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Electron beam welding of AlCoCrFeNi2.1 high entropy alloy to EN 1.4301 austenitic steel

Abstract

Eutectic high-entropy alloys (EHEA), also known as multi-principle component alloys (MPCA), are a group of materials exhibiting promising mechanical properties. The principle of the alloy is to achieve sufficient ductility due to the presence of the soft phase and, at the same time, increased strength due to the hard phase. In order for the newly discovered types of materials to be used commercially, it is necessary to verify their behaviour in technological operations such as welding processes. Therefore, the objective of the experiment was to evaluate the heterogeneous welded joint of the AlCoCrFeNi2.1 alloy with commercially used austenitic steel EN 1.4301 by electron beam welding. The parameters used during the process were previously verified on homogeneous joints. Subsequent observations were made by light and electron microscopy supplemented by chemical analysis. The mechanical properties of the formed joint were verified by a Vickers hardness test.

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Electron beam welding of AlCoCrFeNi2.1 high entropy alloy to EN 1.4301 austenitic steel

Author: Rončák, Ján; Adam, Ondřej; Zobač, Martin
Publisher: IOP Publishing
Year: 2023
DOI: 10.1088/1742-6596/2443/1/012009
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Elec on beam welding o AlCoC FeNi2.1 high en opy alloy
o EN 1.4301 aus eni ic s eel
J Rončák1, O Adam2 and M Zobač1
1Ins i u e o Scien i ic Ins umen s o he CAS, B no, Czech Republic
2B no Uni e si y o Technology, Ins i u e o Ma e ials Science and Enginee ing, B no,
Czech Republic
e-mail: oncak@isib no.cz; ond ej.adam@ u b .cz; [email p o ec ed]
Abs ac . Eu ec ic high-en opy alloys (EHEA), also known as mul i-p inciple componen alloys
(MPCA), a e a g oup o ma e ials exhibi ing p omising mechanical p ope ies. The p inciple o
he alloy is o achie e su icien duc ili y due o he p esence o he so phase and, a he same
ime, inc eased s eng h due o he ha d phase. In o de o he newly disco e ed ypes o
ma e ials o be used comme cially, i is necessa y o e i y hei beha iou in echnological
ope a ions such as welding p ocesses. The e o e, he objec i e o he expe imen was o e alua e
he he e ogeneous welded join o he AlCoC FeNi2.1 alloy wi h comme cially used aus eni ic
s eel EN 1.4301 by elec on beam welding. The pa ame e s used du ing he p ocess we e
p e iously e i ied on homogeneous join s. Subsequen obse a ions we e made by ligh and
elec on mic oscopy supplemen ed by chemical analysis. The mechanical p ope ies o he
o med join we e e i ied by a Vicke s ha dness es .
1. In oduc ion
High en opy alloys ha e g adually become known o he scien i ic communi y as a new concep o
p omising ma e ials. Thei disco e y is a ibu ed o p o esso s Can o and Yeh, who in 2004
independen ly p esen ed he esul s o hei esea ch in his a ea. Despi e his ac , examples occu ed
be o e he gi en yea , such as pla inum alloys. High en opy alloys a e de ined as ma e ials con aining
i e o mo e chemical elemen s, whe e each elemen is con ained in a leas 5 a . % (speci ically in he
ange o 5 o 35 a . %). The inc eased numbe o p ima y elemen s should consequen ly ensu e an
inc eased mixed en opy o he solid solu ion and p e en he o ma ion o in e me allic phases, which
esul s in a single-phase s able s uc u e. This concep p o ed o be w ong, and he men ioned s uc u e
loses i s s abili y a e mechanical s ess a ele a ed empe a u es. Howe e , he o ma ion o a
mul iphase s uc u e opens new possibili ies in e ms o he de elopmen and use o alloys, such as
eu ec ic high en opy alloys [1, 2].
Eu ec ic high en opy alloys (EHEAs), o med p ima ily by a wo-phase s uc u e, a e one o he
HEA subg oups combining inc eased s eng h and a he same ime su icien duc ili y. Alloys mos ly
con ain ansi ion me als such as Co, C , Fe, Ni, and Mn. The emaining chemical elemen s, such as Al
o Ti, occu ing in smalle quan i ies a e supplemen ed as needed. One o such alloys is AlCoC FeNi2.1,
whose lamella eu ec ic is o med by a mix u e o so and duc ile FCC and ha d B2 phases [3, 4].
