Ca对铸态AZ61镁合金显微组织和压入蠕变行为的影响

来源期刊:中国有色金属学报(英文版)2019年第10期

论文作者:B. NAMI S. M. MIRESMAEILI F. JAMSHIDI I. KHOUBROU

文章页码:2056 - 2065

关键词:压入蠕变;镁合金;Ca 添加;位错蠕变;相连续性

Key words:impression creep; magnesium alloy; Ca addition; dislocation creep; phase continuity

摘    要:研究含1%和3%(质量分数)Ca的AZ61镁合金的显微组织和蠕变性能。用压痕法研究在423~491 K、200~500 MPa应力作用下的蠕变性能。AZ61合金的显微组织包含α(Mg)基体相和Mg17Al12金属间化合物相。结果表明,在AZ61合金中加入Ca可通过形成(Mg,Al)2Ca相从而减少Mg17Al12相含量,当Ca 含量达到3%时,形成(Mg,Al)2Ca相,Mg17Al12相消失。Ca的加入可以改善AZ61合金的蠕变性能,这是由于Mg17Al12相减少而形成的(Mg,Al)2Ca相具有高的热稳定性。根据蠕变数据可以推断,管扩散-攀移控制的位错蠕变是主要的蠕变机制,Ca添加对此机制没有影响。预变形对AZ61+3%Ca合金蠕变性能的影响表明,合金的抗蠕变性能取决于 (Mg,Al)2Ca相的连续性,该相的连续性越低,合金的抗蠕变性能就越差。

Abstract: Microstructure and creep properties of AZ61 alloy containing 1 and 3 wt.% Ca were investigated. The creep properties were examined using impression method under different stresses between 200 and 500 MPa at the temperature ranging from 423 to 491 K. The microstructure of AZ61 alloy contains α(Mg) matrix and Mg17Al12 intermetallic phases. It is shown that adding Ca to AZ61 alloy reduces the amount of Mg17Al12 phase via forming (Mg,Al)2Ca phase; furthermore, increasing the Ca content to 3 wt.% leads to the formation of (Mg,Al)2Ca phase, as well as the elimination of the Mg17Al12 phase. Creep properties of AZ61 alloy are improved with the Ca addition. The improvement in creep properties is attributed to the reduction in the amount of Mg17Al12 phase and the formation of (Mg,Al)2Ca phase with high thermal stability. According to the obtained creep data, it is concluded that the pipe diffusion-climb controlled dislocation creep is the dominant creep mechanism and Ca addition has no influence on this mechanism. The effect of pre-deformation on the creep properties of AZ61+3%Ca alloy reveals that the creep resistance of the alloy depends on the continuity of (Mg,Al)2Ca phase. It is decreased by reducing the phase continuity.

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