EngineeringMaterials ScienceMedicine

A. Mondal, D. Agrawal, A. Upadhyaya

2010.1.1JOURNAL OF MICROWAVE POWER AND ELECTROMAGNETIC ENERGY

DOI: 10.1080/08327823.2010.11689768

tlooto Summary

This review article describes recent research findings about how these refractory metals and alloys have been successfully consolidated using microwave sintering, which resulted in an overall reduction of sintered time of up to 80% and better mechanical properties have been observed.

Abstract

Abstract Refractory metals and alloys are well known for their high mechanical properties which make them useful for wide range of high temperature applications. However, owing to the refractoriness of these metals and alloys, it is very difficult to consolidate them under moderate conditions. Conventional P/M processing is a viable sintering technique for these refractory metals. One of the constraints in conventional sintering is long residence time which results in undesirable microstructural coarsening. This problem gets further aggravated when using smaller (submicron and nano) precursor powder sizes. Furthermore, conventional heating is mostly radiative, which leads to non-uniform heating in large components. This review article describes recent research findings about how these refractory metals and alloys (W, Mo, Re, W-Cu, W-Ni-Cu and W-Ni-Fe) have been successfully consolidated using microwave sintering. A comparative study with conventional data has been made. In most cases, microwave sintering resulted in an overall reduction of sintering time of up to 80%. This sintering time reduction prevents grain growth substantially providing finer microstructure and as a result better mechanical properties have been observed.

Citation format

MONDAL, A.; AGRAWAL, D.; UPADHYAYA, A. Microwave sintering of refractory metals/alloys: W, mo, re, w-cu, w-ni-cu and w-ni-fe alloys. JOURNAL OF MICROWAVE POWER AND ELECTROMAGNETIC ENERGY, 2010, 44: 28–44.