In addi ion o a o able mechanical p ope ies [5, 6], hey a e cha ac e ized by excellen cas abili y,
which con ibu es o he idea o u u e use in indus y. Howe e , o be able o use high en opy ma e ials,
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i is necessa y o e i y hei echnological p ope ies. The e o e, we decided o e alua e dissimila
usion welding wi h comme cially used aus eni ic s ainless s eel EN 1.4301 [1].
Aus eni ic s eels a e he mos used ypes o s ainless s eels o comme cial use. Wi hou cold
wo king, hey ha e only a e age mechanical p ope ies. Howe e , hey compensa e o his sho coming
wi h hei esis ance o co osion in agg essi e en i onmen s. The mos common o he men ioned s eels
is EN 1.4301 (AISI 304), also known as 18-8, e e ing o 18 w . % C and 8 w . % Ni wi h ully
aus eni ic mic os uc u e. One o he a o able p ope ies is also weldabili y, which p ede e mines EN
1.4301 as s eel o welds o dissimila ma e ials [7, 8].
To c ea e a usion weld om he abo e-men ioned ma e ials, elec on beam welding was used. The
echnology elies on emel ing he ma e ial by a high ene gy densi y elec on beam in a acuum
chambe . As a esul , he e is no chemical eac ion a ele a ed empe a u es, and elec ons do no lose
hei ene gy by in e ac ing wi h he pa icles con ained in he a mosphe e. I is used p ima ily in
indus ies wi h highe demands on he homogenei y o he welded join , mechanical p ope ies, and he
pu i y o he mic os uc u e [9, 10].
The main objec i e o he s udy was o e alua e a dissimila welded join o AlCoC FeNi2.1 and EN
1.4301 alloys (AISI 304) using:
• mac oscopic obse a ion o he weld in e ms o dep h and wid h o he emel ed laye , he
p esence o hea -a ec ed zone,
• e alua ion o he su icien mixing o chemical elemen s using EDS analysis and he esul ing
mechanical p ope ies unde he selec ed pa ame e s.
2. Ma e ials, pa ame e s and e alua ion me hods
The AlCoC FeNi2.1 alloy (EHEA) was p epa ed by mel ing in an Indu he m MC 15 induc ion u nace
unde educed p essu e in an a gon a mosphe e. Unlike p e ious esea ch, ou aim was o simula e
condi ions ha a e close o indus ial p oduc ion. The e o e, no only pu e me als we e used o he
p oduc ion, bu a di e en alloy con aining Co, C , Fe, and Ni was emel ed. Subsequen ly, he necessa y
alloying wi h pu e me als was pe o med o achie e he equi ed chemical composi ion. A one- ime
emel ing was ca ied ou , which was ollowed by he cas ing in o a coppe mold. The esul a e
machining was a cylind ical ingo wi h a diame e o 14 mm and a heigh o 28 mm.
S ainless aus eni ic s eel EN 1.4301 (SAS) was comme cially pu chased in he o m o a cylind ical
ingo wi h a diame e o 16 mm and machined acco ding o he dimensions o a high en opy alloy. A
compa ison o he ideal and inal chemical composi ion o bo h ma e ials de e mined by EDS analysis
can be seen in able 1. Al hough he alloy name AlCoC FeNi2.1 is based on he a omic a io o he
indi idual elemen s, he con en in w . % is used o be e compa ison wi h comme cially used EN
1.4301. The p esence o silicon in he esul ing chemical composi ion o AlCoC FeNi2.1 is due o i s
p esence in he emel ed o iginal alloy used o p oduce he high en opy alloy.
Table 1. Ideal and inal chemical composi ions o AlCoC FeNi2.1 and EN 1.4301.
