可可豆烘干机和清洗机的微型控制器实验

M. H. Hersyah, Desta Yolanda, Nela Fatma
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引用次数: 0

摘要

可可豆的清洗和干燥通常由农民手动完成。手动清洁过程需要很长时间,并且纸浆还原不是最佳的。相比之下,在雨季使用阳光进行干燥需要很长时间。这导致可可豆发霉,销售价值低。在工厂制造的设备中,这两台机器是分开制造的,农民很难负担得起。基于这些问题,设计了一种带有单个容器的基于微控制器的可可豆干燥机(去碎机),这样两个过程都可以使用一台机器进行。为了完善这个系统,对在旋转滚筒中脱落果肉的发酵可可豆进行清洁。相比之下,干燥过程是通过使用热源、检测可可豆水分含量的土壤湿度传感器、检测干燥容器中温度的DS18B20传感器以及使用交流电机旋转圆柱形容器来进行的。根据实验结果,从可可豆果肉中清洗可可豆需要10分钟。干燥过程需要5小时、10分钟和5小时40分钟才能将可可豆干燥至最大水分含量7%。与雨季利用阳光干燥相比,旋转干燥容器可以加快可可豆的干燥过程。本研究中提出的工具可以比传统工具更好地执行更高效的容量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cocoa Bean Dryer and Cleaner Devise : A Microcontroller Experiment
Cleaning and drying cocoa beans are generally done manually by farmers. The manual cleaning process takes a long time, and the pulp reduction is not optimal. In contrast, drying using sunlight takes a long time when it is done in the rainy season. This causes the cocoa beans to be moldy and have low sale value. In the equipment made by the factory, the two machines are made separately and are hardly affordable by the farmers. Based on these problems, a microcontroller-based cocoa bean dryer (de pulper) was designed with a single container so that both processes could be carried out using just one machine. To elaborate this system, cleaning is carried out on fermented cocoa beans that are pulp shed in a rotating cylinder. In comparison, the drying process is carried out by using a heat source, a soil moisture sensor to detect the moisture content of cocoa beans, a DS18B20 sensor to detect temperatures in the drying container, and a cylindrical container is rotated using an A.C. motor. Based on the experiment results, it takes 10 minutes to clean the cocoa beans from the pulp. The drying process takes 5 hours, 10 minutes, and 5 hours and 40 minutes to dry the cocoa beans to a maximum moisture content of 7%. A rotating drying container can speed up the drying process of cocoa beans compared to drying using sunlight in the rainy season.   The proposed tool in this study can carry out more efficient capacity better than the conventional tool. 
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