首页|激光选区熔化增材制造高强度Mg-15Gd-1Zn-0.4Zr合金的显微组织与力学性能

激光选区熔化增材制造高强度Mg-15Gd-1Zn-0.4Zr合金的显微组织与力学性能

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为了验证激光选区熔化(SLM)成型技术制造高性能镁-稀土合金的可行性,研究SLM工艺对Mg-15Gd-1Zn-0.4Zr(质量分数,%)(GZ151K)镁合金显微组织与力学性能的影响.结果表明,打印态(激光选区熔化态)GZ151K镁合金晶粒(约为2μm)和第二相细小、织构较弱;室温下,打印态GZ151K镁合金的屈服强度为345 MPa,抗拉强度为368 MPa,伸长率为3.0%.200℃、64 h时效处理(T5)后,合金的屈服强度增加至410 MPa、抗拉强度增加至428 MPa、伸长率增加至3.4%,拉伸性能均高于传统的重力金属型铸造GZ151K-T6合金,其中,屈服强度增幅高达122 MPa.打印态GZ151K镁合金的主要强化机制为细晶、细小第二相和残余应力强化;经T5处理后,析出相进一步提高合金的屈服强度.
Microstructure and mechanical properties of high strength Mg-15Gd-1Zn-0.4Zr alloy additive-manufactured by selective laser melting process
In order to verify the feasibility of producing Mg-rare earth (RE) alloy by selective laser melting (SLM) process, the microstructure and mechanical properties of Mg-15Gd-1Zn-0.4Zr (wt.%) (GZ151K) alloy were investigated. The results show that fine grains (~2 μm), fine secondary phases and weak texture, were observed in the as-fabricated (SLMed) GZ151K Mg alloy. At room temperature, the SLMed GZ151K alloy has a yield strength (YS) of 345 MPa, ultimate tensile strength (UTS) of 368 MPa and elongation of 3.0%. After subsequent aging (200 ℃, 64 h, T5 treatment), the YS, UTS and elongation of the SLMed-T5 alloy are 410 MPa, 428 MPa and 3.4%, respectively, which are higher than those of the conventional cast-T6 alloy, especially with the YS increased by 122 MPa. The main strengthening mechanisms of the SLMed GZ151K alloy are fine grains, fine secondary phases and residual stress, while after T5 treatment, the YS of the alloy is further enhanced by precipitates.

selective laser meltingMg-rare earth alloygrain refinementMg-Gd-Znstrengthening mechanism

付彭怀、王南清、廖海光、徐雯钰、彭立明、陈娟、胡国琦、丁文江

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上海交通大学 轻合金精密成型国家工程研究中心&金属基复合材料国家重点实验室,上海 200240

上海轻合金精密成型国家工程研究中心有限公司,上海 201615

宁波工程学院 材料与化工学院,宁波 315211

激光选区熔化 镁-稀土合金 晶粒细化 Mg-Gd-Zn 强化机制

2016YFB03010002016YFB070120451821001

2021

中国有色金属学报(英文版)
中国有色金属学会

中国有色金属学报(英文版)

CSTPCDCSCDSCI
影响因子:1.183
ISSN:1003-6326
年,卷(期):2021.31(7)
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