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Exploring the Elemental Interactions of Melamine with Binder–Metal Powder Mixtures: A Pathway to Enhanced Catalytic Debinding and Rheological Control

Instituto de Investigaciones Energéticas y Aplicaciones Industriales (INEI)—Escuela Técnica Superior de Ingeniería Industrial de Ciudad Real (ETSII), Universidad Castilla-La Mancha, Avda Camilo José Cela s/n., 13071 Ciudad Real, Spain
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Appl. Sci. 2024, 14(16), 7053; https://doi.org/10.3390/app14167053
Submission received: 15 June 2024 / Revised: 25 July 2024 / Accepted: 8 August 2024 / Published: 12 August 2024

Abstract

In advanced powder metallurgy technologies such as metal injection molding (MIM) and material extrusion technology (MEX), the intricate synergy between binder components and metallic powders within feedstocks is predominant, dictating the technological boundaries of metal’s complexity, size, and thickness. This work suggests unique binder constituents (polymers, surfactants and melamine), aiming to boost the debinding efficacy and solid loading while ensuring processability. The interactions and role of melamine by thermal and rheological studies are detailed, spotlighting how, unlike traditional binder systems, the pioneering feedstock introduces beneficial modifications to storage modulus (G′) and loss tangent (tan δ), alongside a lubricating effect on metallic mixtures. This study highlights the potential of melamine to facilitate a more efficient debinding process, with superior formaldehyde management and environmental control. Through this material-centric lens, we offer new pathways to navigate the complexities of MIM and MEX, advancing towards technological enhancement and environmental protection.
Keywords: processing; metal injection molding; additive manufacturing; binder design; rheology; thermal properties processing; metal injection molding; additive manufacturing; binder design; rheology; thermal properties

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MDPI and ACS Style

Berges, C.; Hidalgo, J.; Herranz, G. Exploring the Elemental Interactions of Melamine with Binder–Metal Powder Mixtures: A Pathway to Enhanced Catalytic Debinding and Rheological Control. Appl. Sci. 2024, 14, 7053. https://doi.org/10.3390/app14167053

AMA Style

Berges C, Hidalgo J, Herranz G. Exploring the Elemental Interactions of Melamine with Binder–Metal Powder Mixtures: A Pathway to Enhanced Catalytic Debinding and Rheological Control. Applied Sciences. 2024; 14(16):7053. https://doi.org/10.3390/app14167053

Chicago/Turabian Style

Berges, Cristina, Javier Hidalgo, and Gemma Herranz. 2024. "Exploring the Elemental Interactions of Melamine with Binder–Metal Powder Mixtures: A Pathway to Enhanced Catalytic Debinding and Rheological Control" Applied Sciences 14, no. 16: 7053. https://doi.org/10.3390/app14167053

APA Style

Berges, C., Hidalgo, J., & Herranz, G. (2024). Exploring the Elemental Interactions of Melamine with Binder–Metal Powder Mixtures: A Pathway to Enhanced Catalytic Debinding and Rheological Control. Applied Sciences, 14(16), 7053. https://doi.org/10.3390/app14167053

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