One of the major challenges in manufacturing automotive lithium-ion batteries and battery packs is to achieve consistent weld quality in joining multiple layers of dissimilar materials. While most fusion welding processes face difficulties in such joining, ultrasonic welding stands out as the ideal method. However, inconsistency of weld quality still exists because of limited knowledge on the weld formation through the multiple interfaces. This study aims to establish real-time phenomenological observation on the multilayer ultrasonic welding process by analyzing the vibration behavior of metal layers. Such behavior is characterized by a direct measurement of the lateral displacement of each metal layer using high-speed images. Two different weld tools are used in order to investigate the effect of tool geometry on the weld formation mechanism and the overall joint quality. A series of microscopies and bond density measurements is carried out to validate the observations and hypotheses of those phenomena in multilayer ultrasonic welding. The results of this study enhance the understanding of the ultrasonic welding process of multiple metal sheets and provide insights for optimum tool design to improve the quality of multilayer joints.

References

1.
Lee
,
S. S.
,
Kim
,
T. H.
,
Hu
,
S. J.
,
Cai
,
W.
,
Abell
,
J. A.
, and
Li
,
J.
,
2013
, “
Characterization of Joint Quality in Ultrasonic Welding of Battery Tabs
,”
ASME J. Manuf. Sci. Eng.
,
135
(
2
), p.
021004
.10.1115/1.4023364
2.
Fujii
,
H. T.
,
Goto
,
Y.
,
Sato
,
Y. S.
, and
Kokawa
,
H.
,
2014
, “
Microstructural Evolution in Dissimilar Joint of Al Alloy and Cu During Ultrasonic Welding
,”
Mater. Sci. Forum
,
783–786
, pp.
2747
2752
.10.4028/www.scientific.net/MSF.783-786.2747
3.
Shakil
,
M.
,
Tariq
,
N.
,
Ahmad
,
M.
,
Choudhary
,
M.
,
Akhter
,
J.
, and
Babu
,
S.
,
2014
, “
Effect of Ultrasonic Welding Parameters on Microstructure and Mechanical Properties of Dissimilar Joints
,”
Mater. Des.
,
55
, pp.
263
273
.10.1016/j.matdes.2013.09.074
4.
Yang
,
J.
,
Cao
,
B.
,
He
,
X.
, and
Luo
,
H.
,
2014
, “
Microstructure Evolution and Mechanical Properties of Cu–Al Joints by Ultrasonic Welding
,”
Sci. Technol. Weld. Joining
,
19
(
6
), pp.
500
504
.10.1179/1362171814Y.0000000218
5.
Lee
,
S. S.
,
Kim
,
T. H.
,
Hu
,
S. J.
,
Cai
,
W.
, and
Abell
,
J. A.
,
2010
, “
Joining Technologies for Automotive Lithium-Ion Battery Manufacturing: A Review
,”
ASME Conf. Proc.
,
2010
(
49460
), pp.
541
549
.
10.1115/MSEC2010-34168
6.
de Vries
,
E.
,
2004
, “
Mechanics and Mechanisms of Ultrasonic Metal Welding
,” Ph.D. dissertation, The Ohio State University, Columbus, OH.
7.
Harthoorn
,
J.
,
1973
, “
Joint Formation in Ultrasonic Welding Compared With Fretting Phenomena for Aluminum
,”
Proceedings of Ultrasonics International
,
Guildford, UK
, pp.
43
51
.
8.
Joshi
,
K. C.
,
1971
, “
The Formation of Ultrasonic Bonds Between Metals
,”
Weld. J.
,
50
(
12
), pp.
840
848
.
9.
Kreye
,
H.
,
1977
, “
Melting Phenomena in Solid State Welding Processes
,”
Weld. J.
,
56
(
5
), pp.
154
158
.
10.
Tucker
,
J. C.
,
2002
, “
Ultrasonic Welding of Copper to Laminate Circuit Board
,” M.S. thesis, Worchester Polytechnic Institute, Worcester, MA.
11.
Zhang
,
C.
, and
Li
,
L.
,
2009
, “
A Coupled Thermal-Mechanical Analysis of Ultrasonic Bonding Mechanism
,”
Metall. Mater. Trans. B
,
40
(
2
), pp.
196
207
.10.1007/s11663-008-9224-9
12.
Ram
,
G. D. J.
,
Yang
,
Y.
, and
Stucker
,
B.
,
2006
, “
Effect of Process Parameters on Bond Formation During Ultrasonic Consolidation of Aluminum Alloy 3003
,”
J. Manuf. Syst.
,
25
(
3
), pp.
221
238
.10.1016/S0278-6125(07)80011-2
13.
Ram
,
G. D. J.
,
Robinson
,
C.
,
Yang
,
Y.
, and
Stucker
,
B.
,
2007
, “
Use of Ultrasonic Consolidation for Fabrication of Multi-Material Structures
,”
Rapid Prototyping J.
