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首页> 外文期刊>Materials Science and Engineering >The microstructure, creep resistance, and high-temperature mechanical properties of Mg-5Sn alloy with Ca and Sb additions, and aging treatment
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The microstructure, creep resistance, and high-temperature mechanical properties of Mg-5Sn alloy with Ca and Sb additions, and aging treatment

机译:添加Ca和Sb的Mg-5Sn合金的显微组织,抗蠕变性和高温力学性能以及时效处理

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摘要

The microstructure, creep resistance, and high-temperature shear strength of the Mg-5Sn, Mg-5Sn-1.4Ca, and Mg-5Sn-0.4Sb alloys were studied in the as-cast and aged conditions. Impression creep tests were performed at 150 and 200 ℃ and under punching stresses in the range 250-500 MPa. The shear yield stress (SYS) and ultimate shear strength (USS) were measured by the shear punch test (SPT) in the temperature range 25-250 ℃. The results showed that creep resistance and shear strength of the base alloy were significantly enhanced with the addition of Sb and Ca. This was attributed to the concurrent formation of Mg_2Sn particles with the more thermally stable CaMgSn or Mg_3Sb_2 phases which strengthen both matrix and grain boundaries during deformation in the investigated system. Furthermore, mechanical properties and creep resistance of the aged alloys were much better than those of the as-cast materials, due to the higher volume fraction of Mg_2Sn, Mg_3Sb_2, and CaMgSn precipitates distributed homogeneously in the microstructure of the aged materials.
机译:研究了Mg-5Sn,Mg-5Sn-1.4Ca和Mg-5Sn-0.4Sb合金在铸态和时效条件下的显微组织,抗蠕变性和高温剪切强度。在150和200℃以及250-500 MPa的冲压应力下进行了压蠕变试验。在25-250℃的温度范围内,通过剪切冲压试验(SPT)测量了剪切屈服应力(SYS)和极限剪切强度(USS)。结果表明,添加Sb和Ca可以显着提高基体合金的抗蠕变性和剪切强度。这归因于同时形成具有更热稳定的CaMgSn或Mg_3Sb_2相的Mg_2Sn颗粒,这些相在所研究系统的变形过程中强化了基体和晶界。此外,由于Mg_2Sn,Mg_3Sb_2和CaMgSn析出物在时效材料的微观结构中均匀分布,因此时效合金的机械性能和抗蠕变性比铸态材料好得多。

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