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EN
The project Inter-Countries Research for Manufacturing Advancement (IRMA project) consists in the performance of a research - comparative analysis in the 27 European Union's Member States, aimed at promotion of excellence, efficiency and fairness of the instruction in Higher Education Institutes. The IRMA project focuses on the Manufacturing Engineering field, taken into consideration its high level of innovativeness and fast changes in requirements that students must possess, in order to be adapt and competitive on the labor market. The objectives of the IRMA project is to innovate and to improve educational systems of technical universities at European level, in order to offer to students the competitive environment based on innovative teaching methods, instruments and contents, that allows their intellectual increase and be able to satisfy new necessities and requests, emerged from the labor market.
PL
Projekt Międzypaństwowe badania w zakresie postępu w wytwarzaniu (IRMA) obejmuje 27 krajów członkowskich Unii Europejskiej. Jego celem jest promocja doskonałości, skuteczności i sprawiedliwości w zakresie treści nauczania w instytucjach szkolnictwa wyższego. Projekt IRMA dotyczy inżynierii wytwarzania ze względu na jej wysoki poziom innowacyjności i szybkie zmiany wymagań, z którymi studenci muszą się zapoznać, aby zaadaptować się i móc konkurować na rynku pracy. Projekt IRMA ma umożliwić wprowadzenie innowacji i ulepszeń w systemie edukacyjnym europejskich uniwersytetów technicznych, aby oferowały one studentom konkurencyjne środowisko oparte na innowacyjnych metodach, narzędziach i treściach nauczania, co pozwoli im na rozwój intelektualny i przygotuje do satysfakcjonującej reakcji na potrzeby rynku pracy.
2
Content available remote The laboratory stand for didactic and research of a Fluid Muscle
EN
Purpose: The aim of this work was to design and build a laboratory stand dedicated for didactic and research purposes connected with a Fluidic Muscle. The stand is placed at the Electropneumatic and PLC controllers Laboratory [10,11,12] of the Institute of Engineering Processes Automation and Integrated Manufacturing Systems of the Faculty of Mechanical Engineering of the Silesian University of Technology, Gliwice, Poland. Design/methodology/approach: The stand was designed and visualised by utilisation of professional CAD software - CATIA and a fluidic muscle was chosen according to a MuscleSIM programme of FESTO company. Findings: The device integrates the elements which are indispensable determinant of contemporary industry and the main aim of its construction was to bring closer conceptions and ideas connected with the construction and the outworking of the fluidic muscle, problems of proportional pressure control, visualisation and control of the industrial processes as well as making possible of carrying out the investigations and experiments on these elements. Research limitations/implications: The module structure of the research stand gives possibility to make its further development by adding extra modules that can be easily mounted on plates, which will make possible the implementation of series of individual positions controlled by one PLC. Thanks to the applied system of visualisation, switching among synoptic screens is possible. The visualisation represents every separate module of the stand and so, with the help of one operator position, gives possibility to control every chosen module of the whole device. Originality/value: The mechatronic didactic and research device introduced in the paper represents the new approach to the problem of visualisation and control of the fluidic muscle and constitutes the perfect tool of the aided didactic process in the Institute's laboratory.
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