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Effect of Mg-Zn-Nd spherical quasi-crystals on microstructure and mechanical properties of ZK60 alloy

机译:Mg-Zn-Nd球形准晶体对ZK60合金组织和力学性能的影响

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摘要

To improve the strength, toughness, heat-resistance and deformability of magnesium alloy, the microstructure and mechanical properties of ZK60 alloy strengthened by Mg-Zn-Nd spherical quasi-crystal phase (I-phase) particles were investigated. Mg40Zn55Nd5 (I-phase) particles in addition to α-Mg, MgZn phase and MgZn2 phases can be obtained in ZK60-based composites under normal casting condition by the addition of quasi-crystal containing Mg-Zn-Nd master alloy. The experimental results show that the introduction of Mg-Zn-Nd spherical quasi-crystal phase into ZK60 alloy makes a great contribution to the refinement of the matrix microstructures and the improvement of mechanical properties. While adding Mg-Zn-Nd spherical quasi-crystal master alloy of 4.0wt.%, the ultimate tensile strength and yield strength of ZK60-based composite at ambient temperature reach their peak values of 256.7 MPa and 150.4 MPa, which were about 17.8% and 24.1% higher respectively than those of the ZK60 alloy. The improved mechanical properties are mainly attributed to the pinning effect of the quasi-crystal particles (I-phase) at the grain boundaries. This research results provide a new way for strengthening and toughening of magnesium alloys as well as a new application of Mg-based spherical quasi-crystals.
机译:为了提高镁合金的强度,韧性,耐热性和变形性,研究了由Mg-Zn-Nd球状准晶相(I相)增强的ZK60合金的组织和力学性能。在正常铸造条件下,通过添加含准晶体的Mg-Zn-Nd中间合金,可以在ZK60基复合材料中获得除α-Mg,MgZn相和MgZn2相以外的Mg40Zn55Nd5(I相)颗粒。实验结果表明,将Mg-Zn-Nd球形准晶相引入ZK60合金中,对基体组织的细化和力学性能的提高有很大的贡献。当添加4.0wt。%的Mg-Zn-Nd球形准晶体中间合金时,ZK60基复合材料在环境温度下的极限抗拉强度和屈服强度达到其峰值256.7 MPa和150.4 MPa,约为17.8%。比ZK60合金高24.1%。改善的机械性能主要归因于准晶颗粒(I相)在晶界处的钉扎效应。该研究结果为镁合金的强化和增韧提供了新途径,也为镁基球形准晶体的新应用提供了可能。

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