,
13
(
4
), pp.
226
235
.10.1108/13552540710776179
14.
Obielodan
,
J.
,
Ceylan
,
A.
,
Murr
,
L.
, and
Stucker
,
B.
,
2010
, “
Multi-Material Bonding in Ultrasonic Consolidation
,”
Rapid Prototyping J.
,
16
(
3
), pp.
180
188
.10.1108/13552541011034843
15.
Kang
,
B. S.
,
Cai
,
W.
, and
Tan
,
C. A.
,
2012
, “
Vibrational Energy Loss Analysis of Battery Bus-Bar in Ultrasonic Welding
,”
SME J. Manuf. Processes
,
16
(
2
), pp.
218
232
.10.1016/j.jmapro.2013.10.008
16.
Kang
,
B.
,
Cai
,
W.
, and
Tan
,
C.-A.
,
2013
, “
Dynamic Response of Battery Tabs Under Ultrasonic Welding
,”
ASME J. Manuf. Sci. Eng.
,
135
(
5
), p.
051013
.10.1115/1.4024535
17.
Kang
,
B.
,
Cai
,
W.
, and
Tan
,
C. A.
,
2014
, “
Dynamic Stress Analysis of Battery Tabs Under Ultrasonic Welding
,”
ASME J. Manuf. Sci. Eng.
,
136
(
4
), p.
041011
.10.1115/1.4026990
18.
Lee
,
D.
,
Kannatey-Asibu
,
E.
, and
Cai
,
W.
,
2013
, “
Ultrasonic Welding Simulations for Multiple Layers of Lithium-Ion Battery Tabs
,”
ASME J. Manuf. Sci. Eng.
,
135
(
6
), p.
061011
.10.1115/1.4025668
19.
Lee
,
S. S.
,
Kim
,
T. H.
,
Cai
,
W. W.
, and
Abell
,
J. A.
,
2014
, “
Parasitic Vibration Attenuation in Ultrasonic Welding of Battery Tabs
,”
Int. J. Adv. Manuf. Technol.
,
71
(
1–4
), pp.
181
195
.10.1007/s00170-013-5446-3
20.
Cai
,
W. W.
,
Abell
,
J. A.
,
Li
,
X.
,
Li
,
H.
,
Choi
,
H.
, and
Zhao
,
J.
,
2012
, “
Vibration Welding System With Thin Film Sensor
,” U.S. Patent No. 8,672,211.
21.
Zhao
,
J.
,
Jiang
,
H.
,
Cai
,
W.
,
Abell
,
J. A.
, and
Li
,
X.
,
2013
, “
Transient Temperature and Heat Flux Measurement in Ultrasonic Joining of Battery Tabs Using Thin-Film Microsensors
,”
ASME J. Manuf. Sci. Eng.
,
135
(
5
), p.
051015
.10.1115/1.4024816
22.
Zhao
,
J.
,
Li
,
H.
,
Choi
,
H.
,
Cai
,
W.
,
Abell
,
J. A.
, and
Li
,
X.
,
2013
, “
Insertable Thin Film Thermocouples for In Situ Transient Temperature Monitoring in Ultrasonic Metal Welding of Battery Tabs
,”
SME J. Manuf. Processes
,
15
(
1
), pp.
136
140
.10.1016/j.jmapro.2012.10.002
23.
Ji
,
H.
,
Li
,
M.
,
Kung
,
A. T.
,
Wang
,
C.
, and
Li
,
D.
,
2005
, “
The Diffusion of Ni into Al Wire at the Interface of Ultrasonic Wire Bond During High Temperature Storage
,”
Proceedings of the 6th IEEE International Conference on Electronic Packaging Technology
, pp.
377
381
.
24.
Elangovan
,
S.
,
Semeer
,
S.
, and
Prakasan
,
K.
,
2009
, “
Temperature and Stress Distribution in Ultrasonic Metal Welding—An FEA-Based Study
,”
J. Mater. Process. Technol.
,
209
(
3
), pp.
1143
1150
.10.1016/j.jmatprotec.2008.03.032
25.
Siddiq
,
A.
, and
Ghassemieh
,
E.
,
2009
, “
Theoretical and Fe Analysis of Ultrasonic Welding of Aluminum Alloy 3003
,”
ASME J. Manuf. Sci. Eng.
,
131
(
4
), p.
041007
.10.1115/1.3160583
26.
Siddiq
,
A.
, and
Ghassemieh
,
E.
,
2008
, “
Thermomechanical Analyses of Ultrasonic Welding Process Using Thermal and Acoustic Softening Effects
,”
Mech. Mater.
,
40
(
12
), pp.
982
1000
.10.1016/j.mechmat.2008.06.004
27.
Sasaki
,
T.
,
Sakata
,
Y.
, and
Watanabe
,
T.
,
2014
, “
Effect of Tool Geometry on Ultrasonic Welding Process
,”
IOP Conf. Ser.
,
61
(
1
), p.
