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Al-Si-Cu-Mg铸造合金的力学性能与析出行为:长时间热暴露的影响

Mechanical Performance and Precipitation Behavior in Al-Si-Cu-Mg Cast Alloys: Effect of Prolonged Thermal Exposure.

作者信息

Abdelaziz Mohamed H, Samuel Agnes M, Doty Herbert W, Songmene Victor, Samuel Fawzy H

机构信息

Département PEC, Université Française d'Égypte, Ville Shorouk, Cairo 11837, Egypt.

Département des Sciences Appliquées, Université du Québec à Chicoutimi, Chicoutimi, Saguenay, QC G7H 2B1, Canada.

出版信息

Materials (Basel). 2022 Apr 12;15(8):2830. doi: 10.3390/ma15082830.

Abstract

Al-Si-Cu-Mg cast (354) alloys are used in the automotive sector owing to their remarkable properties which are achievable after applying appropriate thermal treatments. Zirconium, Nickel, and Manganese were added to this category of Al-alloys to preserve good mechanical properties while being exposed to elevated temperatures for long times. The ultimate and yield strength values obtained at room temperature for the stabilized (thermally-exposed) T5-treated condition were comparable to those of the stabilized T6-treated condition, whereas the same properties for T5-treated alloys were higher than those of T6-treated ones for elevated-temperature tensile testing. Interestingly, the results showed that the addition of 0.75 wt.% Mn was competitive with the addition of 2 and 4 wt.% Ni with respect to the elevated-temperature and ambient temperature strength values, respectively. In addition, the Mn-containing alloy M3S exhibited improved ductility values at ambient temperature and at 250 °C, compared to the Ni-containing alloys. Examination of the fracture surface of tested samples revealed the advantageous role of sludge particles in enhancing the performance of Mn-containing alloys through their resistance to the propagation of cracks that developed in many intermetallic phases. This finding is considered to be economically significant in view of the lower price of manganese compared to that of nickel.

摘要

Al-Si-Cu-Mg铸造(354)合金因其在进行适当热处理后可实现的卓越性能而应用于汽车领域。向这类铝合金中添加锆、镍和锰,以便在长时间暴露于高温下时仍能保持良好的机械性能。在稳定化(热暴露)T5处理条件下于室温获得的极限强度和屈服强度值与稳定化T6处理条件下的相当,而对于T5处理的合金,在高温拉伸试验中其相同性能高于T6处理的合金。有趣的是,结果表明,分别就高温和室温强度值而言,添加0.75 wt.%的锰与添加2 wt.%和4 wt.%的镍具有竞争力。此外,与含镍合金相比,含锰合金M3S在室温和250°C下的延展性值有所提高。对测试样品断口表面的检查揭示了夹杂物颗粒在增强含锰合金性能方面的有利作用,即它们能抵抗在许多金属间相中形成的裂纹扩展。鉴于锰的价格低于镍,这一发现被认为具有重要的经济意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bc5/9027799/327b97574fc0/materials-15-02830-g0A1.jpg

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