Title of article :
Formation, thermal and mechanical properties of bulk glassy alloys in Zr–Al–Co and Zr–Al–Co–Cu systems
Author/Authors :
Zhang، نويسنده , , Tao and Inoue، نويسنده , , Akihisa، نويسنده ,
Abstract :
New Zr-based bulk glassy alloys in Zr–Al–Co and Zr–Al–Co–Cu systems were developed. The largest supercooled liquid region is upto 64 K for the Zr55Al20Co25 alloy and 80 K for the Zr55Al20Co20Cu5 alloy, respectively. Glassy rods with a diameter of 3 mm for the Zr55Al20Co25 alloy and 5 mm for the Zr55Al20Co20Cu5 alloy can be prepared by copper-mold casting. Glassy Zr55Al20Co20Cu5 sheet with a thickness of 2 mm was also formed by squeeze copper-mold casting. The bulk glassy Zr55Al20Co20Cu5 alloy exhibits Young’s modulus of 92 GPa, elastic limit of 2.1%, tensile strength of 1960 MPa, compressive fracture strength of 2200 MPa, and compressive plastic strain of 0.6%. The tensile strength value is considerably higher than those for the other Zr-based bulk glassy alloys reported upto date. The synthesis of the new Zr-based bulk glassy alloys with high glass-forming ability and high tensile strength approaching 2000 MPa is expected to result in a future extension of application fields as a high strength material.
Keywords :
Bulk glassy alloy , Zr–Al–Co system , Supercooled , Liquid region , Casting , High strength
Journal title :
Astroparticle Physics