Fretting Behavior of SPR Joining Dissimilar Sheets of Titanium and Copper Alloys

The fretting performance of self-piercing riveting joining dissimilar sheets in TA1 titanium alloy and H62 copper alloy was studied in this paper. Load-controlled cyclic fatigue tests were carried out using a sine waveform and in tension-tension mode. Scanning electron microscopy and energy-dispersi...

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Main Authors: Xiaocong He, Cong Deng, Xianlian Zhang
Format: Article
Language:English
Published: MDPI AG 2016-12-01
Series:Metals
Subjects:
Online Access:http://www.mdpi.com/2075-4701/6/12/312
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author Xiaocong He
Cong Deng
Xianlian Zhang
author_facet Xiaocong He
Cong Deng
Xianlian Zhang
author_sort Xiaocong He
collection DOAJ
description The fretting performance of self-piercing riveting joining dissimilar sheets in TA1 titanium alloy and H62 copper alloy was studied in this paper. Load-controlled cyclic fatigue tests were carried out using a sine waveform and in tension-tension mode. Scanning electron microscopy and energy-dispersive X-ray techniques were employed to analyze the fretting failure mechanisms of the joints. The experimental results showed that there was extremely severe fretting at the contact interfaces of rivet and sheet materials for the joints at relatively high loads levels. Moreover, the severe fretting in the region on the locked sheet in contact with the rivet was the major cause of the broken locked sheet for the joints at low load level.
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spelling doaj.art-5e78e08be4c14cc084462781883e84cd2022-12-21T17:49:04ZengMDPI AGMetals2075-47012016-12-0161231210.3390/met6120312met6120312Fretting Behavior of SPR Joining Dissimilar Sheets of Titanium and Copper AlloysXiaocong He0Cong Deng1Xianlian Zhang2Innovative Manufacturing Research Centre, Kunming University of Science and Technology, Kunming 650500, ChinaInnovative Manufacturing Research Centre, Kunming University of Science and Technology, Kunming 650500, ChinaInnovative Manufacturing Research Centre, Kunming University of Science and Technology, Kunming 650500, ChinaThe fretting performance of self-piercing riveting joining dissimilar sheets in TA1 titanium alloy and H62 copper alloy was studied in this paper. Load-controlled cyclic fatigue tests were carried out using a sine waveform and in tension-tension mode. Scanning electron microscopy and energy-dispersive X-ray techniques were employed to analyze the fretting failure mechanisms of the joints. The experimental results showed that there was extremely severe fretting at the contact interfaces of rivet and sheet materials for the joints at relatively high loads levels. Moreover, the severe fretting in the region on the locked sheet in contact with the rivet was the major cause of the broken locked sheet for the joints at low load level.http://www.mdpi.com/2075-4701/6/12/312titanium alloycopper alloyfrettingself-piercing rivetingSEMEDX
spellingShingle Xiaocong He
Cong Deng
Xianlian Zhang
Fretting Behavior of SPR Joining Dissimilar Sheets of Titanium and Copper Alloys
Metals
titanium alloy
copper alloy
fretting
self-piercing riveting
SEM
EDX
title Fretting Behavior of SPR Joining Dissimilar Sheets of Titanium and Copper Alloys
title_full Fretting Behavior of SPR Joining Dissimilar Sheets of Titanium and Copper Alloys
title_fullStr Fretting Behavior of SPR Joining Dissimilar Sheets of Titanium and Copper Alloys
title_full_unstemmed Fretting Behavior of SPR Joining Dissimilar Sheets of Titanium and Copper Alloys
title_short Fretting Behavior of SPR Joining Dissimilar Sheets of Titanium and Copper Alloys
title_sort fretting behavior of spr joining dissimilar sheets of titanium and copper alloys
topic titanium alloy
copper alloy
fretting
self-piercing riveting
SEM
EDX
url http://www.mdpi.com/2075-4701/6/12/312
work_keys_str_mv AT xiaoconghe frettingbehaviorofsprjoiningdissimilarsheetsoftitaniumandcopperalloys
AT congdeng frettingbehaviorofsprjoiningdissimilarsheetsoftitaniumandcopperalloys
AT xianlianzhang frettingbehaviorofsprjoiningdissimilarsheetsoftitaniumandcopperalloys