The energy efficiency of the process of metal cutting at the expense of the sustainability of the evolutionary trajectory of the cutting

The problem of ensuring the sustainability of the processing process is directly related to the energy efficiency of the entire processing process. Virtually any machine the control of motion of which is considered interacts with the environment (technological, aerodynamic, trybologic, etc.). If one...

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Main Authors: Zakovorotny Vilor L., Lapshin Viktor P., Gvindjiliya Valery E., Ahn Nguyen Dong
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/30/e3sconf_eeests-2019_01017.pdf
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author Zakovorotny Vilor L.
Lapshin Viktor P.
Gvindjiliya Valery E.
Ahn Nguyen Dong
author_facet Zakovorotny Vilor L.
Lapshin Viktor P.
Gvindjiliya Valery E.
Ahn Nguyen Dong
author_sort Zakovorotny Vilor L.
collection DOAJ
description The problem of ensuring the sustainability of the processing process is directly related to the energy efficiency of the entire processing process. Virtually any machine the control of motion of which is considered interacts with the environment (technological, aerodynamic, trybologic, etc.). If one sticks to the synergetic analytical concept, the influence of the environment is described by a model of forces in state coordinates. The interaction is also characterized by the irreversible transformation capacity trajectory on the work. As a result, the system parameters are change causing additional strain displacements changing the trajectory. This transformation characterizes internal control and they are defined not by external action but by internal self-organization and defines the evolutionary trajectory. The properties of the system along the evolutionary trajectory change and the trajectory can lose its stability. The article considers the process of mathematical simulation of the evolutionary trajectory forming by the example of metalwork by cutting at turning machines and analyzes its stability. The evolution is presented as the parameters of the system depending on the capacity and work trajectory and presented by the Volterra integral equation of the second kind. When the trajectory loses its stability, irreversible changes can be formed in the system which may cause a complete system breakdown. In addition, the loss of stability leads to an increase in the oscillation amplitude of the tool and, as a consequence, an increase in energy costs for processing.
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spelling doaj.art-ce0fe3faa47147da95d58033e39c152a2022-12-21T22:32:26ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011040101710.1051/e3sconf/201910401017e3sconf_eeests-2019_01017The energy efficiency of the process of metal cutting at the expense of the sustainability of the evolutionary trajectory of the cuttingZakovorotny Vilor L.Lapshin Viktor P.Gvindjiliya Valery E.Ahn Nguyen DongThe problem of ensuring the sustainability of the processing process is directly related to the energy efficiency of the entire processing process. Virtually any machine the control of motion of which is considered interacts with the environment (technological, aerodynamic, trybologic, etc.). If one sticks to the synergetic analytical concept, the influence of the environment is described by a model of forces in state coordinates. The interaction is also characterized by the irreversible transformation capacity trajectory on the work. As a result, the system parameters are change causing additional strain displacements changing the trajectory. This transformation characterizes internal control and they are defined not by external action but by internal self-organization and defines the evolutionary trajectory. The properties of the system along the evolutionary trajectory change and the trajectory can lose its stability. The article considers the process of mathematical simulation of the evolutionary trajectory forming by the example of metalwork by cutting at turning machines and analyzes its stability. The evolution is presented as the parameters of the system depending on the capacity and work trajectory and presented by the Volterra integral equation of the second kind. When the trajectory loses its stability, irreversible changes can be formed in the system which may cause a complete system breakdown. In addition, the loss of stability leads to an increase in the oscillation amplitude of the tool and, as a consequence, an increase in energy costs for processing.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/30/e3sconf_eeests-2019_01017.pdf
spellingShingle Zakovorotny Vilor L.
Lapshin Viktor P.
Gvindjiliya Valery E.
Ahn Nguyen Dong
The energy efficiency of the process of metal cutting at the expense of the sustainability of the evolutionary trajectory of the cutting
E3S Web of Conferences
title The energy efficiency of the process of metal cutting at the expense of the sustainability of the evolutionary trajectory of the cutting
title_full The energy efficiency of the process of metal cutting at the expense of the sustainability of the evolutionary trajectory of the cutting
title_fullStr The energy efficiency of the process of metal cutting at the expense of the sustainability of the evolutionary trajectory of the cutting
title_full_unstemmed The energy efficiency of the process of metal cutting at the expense of the sustainability of the evolutionary trajectory of the cutting
title_short The energy efficiency of the process of metal cutting at the expense of the sustainability of the evolutionary trajectory of the cutting
title_sort energy efficiency of the process of metal cutting at the expense of the sustainability of the evolutionary trajectory of the cutting
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/30/e3sconf_eeests-2019_01017.pdf
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