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Contrasting a BYD Blade prismatic cell and Tesla 4680 cylindrical cell with a teardown analysis of design and performance

作者:Jonas Gorsch, Julius Schneiders, Moritz Frieges, Niklas Kisseler, Domenic Klohs, Heiner Hans Heimes, Achim Kampker, Marina Muñoz Castro, Eleonore Siebecke · 发表于:Cell Reports Physical Science · 年份:2025 · DOI:10.1016/j.xcrp.2025.102453 · 被引用次数:55 · 研究领域:Advanced Battery Technologies Research、Advancements in Battery Materials、Electric Vehicles and Infrastructure

In order to provide design guidance for the development of next-generation batteries, this article presents a teardown analysis of two commercial lithium-ion batteries: the Tesla 4680 cell and the BYD Blade cell. Insights into these cells' electrical, mechanical, material, and process designs are provided. The BYD Blade cell displays half the energy losses per volume of the Tesla 4680 cell at the same C-rate. The Tesla 4680 cell utilizes laser welding, and the BYD Blade cell utilizes laser and ultrasonic welding as electrode contacting technologies. Lithium iron phosphate (LFP; BYD Blade cell) and NMC811 (Tesla 4680 cell) are confirmed as electrode materials resulting in energy densities of 160 Wh/kg and 355.26 Wh/l and 241.01 Wh/kg and 643.3 Wh/l, respectively, on the cell level. Both cells utilize graphite anodes without silicon dioxide. Polyacrylic acid (PAA) and polyethylene oxide (PEO) are detected as binders on the anode side for the Tesla 4680 cell. A manufacturing sequence is proposed for both cells.