Specific Features of Fluoroplastic Band Bending with Due Account of Various Modularity of Material

The paper considers a technological process for production of sealing rings by winding a band work-piece on a cylindrical caliber mandrel with subsequent endurance under load and further cutting of a spiral in rings and also studies the possibility to obtain products while using a method for cold fo...

Full description

Bibliographic Details
Main Authors: G. A. Vershina, L. E. Reut
Format: Article
Language:Russian
Published: Belarusian National Technical University 2019-07-01
Series:Nauka i Tehnika
Subjects:
Online Access:https://sat.bntu.by/jour/article/view/1973
_version_ 1811185325466189824
author G. A. Vershina
L. E. Reut
author_facet G. A. Vershina
L. E. Reut
author_sort G. A. Vershina
collection DOAJ
description The paper considers a technological process for production of sealing rings by winding a band work-piece on a cylindrical caliber mandrel with subsequent endurance under load and further cutting of a spiral in rings and also studies the possibility to obtain products while using a method for cold forming of a work-piece which excludes thermal stabilization operation. Taking into account the fact that fluorine plastic is a high-plastic material even at very low temperatures such technology looks quite real. Therefore winding of a band on a mandrel, endurance of a spiral work-piece without heating but under conditions of force action within the time which is necessary for completion of relaxation processes, and the subsequent cutting in rings will allow to obtain finished ring products of the required size. However fluoroplastic has specific mechanical properties and a number of specific features which are revealed during deformation process. Its deformation behavior considerably differs from behavior of low-molecular materials and therefore it requires a solid approach while using the existing theoretical base and developing calculation methodologies. While taking into consideration the fact that fluorine plastic is high density material and has structure with high degree of crystallinity, the mechanism of deformation behavior in it under conditions of a force field is mainly similar to metal behavior that allows to use methods and approaches for calculation of fluoroplastic products which are accepted in mechanics of solid bodies. However the applied calculating formulae require a certain correction and adaptation to specific features of mechanical fluoroplastic properties, one of which is its various rigidity at stretching and compression that is revealed in case of winding band work-piece on a mandrel. Fluorine plastic is a material with various modularity and its rigidity is higher during compression than under stretching and consequently in the case of band bending a neutral axis of section is displaced from the center of gravity to the area of compressed fibers, and the area of stretching is increasing. High elasticity at stretching and increase of this area lead to large accumulation of elastic deformations causing springing after unloading and changes in size of a finished product. These facts must be taken into account while calculating and designing a mandrel tool, it is also necessary to keep in mind various modularity of a material and possibility that a section being led to an uniform rigidity may take some other shape due to this. Calculation methodologies have been developed by the authors for both versions of section that take into consideration directly or indirectly a material with various modularity and which do not contradict each other and which are rather precisely proved by experimental data.
first_indexed 2024-04-11T13:28:41Z
format Article
id doaj.art-354049b605234cce98a3e1c97948d0ff
institution Directory Open Access Journal
issn 2227-1031
2414-0392
language Russian
last_indexed 2024-04-11T13:28:41Z
publishDate 2019-07-01
publisher Belarusian National Technical University
record_format Article
series Nauka i Tehnika
spelling doaj.art-354049b605234cce98a3e1c97948d0ff2022-12-22T04:21:58ZrusBelarusian National Technical UniversityNauka i Tehnika2227-10312414-03922019-07-0118318519410.21122/2227-1031-2019-18-3-185-1941788Specific Features of Fluoroplastic Band Bending with Due Account of Various Modularity of MaterialG. A. Vershina0L. E. Reut1Belarusian National Technical UniversityBelarusian National Technical UniversityThe paper considers a technological process for production of sealing rings by winding a band work-piece on a cylindrical caliber mandrel with subsequent endurance under load and further cutting of a spiral in rings and also studies the possibility to obtain products while using a method for cold forming of a work-piece which excludes thermal stabilization operation. Taking into account the fact that fluorine plastic is a high-plastic material even at very low temperatures such technology looks quite real. Therefore winding of a band on a mandrel, endurance of a spiral work-piece without heating but under conditions of force action within the time which is necessary for completion of relaxation processes, and the subsequent cutting in rings will allow to obtain finished ring products of the required size. However fluoroplastic has specific mechanical properties and a number of specific features which are revealed during deformation process. Its deformation behavior considerably differs from behavior of low-molecular materials and therefore it requires a solid approach while using the existing theoretical base and developing calculation methodologies. While taking into consideration the fact that fluorine plastic is high density material and has structure with high degree of crystallinity, the mechanism of deformation behavior in it under conditions of a force field is mainly similar to metal behavior that allows to use methods and approaches for calculation of fluoroplastic products which are accepted in mechanics of solid bodies. However the applied calculating formulae require a certain correction and adaptation to specific features of mechanical fluoroplastic properties, one of which is its various rigidity at stretching and compression that is revealed in case of winding band work-piece on a mandrel. Fluorine plastic is a material with various modularity and its rigidity is higher during compression than under stretching and consequently in the case of band bending a neutral axis of section is displaced from the center of gravity to the area of compressed fibers, and the area of stretching is increasing. High elasticity at stretching and increase of this area lead to large accumulation of elastic deformations causing springing after unloading and changes in size of a finished product. These facts must be taken into account while calculating and designing a mandrel tool, it is also necessary to keep in mind various modularity of a material and possibility that a section being led to an uniform rigidity may take some other shape due to this. Calculation methodologies have been developed by the authors for both versions of section that take into consideration directly or indirectly a material with various modularity and which do not contradict each other and which are rather precisely proved by experimental data.https://sat.bntu.by/jour/article/view/1973fluoroplasticdeformation due to force actionmechanical model of fluoroplasticcold formation of productsbending of fluoroplastic bandelasticity at stretching and compressionvarious modularity of materialaccumulation of elastic deformationselastic springingcalculation of cylindrical tool (caliber)
spellingShingle G. A. Vershina
L. E. Reut
Specific Features of Fluoroplastic Band Bending with Due Account of Various Modularity of Material
Nauka i Tehnika
fluoroplastic
deformation due to force action
mechanical model of fluoroplastic
cold formation of products
bending of fluoroplastic band
elasticity at stretching and compression
various modularity of material
accumulation of elastic deformations
elastic springing
calculation of cylindrical tool (caliber)
title Specific Features of Fluoroplastic Band Bending with Due Account of Various Modularity of Material
title_full Specific Features of Fluoroplastic Band Bending with Due Account of Various Modularity of Material
title_fullStr Specific Features of Fluoroplastic Band Bending with Due Account of Various Modularity of Material
title_full_unstemmed Specific Features of Fluoroplastic Band Bending with Due Account of Various Modularity of Material
title_short Specific Features of Fluoroplastic Band Bending with Due Account of Various Modularity of Material
title_sort specific features of fluoroplastic band bending with due account of various modularity of material
topic fluoroplastic
deformation due to force action
mechanical model of fluoroplastic
cold formation of products
bending of fluoroplastic band
elasticity at stretching and compression
various modularity of material
accumulation of elastic deformations
elastic springing
calculation of cylindrical tool (caliber)
url https://sat.bntu.by/jour/article/view/1973
work_keys_str_mv AT gavershina specificfeaturesoffluoroplasticbandbendingwithdueaccountofvariousmodularityofmaterial
AT lereut specificfeaturesoffluoroplasticbandbendingwithdueaccountofvariousmodularityofmaterial