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◆ Journal of Materials Research and Technology2025-10-25· Materials science

A snapshot of high-entropy alloy processing techniques and their effects on resulting mechanical properties

Christopher W. Mathews, Ishtiaque Robin, Spencer Doran, Osman El‐Atwani, Matheus A. Tunes, Saryu Fensin

原始摘要(英文原文)· Original abstract
High-entropy alloys (HEAs) exhibit exceptional strength, corrosion resistance, and thermal stability, making them promising candidates for nuclear, aerospace, and other extreme applications. While most prior work has focused on compositional design, manufacturing techniques themselves can alter microstructure and mechanical properties as dramatically as alloy chemistry. This review compiles and compares the effects of processing routes—including arc melting, induction melting, mechanical alloying with spark plasma sintering, and additive manufacturing—on the structure and properties of HEAs. Quantitative comparisons highlight, for example, that SPS-processed alloys can achieve ∼20–45 % higher yield and tensile strength than arc-melted counterparts, while Bridgman solidification produces nearly single-crystal structures with elongation to failure exceeding 80 %. Additive manufacturing routes such as selective laser melting offer fine microstructures but also introduce anisotropy and porosity, leading to yield strengths spanning 100–600 MPa for the same composition. By synthesizing such results, this review provides actionable insight into how processing routes interact with HEA core effects (high entropy, lattice distortion, sluggish diffusion, and cocktail effect) to determine performance, thereby offering a practical guide for optimizing manufacturing strategies.
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A snapshot of high-entropy alloy processing techniques and their effects on resulting mechanical properties — 科研速览 Science Skim