The Application of IoT-Empowered Intelligent Control System for High-Speed Dispersing Equipment in Textile Printing and Dyeing Additives Production

Authors

  • Dongmei Shi Wuxi Lianda Chemical Co., Ltd., Jiangsu 214201, China

DOI:

https://doi.org/10.56397/JPEPS.2025.10.02

Keywords:

Internet of Things (IoT), textile printing and dyeing additives, high-speed dispersing equipment, intelligent control system, production efficiency, energy consumption reduction, product quality, intelligent upgrade, universal upgrade framework, AI algorithm optimization, real-time data acquisition, dynamic parameter adjustment, green and sustainable development

Abstract

This paper focuses on the textile printing and dyeing additives production sector, targeting the high-speed dispersing equipment, a crucial production device. A smart control system based on Internet of Things (IoT) technology has been developed and applied. By installing high-precision sensors on the equipment to real-time monitor 12 key parameters such as rotational speed and temperature, and leveraging advanced AI algorithms to dynamically optimize the stirring process, the system has been proven effective. It can reduce labor costs and reliance on skilled workers. Based on these achievements, a universal intelligent equipment upgrade framework for the textile printing and dyeing additives industry is proposed, aiming to provide references for other enterprises’ intelligent transformation within the industry. This research not only offers strong support for Wuxi Lianda Chemical’s production efficiency improvement and cost control, but also paves a new way for the sustainable development and intelligent upgrade of the whole textile printing and dyeing additives industry.

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Published

2025-11-06

How to Cite

Shi, D. . (2025). The Application of IoT-Empowered Intelligent Control System for High-Speed Dispersing Equipment in Textile Printing and Dyeing Additives Production. ournal of rogress in ngineering and hysical cience, 4(5), 9–15. https://doi.org/10.56397/JPEPS.2025.10.02

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Section

Articles