运动、其排列和设计以及末端效应器切割结构的参数和类型确定分类特征。这篇文章可能对工程师、研究人员、研究生以及参与泥炭沉积物调节工艺设计和研究的机构有所帮助。
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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