012006
.10.1088/1757-899X/61/1/012006
28.
Eriksson
,
I.
,
Gren
,
P.
,
Powell
,
J.
, and
Kaplan
,
A. F.
,
2010
, “
New High-Speed Photography Technique for Observation of Fluid Flow in Laser Welding
,”
Opt. Eng.
,
49
(
10
), p.
100503
.10.1117/1.3502567
29.
Eriksson
,
I.
,
Powell
,
J.
, and
Kaplan
,
A. F.
,
2010
, “
Ultra High Speed Camera Investigations of Laser Beam Welding
,”
Proceedings of the International Congress on Applications of Lasers & Electro-Optics (ICALEO)
, Anaheim, CA.
30.
Ogawa
,
Y.
,
2011
, “
High Speed Imaging Technique. Part 1—High Speed Imaging of Arc Welding Phenomena
,”
Sci. Technol. Weld. Joining
,
16
(
1
), pp.
33
43
.10.1179/136217110X12785889549903
31.
Wen
,
Y. M.
,
Huang
,
S. S.
, and
Liu
,
G. X.
,
2011
, “
Testing and Analysis of High-Speed Camera for Droplet Transition
,”
Adv. Mater. Res.
,
271
, pp.
79
83
.10.4028/www.scientific.net/AMR.271-273.79
32.
Wen
,
Y. M.
,
Huang
,
S. S.
, and
Liu
,
G. X.
,
2012
, “
Testing and Analysis of High-Speed Camera for Pulse MIG/MAG Welding Droplet Transition
,”
Appl. Mech. Mater.
,
103
, pp.
134
137
.10.4028/www.scientific.net/AMM.103.134
33.
Zaal
,
J.
,
Van Driel
,
W.
,
Kessels
,
F.
, and
Zhang
,
G.
,
2009
, “
Correlating Drop Impact Simulations With Drop Impact Testing Using High-Speed Camera Measurements
,”
ASME J. Electron. Packag.
,
131
(
1
), p.
011007
.10.1115/1.3068311
34.
Vision Research Inc.
,
2013
, “
Phantom™ V1610 Digital High-Speed Camera Data Sheet
,” http://www.visionresearch.com/Products/High-Speed-Cameras/v1610/
35.
Kim
,
T. H.
,
Yum
,
J.
,
Hu
,
S. J.
,
Spicer
,
J. P.
, and
Abell
,
J. A.
,
2011
, “
Process Robustness of Single Lap Ultrasonic Welding of Thin, Dissimilar Materials
,”
CIRP Ann. Manuf. Technol.
,
60
(
1
), pp.
17
20
.10.1016/j.cirp.2011.03.016
36.
Yang
,
Y.
,
Ram
,
G. D. J.
, and
Stucker
,
B. E.
,
2010
, “
An Analytical Energy Model for Metal Foil Deposition in Ultrasonic Consolidation
,”
Rapid Prototyping J.
,
16
(
1
), pp.
20
28
.10.1108/13552541011011668
37.
Zhang
,
C.
, and
Li
,
L.
,
2007
, “
Effect of Friction on Ultrasonic Consolidation
,”
ASME
Paper No. MSEC2007-31202, pp.
61
70
.10.1115/MSEC2007-31202
38.
Zhang
,
C.
, and
Li
,
L.
,
2008
, “
A Friction-Based Finite Element Analysis of Ultrasonic Consolidation
,”
Weld. J.
,
87
(
7
), pp.
187
194
.
39.
Zhang
,
C.
,
Zhu
,
X.
, and
Li
,
L.
,
2006
, “
A Study of Friction Behavior in Ultrasonic Welding (Consolidation) of Aluminum
,”
Proceedings of the AWS Conference
, pp.
151
156
.
40.
Gao
,
Y.
, and
Doumanidis
,
C.
,
2002
, “
Mechanical Analysis of Ultrasonic Bonding for Rapid Prototyping
,”
ASME J. Manuf. Sci. Eng.
,
124
(
2
), pp.
426
434
.10.1115/1.1459082
41.
Gibert
,
J. M.
,
McCullough
,
D. T.
,
Fadel
,
G. M.
,
Martin
,
G. K. M.
, and
Austin
,
E. M.
,
2009
, “
Stick-Slip Dynamics in Ultrasonic Consolidation
,”
ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference
,
San Diego, CA
, pp.
307
317
.
42.
Lee
,
S. S.
,
Shao
,
C.
,
Kim
,
T. H.
,
Hu
,
S. J.
,
Kannatey-Asibu
,
E.
,
Cai
,
W. W.
,
Spicer
,
J. P.
, and
Abell
,
J. A.
,
2014
, “
Characterization of Ultrasonic Metal Welding by Correlating Online Sensor Signals With Weld Attributes
,”
ASME J. Manuf. Sci. Eng.
,
136
(
5
), p.
051019
.10.1115/1.4028059
You do not currently have access to this content.