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Optimization Of Cutting Parameters On Surface Roughness And Material Removal Rate Using Response Surface Methodology In Turning Process Of Al- 7075 With High Speed Steel

Article

Last updated: 29 Dec 2024

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Abstract

This work presents an experimental study to optimize the effect of cutting condition (cutting speed N& feed f& depth of
cut) on surface roughness SR (Centre line average roughness (Ra)&Root mean square roughness (Rq)) and material
removal rate MRR. Al-7075 workpiece is the experimental material on turning process with HSS. Response surface
methodology is the statistical technique used for modelling and analysing. Feed is the most effective parameter on SR.
However, MRR has two effective parameters, cutting speed, feed rate.

DOI

10.21608/erjsh.2019.242407

Keywords

Surface roughness, Turning, Response surface methodology, cutting conditions

Authors

First Name

Gilan

Last Name

Eid Ramadan

MiddleName

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Affiliation

Mechanical engineering department Modern Academy

Email

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City

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Orcid

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First Name

Naser

Last Name

aldin Ahmed Ibrahim

MiddleName

-

Affiliation

Mechanical engineering department Modern Academy

Email

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City

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Orcid

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First Name

Sayed

Last Name

Abd ELwanis abd allah

MiddleName

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Affiliation

Mechanical engineering department ,Shoubra faculty of engineering ,Benha university

Email

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Orcid

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Volume

42

Article Issue

1

Related Issue

34792

Issue Date

2019-10-01

Receive Date

2022-06-07

Publish Date

2019-10-01

Page Start

15

Page End

22

Print ISSN

3009-6049

Online ISSN

3009-6022

Link

https://erjsh.journals.ekb.eg/article_242407.html

Detail API

https://erjsh.journals.ekb.eg/service?article_code=242407

Order

242,407

Type

Research articles

Type Code

2,276

Publication Type

Journal

Publication Title

Engineering Research Journal (Shoubra)

Publication Link

https://erjsh.journals.ekb.eg/

MainTitle

Optimization Of Cutting Parameters On Surface Roughness And Material Removal Rate Using Response Surface Methodology In Turning Process Of Al- 7075 With High Speed Steel

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Type

Article

Created At

23 Jan 2023