材料工程2024,Vol.52Issue(9) :116-123.DOI:10.11868/j.issn.1001-4381.2023.000678

微量Sm元素对TiCp/Al-Cu-Mg-Mn复合材料微观组织和力学性能的影响

Effect of trace Sm elements on microstructure and mechanical properties of TiCp/Al-Cu-Mg-Mn composite materials

刘强 易格 冯佳文 郗洪雷 严鹏 肖文龙 马朝利
材料工程2024,Vol.52Issue(9) :116-123.DOI:10.11868/j.issn.1001-4381.2023.000678

微量Sm元素对TiCp/Al-Cu-Mg-Mn复合材料微观组织和力学性能的影响

Effect of trace Sm elements on microstructure and mechanical properties of TiCp/Al-Cu-Mg-Mn composite materials

刘强 1易格 2冯佳文 3郗洪雷 2严鹏 4肖文龙 1马朝利1
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作者信息

  • 1. 天目山实验室,杭州 311115;北京航空航天大学 材料科学与工程学院,北京 100191;北京航空航天大学 云南创新研究院,昆明 650233
  • 2. 北京航空航天大学 材料科学与工程学院,北京 100191;北京航空航天大学 云南创新研究院,昆明 650233
  • 3. 天目山实验室,杭州 311115
  • 4. 北京航空航天大学 云南创新研究院,昆明 650233
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摘要

以0.27%(体积分数)TiC颗粒增强的TiCp/Al-5Cu-1.9Mg-0.9Mn复合材料为基体,研究不同Sm元素含量对复合材料组织与力学性能的影响规律.结果表明:Sm元素的加入明显细化了枝晶组织,促进了固溶处理过程中第二相的溶解,使得时效态组织中T-Al20Cu2Mn3和S'-Al2CuMg析出相的数量密度增加,当Sm元素含量较高时(0.3%,质量分数,下同),组织中将出现块状难溶稀土化合物.随着Sm的加入,复合材料室温和250℃下的屈服强度逐渐增加,但会引起塑性降低,当Sm元素添加量为0.3% 时,室温屈服强度从246 MPa提高到310 MPa,250℃屈服强度从191 MPa提高到220 MPa.分析认为,强度提高源于Sm引起的组织细化和析出相数量密度增加,而塑性下降是由于粗大块状难溶稀土化合物割裂了基体,导致裂纹源容易产生.

Abstract

Taking TiCp/Al-5Cu-1.9Mg-0.9Mn composite materials reinforced with 0.27%(volume fraction)TiC particles as the matrix,the effects of different Sm element contents on the microstructure and mechanical properties of the composite material were investigated.The results show that the addition of the Sm element significantly refines the dendritic microstructure and facilitates the dissolution of the second phase during the solid solution treatment.Consequently,an increase in the density of precipitated phases,including T-Al20Cu2Mn3 and S'-Al2CuMg,was observed in the aged microstructure.When the Sm element content is high (0.3%,mass fraction,the same below),the microstructure exhibits blocky insoluble rare earth-containing compounds.With the addition of the Sm,the composite materials show a gradual increase in yield strength at both room temperature and 250 ℃.However,it will cause a decrease in plasticity.When the Sm element content is 0.3%,the yield strength at room temperature increases from 246 MPa to 310 MPa,and the yield strength at 250 ℃ increases from 191 MPa to 220 MPa.The analysis suggests that the increase in strength is attributed to the microstructural refinement and the increased density of precipitated phases induced by Sm.Conversely,the reduction in plasticity is attributed to the presence of coarse blocky insoluble rare earth compounds cutting through the matrix,leading to the easy generation of crack sources.

关键词

铝基复合材料/Al-Cu/稀土元素/微观组织/力学性能

Key words

aluminum matrix composites/Al-Cu/rare earth element/microstructure/mechanical property

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基金项目

云南省重点研发计划项目(202103AN080001-002)

中国航发自主创新专项资金项目(ZZCX-2019-024)

出版年

2024
材料工程
中国航发北京航空材料研究院

材料工程

CSTPCD北大核心
影响因子:0.78
ISSN:1001-4381
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