Design and Development of a Petrol-Powered Hammer Mill Machine

J. A. Olowonubi, I. Adejugbe, S. A. Fatounde, J. O. Aigbovbiosa, O. Oyegunwa, O. Komolafe, A. Ogunkoya
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Abstract

A conventional hammer mill is a device consisting of a rotating head with free- swinging hammers, which reduce rock, grains or similarly hard objects to a predetermined size through a perforated screen. Hammer mills can be used for grinding laterite sand in its not-so-fine form into a finer/smaller form for sand production for the building/housing sector. This project is focused on the design, development, and testing of a hammer mill that has a small scale production capability for usage by small and medium scale (SME’s). The grinding process is achieved by the use of a hammer in beating the material fed into fine particles; the fineness aimed depends on the detachable screen with aperture sizes ranging from 87µm to 2 mm. The conceptual design was based on the principle of design by analysis. The methodology adopted was to examine the most critical defects of conventional hammer mills and provide solutions. The major components of the new hammer mill are Inlet tray, Throat, Magnetic chamber, Rotor, Crushing chamber, Hammer mill body, Hammers/Beaters, Screen, Bearings, Discharge, Table or stand, Mechanical drive, Pulleys, The simple aim of this paper is to develop a hammer mill machine that will enhance the efficient grinding operation of laterite rock into a sandy profile to be used in the construction/housing sector. This paper presents the design of an efficient hammer mill machine that was developed with locally sourced materials with ease of maintenance amongst other advantages. The machine is driven by an electric motor of 7.5kW at a speed of 1440rpm and with the appropriate pulley ratio, the machine operated at a speed of 4320RPM with an operating rate of 250kg/hour. Several fabrication techniques such as welding, machining, etc. are adopted for the fabrication of the machine. Dry rocky laterite sample was tested with the machine for operational effectiveness and the result shows that the machine has a grinding capacity of 250kg/hr and grinding efficiency 0f 98.2%. The fabricated laterite grinding machine performed well with high sieving efficiency, reliability, durability with an estimated cost of 965,000.00 Nigerian Naira. The study was carried out in Akure, Ondo State, Nigeria. A performance evaluation was carried out on the machine and the grinding efficiency of 94.4% was achieved.
汽油动力锤磨机的设计与研制
传统的锤式磨机是一种由一个旋转的磨头和自由摆动的锤组成的设备,它通过一个穿孔筛网将岩石、颗粒或类似的坚硬物体磨成预定的尺寸。锤式磨砂机可用于将不太细的红土砂磨成更细/更小的形式,用于建筑/住宅部门的制砂。这个项目的重点是设计、开发和测试一个锤式磨机,它具有小规模的生产能力,供中小型企业使用。粉碎过程是通过使用锤子将物料敲打成细颗粒来实现的;目标的细度取决于孔径大小从87微米到2mm的可拆卸屏幕。概念设计是根据分析设计的原则进行的。采用的方法是检查常规锤式磨机的最关键缺陷并提供解决方案。新型锤式粉碎机的主要组成部分是进料盘、喉道、磁室、转子、破碎室、锤式粉碎机体、锤/打锤器、筛网、轴承、出料、工作台或支架、机械传动、滑轮。本文的简单目的是开发一种锤式粉碎机,它将提高红土岩石的有效研磨操作,使其成为用于建筑/住房领域的沙质剖面。本文介绍了一种高效锤磨机的设计,该设计是用当地采购的材料开发的,具有维护方便等优点。本机由7.5kW的电动机驱动,转速1440rpm,配合适当的皮带轮比,转速4320RPM,运转速度250kg/小时。该机床的制造采用了焊接、机械加工等多种制造工艺。对干岩红土样品进行了运行效果试验,结果表明,该机器的磨矿能力为250kg/hr,磨矿效率为98.2%。该红土粉磨机性能良好,筛分效率高,可靠性高,经久耐用,预计成本为96.5万尼日利亚奈拉。这项研究是在尼日利亚翁多州的阿库雷进行的。对机床进行了性能评价,磨削效率达到94.4%。
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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