Super-High Strength Mg-7.5Al-0.8Zn Alloy Prepared by Rapidly Solidified Powder Metallurgy and Low Temperature Extrusion

ADVANCED ENGINEERING MATERIALS(2018)

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摘要
In this work, Mg-7.5Al-0.8Zn alloy with super-high tensile strength are fabricated by rapidly solidified powder metallurgy (RS/PM) and low temperature extrusion technology. By reducing extrusion temperature from 340 to 170 degrees C, the alpha-Mg grains are significantly refined and numerous nanoscale beta-Mg17Al12 particles are obtained. The RS/PM alloy extruded at 170 degrees C possesses the lowest grain size of approximate to 550 nm. The nanoscale -phase particles stimulate the nucleation of dynamically recrystallized (DRXed) grains and restrain the growth of DRXed grains. The RS/PM alloy extruded at 170 degrees C exhibits mechanical properties with a tensile yield strength of 448 MPa, an ultimate tensile strength of 480 Mpa, and a microhardness of 137 HV. These excellent mechanical properties result from low temperature extrusion are mainly attributed to the ultra-fine DRXed grains and the high-density dislocations and subgrains.
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关键词
Low Temperature Extrusion,Magnesium Alloys,Mechanical Properties,Rapidly Solidified Powder Metallurgy,Ultra-fine Grains
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