Micro-cutting of biocomplatible materials used for medical applications

Micro-end milling is one of the promising methods for rapid fabrication of features with 3D complex shapes. However, controlling the micro-end milling process to obtain the desired results is more challenging compared to that of macro-end milling due to the size effect and uncontrollable factors suc...

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Main Author: Kushendarsyah, Saptaji
Format: Research Book Profile
Language:English
Published: 2017
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/36246/1/Micro-cutting%20of%20biocomplatible%20materials%20used%20for%20medical%20applications.pdf
http://umpir.ump.edu.my/id/eprint/36246/
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Institution: Universiti Malaysia Pahang
Language: English
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spelling my.ump.umpir.362462023-01-04T02:03:40Z http://umpir.ump.edu.my/id/eprint/36246/ Micro-cutting of biocomplatible materials used for medical applications Kushendarsyah, Saptaji TS Manufactures Micro-end milling is one of the promising methods for rapid fabrication of features with 3D complex shapes. However, controlling the micro-end milling process to obtain the desired results is more challenging compared to that of macro-end milling due to the size effect and uncontrollable factors such as vibrations, burrs and tool breakage. The problem is much pronounced when workpiece material is a difficult-to-process material such as titanium-based alloys which are widely used as material of choice for medical implants. The objective of this research is to study the micro milling of selected bio-compatible materials which in this case is titanium alloys. The study is focused mainly on the experimental work on the effect of machining parameters especially feed rate and depth of cut with constant spindle speed in wet and dry condition on Ti-6Al-4V's surface roughness using micro-milling process. This experiment was design using Design of Experiment (DOE) method and few numbers of experiments were constructed. The result from this research can be applied in the production of the biomedical implants especially those consist of micro-scale features. The implants are being used in many different parts of the body for various applications such as orthopedics, pacemakers, cardiovascular stents, neural prosthetics or drug delivery system. The results show that feed rate is the most critical parameter which effect on surface roughness during machining process followed by depth of cut. Dry condition shows better surface quality compared to wet condition. 2017 Research Book Profile NonPeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/36246/1/Micro-cutting%20of%20biocomplatible%20materials%20used%20for%20medical%20applications.pdf Kushendarsyah, Saptaji (2017) Micro-cutting of biocomplatible materials used for medical applications. , [Research Book Profile: Research Report] (Unpublished)
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic TS Manufactures
spellingShingle TS Manufactures
Kushendarsyah, Saptaji
Micro-cutting of biocomplatible materials used for medical applications
description Micro-end milling is one of the promising methods for rapid fabrication of features with 3D complex shapes. However, controlling the micro-end milling process to obtain the desired results is more challenging compared to that of macro-end milling due to the size effect and uncontrollable factors such as vibrations, burrs and tool breakage. The problem is much pronounced when workpiece material is a difficult-to-process material such as titanium-based alloys which are widely used as material of choice for medical implants. The objective of this research is to study the micro milling of selected bio-compatible materials which in this case is titanium alloys. The study is focused mainly on the experimental work on the effect of machining parameters especially feed rate and depth of cut with constant spindle speed in wet and dry condition on Ti-6Al-4V's surface roughness using micro-milling process. This experiment was design using Design of Experiment (DOE) method and few numbers of experiments were constructed. The result from this research can be applied in the production of the biomedical implants especially those consist of micro-scale features. The implants are being used in many different parts of the body for various applications such as orthopedics, pacemakers, cardiovascular stents, neural prosthetics or drug delivery system. The results show that feed rate is the most critical parameter which effect on surface roughness during machining process followed by depth of cut. Dry condition shows better surface quality compared to wet condition.
format Research Book Profile
author Kushendarsyah, Saptaji
author_facet Kushendarsyah, Saptaji
author_sort Kushendarsyah, Saptaji
title Micro-cutting of biocomplatible materials used for medical applications
title_short Micro-cutting of biocomplatible materials used for medical applications
title_full Micro-cutting of biocomplatible materials used for medical applications
title_fullStr Micro-cutting of biocomplatible materials used for medical applications
title_full_unstemmed Micro-cutting of biocomplatible materials used for medical applications
title_sort micro-cutting of biocomplatible materials used for medical applications
publishDate 2017
url http://umpir.ump.edu.my/id/eprint/36246/1/Micro-cutting%20of%20biocomplatible%20materials%20used%20for%20medical%20applications.pdf
http://umpir.ump.edu.my/id/eprint/36246/
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