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首页> 外文期刊>Journal of rare earths >High Cycle Fatigue Properties of Die-Cast Magnesium Alloy AZ91D with Addition of Different Concentrations of Cerium
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High Cycle Fatigue Properties of Die-Cast Magnesium Alloy AZ91D with Addition of Different Concentrations of Cerium

机译:添加不同浓度铈的压铸镁合金AZ91D的高循环疲劳性能

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摘要

The effect of addition of different concentrations of Ce on high-cycle fatigue behavior of die-cast magnesium alloy AZ91D was investigated. Mechanical fatigue tests were conducted at the stress ratio of R = 0. 1, and fatigue strength was evaluated using up-and-down loading method. The results show that the grain size of AZ91D alloy is remarkably refined , and the amount of porosity decreases and evenly distributes with the addition of Ce. The fatigue strength of AZ91D alloy at room temperature increases from 96.7 up to 116.3 MPa (1 percent Ce) and 105.5 MPa (2 percent Ce), respectively, at the number of cycles to failure, N_f = 1 X10~7. The fatigue crack of AZ91D alloy initiates at porosities and inclusions, and propagates along grain boundaries. The fatigue striations on fractured surface appear with Ce addition. The fatigue fracture surface of test specimens shows mixed-fracture characteristics of quasi-cleavage and dimple.
机译:研究了添加不同浓度的铈对压铸镁合金AZ91D的高周疲劳行为的影响。在R = 0的应力比下进行机械疲劳测试,并使用上下载荷法评估疲劳强度。结果表明,添加铈后,AZ91D合金的晶粒细化,孔隙率降低,分布均匀。在失效循环数N_f = 1 X10〜7时,AZ91D合金在室温下的疲劳强度分别从96.7增加到116.3 MPa(1%Ce)和105.5 MPa(2%Ce)。 AZ91D合金的疲劳裂纹始于孔隙和夹杂物,并沿晶界扩展。铈的添加会在断裂表面产生疲劳条纹。试样的疲劳断裂面表现出准劈裂和凹痕的混合断裂特性。

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