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Information Journal Paper

Title

In-situ Composition of Al/Al3Mg2 on Al-1050 Surface by Friction Stir Processing

Pages

  63-78

Keywords

FSPQ1
AlQ2
MgQ2

Abstract

 In order to improve the structurAl and mechanicAl properties of Al-1050, Al/Mg All&fgrp=All&fyrs=All" target="_blank">Composite was processed on the surface of this Alloy by using friction stir processing. StructurAl studies showed that one pass All&fgrp=All&fyrs=All" target="_blank">FSP on the as-received Aluminum substrate changed the grain shape from stretched grains to equiaxed. MicrostructurAl studies by scanning electron microscope equipped with EDS spot anAlysis and X-ray diffraction phase anAlysis reveAled the formation of Al3Mg2 intermetAllic compound in the 4-pass FS-processed sample. MicrostructurAl studies reveAled the significant effect of number of All&fgrp=All&fyrs=All" target="_blank">FSP passes and using of Mg particles on the grain size of the All&fgrp=All&fyrs=All" target="_blank">FSP area, i. e. grain size in this area changed from 50 10 μ m in the FS-processed sample with one pass and without Mg particles to 6 2 μ m in FS-Processed sample with four passes and Mg particles. Tensile Strength test showed a 70% improvement of tensile Strength of the All&fgrp=All&fyrs=All" target="_blank">Composite compared to that of the base metAl.

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  • Cite

    APA: Copy

    Mosalaeepour, M., & Arshadi Rastabi, Sh.. (2018). In-situ Composition of Al/Al3Mg2 on Al-1050 Surface by Friction Stir Processing. JOURNAL OF METALLURGICAL AND MATERIALS ENGINEERING (JOURNAL OF SCHOOL OF ENGINEERING), 29(1 ), 63-78. SID. https://sid.ir/paper/196048/en

    Vancouver: Copy

    Mosalaeepour M., Arshadi Rastabi Sh.. In-situ Composition of Al/Al3Mg2 on Al-1050 Surface by Friction Stir Processing. JOURNAL OF METALLURGICAL AND MATERIALS ENGINEERING (JOURNAL OF SCHOOL OF ENGINEERING)[Internet]. 2018;29(1 ):63-78. Available from: https://sid.ir/paper/196048/en

    IEEE: Copy

    M. Mosalaeepour, and Sh. Arshadi Rastabi, “In-situ Composition of Al/Al3Mg2 on Al-1050 Surface by Friction Stir Processing,” JOURNAL OF METALLURGICAL AND MATERIALS ENGINEERING (JOURNAL OF SCHOOL OF ENGINEERING), vol. 29, no. 1 , pp. 63–78, 2018, [Online]. Available: https://sid.ir/paper/196048/en

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