High speed milling of silicon carbide with diamond coated end mills
The primary applications of silicon carbide SiC-based materials, which include include micro-structures, optoelectronic devices, high temperature electronics, radiation hard electronics and high power/high frequency devices to name a few have necessitated the need for machining SiC. The paper pre...
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iium-284702013-02-13T13:43:16Z http://irep.iium.edu.my/28470/ High speed milling of silicon carbide with diamond coated end mills Konneh, Mohamed Iqbal, Mohammad Kasim, Md Asnawi Mohd Isa, Nurbahiah TJ1125 Machine shops and machine shop practice The primary applications of silicon carbide SiC-based materials, which include include micro-structures, optoelectronic devices, high temperature electronics, radiation hard electronics and high power/high frequency devices to name a few have necessitated the need for machining SiC. The paper presents the outcome of milling of silicon carbide using diamond coated end mill under different machining conditions in order to determine the surface roughness parameter after the machining processes. Relationship between the machining parameters and response variables has been established and a mathematical model has been predicted, the minimum roughness value, Rz being 0.19 μm. Trans Tech Publications 2012 Article PeerReviewed application/pdf en http://irep.iium.edu.my/28470/1/High_Speed_Milling_of_Silicon_Carbide_with_Diamond_Coated_End_Mills.pdf Konneh, Mohamed and Iqbal, Mohammad and Kasim, Md Asnawi and Mohd Isa, Nurbahiah (2012) High speed milling of silicon carbide with diamond coated end mills. Advanced Materials Research, 576. pp. 535-538. ISSN 1022-6680 http://www.scientific.net/AMR.576.535 |
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TJ1125 Machine shops and machine shop practice |
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TJ1125 Machine shops and machine shop practice Konneh, Mohamed Iqbal, Mohammad Kasim, Md Asnawi Mohd Isa, Nurbahiah High speed milling of silicon carbide with diamond coated end mills |
description |
The primary applications of silicon carbide SiC-based materials, which include include
micro-structures, optoelectronic devices, high temperature electronics, radiation hard electronics
and high power/high frequency devices to name a few have necessitated the need for machining
SiC. The paper presents the outcome of milling of silicon carbide using diamond coated end mill
under different machining conditions in order to determine the surface roughness parameter after
the machining processes. Relationship between the machining parameters and response variables
has been established and a mathematical model has been predicted, the minimum roughness value,
Rz being 0.19 μm. |
format |
Article |
author |
Konneh, Mohamed Iqbal, Mohammad Kasim, Md Asnawi Mohd Isa, Nurbahiah |
author_facet |
Konneh, Mohamed Iqbal, Mohammad Kasim, Md Asnawi Mohd Isa, Nurbahiah |
author_sort |
Konneh, Mohamed |
title |
High speed milling of silicon carbide with diamond coated end mills |
title_short |
High speed milling of silicon carbide with diamond coated end mills |
title_full |
High speed milling of silicon carbide with diamond coated end mills |
title_fullStr |
High speed milling of silicon carbide with diamond coated end mills |
title_full_unstemmed |
High speed milling of silicon carbide with diamond coated end mills |
title_sort |
high speed milling of silicon carbide with diamond coated end mills |
publisher |
Trans Tech Publications |
publishDate |
2012 |
url |
http://irep.iium.edu.my/28470/ http://irep.iium.edu.my/28470/ http://irep.iium.edu.my/28470/1/High_Speed_Milling_of_Silicon_Carbide_with_Diamond_Coated_End_Mills.pdf |
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2023-09-18T20:41:59Z |
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2023-09-18T20:41:59Z |
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