Composi ion
Chemical elemen s in w . %
Al
Co
C
Fe
Ni
Si
Mn
Ideal EHEA
8.5
18.6
16.4
17.6
38.9
-
-
Final EHEA
9.5
18.6
14.0
17.4
39.9
0.7
-
Ideal SAS
-
-
18.0 - 20.0
Balance
8.0 - 10.0
0 - 1.0
0 - 2.0
Final SAS
-
-
18.7
70.5
8.2
0.4
1.9
The ab ica ed ma e ial samples we e cleaned by ul asonica ion in isop opyl alcohol and subjec ed
o a usion welding p ocess using a MEBW 60/2-E mic o elec on beam welde ( igu e 1). The de ice
has a ully digi al con ol wi h a maximum powe o 2 kW and an accele a ing ol age o 60 kV. The
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wo king p essu e in he chambe du ing welding is be e han 4 × 10-2 Pa. Welding was p eceded by
pa ial joining o ma e ials using s i ches a ou loca ions o p e en possible misalignmen . The selec ed
s i ching and welding pa ame e s can be seen in able 2.
Figu e 1. Mic o elec on beam welde MEBW 60/2-E.
The las pa o he expe imen was o e alua e he esul s o he welding p ocess. The usion-welded
ma e ials we e cu using a me allog aphic saw and he sample was p epa ed by sequen ial g inding and
polishing o obse a ion in a ligh (Zeiss Axio Obse e 7) and elec on mic oscope (FEG SEM Zeiss
Ul a plus). Subsequen ly, a chemical analysis (FEG SEM Zeiss Ul a Plus) was pe o med using lines
in se e al a eas o he weld. The app oxima e lines o he measu emen s used o he e alua ion o he
chemical composi ion a e indica ed in igu e 2. The mechanical p ope ies we e e i ied by he Vicke s
ha dness es HV0.2 (Qness Q10A) wi h a load o 0.2 kg o 10 seconds.
Table 2. Pa ame e s o s i ching and welding o dissimila alloys.
P ocess
Pa ame e s o welding
Beam
Cu en
(mA)
Accele a ing
Vol age (kV)
Welding
Speed (mm/s)
F equency o
Wobbling (Hz)
Hea Inpu
(J/mm)
S i ching
1.5
55
10
-
8.25
Welding
10
55
10
500
55
3. Resul s and discussion
Figu e 2 shows he mac os uc u e o he o med weld join wi h a shape simila o ha o a nail o a
wine glass be o e e ching. Hence, he hea -a ec ed zone (HAZ) is no isible. The wid h o he usion
zone (FZ) is app oxima ely 1.4 mm in he op, 0.6 mm in he uppe hi d and he dep h is 4.4 mm ( igu e
2). I ypically occu s in high ene gy densi y welding when a apid inc ease in empe a u e esul s in
mel ing deepe in o he ma e ial. The gi en shape he e o e con i ms a co ec beam ocusing. A he
same ime, i is clea om he mac oscopic iew ha he mel ing p ocess p oceeded di e en ly
depending on he base ma e ial. The igh side (EHEA) shows a la ge emel ing a ea a he op o he
weld compa ed o he le side (SAS). This is due o he di e en he mophysical p ope ies. Compa ed
o comme cially p oduced 1.4301, high en opy alloys a e unde s udied in e ms o he mophysical
p ope ies. The e o e, i is no possible o compa e he p ope ies wi hin he expe imen .
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Figu e 2. Dissimila weld join .
In addi ion o he esul ing shape, a en ion mus also be paid o de ec s loca ed in he usion zone.
These a e he po es a he bo om o he weld nea he oo . Thei p esence ad e sely a ec s he
mechanical p ope ies and is pa ly in luenced by he chosen pa ame e s, namely he welding speed. A
high speed, he e apo a ed alloys emain apped in he apidly cooled mic os uc u e. In he ollowing
es s i is he e o e necessa y o e i y he dependence o he p esence o de ec s on speci ic welding
pa ame e s.
Mac oscopic obse a ions we e ollowed by chemical analysis using he EDS me hod. The i s pa
o he analysis consis ed o checking he abundance o chemical elemen s om one base ma e ial o
ano he ( igu e 3). The second pa e alua ed he p esence o elemen s in he join om op o bo om
( igu e 4). Al hough o he elemen s (Al, Co, Si, Mn) we e p esen in he ma e ial acco ding o he
analysis, Fe, Ni, and C we e selec ed o he esul ing plo s. The e ec o silicon on he weldabili y o
he welded join was no he subjec o he expe imen ; howe e , because o i s equen use in cas
alloys, i is app op ia e o conside his in luence in u u e es s.
