SYSTEM OF METHODS OF INTENSIFICATION IN INTELLIGENT TECHNOLOGIES OF PLASTIC DEFORMATION
Journal Title: Вісник Кременчуцького національного університету імені Михайла Остроградського - Year 2017, Vol 1, Issue 102
Abstract
Purpose. The analysis of methods for intensifying the processes of pressure treatment is given. The most effective methods including the effects ofan additional force are identified. The necessity of applying the gauge theory for de- scribing the formation processes under an additional loading is substantiated. Methodology. The aim of the research is to develop a system for classifying controllable methods tor intensifying the deformation processes for the use in the intellectual technologies. Plasticity is an analog of the reducing properties of elements while stability is an analog of the oxidizing properties of elements. Results. A classification of the effects controlling plastic flow of the workpiece mate- rial is considered. The functionality of the effects of plastic deformation is described. Originality. The development of a system for the classification of controlled effects of plastic flow for solving a complex of technical and economic problems is considered. Intelligent devices are functionally necessary to respond to changes in operating conditions of equipment, technological equipment, physical and mechanical characteristics and geometry of the workpiece. The reac- tion to this reaction is a change in the functional characteristics of equipment and technological equipment.The methods of intensification of the working processes by pressure are classified in accordance with the periodic system of ele- ments. Groups of analogs by the achievable results are determined. The main technological properties are the increase of plasticity and stability. Practical value. Possible criteria for quantitative evaluation of the methods of intensification of deformation processes are given. Groups of technological analogs and groups of methods that expand the technologi- cal capabilities of the processes are determined. References 10, table 1.
Authors and Affiliations
D. Mospan
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