Implementation of Internet of Things (IoT) in a Plastic Blow Moulding Machine and Its Performance Measurement

Muhammad Fadhlurrohman Faqih, Mahros Darsin, Aris Zainul IMuttaqin, Danang Yudistiro
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Abstract

Efficiency and effectiveness are indispensable things in the production process. Accurate use of existing resources and the shorter cycle time of production are of particular concern to optimize the production process. This research aims to implement automation to a conventional blow molding. An advanced attempt was carried out to use the Internet of Things (IoT) to increase its efficiency while maintaining the quality of the products. The use of the nodeMCU microcontroller and the blynk application allows the operator to operate the machine without having to come into or having direct contact with the machine. The performance of automation and IoT were tested by examining the products using Taguchi design using quality criteria of nominal the best. The efficiency of the system was also considered by comparing the cycle production time. S/N ratio of Taguchi analysis showed that the optimum volume of the bottle would be achieved when applying the temperature, injection time, and holding time of 190 oC, 14 minutes, and 5 minutes respectively. The error or deviation is only 0.41%. The application of the IoT system takes 34.45 seconds for a cycle time production, which is 3.76 seconds faster than a conventional system.
物联网在塑料吹塑机中的实现及其性能测试
在生产过程中,效率和有效性是必不可少的。准确利用现有资源和缩短生产周期对于优化生产过程尤其重要。本研究旨在实现对传统吹塑的自动化。一项先进的尝试是使用物联网(IoT)来提高其效率,同时保持产品的质量。nodeMCU微控制器和blynk应用程序的使用允许操作员在不必接触或直接接触机器的情况下操作机器。自动化和物联网的性能是通过使用田口设计的名义最佳质量标准检查产品来测试的。通过比较循环生产时间,还考虑了系统的效率。田口分析的S/N比表明,当温度、注射时间和保温时间分别为190℃、14分钟和5分钟时,可以获得最佳的瓶子体积。误差或偏差仅为0.41%。物联网系统的应用周期生产需要34.45秒,比传统系统快3.76秒。
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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