
Titanium Aluminides (TiAl) are a class of lightweight intermetallic compounds that combine low density with outstanding high-temperature performance, making them ideal for aerospace and automotive applications. Developed via MBN’s proprietary Mechanomade® process, these powders feature precise composition control, tailored microstructures, and reproducibility across different particle size ranges (e.g. 45–106 µm, 45–130 µm). With microstructures engineered as equiaxed, lamellar, or duplex, TiAl alloys offer tunable properties for advanced consolidation techniques including Hot Isostatic Pressing (HIP), additive manufacturing, and Spark Plasma Sintering (SPS). Their unique balance of mechanical strength, oxidation resistance, and creep stability up to 800 °C makes them a lightweight alternative to Ni-based superalloys. PROPERTIES: Hardness 470 HV Young Modulus (RT) 170 GPa Yield Strenght Rp 0.2 (RT)835 MPa Yield Strenght Rp 0.2 (800°C) 835 MPa Max service temperature (Oxidation resistance) 800 °C Titanium Aluminides (TiAl) are a class of lightweight intermetallic compounds that combine low density with outstanding high-temperature performance, making them ideal for aerospace and automotive applications. Developed via MBN’s proprietary Mechanomade® process, these powders feature precise composition control, tailored microstructures, and reproducibility across different particle size ranges (e.g. 45–106 µm, 45–130 µm). With microstructures engineered as equiaxed, lamellar, or duplex, TiAl alloys offer tunable properties for advanced consolidation techniques including Hot Isostatic Pressing (HIP), additive manufacturing, and Spark Plasma Sintering (SPS). Their unique balance of mechanical strength, oxidation resistance, and creep stability up to 800 °C makes them a lightweight alternative to Ni-based superalloys. PROPERTIES: Hardness 470 HV Young Modulus (RT) 170 GPa Yield Strenght Rp 0.2 (RT)835 MPa Yield Strenght Rp 0.2 (800°C) 835 MPa Max service temperature (Oxidation resistance) 800 °C Read more