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High-Strength Ultra-Fine-Grained Hypereutectic Al-Si-Fe-X (X = Cr, Mn) Alloys Prepared by Short-Term Mechanical Alloying and Spark Plasma Sintering

机译:通过短期机械合金化和火花等离子体烧结制备的高强度超细颗粒过度晶Al-Si-Fe-X(X = Cr,Mn)合金

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In this work, Al-20Si-10Fe-6Cr and Al-20Si-10Fe-6Mn (wt %) alloys were prepared by a combination of short-term mechanical alloying and spark plasma sintering. The microstructure was composed of homogeneously dispersed intermetallic particles forming composite-like structures. X-ray diffraction analysis and TEM + EDS analysis determined that the α-Al along with α-Al 15 (Fe,Cr) 3 Si 2 or α-Al 15 (Fe,Mn) 3 Si 2 phases were present, with dimensions below 130 nm. The highest hardness of 380 ± 7 HV5 was observed for the Al-20Si-10Fe-6Mn alloy, exceeding the hardness of the reference as-cast Al-12Si-1Cu-1 Mg-1Ni alloy (121 ± 2 HV5) by nearly a factor of three. Both of the prepared alloys showed exceptional thermal stability with the hardness remaining almost the same even after 100 h of annealing at 400 °C. Additionally, the compressive strengths of the Al-20Si-10Fe-6Cr and Al-20Si-10Fe-6Mn alloys reached 869 MPa and 887 MPa, respectively, and had virtually the same values of 870 MPa and 865 MPa, respectively, even after 100 h of annealing. More importantly, the alloys showed an increase in ductility at 400 °C, reaching several tens of percent. Thus, both of the investigated alloys showed better mechanical properties, including superior hardness, compressive strength and thermal stability, as compared to the reference Al-10Si-1Cu-1Mg-1Ni alloy, which softened remarkably, reducing its hardness by almost 50% to 63 ± 8 HV5.
机译:在这项工作中,通过短期机械合金化和火花等离子体烧结的组合制备Al-20Si-10Fe-6CR和Al-20Si-10Fe-6Mn(Wt%)合金。微观结构由均匀分散的金属间颗粒形成形成复合结构的层状结构。 X射线衍射分析和TEM + EDS分析确定,存在α-Al与α-Al 15(Fe,Cr)3 Si 2或α-Al 15(Fe,Mn)3 Si 2相,尺寸下降130 nm。对于Al-20Si-10Fe-6Mn合金,观察到380±7 HV5的最高硬度,超过参考Al-12Si-1Cu-1mg-1ni合金(121±2 HV5)的基准的硬度,几乎是a因子三。两种制备的合金显示出卓越的热稳定性,即使在400℃的退火100小时后,即使在400℃的100小时后,硬度也相同。另外,Al-20Si-10Fe-6CR和Al-20Si-10Fe-6Mn合金的压缩强度分别达到869MPa和887MPa,并且分别具有870MPa和865MPa的几乎相同的值,即使在100之后退火的H.更重要的是,合金显示在400℃下的延展性增加,达到几十%。因此,与参考AL-10SI-1CU-1MG-1NI-1NI合金相比,两种研究合金都显示出更好的机械性能,包括优异的硬度,抗压强度和热稳定性,其显着软化,使其硬度降低到50% 63±8 HV5。

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