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Overcoming challenges: advancements in cutting techniques for high strength-toughness alloys in aero-engines

韧性 材料科学 航空发动机 冶金 机械工程 复合材料 法律工程学 工程类
作者
Biao Zhao,Yufeng Wang,Jianhao Peng,Xin Wang,Wenfeng Ding,Xiaofei Lei,Bangfu Wu,Minxiu Zhang,Jiuhua Xu,Liangchi Zhang,Raj Das
出处
期刊:International journal of extreme manufacturing [IOP Publishing]
被引量:6
标识
DOI:10.1088/2631-7990/ad8117
摘要

Abstract Aero-engines, the core of air travel, rely on advanced high strength-toughness alloys (THSAs) such as titanium alloys, nickel-based superalloys, intermetallics, and ultra-high strength steel. The precision of cutting techniques is crucial for the manufacture of key components including blades, discs, shafts, and gears. However, machining THSAs poses significant challenges, including high cutting forces and temperatures, which lead to rapid tool wear, reduced efficiency, and compromised surface integrity. This review thoroughly explores the current landscape and future directions of cutting techniques for THSAs in aero-engines. It examines the principles, mechanisms, and benefits of energy-assisted cutting technologies like laser-assisted machining and cryogenic cooling. The review assesses various tool preparation methods, their effects on tool performance, and strategies for precise shape and surface integrity control. It also outlines intelligent monitoring technologies for machining process status, covering aspects such as tool wear, surface roughness, and chatter, contributing to intelligent manufacturing. Additionally, it highlights emerging trends and potential future developments, including multi-energy assisted cutting mechanisms, advanced cutting tools, and collaborative control of structure shape and surface integrity, alongside intelligent monitoring software and hardware. This review serves as a reference for achieving efficient and high-quality manufacturing of THSAs in aero-engines.
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