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Effect of aging treatment on the microstructure, creep resistance and high-temperature mechanical properties of Mg-6Zn-3Cu alloy with La- and Ce-rich rare earth additions

机译:时效处理对富含镧和铈的稀土Mg-6Zn-3Cu合金的组织,抗蠕变性和高温力学性能的影响

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Effect of aging treatment on the microstructure, creep resistance, and high temperature mechanical properties of the Mg-6Zn-3Cu alloy (ZC63) with La- and Ce-rich rare earth additions was investigated by impression creep and shear punch tests (SPT). Impression creep tests were performed in the temperature range 423-498 K and under punching stress in the range 150-700 MPa for dwell times up to 3600 s. The ultimate shear strength (USS) was measured by the SPT in the temperature range 298-498 K. The results showed that aging treatment increased the shear strength of the cast alloys, whereas it had detrimental effects on the creep strength of materials. These observations were discussed on the basis of the microstructural features and phase constituents of the investigated alloys in the as-cast and aged conditions.
机译:通过压痕蠕变和剪切冲头试验(SPT)研究了时效处理对添加了富含La和Ce的稀土元素的Mg-6Zn-3Cu合金(ZC63)的组织,抗蠕变性和高温力学性能的影响。在423-498 K的温度范围内,在150-700 MPa的冲压应力下进行了3600 s的保压时间的压痕蠕变测试。 SPT在298-498 K的温度范围内测量了极限抗剪强度(USS)。结果表明,时效处理提高了铸造合金的抗剪强度,而对材料的蠕变强度却有不利影响。这些观察是根据铸态和时效条件下所研究合金的微观结构特征和相组成进行讨论的。

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