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◆ Materials (Basel, Switzerland)2026-09-11

Effect of Heat Input on Microstructure Evolution and High-Cycle Fatigue Behavior of Ti-6Al-4V Fabricated by Wire-Laser Directed Energy Deposition.

Zhe Wang, Xi Chen, Meng Jiang, Zhijian Lu, Yuan Chen, Xuan Su, Qingfeng Yang, Dequan Yang, Peng He, Yanbin Chen

原始摘要(英文原文)· Original abstract
This work examines the response of Ti-6Al-4V fabricated by wire-laser directed energy deposition (DED) to heat inputs between 175 and 350 J/mm. Microstructure, tensile behavior, and rotating-bending fatigue were evaluated. As input increased, the transverse size of columnar prior β grains rose from about 642 to 1079 μm and the mean α-lath width increased from 0.65 to 1.32 μm. The α structure consequently changed from a fine acicular/basketweave form to a coarser lamellar form with clearer colonies. Tensile and yield strengths stayed near 900 and 840 MPa, whereas elongation fell from 14.3% to 10.3%. After a 600 °C, 4 h stress relief, fully reversed fatigue tests were performed at 500 MPa (R = -1). Specimens with 175 J/mm heat input reached about 3 × 107 cycles, while one with 350 J/mm fractured at roughly 1 × 105 cycles. The longer life of H175 coincided with its finer interwoven α structure, closer striations, more secondary cracks, and a more tortuous crack route.
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Effect of Heat Input on Microstructure Evolution and High-Cycle Fatigue Behavior of Ti-6Al-4V Fabricated by Wire-Laser Directed Energy Deposition. — 科研速览 Science Skim