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首页> 外文期刊>Intermetallics >Effects of ultrasonic vibration and manganese on microstructure and mechanical properties of hypereutectic Al—Si alloys with 2%Fe
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Effects of ultrasonic vibration and manganese on microstructure and mechanical properties of hypereutectic Al—Si alloys with 2%Fe

机译:超声振动和锰对2%Fe过共晶Al-Si合金组织和力学性能的影响

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摘要

The effects of ultrasonic vibration (USV) on the microstructure and mechanical properties of Al-17Si-2Fe-2Cu-lNi (mass %) alloys with 0.4% or 0.8% Mn were studied. The results show that the average grain size of primary Si in the alloys treated by USV could be refined to 21—24 urn, whether with or without P modification. The P addition has no further refinement effect on the primary Si in the case of the combined use of USV with P addition. Without USV, the alloy with 0.4%Mn contains a large amount of long needle-like β-Al5(Fe,Mn)Si phase and coarse plate-like δ-Al_4(Fe,Mn)Si_2 phase. Besides, the alloy with 0.8% Mn contains a small amount of coarse dendritic α-Al_(15)(Fe,Mn)_3Si_2 phase. With USV treatment, the Fe-containing compounds in the alloys are refined and exist mainly as δ-Al_4(Fe,Mn)Si_2 particles with average grain size of about 18 μm, and only a small amount of β-Al_5(Fe,Mn)Si phase is remained. With USV treatment and without P modification, the ultimate tensile strengths (UTS) of the alloys containing 0.4% and 0.8% Mn are 271 MPa and 289 MPa respectively at room temperature, and the UTS are 127 MPa and 132 MPa at 350 °C. The Brinell hardness of the alloys are 131 HB and 139 HB respectively. It is considered that the modified morphology and uniform distribution of the Fe-containing intermetallic compounds and the primary Si phases, which are caused by USV process, are the main reasons for the increase of the tensile strength and hardness of these two alloys.
机译:研究了超声振动(USV)对Mn含量为0.4%或0.8%的Al-17Si-2Fe-2Cu-1Ni(质量%)合金的组织和力学性能的影响。结果表明,无论是否进行了P改性,USV处理的合金中初生Si的平均晶粒尺寸均可以细化至21-24 urn。在USV与P添加的结合使用的情况下,P添加对原始Si没有进一步的细化作用。在没有USV的情况下,Mn含量为0.4%的合金含有大量的长针状β-Al5(Fe,Mn)Si相和粗板状δ-Al_4(Fe,Mn)Si_2相。此外,Mn含量为0.8%的合金还含有少量的粗大的树枝状α-Al_(15)(Fe,Mn)_3Si_2相。经USV处理后,合金中的含铁化合物得以精制并主要以δ-Al_4(Fe,Mn)Si_2颗粒的形式存在,平均晶粒尺寸约为18μm,只有少量的β-Al_5(Fe,Mn残留Si相。在进行USV处理且未进行P改性的情况下,含0.4%和0.8%Mn的合金在室温下的极限抗拉强度(UTS)分别为271 MPa和289 MPa,而在350°C下,UTS的极限抗拉强度为127 MPa和132 MPa。合金的布氏硬度分别为131 HB和139 HB。认为由USV工艺引起的含铁金属间化合物和原始Si相的形态和均匀分布的改变是这两种合金的拉伸强度和硬度增加的主要原因。

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