Cold sprayed Cu/Invar alloy composite
Artikel i vetenskaplig tidskrift, 2025

Cold spray, an additive manufacturing technique based on plastic deformation of particles, was employed to prepare Cu/Invar alloy composites to avoid issues from other preparation methods, like undesirable thermal expansion anisotropy from the extrusion method and the excessive inter-diffusion between Cu and the Invar alloy from the sintering method. For the target Cux(Fe64Ni36)100-x(x = 30–70, wt%) composites prepared by cold spray, the improved thermal expansion anisotropy was reflected by the negligible difference between the thermal expansion coefficient α along and perpendicular to the spray direction, and simultaneously no obvious inter-diffusion was observed between Cu and the Invar alloy Fe64Ni36 after annealing at 500 °C. Both α and the thermal conductivity λ increased slightly due to the release of internal stress and recrystallization of Cu. α of the annealed composites basically agreed with the theoretical predication, but λ was far below the values predicted by the Hasselman–Johnson model, mostly because the Invar alloy had an extraordinarily large surface area caused by impact deformation. Even so, the cold-sprayed Cu/Invar alloy composites had clearly advantageous comprehensive performance than those prepared by the traditional sintering and melting methods. Among Cu/Invar alloy composites prepared by different methods, the annealed Cu50(Fe64Ni36)50 was the only composite having λ larger than 100 W/m∙K and isotropic α smaller than 10 × 10−6/oC. In addition, the cold-sprayed Cu/Invar alloy composites had a good plasticity (after annealing) that is rarely seen in traditional Cu-based composites with high thermal conductivity, presenting a good application potential for electronic packaging materials.

Cold spray

Invar alloy

Thermal expansion coefficient

Thermal conductivity

Electronic packaging materials

Författare

D. L. Ouyang

Nanchang Hangkong University

Z. R. Wang

Nanchang Hangkong University

Jiangxi Academy of Sciences

T. Yang

Nanchang Hangkong University

Jiangxi Academy of Sciences

L. W. Zhang

Jiangxi Academy of Sciences

D. Wu

Jiangxi Academy of Sciences

W. F. Chen

Jiangxi Academy of Sciences

Q. Hu

Jiangxi Academy of Sciences

Sheng Guo

Chalmers, Industri- och materialvetenskap, Material och tillverkning

Journal of Materials Research and Technology

22387854 (ISSN) 22140697 (eISSN)

Vol. 34 2673-2683

Ämneskategorier (SSIF 2011)

Bearbetnings-, yt- och fogningsteknik

Metallurgi och metalliska material

DOI

10.1016/j.jmrt.2024.12.270

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Senast uppdaterat

2025-01-13