Skip to content Skip to footer

Journal of Science and Engineering Papers

Doi: https://doi.org/10.62275/josep.24.1000001

ISSN: 3006-3191 (Online)

Science and Engineering for the Comprehensive Futures                                                                                                                                                                                                                             Call for Article

Lightweight Aluminum Alloy for Energy Saving Green Vehicle

Volume: 02
Issue: 01
Views: 32
Original Research Article
Pollution remediation
Lightweight Aluminum Alloy for Energy Saving Green Vehicle
S M Khalid Hossain* and Syed Nahid Ahmed
Department of Materials and Metallurgical Engineering, Bangladesh University of Engineering and Technology, Dhaka-1000, Bangladesh
Year: 2025
Page: 109-112

This work is licensed under CC BY-SA 4.0

Crossref logo

Downloads : 32

Abstract

This study is devoted to the development of lightweight Aluminum alloy to reduce energy consumption and environment pollution in automobile sector. Aluminum alloy shows impressive strength though they are lightweight. The effect of Cu on Al-5.5Zn-2.5Mg-xCu alloy has been studied and improvement in mechanical properties within a range has been observed. The optical microstructure confirmed the formation of Cu enriched brittle phase by solid solution strengthening and it accelerates the hardness and tensile strength. After certain limit strength followed the opposite trend so the material can be used as high strength material when the Cu content will be in a certain limit. In automobile sector vehicle parts made with this alloy material has less weight than commonly used steel. The total weight reduction of a vehicle will reduce the energy consumption which will ultimately eliminate the emission of environment pollutant gas.

How to Cite

S M Khalid Hossain* and Syed Nahid Ahmed
I.H. 2024. Lightweight Aluminum Alloy for Energy Saving Green Vehicle. Journal of Science and Engineering Papers . 
January 28, 2025.
  Doi: 10.62275/josep.25.1000017.
S M Khalid Hossain* and Syed Nahid Ahmed
Lightweight Aluminum Alloy for Energy Saving Green Vehicle.
  journal 2025, 28.
S M Khalid Hossain* and Syed Nahid Ahmed
I.H. 2024. Lightweight Aluminum Alloy for Energy Saving Green Vehicle. .Journal of Science and Engineering Papers . 
28 (1).
  https://doi.org/10.62275/josep.25.1000017.
S M Khalid Hossain* and Syed Nahid Ahmed
I.H. Lightweight Aluminum Alloy for Energy Saving Green Vehicle. Journal of Science and Engineering Papers . 
2025.
S M Khalid Hossain* and Syed Nahid Ahmed
2024." Lightweight Aluminum Alloy for Energy Saving Green Vehicle." Journal of Science and Engineering Papers . 
28 (1).
  https://doi.org/10.62275/josep.25.1000017.
S M Khalid Hossain* and Syed Nahid Ahmed
I.H. 2024. " Lightweight Aluminum Alloy for Energy Saving Green Vehicle." Journal of Science and Engineering Papers . 
28 (1).
  https://doi.org/10.62275/josep.25.1000017.
S M Khalid Hossain* and Syed Nahid Ahmed
, "Lightweight Aluminum Alloy for Energy Saving Green Vehicle". .Journal of Science and Engineering Papers . 
  journal Jan, 2025.
S M Khalid Hossain* and Syed Nahid Ahmed
"Lightweight Aluminum Alloy for Energy Saving Green Vehicle." Journal of Science and Engineering Papers . 
Jan, 2025.
  https://doi.org/10.62275/josep.25.1000017.
S M Khalid Hossain* and Syed Nahid Ahmed
"Lightweight Aluminum Alloy for Energy Saving Green Vehicle." Journal of Science and Engineering Papers . 
(Jan 28, 2025).
  https://doi.org/10.62275/josep.25.1000017.
S M Khalid Hossain* and Syed Nahid Ahmed
Lightweight Aluminum Alloy for Energy Saving Green Vehicle. Journal of Science and Engineering Papers . 
  journal [ Internet ] 28 Jan, 2025.
  [ Cited 28 Jan, 2025 ]
28 (1).
  https://doi.org/10.62275/josep.25.1000017.

Keywords

lightweight, strength, Al-5.5Zn-2.5Mg-xCu alloy, hardness, solid solution strengthening

Journal Metrics

Acceptance rate

-

Submission to final decision

-

Acceptance to publication

-

CiteScore

-

Journal Citation Indicator

-

Impact Score

-

APC

$12.5