Effect of Milling Ball Diameter during Surface Mechanical Attrition Treatment on Microhardness of AISI 316L

<p>Surface mechanical attrition treatment (SMAT) is one of the recently developed techniques to obtain refined grains on metal surface. In this paper, the effect of milling ball diameter during the SMAT on microhardness of AISI 316L is discussed. All samples were treated for 15 minutes. The re...

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Main Author: , B. Arifvianto
Format: Article NonPeerReviewed
Published: [Yogyakarta] : Departments of Geological Engineering,Facultyof En 2009
Online Access:https://repository.ugm.ac.id/95300/
http://repository.ugm.ac.id/digitasi/index.php?module=cari_hasil_full&idbuku=3118
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spelling id-ugm-repo.953002014-11-28T07:35:18Z https://repository.ugm.ac.id/95300/ Effect of Milling Ball Diameter during Surface Mechanical Attrition Treatment on Microhardness of AISI 316L , B. Arifvianto <p>Surface mechanical attrition treatment (SMAT) is one of the recently developed techniques to obtain refined grains on metal surface. In this paper, the effect of milling ball diameter during the SMAT on microhardness of AISI 316L is discussed. All samples were treated for 15 minutes. The result shows enhanced microhardness and thickness of hardened layer at the sample's subsurface as the use of larger diameter milling balls</p> [Yogyakarta] : Departments of Geological Engineering,Facultyof En 2009 Article NonPeerReviewed , B. Arifvianto (2009) Effect of Milling Ball Diameter during Surface Mechanical Attrition Treatment on Microhardness of AISI 316L. text. http://repository.ugm.ac.id/digitasi/index.php?module=cari_hasil_full&idbuku=3118
institution Universitas Gadjah Mada
building UGM Library
country Indonesia
collection Repository Civitas UGM
description <p>Surface mechanical attrition treatment (SMAT) is one of the recently developed techniques to obtain refined grains on metal surface. In this paper, the effect of milling ball diameter during the SMAT on microhardness of AISI 316L is discussed. All samples were treated for 15 minutes. The result shows enhanced microhardness and thickness of hardened layer at the sample's subsurface as the use of larger diameter milling balls</p>
format Article
NonPeerReviewed
author , B. Arifvianto
spellingShingle , B. Arifvianto
Effect of Milling Ball Diameter during Surface Mechanical Attrition Treatment on Microhardness of AISI 316L
author_facet , B. Arifvianto
author_sort , B. Arifvianto
title Effect of Milling Ball Diameter during Surface Mechanical Attrition Treatment on Microhardness of AISI 316L
title_short Effect of Milling Ball Diameter during Surface Mechanical Attrition Treatment on Microhardness of AISI 316L
title_full Effect of Milling Ball Diameter during Surface Mechanical Attrition Treatment on Microhardness of AISI 316L
title_fullStr Effect of Milling Ball Diameter during Surface Mechanical Attrition Treatment on Microhardness of AISI 316L
title_full_unstemmed Effect of Milling Ball Diameter during Surface Mechanical Attrition Treatment on Microhardness of AISI 316L
title_sort effect of milling ball diameter during surface mechanical attrition treatment on microhardness of aisi 316l
publisher [Yogyakarta] : Departments of Geological Engineering,Facultyof En
publishDate 2009
url https://repository.ugm.ac.id/95300/
http://repository.ugm.ac.id/digitasi/index.php?module=cari_hasil_full&idbuku=3118
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