Within the framework of the project "Development of an integrated resource-saving technology and organization of high-tech production of nanostructures based on carbon and silicon dioxide to improve the properties of building and structural materials", an automated control system for technological thermal vortex enrichment has been created, designed to obtain a modifying additive based on dioxide silicon. The main parameters of the operation of technological lines for thermal vortex enrichment of raw materials, automatic control when threshold values are reached, as well as signaling for the use of control action from automated technological lines are presented. The functions of collecting and primary processing of data, creating control actions, creating and maintaining requests and reporting, providing reporting and data analysis tools are subject to automation. Automation of these functions in the form of a graphical human-machine interface allows for continuous technological control of equipment operation and technological process parameters; ensuring the safety of the technological process in the production of a modifying additive based on silicon dioxide. The collection of data on technological processes and equipment operation, their processing, display and documentation will ensure the optimization of the technological process using advanced visualization tools, modern control algorithms and analysis of the accumulated technological information. Automation of control of the technological process of thermal vortex enrichment will ensure the minimization of the influence of the human factor on the processes of collecting and processing information about the technological process; automatic prevention of the development of emergency situations.
CITATION STYLE
Zott, R. S., Gladkih, A. M., & Konyuhov, V. Y. (2021). Description of automated functions of high-tech production of nanostructures based on silicon dioxide to improve the properties of building and structural materials. In IOP Conference Series: Materials Science and Engineering (Vol. 1064). IOP Publishing Ltd. https://doi.org/10.1088/1757-899X/1064/1/012012
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