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246972

Modelling and Optimization of CO2 Laser Turning Process for Armored Steel Assisted by Oxygen

Article

Last updated: 25 Dec 2024

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Abstract

The current paper investigates the performance of armored steel (500HB) when machined by CO2 laser turning process (LTP) with oxygen gas assistance for grooving operation. The different working parameters were investigated which include; laser power (P), gas pressure (GP) feed rate (F) and motor speed (S). The different groove dimensions and were considered as the model responses which include; depth of cut (DC), upper cut width (UC) and lower cut width (LC), in addition to the performance aspects of root round error and metal removal rate (MRR). For this purpose, a test rig was designed and fabricated. The experimental results are mathematically modeled by response surface methodology. The results are modeled and illustrated to closely understand the effect and surface quality of CO2-LTMP. The optimum process condition for grooving Armored Steel (500HB) were identified. Results showed that, DC and width of cut and roundness error increase with increasing P and GP, but MRR decreases with increasing F. The motor speed has a moderate effect on the machining process of armored steel under investigation. The optimal combination of machining conditions maximized MRR, DC, LC, UC and minimized root round error to 0.0384 gm, 0.6632 mm, 0.2583 mm, 0.4684 mm and 15.7832 µm respectively. The error between optimum experimental results and the optimum predicted values for MRR, DC, LC, UC and root round error lie within 2.8%, 2.6%, 2.9%, 1% and 6.9%, respectively.

DOI

10.21608/erjm.2022.131890.1161

Keywords

Armored steel, Material Removal Rate (MRR), Response Surface Methodology (RSM), laser turning process (LTP)

Authors

First Name

Wisam

Last Name

Faruk

MiddleName

M.

Affiliation

W.M. Farouk Mechanical Engineering department, Faculty of engineering. (Benha), Benha. University,

Email

wisam_faruk@yahoo.com

City

Benha

Orcid

-

First Name

Ahmed

Last Name

Rezk

MiddleName

M.

Affiliation

Ahmed Mohamed Mechanical Design Department, Engineering Faculty, Minia University, Egypt.

Email

ahmed.mohamed19751975@gmail.com

City

Benha

Orcid

-

First Name

Wagih

Last Name

Marzouk

MiddleName

W

Affiliation

Wagih Marzouk Mechanical Design Department, Engineering Faculty, Minia University, Egypt.

Email

wisam.faruk@gmail.com

City

cairo

Orcid

-

First Name

Faiz

Last Name

Abo ghriba

MiddleName

E

Affiliation

Faiz Abo ghriba Mechanical Design Department, Engineering Faculty, Minia University, Egypt

Email

w.faruk@yahoo.com

City

Benha

Orcid

-

First Name

El-Awady

Last Name

Attia

MiddleName

Attia

Affiliation

El-Awady Attia Industrial Engineering Department, College of engineering, Prince Sattam Bin Abdulaziz.University, Alkharj, Saudi.Arabia. & Mechanical Engineering department, Faculty of engineering (Shoubra), Benha University, Cairo, Egypt

Email

el-awadyattia@yahoo.com

City

Benha

Orcid

-

Volume

45

Article Issue

3

Related Issue

35317

Issue Date

2022-07-01

Receive Date

2022-04-06

Publish Date

2022-07-01

Page Start

341

Page End

361

Print ISSN

1110-1180

Online ISSN

3009-6944

Link

https://erjm.journals.ekb.eg/article_246972.html

Detail API

https://erjm.journals.ekb.eg/service?article_code=246972

Order

8

Type

Original Article

Type Code

1,118

Publication Type

Journal

Publication Title

ERJ. Engineering Research Journal

Publication Link

https://erjm.journals.ekb.eg/

MainTitle

Modelling and Optimization of CO2 Laser Turning Process for Armored Steel Assisted by Oxygen

Details

Type

Article

Created At

22 Jan 2023