采用普通凝固和快速凝固技术制备Mg-5Zn-1Y-0.6Zr合金,用XRD,SEM,显微硬度测量等分析方法研究其凝固组织和性能特征.结果表明,普通凝固合金由α-Mg固溶体和在晶界处呈不连续网状分布的三元相I-(Mg3Zn6Y)准晶相和W-(Mg3Zn3Y2)相组成.快速凝固合金晶粒细化并产生非晶相,晶间化合物全部转化为准晶I相.非晶相的出现及显微组织细化是造成快速凝固合金条带显微硬度提高的主要原因.快速凝固合金条带的显微硬度随冷速提高显著增大,最大值HV167.23是普通凝固合金的2.2倍.
参考文献
[1] | 朱世杰,杨卿,白小波,王利国,关绍康.亚快速凝固Mg7Zn3Y(-Zr)合金的组织演化及凝固动力学[J].稀有金属材料与工程,2008(07):1157-1162. |
[2] | D.H. Bae;Y. Kim;I.J. Kim .Thermally stable quasicrystalline phase in a superplastic Mg-Zn-Y-Zr alloy[J].Materials Letters,2006(17/18):2190-2193. |
[3] | ZHAO Dong-shan;TANG Ya-li;LUO Zhi-ping .The face-centered icosahedral quasicrystalline phase in Mg-Zn-Y-Zr alloys[J].Materials Letters,1995,23:277-281. |
[4] | Yingbo Zhang;Sirong Yu;Yulai Song .Microstructures and mechanical properties of quasicrystal reinforced Mg matrix composites[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2008(1/2):575-579. |
[5] | 徐春杰,郭学锋,郑水云,张忠明.往复挤压高韧Mg-Zn-Y合金[J].材料工程,2007(07):16-20,32. |
[6] | Alok Singh;M. Nakamura;M. Watanabe;A. Kato;A. P. Tsai .Quasicrystal strengthened Mg-Zn-Y alloys by extrusion[J].Scripta materialia,2003(5):417-422. |
[7] | SMITH W F.Structure and Properties of Engineering Alloys[M].New York:McGraw-Hill,1993 |
[8] | 陈振华.镁合金[M].北京:化学工业出版社,2004 |
[9] | D.K. Xu;W.N. Tang;L. Liu .Effect of Y concentration on the microstructure and mechanical properties of as-cast Mg-Zn-Y-Zr alloys[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2007(1/2):129-134. |
[10] | TAKAYAMA S .Amorphous structures and their formation and stability[J].Journal of Materials Science,1976,11:164-185. |
[11] | 杨世铭;陶文铨.传热学[M].北京:高等教育出版社,1998 |
[12] | X.J. WANG;X.D. CHEN;T.D. XIA .Influencing factors and estimation of the cooling rate within an amorphous ribbon[J].Intermetallics,2004(10/11):1233-1237. |
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