2007Metal Hotworking TechnologyRequires access

Effect of Alloy Elements on Microstructure and Mechanical Properties of ZL107

LI Qi-you

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Abstract

The effect of Ti,B,Cd,Mg,Zn and Ag on the microstructure and mechanical properties of ZL107 has been investigated to enhance the mechanical property of ZL107 alloy.It was found that the fine grain microstructure can be obtained in the alloy by adding Ti and B;Cd,Mg and Zn can improve the tensile strength and hardness of the alloy;and Ag can markedly improve the ductility.The mechanical properties of ZL107 could be further increased by these alloy elements and proper heat treatment.The better match of strength and plasticity have been gained by the combination of 510℃ solute treatment and 150℃ aging treatment.

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What this paper is about

The effect of Ti,B,Cd,Mg,Zn and Ag on the microstructure and mechanical properties of ZL107 has been investigated to enhance the mechanical property of ZL107 alloy.It was found that the fine grain microstructure can be obtained in the alloy by adding Ti and B;Cd,Mg and Zn can improve the tensile strength and hardness of the alloy;and Ag can markedly improve the ductility.The mechanical properties of ZL107 could be further increased by these alloy elements and proper heat treatment.The better match of strength and plasticity have been gained by the combination of 510℃ solute treatment and 150℃ aging treatment.

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Available abstract

The effect of Ti,B,Cd,Mg,Zn and Ag on the microstructure and mechanical properties of ZL107 has been investigated to enhance the mechanical property of ZL107 alloy.It was found that the fine grain microstructure can be obtained in the alloy by adding Ti and B;Cd,Mg and Zn can improve the tensile strength and hardness of the alloy;and Ag can markedly improve the ductility.The mechanical properties of ZL107 could be further increased by these alloy elements and proper heat treatment.The better match of strength and plasticity have been gained by the combination of 510℃ solute treatment and 150℃ aging treatment.

Key concepts: Microstructure, Alloy, Materials science, Ductility (Earth science), Ultimate tensile strength, Metallurgy, Plasticity, Grain size

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