INVESTIGATION OF PHYSICAL AND MECHANICAL PROPERTIES OF FRICTION STIR WELDING ON ALUMINUM 6092/SIC/25P/T6 WELDED PLATES
Friction Stir Welding (FSW) is a relatively new welding technique and itsphysics is still not widely known. Compared to fusion welding, this technique reduces problem associated with metal re-solidification as the technique involves no melting stages suitable for joining high strength aerospace m...
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2013
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my-utp-utpedia.227832022-02-24T02:28:10Z http://utpedia.utp.edu.my/22783/ INVESTIGATION OF PHYSICAL AND MECHANICAL PROPERTIES OF FRICTION STIR WELDING ON ALUMINUM 6092/SIC/25P/T6 WELDED PLATES PATTHI, UMAR TJ Mechanical engineering and machinery Friction Stir Welding (FSW) is a relatively new welding technique and itsphysics is still not widely known. Compared to fusion welding, this technique reduces problem associated with metal re-solidification as the technique involves no melting stages suitable for joining high strength aerospace material such as aluminum metal matrix composite (AMMC). Initially FSW had been developed and successfully applied for welding softer material such as aluminum alloy. Scarce research had been conducted on FSW of AMMC where the material have a higherstiffness, strength and wear resistance compared to monolithic aluminum alloy. Research of FSW on aluminum 6092 series reinforce with 25% discontinuous SiC particles volume with T6 ageing (aluminum 6092/SiC25P/T6) has not been reported. 2013-04 Thesis NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/22783/1/2013-MECHANICAL-INVESTIGATION%20OF%20PHYSICAL%20AND%20MECHANICAL%20PROPERTIES%20OF%20FRICTION%20STIR%20WELDING%20ON%20ALUMINIUM%206092%2CSIC%2C25P%2CT6%20WELDED%20PLATES-UMAR%20BIN%20PATTHI.pdf PATTHI, UMAR (2013) INVESTIGATION OF PHYSICAL AND MECHANICAL PROPERTIES OF FRICTION STIR WELDING ON ALUMINUM 6092/SIC/25P/T6 WELDED PLATES. Masters thesis, UTP. |
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TJ Mechanical engineering and machinery PATTHI, UMAR INVESTIGATION OF PHYSICAL AND MECHANICAL PROPERTIES OF FRICTION STIR WELDING ON ALUMINUM 6092/SIC/25P/T6 WELDED PLATES |
description |
Friction Stir Welding (FSW) is a relatively new welding technique and itsphysics
is still not widely known. Compared to fusion welding, this technique reduces problem
associated with metal re-solidification as the technique involves no melting stages
suitable for joining high strength aerospace material such as aluminum metal matrix
composite (AMMC). Initially FSW had been developed and successfully applied for
welding softer material such as aluminum alloy. Scarce research had been conducted on
FSW of AMMC where the material have a higherstiffness, strength and wear resistance
compared to monolithic aluminum alloy. Research of FSW on aluminum 6092 series
reinforce with 25% discontinuous SiC particles volume with T6 ageing (aluminum
6092/SiC25P/T6) has not been reported. |
format |
Thesis |
author |
PATTHI, UMAR |
author_facet |
PATTHI, UMAR |
author_sort |
PATTHI, UMAR |
title |
INVESTIGATION OF PHYSICAL AND MECHANICAL PROPERTIES OF
FRICTION STIR WELDING ON ALUMINUM 6092/SIC/25P/T6 WELDED
PLATES |
title_short |
INVESTIGATION OF PHYSICAL AND MECHANICAL PROPERTIES OF
FRICTION STIR WELDING ON ALUMINUM 6092/SIC/25P/T6 WELDED
PLATES |
title_full |
INVESTIGATION OF PHYSICAL AND MECHANICAL PROPERTIES OF
FRICTION STIR WELDING ON ALUMINUM 6092/SIC/25P/T6 WELDED
PLATES |
title_fullStr |
INVESTIGATION OF PHYSICAL AND MECHANICAL PROPERTIES OF
FRICTION STIR WELDING ON ALUMINUM 6092/SIC/25P/T6 WELDED
PLATES |
title_full_unstemmed |
INVESTIGATION OF PHYSICAL AND MECHANICAL PROPERTIES OF
FRICTION STIR WELDING ON ALUMINUM 6092/SIC/25P/T6 WELDED
PLATES |
title_sort |
investigation of physical and mechanical properties of
friction stir welding on aluminum 6092/sic/25p/t6 welded
plates |
publishDate |
2013 |
url |
http://utpedia.utp.edu.my/22783/1/2013-MECHANICAL-INVESTIGATION%20OF%20PHYSICAL%20AND%20MECHANICAL%20PROPERTIES%20OF%20FRICTION%20STIR%20WELDING%20ON%20ALUMINIUM%206092%2CSIC%2C25P%2CT6%20WELDED%20PLATES-UMAR%20BIN%20PATTHI.pdf http://utpedia.utp.edu.my/22783/ |
_version_ |
1739832990024859648 |