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February 28, 2026Powder Metallurgy0 citations

Effect of hot isostatic pressing and post-processing thermal treatments on the mechanical properties of C-18150 copper alloy fabricated by laser powder bed fusion

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LELorena EmanuelliMPM. PellizzariCBChad Beamer

Key Points

  • This work aims to examine how post-processing thermal treatments affect the tensile properties of C-18150 copper alloy made by laser powder bed fusion.
  • Compared reference as-built and aged samples with post-processed samples.
  • Used solution annealing and hot isostatic pressing at specified temperatures and pressures.
  • Analyzed microstructural evolution and defects like porosity in correlation with treatments.
  • Post-processing significantly altered the tensile properties of the alloy.
  • Hot isostatic pressing and solution annealing improved strength and ductility compared to as-built samples.
  • Different thermal treatment methods resulted in varied microstructural changes affecting performance.

Abstract

C-18150 is a precipitation hardening copper alloy that has increasingly gained interest in additive manufacturing (AM) for applications in space, aerospace, electronics and automotive due to its excellent combination of electrical and thermal conductivity, thermal softening resistance at elevated temperatures, moderate strength, and high ductility. In this work, the effect of post-processing thermal treatments on the tensile properties of C-18150, fabricated by laser powder-bed-fusion (L-PBF), using high productivity printing parameters, was investigated. For this purpose, the reference as built and aged (480°C, 5 h) samples were compared with those of post-processed, prior to final ageing, under different conditions: (i) solution annealing (980 °C, 3 h), (ii) hot isostatic pressing (HIP) (950 °C, 150 MPa), followed by solution annealing, and (iii) HIP (980 °C, 150 MPa) followed by uniform rapid quenching aimed at eliminating the solution annealing step. Tensile behaviour was discussed in view of microstructural evolution and defects (e.g. porosity) in relation to the post-processing thermal treatments.

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Cite This Study

Emanuelli et al. (2026) studied this question.

synapsesocial.com/papers/69a288060a974eb0d3c03ecdhttps://doi.org/10.1177/00325899261425372
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