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AM of MAX Phase parts for applications in extreme environments (2022-2025)

Abstract

This project aims to develop techniques to synthesize MAX Phase compound materials in-situ using laser additive manufacturing. The project expects to increase jet engine fuel efficiency and thrust, and to fabricate longer-lasting parts for supersonic speed applications. The expected outcomes include well-developed additive manufacturing processes to make high performance engineering components with shape complexity for extreme environment applications, and new methods to increase the 3D printability of brittle materials. This should provide significant benefits to aerospace and defense industries through solving their long standing bottleneck material and processing problems. The outcomes also enhance Australia¿s manufacturing capacity.

Experts

Professor Mingxing Zhang

Affiliate of Centre for Advanced Ma
Centre for Advanced Materials Processing and Manufacturing
Faculty of Engineering, Architecture and Information Technology
Professor
School of Mechanical and Mining Engineering
Faculty of Engineering, Architecture and Information Technology
Mingxing Zhang
Mingxing Zhang

Dr Qiyang Tan

Affiliate of Centre for Advanced Ma
Centre for Advanced Materials Processing and Manufacturing
Faculty of Engineering, Architecture and Information Technology
Research Fellow
School of Mechanical and Mining Engineering
Faculty of Engineering, Architecture and Information Technology
Qiyang Tan
Qiyang Tan