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研究了稀土元素Y对AZ31镁合金金相组织和力学性能的影响。结果表明:当稀土添加量为0.6%~0.9%时,仅(Mg)基体晶粒变细,并且加入量为0.9%时得到更细化的组织,13相(Mg17Al12)在晶界由连续网状变为断续弥散状分布,由于α(Mg)基体晶粒的细化和p柏形貌的改善,合金的力学性能有提高;当稀土添加量为1.2%时,α(Mg)基体晶粒显著粗化,β相(Mg17Al12)内部出现针状和圆盘状的第二相,力学性能下降。 相似文献
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采用自蔓延 熔铸法制备了Al-Ti-C-Y中间合金,并利用各种测试方法研究了Al-Ti-C-Y中间合金对AM50合金的显微组织和力学性能的影响.结果表明:Al-Ti-C-Y中间合金的主要相组成为TiAl3,TiC,AlY3和α-Al,对AM50镁合金具有明显的细化效果.中间合金添加量为1.0%时,细化效果最佳,α-Mg枝晶明显碎化,平均晶粒尺寸由原来的约500μm降低到约240μm,冲击韧度达到峰值25.17 Jcm-2,比原AM50镁合金的冲击韧度提高了17.1%. 相似文献
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Al-Ti-C-Y master alloy was prepared by combining SHS technique and melting-casting method. The microstructure of master alloy and its grain-refining effect on AZ31 alloy were investigated by means of OM, XRD, SEM and EDS. Experimental results indicated that the prepared master alloy consisted of α-Al, TiAl3, TiC and Al3Y phases, and exhibited good grain-refining performance of AZ31 alloy. Morphology of α-Mg changed from coarse dendritic to free equiaxed and the average grain size of α-Mg matrix reduced from the original 580 to 170 μm after adding 1.0 wt.% master alloy. The grain refining efficiency of Al-Ti-C-Y master alloy on AZ31 alloy was mainly attributed to heterogeneous nucleation of TiC particles and grain growth restriction of Al-Y compound or TiC at grain boundaries. 相似文献
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钇对AZ91镁合金晶粒大小显微组织及力学性能的影响 总被引:4,自引:3,他引:1
采用光学显微镜、X射线衍射仪、扫描电镜等分析测试手段,研究了添加Y(0.3%~1.3%,质量分数)对AZ91镁合金晶粒大小、显微组织及力学性能的影响。结果表明,随Y添加量增加合金晶粒尺寸先由0.419mm增大到1.117mm后减小到0.864mm,共晶组织先由网状分布变为离散岛状分布,随后又有聚集为断网状的趋势。当Y添加量为0.7%时,合金共晶组织最细小,晶粒最大,Y与合金中Al反应生成块状新相Al2Y。向AZ91镁合金中添加少量Y后,常温下铸态合金力学性能下降,高温(200℃)下合金力学性能增强。 相似文献
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