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Zr與Er復合添加后的高Mg鋁合金耐磨性能研究
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1.廣西有色金屬及特色材料加工重點實驗室;2.江西銅業(yè)集團銅板帶有限公司

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南寧市科技開發(fā)項目 (20201045); 廣西自然科學(2018GXNSFAA050048); 廣西大學“大學生創(chuàng)新創(chuàng)業(yè)訓練計劃”資助項目(202110593350)


Study on wear resistance of high Mg aluminum alloy with composite addition of Zr and Er
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1.Guangxi Key Laboratory of Processing for Non-ferrous Metal and Featured Materials,Guangxi University;2.JCC Copper Strip Company Limited

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    摘要:

    Al-Mg系(5系)鋁合金具有良好的加工性、耐腐蝕性和焊接性等,但中等硬度限制了其耐磨性的發(fā)揮。本文在5系鋁合金的主要元素Al-xMg-0.5Mn的基礎(chǔ)上復合添加0.14wt.%Zr和0.35wt.%Er,研究稀土高鎂鋁合金中(Mg含量最高達9.28 wt.%)Mg含量對其顯微組織及摩擦磨損性能的影響。隨著Mg含量從2.96wt.%增加到9.28wt.%,Al-xMg-0.5Mn-0.14Zr-0.35Er合金中形成的(Al,Mg,Mn,Er,Zr)復合白色相不斷增多,尺寸不斷增大,由棒條狀變成細小魚骨狀,最后形成均勻分布的粗大魚骨狀。隨著Mg含量從2.96wt.%增加到9.28wt.%,Er、Mg元素經(jīng)?!跋喟槠邸?,主要以Al(ErxMg1-x)和Al(Erx(Mg,Mn)1-x)相形式存在,由塊狀復合相轉(zhuǎn)變成均勻分布的(Al,Mg,Mn,Er)復合相,具有一定強化作用,可顯著改善合金摩擦磨損性能。復合添加0.14wt.%Zr和0.35wt.%Er后,合金的磨損方式從粘著磨損及磨粒磨損的混合磨損(Mg含量在2.96wt.%-5.15wt.%)轉(zhuǎn)變到磨粒磨損為主(Mg含量在5.7wt.%—9.28wt.%)。隨著Mg含量從2.96wt.%增加到6.8wt.%,合金的耐磨性逐漸提高;當Mg含量增加到8.0wt.%—9.28wt.%時合金耐磨性趨于穩(wěn)定,400s以后瞬時摩擦磨損系數(shù)μ達到1.11-1.15穩(wěn)定值。

    Abstract:

    Al-Mg alloy (5xxx aluminum alloy) has good processability, corrosion resistance and weldability, but their medium-hardness limits their wear resistance. Based on the main alloy elements of 5xxx aluminum alloys, 0.14wt.% Zr and 0.35wt.% Er were added into Al-xMg-0.5Mn; the effects of different contents of Mg (Mg content up to 9.28wt.%) on the microstructure and friction and wear properties of high Mg aluminum alloy were studied. With the increase of Mg content from 2.96wt.% to 9.28wt.%, the (Al, Mg, Mn, Er, Zr) composite phases formed in Al-xMg-0.5Mn-0.14Zr-0.35Er alloy increased gradually; the size also increased gradually; their morphology changed from rod shape to fine fishbone shape, and finally forms uniformly coarse fishbone shape. When Mg content increases from 2.96wt.% to 9.28wt.% Mg, Er and Mg are often "concomitant segregation", mainly in the form of Al (ErxMg1-x) and Al (Erx(Mg, Mn)1-x). These composite phases change from massive to uniformly distributed (Al, Mg, Mn, Er) phases, which have a certain strengthening effect and can significantly improve the friction and wear performance of the alloy. After compound addition of 0.14wt.%Zr and 0.35wt.%Er, the wear mode of the alloy changes from the mixed wear (adhesive wear and abrasive wear: Mg content is 2.96wt.% - 5.15wt.%) to abrasive wear (Mg content is 5.7wt.% - 9.28wt.%). With the increase of Mg content from 2.96wt.% to 6.8wt.%, the wear resistance of the alloy increases gradually; when the Mg content increases to 8.0wt.% - 9.28wt.%, the wear resistance of the alloy tends to be stable, and the instantaneous friction and wear coefficient μ reaches the stable value of 1.11-1.15.

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趙艷君,陸澤鵬,丁俊,廖麗梅,鐘彩明,劉瑩瑩,曾建民. Zr與Er復合添加后的高Mg鋁合金耐磨性能研究[J].稀有金屬材料與工程,2023,52(2):609~616.[Zhao Yanjun, Lu Zepeng, Ding jun, Liao Limei, Zhong Caiming, Liu Yingying, Zeng Jianmin. Study on wear resistance of high Mg aluminum alloy with composite addition of Zr and Er[J]. Rare Metal Materials and Engineering,2023,52(2):609~616.]
DOI:10.12442/j. issn.1002-185X.20220026

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  • 收稿日期:2022-01-12
  • 最后修改日期:2022-03-18
  • 錄用日期:2022-03-28
  • 在線發(fā)布日期: 2023-03-09
  • 出版日期: 2023-02-28