超声振动对Mg-6Zn-1.4Y合金组织和性能的影响
Effects of Ultrasonic Vibration on Microstructure and Mechanical Properties of Mg-6Zn-1.4Y Alloy
如果能细化Mg-Zn-Y合金组织中初生α-Mg相和稳定的二十面体准晶I相,那么该合金将具有广阔的应用前景。本文主要研究了超声振动对流变挤压成形Mg-6Zn-1.4Y合金的组织和性能的影响。试验中分别对合金熔体施加0~9 W/mL不同功率密度的超声振动制备半固态浆料,并将所得的半固态浆料进行挤压铸造成形。结果表明,在超声功率密度为6W/mL时可以制备出具有细小圆整初生α-Mg晶粒的半固态浆料,其晶粒大小和形状系数分别为32μm和0.76。此外,超声振动使得原本粗大的共晶I相(Mg3Zn6Y)得到了明显细化且使其在基体中均匀分布。施加6W/mL功率密度的超声振动流变挤压成形试样与未施加超声振动的试样相比,抗拉强度和伸长率分别提高了10.6%和55.5%。
Mg-Zn-Y alloys containing a thermally stable icosahedral quasicrystal phase (I-phase) will have wide application future on condition that primary α-Mg dendrite and the I-phase can be refined during the casting process. In this research, the effects of ultrasonic vibration (USV) on the microstructure and mechanical properties of the rheo-squeeze casting (RSC) Mg-6Zn-1.4Y alloys have been investigated. The Mg alloy melt was exposed to ultrasonic vibration (USV) with different acoustic power densities from 0 W/mL to 9 W/mL, and then the slurry was formed by squeeze casting. The results show that good semi-solid slurry with fine and spherical α-Mg particles could be obtained with the acoustic power density of 6 W/mL, and the average grain size and shape factor of primary α-Mg were 32 μm and 0.76, respectively. Meanwhile the coarse eutectic I-phase (Mg3Zn6Y) was refined obviously and dispersed uniformly. Compared with the samples without USV, the tensile strength and elongation of the RSC casting samples with 6 W/mL acoustic power density were elevated by 10.6% and 55.5%, respectively.
赵立、吕书林、方晓刚、吴树森、王静
材料科学金属压力加工冶金技术
金属材料Mg-Zn-Y合金超声振动流变挤压成形准晶
Metal materialsMg-Zn-Y alloyultrasonic vibrationrheo-squeeze castingquasicrystal phase
赵立,吕书林,方晓刚,吴树森,王静.超声振动对Mg-6Zn-1.4Y合金组织和性能的影响[EB/OL].(2016-05-13)[2025-08-03].http://www.paper.edu.cn/releasepaper/content/201605-310.点此复制
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