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Y掺杂对(Cu56Zr44)1-xYx合金非晶形成能力及摩擦学性能的影响
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1.西南林业大学 机械与交通学院;2.昆明理工大学 材料科学与工程学院;3.云南中烟工业有限责任公司 技术中心

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云南省农业基础研究联合专项基金(2018FG001-062);国家自然科学基金(51301144);云南省教育厅科学研究基金研究生项目(2020Y0379)


Effect of Y-doping on glass forming ability and tribological properties of (Cu56Zr44)1-xYxalloys
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1.School of Machinery and Transaction,Southwest Forestry University,Kunming;2.School of Materials Science and Engineering,Kunming University of Science and Technology;3.R D Center of China Tobacco Yunnan Industrial Co,Ltd,Kunming

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    摘要:

    为开发远离Cu56Zr44共晶点的新型非晶合金,探索生物质燃油新能源汽车活塞材料。本文采用单辊旋淬法制备了(Cu56Zr44)1-xYx (x=0、1、3和9 at.%) 试样,表征了试样物相、热力学参数、纳米硬度,测试了试样在乙醇汽油稀释机油润滑下的摩擦学性能。结果表明:(Cu56Zr44)1-xYx试样为完全非晶结构,随着Y含量从1 at.%增至9 at.%,(Cu56Zr44)1-xYx非晶试样的ΔTx和Trg分别从61 K降至51 K和从0.670降至0.658,但高于Cu56Zr44非晶试样的49 K和0.644,即Y掺杂有效地增强了Cu56Zr44-基合金的非晶形成能力(Glass forming ability,GFA)和热稳定性。随着Y含量从1 at.%增至9 at.%,(Cu56Zr44)1-xYx 非晶试样纳米硬度从8.83 GPa降至7.33 GPa (高于Cu56Zr44的6.82GPa),在10N和20N两种载荷下的摩擦因数和磨损率随之增加 (低于Cu56Zr44的),即Y掺杂明显地提升了Cu56Zr44-基合金的力学和摩擦学性能。相同实验条件下,(Cu56Zr44)1-xYx非晶试样的摩擦因数和磨损率低于ZL109铝合金的,两种载荷下磨损率最高降幅分别高达98.62%和97.79%,即(Cu56Zr44)1-xYx非晶合金在乙醇汽油稀释机油下比ZL109铝合金展现出非常优异的抗磨性能,这也为生物质燃油新能源汽车活塞材料的研发提供了一定的理论与实验指导。

    Abstract:

    In order to develop a new type of amorphous alloy whose composition is far away from the eutectic point of Cu56Zr44 and explore a piston material used biomass fuel new energy vehicle. In this paper, (Cu56Zr44)1-xYx (x=0, 1, 3 and 9 at.%) samples were prepared by the single-roller rapid quenching, the phases, thermodynamic parameters and nano-hardness of the samples were checked, as well as the tribological properties of the samples under ethanol-gasoline diluted engine oil were measured. The results showed: (Cu56Zr44)1-xYx samples are completely composed of amorphous structure, with Y content increasing from 1 at.% to 9 at.%, the ΔTx and Trg of the (Cu56Zr44)1-xYx amorphous sample decreases from 61K to 51K and 0.670 to 0.658, but are still higher than 49K and 0.644 of Cu56Zr44 amorphous sample, i.e., the glass forming ability (GFA) and thermal stability of Cu56Zr44-based alloy are enhanced by Y doping. With Y content increasing from 1at.% to 9at.%, the nano-hardness of (Cu56Zr44)1-xYx amorphous sample decreases from 8.83GPa to 7.33GPa (higher than 6.82GPa of Cu56Zr44). The friction coefficient and wear rate at 10N and 20N loads increase (lower than the ones of Cu56Zr44), i.e., the mechanical and tribological properties of Cu56Zr44-based alloy are significantly improved by Y doping. At the same experimental conditions, the friction coefficient and wear rate of (Cu56Zr44)1-xYx amorphous samples are lower than those of ZL109 Al alloy. The highest reduction of wear rates are as high as 98.62% and 97.79% at the two loads, namely (Cu56Zr44)1-xYx amorphous alloy possesses very excellent anti-wear performance than ZL109 Al alloy under ethanol-gasoline dilution engine oil lubricantion, which also provides a certain theoretical and experimental guidance for the research and development of a new piston material used in biomass fuel-fueled new energy automobile.

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王远,李朝岚,郑进,于晓华,王枭,张玲. Y掺杂对(Cu56Zr44)1-xYx合金非晶形成能力及摩擦学性能的影响[J].稀有金属材料与工程,2021,50(7):2584~2591.[Wang Yuan, Li Chaolan, Zheng Jin, Yu Xiaohua, Wang Xiao, Zhang Ling. Effect of Y-doping on glass forming ability and tribological properties of (Cu56Zr44)1-xYxalloys[J]. Rare Metal Materials and Engineering,2021,50(7):2584~2591.]
DOI:10.12442/j. issn.1002-185X.20200626

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  • 收稿日期:2020-08-20
  • 最后修改日期:2020-10-30
  • 录用日期:2020-12-14
  • 在线发布日期: 2021-08-09
  • 出版日期: 2021-07-31