Intermetallic TiAl alloys with a significant volume fraction of the body-centered cubic β-phase at elevated temperatures have proven to exhibit good processing characteristics during hot-working. Being a strong β stabilizer, Mo has gained importance as an alloying element for so-called β/γ-TiAl alloys. Unfortunately, the effect of Mo on the appearing phases and their temperature dependence is not well known. In this work, two sections of the Ti-Al-Mo ternary phase diagram derived from experimental data are shown. These diagrams are compared with the results of in-situ high-temperature diffraction experiments using high-energy synchrotron radiation
A microstructural and X-ray investigation of Ti-AI-Mo alloys Ti-31 Al-15 Mo, Ti-31 Al-13 Mo, Ti-31Al...
A microstructural and X-ray investigation of Ti-AI-Mo alloys Ti-31 Al-15 Mo, Ti-31 Al-13 Mo, Ti-31Al...
Challenging issues concerning energy efficiency and environmental politics require novel approaches ...
Being a strong beta stabilizer, Mo has gained importance as an alloying element for so-called beta/g...
Neutron diffraction has been used for in-situ investigations to elucidate the phase transformation b...
Neutron diffraction has been used for in-situ. investigations to elucidate the phase transformation ...
Intermetallic γ-TiAl based alloys of the TNM™ alloy family attain their excellent processing charact...
Molybdenum is an excellent candidate to study the effect of β-stabilizing elements on the phase tran...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
Alloying of a binary system with an additional element often leads to the formation of new phases. I...
Alloying of a binary system with an additional element often leads to the formation of new phases. I...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
Abstract Intermetallic γ-TiAl based alloys are a novel class of lightweight structural materials tha...
A microstructural and X-ray investigation of Ti-AI-Mo alloys Ti-31 Al-15 Mo, Ti-31 Al-13 Mo, Ti-31Al...
A microstructural and X-ray investigation of Ti-AI-Mo alloys Ti-31 Al-15 Mo, Ti-31 Al-13 Mo, Ti-31Al...
Challenging issues concerning energy efficiency and environmental politics require novel approaches ...
Being a strong beta stabilizer, Mo has gained importance as an alloying element for so-called beta/g...
Neutron diffraction has been used for in-situ investigations to elucidate the phase transformation b...
Neutron diffraction has been used for in-situ. investigations to elucidate the phase transformation ...
Intermetallic γ-TiAl based alloys of the TNM™ alloy family attain their excellent processing charact...
Molybdenum is an excellent candidate to study the effect of β-stabilizing elements on the phase tran...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
Alloying of a binary system with an additional element often leads to the formation of new phases. I...
Alloying of a binary system with an additional element often leads to the formation of new phases. I...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
Abstract Intermetallic γ-TiAl based alloys are a novel class of lightweight structural materials tha...
A microstructural and X-ray investigation of Ti-AI-Mo alloys Ti-31 Al-15 Mo, Ti-31 Al-13 Mo, Ti-31Al...
A microstructural and X-ray investigation of Ti-AI-Mo alloys Ti-31 Al-15 Mo, Ti-31 Al-13 Mo, Ti-31Al...
Challenging issues concerning energy efficiency and environmental politics require novel approaches ...