
Innovative solution for increasing the performance of the cutting equipment for textile subassembly having variable geometry
Author(s) -
C. Mihai,
Alexandra Ene,
C. Jipa
Publication year - 2020
Publication title -
iop conference series. materials science and engineering
Language(s) - English
Resource type - Journals
eISSN - 1757-899X
pISSN - 1757-8981
DOI - 10.1088/1757-899x/827/1/012023
Subject(s) - automation , manufacturing engineering , process (computing) , variable (mathematics) , quality (philosophy) , industrial engineering , productivity , computer science , acceleration , engineering , brake , textile , automotive engineering , mechanical engineering , mathematics , history , mathematical analysis , philosophy , physics , archaeology , epistemology , classical mechanics , economics , macroeconomics , operating system
Although the textile industry is in worldwide recession, the field of technical textile articles is in a continuous development, proving that the manufacturers of these products are concerned about finding solutions and creating high performance articles. Considering the need to increase productivity and product quality while reducing the consumption of materials, in the last decades, processing technologies specific to textile industry had a quick dynamic, that has led to the development of new, very efficient technological methods and processes, characterized by an advanced degree of automation. The proposed technological solution was developed based on the correlational analysis of the technological parameters of the variable geometry subassemblies, targeting the following technological aspects: monitoring of the functional parameters during the technological process development and real-time warning of the occurring dysfunctions; display of functional parameters and controls on a HMI touch panel display; adjusting the settings of the parameters of each inverter according to the dynamic parameters of the ordered devices (couple, speed, acceleration-deceleration, brake moment, etc.); PLC circuit logic programming via a software program dedicated to the application.