Selecting of cutting parameters from prediction model of cutting force for turning nickel based hastelloy C-276 using response surface methodology

Industries around the world continually strive for lower cost solutions with reduced lead time in order to maintain their competitiveness. Traditionally, most Nickel based super alloy parts are hard machining. Machinability consideration of nickel based Hastelloy C-276 in turning operations has been...

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Main Authors: Khidhir B.A., Mohamed B.
Other Authors: 35801121900
Format: Article
Published: EuroJournals, Inc. 2023
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spelling my.uniten.dspace-309142023-12-29T15:55:47Z Selecting of cutting parameters from prediction model of cutting force for turning nickel based hastelloy C-276 using response surface methodology Khidhir B.A. Mohamed B. 35801121900 35801233900 Cutting speed First order (linear + interaction) High speed camera Surface response methodology Industries around the world continually strive for lower cost solutions with reduced lead time in order to maintain their competitiveness. Traditionally, most Nickel based super alloy parts are hard machining. Machinability consideration of nickel based Hastelloy C-276 in turning operations has been carried out using ceramic inserts under dry conditions. Hastelloy C-276 is a difficult-to-machine material because of its low thermal diffusive property and high strength at high temperature. This paper describes the selecting of a cutting speed and feed rate from the charts that depends on cutting force model for turning Hastelloy C-276 utilizing response surface methodology. The model found to be accurate based on the variance analysis and the predicted value is closer with the experimental result. On - line monitoring used through High speed camera. This technique shows its benefits when analyzing the cutting path. From the detailed pictures one can easily observe that the selecting of the machining parameters not the only factors that depends on the cutting force but also another factors such as the chatter occurred during cutting that caused by round inserts or by burr formation occur during cutting and increase sincerely when approach angles increasingly from 45� to 95� consequently and its effected by increasing the feed rate as a result. The pictures gave good evidence that the observation during cutting must included in the chart to select the accurate magnitude for cutting parameters such as cutting speed, feed rate and depth of cut. � EuroJournals Publishing, Inc. 2009. Final 2023-12-29T07:55:47Z 2023-12-29T07:55:47Z 2009 Article 2-s2.0-68349135005 https://www.scopus.com/inward/record.uri?eid=2-s2.0-68349135005&partnerID=40&md5=9a99932ce38926e3691eb3ab7dec5ff4 https://irepository.uniten.edu.my/handle/123456789/30914 33 3 525 535 EuroJournals, Inc. Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
topic Cutting speed
First order (linear + interaction)
High speed camera
Surface response methodology
spellingShingle Cutting speed
First order (linear + interaction)
High speed camera
Surface response methodology
Khidhir B.A.
Mohamed B.
Selecting of cutting parameters from prediction model of cutting force for turning nickel based hastelloy C-276 using response surface methodology
description Industries around the world continually strive for lower cost solutions with reduced lead time in order to maintain their competitiveness. Traditionally, most Nickel based super alloy parts are hard machining. Machinability consideration of nickel based Hastelloy C-276 in turning operations has been carried out using ceramic inserts under dry conditions. Hastelloy C-276 is a difficult-to-machine material because of its low thermal diffusive property and high strength at high temperature. This paper describes the selecting of a cutting speed and feed rate from the charts that depends on cutting force model for turning Hastelloy C-276 utilizing response surface methodology. The model found to be accurate based on the variance analysis and the predicted value is closer with the experimental result. On - line monitoring used through High speed camera. This technique shows its benefits when analyzing the cutting path. From the detailed pictures one can easily observe that the selecting of the machining parameters not the only factors that depends on the cutting force but also another factors such as the chatter occurred during cutting that caused by round inserts or by burr formation occur during cutting and increase sincerely when approach angles increasingly from 45� to 95� consequently and its effected by increasing the feed rate as a result. The pictures gave good evidence that the observation during cutting must included in the chart to select the accurate magnitude for cutting parameters such as cutting speed, feed rate and depth of cut. � EuroJournals Publishing, Inc. 2009.
author2 35801121900
author_facet 35801121900
Khidhir B.A.
Mohamed B.
format Article
author Khidhir B.A.
Mohamed B.
author_sort Khidhir B.A.
title Selecting of cutting parameters from prediction model of cutting force for turning nickel based hastelloy C-276 using response surface methodology
title_short Selecting of cutting parameters from prediction model of cutting force for turning nickel based hastelloy C-276 using response surface methodology
title_full Selecting of cutting parameters from prediction model of cutting force for turning nickel based hastelloy C-276 using response surface methodology
title_fullStr Selecting of cutting parameters from prediction model of cutting force for turning nickel based hastelloy C-276 using response surface methodology
title_full_unstemmed Selecting of cutting parameters from prediction model of cutting force for turning nickel based hastelloy C-276 using response surface methodology
title_sort selecting of cutting parameters from prediction model of cutting force for turning nickel based hastelloy c-276 using response surface methodology
publisher EuroJournals, Inc.
publishDate 2023
_version_ 1806423506832850944
score 13.214268