Designing optimal automatic cycles of round grinding based on the synthesis of digital twin technologies and dynamic programming method

<p>The article presents methodology for designing optimal feed control cycles resistant to unstable machining conditions for a batch of parts in round grinding operations performed on CNC machines.</p> <p>To improve the quality and reliability of control programs for CNC machin...

Full description

Bibliographic Details
Main Authors: P. P. Pereverzev, A. V. Akintseva, M. K. Alsigar, D. V. Ardashev
Format: Article
Language:English
Published: Copernicus Publications 2019-07-01
Series:Mechanical Sciences
Online Access:https://www.mech-sci.net/10/331/2019/ms-10-331-2019.pdf
id doaj-86396df64d7844938426422c5b6e56cb
record_format Article
spelling doaj-86396df64d7844938426422c5b6e56cb2020-11-25T00:19:03ZengCopernicus PublicationsMechanical Sciences2191-91512191-916X2019-07-011033134110.5194/ms-10-331-2019Designing optimal automatic cycles of round grinding based on the synthesis of digital twin technologies and dynamic programming methodP. P. Pereverzev0A. V. Akintseva1M. K. Alsigar2M. K. Alsigar3D. V. Ardashev4Faculty of Mechanical Engineering, South Ural State University, Chelyabinsk, 454080, Russian FederationFaculty of Mechanical Engineering, South Ural State University, Chelyabinsk, 454080, Russian FederationFaculty of Mechanical Engineering, South Ural State University, Chelyabinsk, 454080, Russian FederationThi-Qar university, College of engineering, Nasiriyah, Republic of IraqFaculty of Mechanical Engineering, South Ural State University, Chelyabinsk, 454080, Russian Federation<p>The article presents methodology for designing optimal feed control cycles resistant to unstable machining conditions for a batch of parts in round grinding operations performed on CNC machines.</p> <p>To improve the quality and reliability of control programs for CNC machines, a digital twin (DT) is proposed to be used. It performs virtual testing of a given grinding cycle for the possibility of defect occurrence at some combination of variable technological factors. To design the optimal grinding cycle by calculating the optimum trajectory of the radial feed change cycle, we propose the dynamic programming method (DPM) used in solving the classical transport problem, in which a network of roads with intermediate stations is specified. In the task it is necessary to find the optimal trajectory of transport. The conditions for the appearance of defects detected by the DT are introduced into the system of restrictions, and the feed cycle is again optimized in the DPM optimization system. A new optimized cycle is again tested by the DT. These iterations are repeated until the DT fixes the present of a defect for the operation. The methodology proposed in the article for the synthesis of digital twin and DPM technologies at the stage of preparation of control programs for CNC machines makes it possible to guarantee the maximum productivity of the grinding operation while ensuring the specified quality of the machined surface under varying processing conditions that vary within the specified limits.</p>https://www.mech-sci.net/10/331/2019/ms-10-331-2019.pdf
collection DOAJ
language English
format Article
sources DOAJ
author P. P. Pereverzev
A. V. Akintseva
M. K. Alsigar
M. K. Alsigar
D. V. Ardashev
spellingShingle P. P. Pereverzev
A. V. Akintseva
M. K. Alsigar
M. K. Alsigar
D. V. Ardashev
Designing optimal automatic cycles of round grinding based on the synthesis of digital twin technologies and dynamic programming method
Mechanical Sciences
author_facet P. P. Pereverzev
A. V. Akintseva
M. K. Alsigar
M. K. Alsigar
D. V. Ardashev
author_sort P. P. Pereverzev
title Designing optimal automatic cycles of round grinding based on the synthesis of digital twin technologies and dynamic programming method
title_short Designing optimal automatic cycles of round grinding based on the synthesis of digital twin technologies and dynamic programming method
title_full Designing optimal automatic cycles of round grinding based on the synthesis of digital twin technologies and dynamic programming method
title_fullStr Designing optimal automatic cycles of round grinding based on the synthesis of digital twin technologies and dynamic programming method
title_full_unstemmed Designing optimal automatic cycles of round grinding based on the synthesis of digital twin technologies and dynamic programming method
title_sort designing optimal automatic cycles of round grinding based on the synthesis of digital twin technologies and dynamic programming method
publisher Copernicus Publications
series Mechanical Sciences
issn 2191-9151
2191-916X
publishDate 2019-07-01
description <p>The article presents methodology for designing optimal feed control cycles resistant to unstable machining conditions for a batch of parts in round grinding operations performed on CNC machines.</p> <p>To improve the quality and reliability of control programs for CNC machines, a digital twin (DT) is proposed to be used. It performs virtual testing of a given grinding cycle for the possibility of defect occurrence at some combination of variable technological factors. To design the optimal grinding cycle by calculating the optimum trajectory of the radial feed change cycle, we propose the dynamic programming method (DPM) used in solving the classical transport problem, in which a network of roads with intermediate stations is specified. In the task it is necessary to find the optimal trajectory of transport. The conditions for the appearance of defects detected by the DT are introduced into the system of restrictions, and the feed cycle is again optimized in the DPM optimization system. A new optimized cycle is again tested by the DT. These iterations are repeated until the DT fixes the present of a defect for the operation. The methodology proposed in the article for the synthesis of digital twin and DPM technologies at the stage of preparation of control programs for CNC machines makes it possible to guarantee the maximum productivity of the grinding operation while ensuring the specified quality of the machined surface under varying processing conditions that vary within the specified limits.</p>
url https://www.mech-sci.net/10/331/2019/ms-10-331-2019.pdf
work_keys_str_mv AT pppereverzev designingoptimalautomaticcyclesofroundgrindingbasedonthesynthesisofdigitaltwintechnologiesanddynamicprogrammingmethod
AT avakintseva designingoptimalautomaticcyclesofroundgrindingbasedonthesynthesisofdigitaltwintechnologiesanddynamicprogrammingmethod
AT mkalsigar designingoptimalautomaticcyclesofroundgrindingbasedonthesynthesisofdigitaltwintechnologiesanddynamicprogrammingmethod
AT mkalsigar designingoptimalautomaticcyclesofroundgrindingbasedonthesynthesisofdigitaltwintechnologiesanddynamicprogrammingmethod
AT dvardashev designingoptimalautomaticcyclesofroundgrindingbasedonthesynthesisofdigitaltwintechnologiesanddynamicprogrammingmethod
_version_ 1725373509458198528