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  • 王秋平, 李璐, 周榮鋒, 蔣業華, 周榮. Mn元素對過流冷卻過共晶Al-22Si-2Fe-xMn合金顯微組織及耐磨性的影響[J]. 工程科學學報, 2017, 39(2): 222-231. DOI: 10.13374/j.issn2095-9389.2017.02.009
    引用本文: 王秋平, 李璐, 周榮鋒, 蔣業華, 周榮. Mn元素對過流冷卻過共晶Al-22Si-2Fe-xMn合金顯微組織及耐磨性的影響[J]. 工程科學學報, 2017, 39(2): 222-231. DOI: 10.13374/j.issn2095-9389.2017.02.009
    WANG Qiu-ping, LI Lu, ZHOU Rong-feng, JIANG Ye-hua, ZHOU Rong. Effect of Mn element on the microstructure and wear resistance of hypereutectic Al-22Si-2Fe-xMn alloys produced by inclined cooling[J]. Chinese Journal of Engineering, 2017, 39(2): 222-231. DOI: 10.13374/j.issn2095-9389.2017.02.009
    Citation: WANG Qiu-ping, LI Lu, ZHOU Rong-feng, JIANG Ye-hua, ZHOU Rong. Effect of Mn element on the microstructure and wear resistance of hypereutectic Al-22Si-2Fe-xMn alloys produced by inclined cooling[J]. Chinese Journal of Engineering, 2017, 39(2): 222-231. DOI: 10.13374/j.issn2095-9389.2017.02.009

    Mn元素對過流冷卻過共晶Al-22Si-2Fe-xMn合金顯微組織及耐磨性的影響

    Effect of Mn element on the microstructure and wear resistance of hypereutectic Al-22Si-2Fe-xMn alloys produced by inclined cooling

    • 摘要: 采用常規鑄造和分段式傾斜板過流冷卻鑄造工藝制備Al-22Si-2Fe-xMn合金,研究表明:過流冷卻制備工藝能夠改善初生Si形貌及尺寸,但對針狀富Fe相作用有限.利用掃描電鏡、X射線衍射及透射電鏡等手段分析過流冷卻條件下Mn元素添加對富Fe相晶體結構的影響,通過摩擦磨損實驗研究不同Mn/Fe質量比的過共晶Al-Si合金的硬度及耐磨損性能.結果表明:隨著過流冷卻鑄造過共晶Al-Si合金中Mn/Fe質量比增加,合金中四方結構的長針狀富Fe相逐漸減少直至基本消失,當Mn/Fe質量比為0.7時,富Fe相主要為六方結構的塊狀或魚骨狀α-Al15(Fe,Mn)3Si2相,此時,合金耐磨性較未添加Mn元素時有所提升,磨損機制以磨料磨損方式為主.

       

      Abstract: Al-22Si-2Fe-xMn alloys were prepared by conventional casting and a segment-based inclined cooling plates. It is shown that inclined cooling preparation technology can improve the morphology and size of primary Si, but has limited effect on the needle-shaped Fe-rich phase. The effect of Mn addition on the crystal structure of Fe-rich phase under the condition of inclined cooling was analyzed by scanning electron microscopy (SEM), X-ray diffraction (XRD) and transmission electron microscopy (TEM). The hardness and wear resistance of hypereutectic Al-Si alloys with different Mn/Fe mass ratios were also researched by friction and wear test. Results indicate that long needle-shaped Fe-rich phase of tetragonal structure decreases gradually and disappears basically in alloys as the Mn/Fe mass ratio increases by inclined cooling casting hypereutectic Al-Si alloys. When the Mn/Fe mass ratio is 0.7, Fe-rich phase is mainly hexagonal structure block-shaped or fishbone-shaped α-Al15(Fe, Mn)3Si2 phase. By the time, the wear resistance is enhanced compared with no Mn element addition. The wear mechanism gives priority to abrasive wear manner.

       

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