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4D printing meets electrochemistry: Programmable dampers for vibration-resilient lithium-ion batteries

delete2026-05-04
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OA
AI
U
Umar Shafique Awan
M
Moslem Mohammadi
H
Hesam Soleimanzadeh
M
Mojtaba Eftekharnia
B
Bernard Rolfe
A
Ali Zolfagharian *
DOI:10.1016/j.apmt.2026.103250delete
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Abstract

Abstract

En 中文
• Developing a novel processing approach of shape memory materials for programmed vibration attenuation of batteries. • Inversely design and rotary 3D printing of programmable vibration isolation cylindrical architectures. • Presenting a programmable 4D-printed framework for vibration-resilient energy storage • Integrated mechanical–electrochemical validation of 4D-printed damper on lithium-ion cell performance.
Keywords:
4D printing
Vibration
Nonplanar printing
Electrical vehicles
Lithium-ion battery
Electric vehicles
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Applied Materials Today cover
Applied Materials Today
IF:
6.9
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3.2K
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Deakin University
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Papers: 2.0W
Citations: 2.8W
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