期刊论文详细信息
Micro & nano letters
Microstructure and mechanical properties of Zr-modified Al–7Si–0.35Mg–0.2Ti cast alloy
article
Zhuang Zhang1  Xiaodong Du1  Pengcheng Zhuang1  Rong Chai1  Changjian Wang1  Hao Zhang3 
[1] School of Materials Science and Engineering, Hefei University of Technology;Engineering Research Center of High Performance Copper Alloy Materials and Processing, Ministry of Education, Hefei University of Technology;Ltd
关键词: Vickers hardness;    transmission electron microscopy;    zirconium alloys;    elongation;    silicon alloys;    aluminium alloys;    scanning electron microscopy;    tensile testing;    grain size;    dendrites;    eutectic alloys;    hardness testing;    titanium alloys;    yield strength;    tensile strength;    casting;    magnesium alloys;    ultimate tensile strength testing;    hypo-eutectic cast alloys;    fine fibrous eutectic silicon phase;    plate-like shape eutectic silicon phase;    Vickers hardness test;    dendrite to isometric grain transformation;    grain sizes;    elongation values;    yield strength;    metallographic observation;    SEM analysis;    TEM observation;    AlSiMgTiZr;   
DOI  :  10.1049/mnl.2019.0755
学科分类:计算机科学(综合)
来源: Wiley
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【 摘 要 】

In this research, four specimens of hypo-eutectic Al–7Si–0.35Mg–0.2Ti– x Zr ( x = 0, 0.1, 0.2, 0.3 wt%) cast alloys were fabricated via a traditional casting method. The effect of different concentrations of Zr on the microstructure and mechanical properties of cast alloys was investigated through metallographic observation, SEM analysis, TEM observations, tensile strength testing, and Vickers hardness test. The results show that the plate-like shape eutectic Si phase is gradually transformed into fine fibrous eutectic Si phase, and is more evenly distributed as the content of Zr increased. The α-Al matrix grains are transformed from dendrites to isometric grains, of which the grains sizes became smaller. The results of the tensile test show that with the addition of 0.2% Zr, Al–7Si–0.35Mg–0.2Ti alloys obtain the best tensile properties. The ultimate tensile strength and elongation values are 221 MPa and 11%, the number of which is increased by 14.5 and 71.9% than base alloy, respectively. Additionally, the alloy's yield strength, Vickers hardness, and other comprehensive mechanical properties have also improved significantly.

【 授权许可】

CC BY|CC BY-ND|CC BY-NC|CC BY-NC-ND   

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