Process modeling of sequential radial-direct extrusion using curved triangular kinematic module

In this article new engineering calculations such as the value of the relative strain pressure for the combination of a triangular kinematic module with external modules of various configurations are developed. This allowed us to describe qualitatively the nature of the metal flow in the reversal zo...

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Main Author: Hrudkina Natalia S.
Format: Article
Language:English
Published: University of Belgrade - Faculty of Mechanical Engineering, Belgrade 2021-01-01
Series:FME Transactions
Subjects:
Online Access:https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2021/1451-20922101056H.pdf
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spelling doaj-cbdbb8c2c7c34ca0ad51f17d12629cd92021-01-24T11:13:18ZengUniversity of Belgrade - Faculty of Mechanical Engineering, BelgradeFME Transactions1451-20922406-128X2021-01-0149156631451-20922101056HProcess modeling of sequential radial-direct extrusion using curved triangular kinematic moduleHrudkina Natalia S.0Donbass State Engineering Academy, Machine Building Faculty, Department of Metal Forming, Kramatorsk, UkraineIn this article new engineering calculations such as the value of the relative strain pressure for the combination of a triangular kinematic module with external modules of various configurations are developed. This allowed us to describe qualitatively the nature of the metal flow in the reversal zone before radial extrusion. This made it possible to achieve a decrease in the predicted assessment of the power mode for the deformation process with comparison by the use of rectangular modules. The greatest reduction in the value of the relative strain pressure corresponded to a combination with an adjacent rectangular module (with the missing vertical component CPVF) and can obtain 7-8%. The deviation of the theoretical results in the power parameters of the process by using a triangular kinematic module are 12-15% for a process with a developed flow radial component. The resulting calculations can be used to model new cold extrusion processes.https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2021/1451-20922101056H.pdfenergy methoddeformation processcombined extrusionkinematic moduledeformation pressure
collection DOAJ
language English
format Article
sources DOAJ
author Hrudkina Natalia S.
spellingShingle Hrudkina Natalia S.
Process modeling of sequential radial-direct extrusion using curved triangular kinematic module
FME Transactions
energy method
deformation process
combined extrusion
kinematic module
deformation pressure
author_facet Hrudkina Natalia S.
author_sort Hrudkina Natalia S.
title Process modeling of sequential radial-direct extrusion using curved triangular kinematic module
title_short Process modeling of sequential radial-direct extrusion using curved triangular kinematic module
title_full Process modeling of sequential radial-direct extrusion using curved triangular kinematic module
title_fullStr Process modeling of sequential radial-direct extrusion using curved triangular kinematic module
title_full_unstemmed Process modeling of sequential radial-direct extrusion using curved triangular kinematic module
title_sort process modeling of sequential radial-direct extrusion using curved triangular kinematic module
publisher University of Belgrade - Faculty of Mechanical Engineering, Belgrade
series FME Transactions
issn 1451-2092
2406-128X
publishDate 2021-01-01
description In this article new engineering calculations such as the value of the relative strain pressure for the combination of a triangular kinematic module with external modules of various configurations are developed. This allowed us to describe qualitatively the nature of the metal flow in the reversal zone before radial extrusion. This made it possible to achieve a decrease in the predicted assessment of the power mode for the deformation process with comparison by the use of rectangular modules. The greatest reduction in the value of the relative strain pressure corresponded to a combination with an adjacent rectangular module (with the missing vertical component CPVF) and can obtain 7-8%. The deviation of the theoretical results in the power parameters of the process by using a triangular kinematic module are 12-15% for a process with a developed flow radial component. The resulting calculations can be used to model new cold extrusion processes.
topic energy method
deformation process
combined extrusion
kinematic module
deformation pressure
url https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2021/1451-20922101056H.pdf
work_keys_str_mv AT hrudkinanatalias processmodelingofsequentialradialdirectextrusionusingcurvedtriangularkinematicmodule
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