Effect of Die Angle and Frictional Conditions on Fine Grain Layer Generation in Multipass Drawing of High Carbon Steel Wire
<b> </b>Fine grain layers that generate near frictional interfaces in metal forming processes affect the quality of products. The present paper aims to contribute to the continuum-mechanics-based phenomenological approach for predicting such layers’ properties. In particular, it studies...
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doaj-878cff745a6d40a9b63700f85ab24fd02020-11-25T04:02:57ZengMDPI AGMetals2075-47012020-10-01101462146210.3390/met10111462Effect of Die Angle and Frictional Conditions on Fine Grain Layer Generation in Multipass Drawing of High Carbon Steel WireAlexey Stolyarov0Marina Polyakova1Guzel Atangulova2Sergei Alexandrov3OJSC Magnitogorsk Hardware and Sizing Plant “MMK-METIZ”, 5, Metiznikov, 455002 Magnitogorsk, RussiaMechanical Engineering and Materials Processing Institute, Nosov Magnitogorsk State Technical University, 38, Lenin Avenue, 455000 Magnitogorsk, RussiaOJSC Magnitogorsk Hardware and Sizing Plant “MMK-METIZ”, 5, Metiznikov, 455002 Magnitogorsk, RussiaIshlinsky Institute for Problems in Mechanics, Russian Academy of Sciences, 101-1 Prospect Vernadskogo, 119526 Moscow, Russia<b> </b>Fine grain layers that generate near frictional interfaces in metal forming processes affect the quality of products. The present paper aims to contribute to the continuum-mechanics-based phenomenological approach for predicting such layers’ properties. In particular, it studies the generation of fine grain layers in the process of multipass drawing of thin high carbon steel wires experimentally. The wires are drawn in three passes under different friction conditions. All three dies in each multipass process have the same semiangle. In total, two die semiangles are used, 4° and 5°. The effects of such processing conditions as the die semiangle, the number of passes, and the friction conditions on the thickness of fine grain layers are observed and discussed. The criterion for determining this thickness is based on the coefficient of anisotropy. Under soft friction conditions, the fine grain layer’s thickness decrease occurs during the consequential passes independently of the die semiangle. On the other hand, in the case of hard friction conditions, the thickness may or may not be a monotonic function of the number of passes, and its general qualitative behavior depends on the die semiangle.https://www.mdpi.com/2075-4701/10/11/1462frictionmultipass drawingthin wirefine grain layer |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Alexey Stolyarov Marina Polyakova Guzel Atangulova Sergei Alexandrov |
spellingShingle |
Alexey Stolyarov Marina Polyakova Guzel Atangulova Sergei Alexandrov Effect of Die Angle and Frictional Conditions on Fine Grain Layer Generation in Multipass Drawing of High Carbon Steel Wire Metals friction multipass drawing thin wire fine grain layer |
author_facet |
Alexey Stolyarov Marina Polyakova Guzel Atangulova Sergei Alexandrov |
author_sort |
Alexey Stolyarov |
title |
Effect of Die Angle and Frictional Conditions on Fine Grain Layer Generation in Multipass Drawing of High Carbon Steel Wire |
title_short |
Effect of Die Angle and Frictional Conditions on Fine Grain Layer Generation in Multipass Drawing of High Carbon Steel Wire |
title_full |
Effect of Die Angle and Frictional Conditions on Fine Grain Layer Generation in Multipass Drawing of High Carbon Steel Wire |
title_fullStr |
Effect of Die Angle and Frictional Conditions on Fine Grain Layer Generation in Multipass Drawing of High Carbon Steel Wire |
title_full_unstemmed |
Effect of Die Angle and Frictional Conditions on Fine Grain Layer Generation in Multipass Drawing of High Carbon Steel Wire |
title_sort |
effect of die angle and frictional conditions on fine grain layer generation in multipass drawing of high carbon steel wire |
publisher |
MDPI AG |
series |
Metals |
issn |
2075-4701 |
publishDate |
2020-10-01 |
description |
<b> </b>Fine grain layers that generate near frictional interfaces in metal forming processes affect the quality of products. The present paper aims to contribute to the continuum-mechanics-based phenomenological approach for predicting such layers’ properties. In particular, it studies the generation of fine grain layers in the process of multipass drawing of thin high carbon steel wires experimentally. The wires are drawn in three passes under different friction conditions. All three dies in each multipass process have the same semiangle. In total, two die semiangles are used, 4° and 5°. The effects of such processing conditions as the die semiangle, the number of passes, and the friction conditions on the thickness of fine grain layers are observed and discussed. The criterion for determining this thickness is based on the coefficient of anisotropy. Under soft friction conditions, the fine grain layer’s thickness decrease occurs during the consequential passes independently of the die semiangle. On the other hand, in the case of hard friction conditions, the thickness may or may not be a monotonic function of the number of passes, and its general qualitative behavior depends on the die semiangle. |
topic |
friction multipass drawing thin wire fine grain layer |
url |
https://www.mdpi.com/2075-4701/10/11/1462 |
work_keys_str_mv |
AT alexeystolyarov effectofdieangleandfrictionalconditionsonfinegrainlayergenerationinmultipassdrawingofhighcarbonsteelwire AT marinapolyakova effectofdieangleandfrictionalconditionsonfinegrainlayergenerationinmultipassdrawingofhighcarbonsteelwire AT guzelatangulova effectofdieangleandfrictionalconditionsonfinegrainlayergenerationinmultipassdrawingofhighcarbonsteelwire AT sergeialexandrov effectofdieangleandfrictionalconditionsonfinegrainlayergenerationinmultipassdrawingofhighcarbonsteelwire |
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