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Materials Science and Engineering: A
Volume 596, 24 February 2014, Pages 194–199
Repetitive tube expansion and shrinking (RTES) as a novel SPD method for
fabrication of nanostructured tubes
 H. Jafarzadeh, ,
,
 K. Abrinia,
 A. Babaei
Choose an option to locate/access this article:

Show more
DOI: 10.1016/j.msea.2013.12.037
Get rights and content
Abstract
A novel severe plastic deformation (SPD) technique entitled repetitive tube expansion and shrinking (RTES) is
introduced for producing ultra-fine grained tubular parts. This method includes two different half-cycles and is
based on pressing a tubular part through an angular channel die with two shear zones. Because of inherent
capabilities, this method imposes extremely high plastic strains in parts without any geometrical change. RTES was
applied to commercial AZ91 alloy and the ability of this process in significant grain refinement of tubular samples is
determined even after single cycle. At room temperature the yield and ultimate tensile strength of the RTES
processed specimens is higher than that of the as-cast state due to the grain refinement during RTES. Furthermore,
microhardness distribution through tube thickness is proposed the hardness increasing to ~80Hv from the initial
value of ~50Hv after one cycle of RTES.
Keywords
 Severe plastic deformation;
 Ultrafine grain;
 Micro-hardness;
 Repetitive tube expansion and shrinking;
 AZ91
Corresponding author. Tel.: +98 9104003188; fax: +98 88635188.
Copyright © 2013 Elsevier B.V. All rights reserved.
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1.
1. An investigation into the room temperature mechanical properties and microstructural evolution of
thermomechanically processed TWIP steel
2014, Materials Science and Engineering: A

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Materials science and engineering

  • 1. Materials Science and Engineering: A Volume 596, 24 February 2014, Pages 194–199 Repetitive tube expansion and shrinking (RTES) as a novel SPD method for fabrication of nanostructured tubes  H. Jafarzadeh, , ,  K. Abrinia,  A. Babaei Choose an option to locate/access this article:  Show more DOI: 10.1016/j.msea.2013.12.037 Get rights and content Abstract A novel severe plastic deformation (SPD) technique entitled repetitive tube expansion and shrinking (RTES) is introduced for producing ultra-fine grained tubular parts. This method includes two different half-cycles and is based on pressing a tubular part through an angular channel die with two shear zones. Because of inherent capabilities, this method imposes extremely high plastic strains in parts without any geometrical change. RTES was applied to commercial AZ91 alloy and the ability of this process in significant grain refinement of tubular samples is determined even after single cycle. At room temperature the yield and ultimate tensile strength of the RTES processed specimens is higher than that of the as-cast state due to the grain refinement during RTES. Furthermore, microhardness distribution through tube thickness is proposed the hardness increasing to ~80Hv from the initial value of ~50Hv after one cycle of RTES. Keywords  Severe plastic deformation;  Ultrafine grain;  Micro-hardness;  Repetitive tube expansion and shrinking;  AZ91 Corresponding author. Tel.: +98 9104003188; fax: +98 88635188. Copyright © 2013 Elsevier B.V. All rights reserved.  About ScienceDirect  Contact and support  Information for advertisers
  • 2.  Terms and conditions  Privacy policy Copyright © 2014 Elsevier B.V. except certain content provided by third parties. ScienceDirect® is a registered trademark of Elsevier B.V. Cookies are used by this site. To decline or learn more, visit our Cookies page Switch to Mobile Site Recommended articles 1. 1. An investigation into the room temperature mechanical properties and microstructural evolution of thermomechanically processed TWIP steel 2014, Materials Science and Engineering: A