Development and performance evaluation of dehusked coconut grading machine

Q3 Agricultural and Biological Sciences
A. Monicka, T. Pandiarajan, S. Ganapathy
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引用次数: 1

Abstract

The objective of this research is to develop a dehusked coconut grading machine for coconut cultivators and entrepreneurs. The basis of design is characterized by a tapered belt conveyor and sizing board with openings of increasing aperture which run along the edge of the belt conveyor. Dehusked coconuts are fed onto the tapered belt conveyor where the gravitational force pushes the nut towards the edge until it comes in contact with sizing board. Due to the tangential force, the nut reels along the sizing board, where dehusked coconuts are graded and allowed to fall through aperture according to their sizes. Performance tests indicated that the inclination angle and velocity of the belt significantly affected contamination ratio, grading efficiency and capacity at 5% significance level. The most efficient configuration for fully husked coconut and semi husked was a belt speed of 1.3 m/s with the inclination angle of 15° and belt speed of 1.5 m/s with the inclination angle of 15° respectively. The machine is acceptable by coconut growers and entrepreneurs.
去壳椰子分级机的研制及性能评价
本研究的目的是为椰子种植者和企业家开发一种去皮椰子分级机。设计基础的特点是锥形带式输送机和尺寸板,其开口沿带式输送机边缘增加。去皮的椰子被送到锥形带式输送机上,在那里重力将椰子推向边缘,直到它与尺寸板接触。由于切向力的作用,螺母沿着尺寸板滚动,在尺寸板上,去皮的椰子被分级,并允许根据其尺寸从孔中掉落。性能测试表明,带的倾角和速度在5%的显著性水平上显著影响污染率、分级效率和容量。对于全壳椰子和半壳椰子,最有效的配置是带速分别为1.3m/s和1.5m/s,倾角为15°。椰子种植者和企业家都能接受这种机器。
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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来源期刊
Progress in Agricultural Engineering Sciences
Progress in Agricultural Engineering Sciences Engineering-Industrial and Manufacturing Engineering
CiteScore
1.80
自引率
0.00%
发文量
6
期刊介绍: The Journal publishes original papers, review papers and preliminary communications in the field of agricultural, environmental and process engineering. The main purpose is to show new scientific results, new developments and procedures with special respect to the engineering of crop production and animal husbandry, soil and water management, precision agriculture, information technology in agriculture, advancements in instrumentation and automation, technical and safety aspects of environmental and food engineering.
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