Figu e 3. Chemical composi ion ac oss he usion zone and base ma e ials.
0,0
20,0
40,0
60,0
80,0
0,0 0,5 1,0 1,5
Chemical composi ion
[w . %]
Dis ance [mm]
SAS FZ EHEA
Fe w %
C w %
Ni w %
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The analysis shown in igu e 3 in he o m o a simple mo ing a e age con i ms he success ul
mixing o he chemical elemen s con ained in bo h base ma e ials. Thus, he e was no mo emen du ing
he mel ing p ocess and, om a s uc u al poin o iew, he base ma e ials we e p epa ed app op ia ely.
A he same ime, he s i ching ha p eceded he usion welding also p o ed o be e icien .
Chemical elemen s con ained only in he weld join ( igu e 4) addi ionally shows ha he chemical
composi ion does no a y signi ican ly h oughou he e alua ed a ea and he mic os uc u e o he
usion zone is likely o be s able. Howe e , in e ms o phase composi ion, i would be necessa y o
complemen he expe imen wi h EBSD o X- ay analysis.
Figu e 4. Chemical composi ion along he usion zone.
The las pa o he e alua ion o he he e ogeneous welded join consis ed o he Vicke s HV0.2
ha dness es . Figu e 5 shows he alues measu ed a he op o he weld join and he base ma e ials.
The es ed dis ance was 5 millime e s wi h a spacing o 0.25 mm be ween inden a ion poin s. The e was
a signi ican dec ease in he mechanical p ope ies o he usion zone. A he same ime, a dec ease in
ha dness alues o SAS was caused by g ain coa sening e i ied by obse a ion in an elec on
mic oscope. The gi en ac s con i m he p esence o a hea -a ec ed zone.
Figu e 5. Ha dness alues o he base ma e ials and he usion zone.
In he case o he high en opy alloy, on he con a y, he e was a sligh inc ease in ha dness in he
hea -a ec ed zone compa able in size o ha o he SAS. Undesi able e ec o highe ha dness is
p obably due o he highe hea inpu in he base ma e ial. In addi ion o he p esence o de ec s, u u e
es s will also e i y he sui abili y o he pa ame e s in e ms o he magni ude o he hea inpu .
0
10
20
30
40
50
60
0,0 0,5 1,0 1,5 2,0 2,5 3,0
Chemical composi ion
[w . %]
Dis ance [mm]
Fe w %
Ni w %
C w %
150
200
250
300
350
400
450
0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20
Ha dness HV0.2 [-]
Inden a ion poin s [-]
FZ
SAS
1.4301 EHEA
HAZ HAZ

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4. Conclusion
A he e ogeneous weld join o comme cially used s ainless aus eni ic s eel EN 1.4301 (AISI 304) and
cas high en opy alloy AlCoC FeNi2.1 was o med by elec on beam welding and e alua ed by
ma e ials enginee ing me hods. Obse a ion o he mac os uc u e, chemical composi ion and ha dness
o he ma e ial led o he ollowing indings:
• Weld join 1.4 mm wide a he op, 0.6 mm wide in he uppe hi d and app oxima ely 4.4 mm
deep was o med using he selec ed pa ame e s.
• De ec s we e p esen in he o m o po es in he bo om pa , which can ad e sely a ec he
mechanical p ope ies.
• Chemical analysis o he usion zone showed a success ul mixing o bo h base ma e ials.
• The ha dness es and obse a ion in an elec on mic oscope e ealed he p esence o hea -
a ec ed zones.
Indi idual indings show ha joining wo selec ed dissimila ma e ials by elec on beam welding is
possible. Howe e , u he es s need o be ca ied ou o gua an ee su icien mechanical s eng h and
he absence o de ec s in he mac o- and mic os uc u e.
Acknowledgemen s
The a icle was c ea ed wi h he ins i u ional suppo o RVO:68081731.
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