Husain, Md Murtuja and Halder, N and Meena, L K and Ghosh, M (2023) Evaluation of Microstructure, Mechanical Properties, Wear Resistance and Corrosion Behaviour of Friction Stir‑Processed AZ31B‑H24 Magnesium Alloy. Metallography, Microstructure & analysis.
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Abstract
In the present investigation, friction stir processing has been done on AZ31B-H24 virgin magnesium alloy. Traversing
speed and rotational speed of tool were 20–80 mm/min and 900 rpm, respectively. Microstructure, micro-hardness, wear
resistance and corrosion property of processed alloy were investigated. Friction stir processing produced ultra-fne grain of
2.5–3 μm size at weld nugget. Micro-hardness at weld nugget was in the range of 68–72 VHN and became higher than that
of the virgin alloy (~ 59 VHN). Maximum tensile strength of ~218 MPa, yield strength of ~122 MPa, and total elongation
of~8.1% were obtained for friction stir-processed magnesium alloy, when produced with 80 mm/min tool traversing speed.
Reduction in specifc wear rate for all specimens was more than 99% when compared with virgin alloy. The fnding was
attributed to the change in mechanism of wear from virgin to processed alloy. Micro-cutting/micro-groove formation was
evident during wear for virgin alloy; on the contrary, friction stir-processed specimens exhibited micro-ploughing along with
wide, blunt, and restricted groove formation. Corrosion resistance of same specimens was reduced as compared to virgin
material (~ 0.08 mm/year). Maximum corrosion rate was observed for specimen processed at 80 mm/min tool traversing
speed (~0.24 mm/year). It is noteworthy that overall corrosion resistance of friction stir-processed alloy was enhanced with
decrement in tool traversing speed. At the same time with reference to available literature data, the corrosion resistance of Mg alloy in present experimentation revealed improvement with respect to various Mg alloys, produced through other complementary techniques. The signifcant improvement in wear resistance along with little reduction in corrosion resistance was attributed to the structural modifcation of friction stir-processed Mg alloy
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | Friction stir processing · Magnesium alloy · Micro-hardness · Corrosion resistance · Wear resistance |
| Subjects: | Materials Science > Materials Charcterization |
| Divisions: | Material Science and Technology |
| Depositing User: | Dr Mainak Ghosh |
| Date Deposited: | 17 Feb 2023 07:08 |
| Last Modified: | 04 Sep 2026 00:25 |
| URI: | http://eprints.nmlindia.org/id/eprint/9364 |

