Science and Technology of Welding and Joining, Volume (23), No (4), Year (2018-5) , Pages (295-307)

Title : ( Microstructure, mechanical properties and failure behaviour of protrusion friction stir spot welded 2024 aluminium alloy sheets )

Authors: S Dourandish , S. M. Mousavizade , H. R. Ezatpour , GHolam Reza Ebrahimi ,

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Abstract

The current study investigates the mechanical and microstructure properties of 2024 aluminium alloy welded by protrusion friction stir spot welding as a novel method to produce keyhole-free welds. Tool rotation speed and anvil protrusion height are used as effective variables of the process to obtain optimum conditions. Results illustrate that the keyhole-free welds with the joint show superior mechanical properties in protrusion friction stir spot welding compared to conventional friction stir spot welding. Failure mode changes from interfacial mode to circumferential mode by increasing the nugget zone depth and joint length, while the effect of nugget zone is considerable. Finally, welding at a rotation speed of 1600 rev min−1 and a protrusion height of 0.4 mm presents significant mechanical properties with more joint length.

Keywords

, Protrusion friction stir spot welding, tool rotation speed, protrusion height, mechanical properties
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@article{paperid:1082402,
author = {S Dourandish and S. M. Mousavizade and H. R. Ezatpour and Ebrahimi, GHolam Reza},
title = {Microstructure, mechanical properties and failure behaviour of protrusion friction stir spot welded 2024 aluminium alloy sheets},
journal = {Science and Technology of Welding and Joining},
year = {2018},
volume = {23},
number = {4},
month = {May},
issn = {1362-1718},
pages = {295--307},
numpages = {12},
keywords = {Protrusion friction stir spot welding; tool rotation speed; protrusion height; mechanical properties},
}

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%0 Journal Article
%T Microstructure, mechanical properties and failure behaviour of protrusion friction stir spot welded 2024 aluminium alloy sheets
%A S Dourandish
%A S. M. Mousavizade
%A H. R. Ezatpour
%A Ebrahimi, GHolam Reza
%J Science and Technology of Welding and Joining
%@ 1362-1718
%D 2018

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