Monitoring Viscosity of Polymer Products on the Reactor Tank Using IoT-based NodeMCU

Paduloh Paduloh
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Abstract

Viscosity is one of the critical parameters for polymer products; thus, monitoring the viscosity level is very important to know during the production process and production results. The Polymer Company recently suffered heavy losses due to an explosion in one of its reactor engines, the R306 engine. The investigation results show that the viscosity of the polymer is one of the causes of the heavy workload of the machine, when the viscosity is checked manually. This research was conducted based on these conditions, and a viscosity monitoring device was designed for the 306-tank product. The design used QFD visualization for product design and UML for information system design. In this study, polymer viscosity was measured using the falling ball method with an Infrared Sensor E18-D80NK to obtain the viscosity of polymer products. Viscosity data are configured directly with the Internet of Things using the NodeMCU microcontroller. The design results show that the tool can monitor the viscosity in the tank and provide polymer viscosity information in real-time, thus facilitating decision-making and increasing productivity.
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基于物联网的NodeMCU监测反应器槽内聚合物产品的粘度
粘度是聚合物产品的关键参数之一;因此,在生产过程和生产结果中监测粘度水平是非常重要的。聚合物公司最近因其反应堆发动机之一R306发动机发生爆炸而遭受重大损失。调查结果表明,在手工检查粘度时,聚合物的粘度是造成机器工作量大的原因之一。在此基础上,对306罐产品进行了粘度监测装置的设计。产品设计采用QFD可视化,信息系统设计采用UML可视化。本研究使用红外传感器E18-D80NK,采用落球法测量聚合物粘度,得到聚合物产品的粘度。粘度数据使用NodeMCU微控制器直接与物联网进行配置。设计结果表明,该工具能够实时监测储层粘度,提供聚合物粘度信息,便于决策,提高产能。
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