Microwave (MW) radiation has attracted increasing attention in the fabrication and/or synthesis of titanium (Ti) and Ti alloys from powder since 1999 when the first study was reported by Gedevanishvili et al. This article provides a comprehensive review of MW processing of Ti and Ti alloys. It begins by discussing the critical technical issues associated with MW processing of Ti powder, including the heating response of Ti powder to MW radiation, temperature measurement by infrared pyrometry and calibration, and interstitial absorption and control. This is followed by a detailed review of the sintering of a range of powder metallurgy (PM) Ti and Ti alloys for structural, biomedical, and shape memory applications. As a new development in the...
12th Asia-Pacific Conference on Engineering Plasticity and Its Application, AEPA 2014, Kaohsiung, 1-...
In this study, synchrotron radiation computed tomography was applied to investigate the mechanisms o...
Graduation date: 1988The influence of microwave radiation on the fabrication\ud of cermet materials ...
Microwave (MW) radiation has attracted increasing attention in the fabrication and/or synthesis of t...
This article presents a detailed assessment of microwave (MW) heating, isothermal sintering, and the...
The effectiveness of microwave (MW) sintering has been demonstrated on many ceramic systems, a numbe...
Microwave sintering of titanium and titanium alloy is a recent development in powder metallurgy of t...
Titanium (Ti) has many attractive attributes for military, industrial, and aerospace applications in...
We report that pure microwave (MW) radiation, without the assistance of MW susceptors, can rapidly h...
Powder metallurgy (PM) of titanium hydride (TiH2) has emerged as an attractive alternative to PM of ...
Titanium is a paramagnetic metal which couples weakly with microwaves. This work reports our experim...
Titanium is one of the most sensitive materials to be thermally treated requiring a high purity argo...
Effective sintering of titanium requires the use of a high sintering temperature (>= 1200 degrees...
Microwave sintering (MWS) was used to consolidate hydride de-hydride Ti powder and blended elemental...
PolyU Library Call No.: [THS] LG51 .H577P ISE 2017 Choyxxii, 199 pages :color illustrationsMaterials...
12th Asia-Pacific Conference on Engineering Plasticity and Its Application, AEPA 2014, Kaohsiung, 1-...
In this study, synchrotron radiation computed tomography was applied to investigate the mechanisms o...
Graduation date: 1988The influence of microwave radiation on the fabrication\ud of cermet materials ...
Microwave (MW) radiation has attracted increasing attention in the fabrication and/or synthesis of t...
This article presents a detailed assessment of microwave (MW) heating, isothermal sintering, and the...
The effectiveness of microwave (MW) sintering has been demonstrated on many ceramic systems, a numbe...
Microwave sintering of titanium and titanium alloy is a recent development in powder metallurgy of t...
Titanium (Ti) has many attractive attributes for military, industrial, and aerospace applications in...
We report that pure microwave (MW) radiation, without the assistance of MW susceptors, can rapidly h...
Powder metallurgy (PM) of titanium hydride (TiH2) has emerged as an attractive alternative to PM of ...
Titanium is a paramagnetic metal which couples weakly with microwaves. This work reports our experim...
Titanium is one of the most sensitive materials to be thermally treated requiring a high purity argo...
Effective sintering of titanium requires the use of a high sintering temperature (>= 1200 degrees...
Microwave sintering (MWS) was used to consolidate hydride de-hydride Ti powder and blended elemental...
PolyU Library Call No.: [THS] LG51 .H577P ISE 2017 Choyxxii, 199 pages :color illustrationsMaterials...
12th Asia-Pacific Conference on Engineering Plasticity and Its Application, AEPA 2014, Kaohsiung, 1-...
In this study, synchrotron radiation computed tomography was applied to investigate the mechanisms o...
Graduation date: 1988The influence of microwave radiation on the fabrication\ud of cermet materials ...