Investigation of ultra-smooth and uniform planarization of thin copper foils using magnetorheological polishing

With the increasing demand for miniaturized and high-frequency electronic devices, improvingthe surface quality of copper foils has become critical. However, achieving ultra-smooth anduniform planarization of thin copper foils remains challenging due to their low rigidity andclamping-induced deformation. Herein, a flexible magnetorheological polishing (MRP) methodwas developed for thin copper foils (<0.1 mm). Compared with chemical mechanical polishingMRP effectively compensates for local surface deformation, enabling uniform material removaland reducing fixture accuracy requirements. After optimizing slurry components, an ultra-smooth surface with Ra of 1.95 nm and Rz of 84.92 nm was achieved without obviousscratches or defects.

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Publication Details

Journal
Materials Science and Technology
Published
2026-09-25
DOI
https://doi.org/10.1177/02670836261492528
Primary Topic
Advanced Surface Polishing Techniques
Type
article
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Investigation of ultra-smooth and uniform planarization of thin copper foils using magnetorheological polishing

Zhijun Chen, Pan Jisheng, Liao Yanling, Gao Pu et al.
Materials Science and Technology
Advanced Surface Polishing Techniques
article

Investigation of ultra-smooth and uniform planarization of thin copper foils using magnetorheological polishing

Zhijun Chen, Pan Jisheng, Liao Yanling, Gao Pu, Xu Linlin, Zhu Yuting
article en

Abstract

With the increasing demand for miniaturized and high-frequency electronic devices, improvingthe surface quality of copper foils has become critical. However, achieving ultra-smooth anduniform planarization of thin copper foils remains challenging due to their low rigidity andclamping-induced deformation. Herein, a flexible magnetorheological polishing (MRP) methodwas developed for thin copper foils (<0.1 mm). Compared with chemical mechanical polishingMRP effectively compensates for local surface deformation, enabling uniform material removaland reducing fixture accuracy requirements. After optimizing slurry components, an ultra-smooth surface with Ra of 1.95 nm and Rz of 84.92 nm was achieved without obviousscratches or defects.

Materials Science and Technology
Guangdong University of Technology (CN), Dalian University of Technology (CN)
Openalex Percentile: Top 21%
Advanced Surface Polishing Techniques
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Investigation of ultra-smooth and uniform planarization of thin copper foils using magnetorheological polishing — Zhijun Chen, Pan Jisheng, et al. · Materials Science and Technology (2026) | TGRS Research Map | TGRS