Understanding the structural and magnetic properties of Ni0.77Fe0.16Cu0.05Cr0.02 by mechanical alloying

Nanomagnetic materials have been widely employed in the industry as they possess special magnetic properties. Nickel based soft magnetic materials which have low coercivity and high permeability have been used on recording heads, transformers and magnetic shielding materials. The aim of this final y...

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Main Author: Sim, Wenchao.
Other Authors: Oh Joo Tien
Format: Final Year Project
Language:English
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/10356/15439
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-154392023-03-04T15:38:45Z Understanding the structural and magnetic properties of Ni0.77Fe0.16Cu0.05Cr0.02 by mechanical alloying Sim, Wenchao. Oh Joo Tien School of Materials Science and Engineering DRNTU::Engineering Nanomagnetic materials have been widely employed in the industry as they possess special magnetic properties. Nickel based soft magnetic materials which have low coercivity and high permeability have been used on recording heads, transformers and magnetic shielding materials. The aim of this final year project is to investigate the effects of mechanical alloying of Ni0.77Fe0.16Cu0.05Cr0.02 (mumetal) on its magnetic properties. The mumetal powders are synthesized by planetary high energy ball milling under argon atmosphere for milling ranging from 0 hr to 96 hr. Subsequently, investigation and evaluation on the crystallite size, composition and morphology by the use of X-ray diffraction (XRD) and scanning electron microscopy (SEM). The magnetic properties were examined by vibrating sample magnetometer (VSM). Results shown that with increasing milling time, the particle size decreases and after 12 hrs, crystallite size of 12nm mumetal was formed. The lattice parameter increases due to the binding of different elements of different lattice parameters. Saturation magnetization increases with milling time whereas the coercivity and retentivity have an opposite effect. Bachelor of Engineering (Materials Engineering) 2009-04-30T01:34:50Z 2009-04-30T01:34:50Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/15439 en Nanyang Technological University 52 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering
spellingShingle DRNTU::Engineering
Sim, Wenchao.
Understanding the structural and magnetic properties of Ni0.77Fe0.16Cu0.05Cr0.02 by mechanical alloying
description Nanomagnetic materials have been widely employed in the industry as they possess special magnetic properties. Nickel based soft magnetic materials which have low coercivity and high permeability have been used on recording heads, transformers and magnetic shielding materials. The aim of this final year project is to investigate the effects of mechanical alloying of Ni0.77Fe0.16Cu0.05Cr0.02 (mumetal) on its magnetic properties. The mumetal powders are synthesized by planetary high energy ball milling under argon atmosphere for milling ranging from 0 hr to 96 hr. Subsequently, investigation and evaluation on the crystallite size, composition and morphology by the use of X-ray diffraction (XRD) and scanning electron microscopy (SEM). The magnetic properties were examined by vibrating sample magnetometer (VSM). Results shown that with increasing milling time, the particle size decreases and after 12 hrs, crystallite size of 12nm mumetal was formed. The lattice parameter increases due to the binding of different elements of different lattice parameters. Saturation magnetization increases with milling time whereas the coercivity and retentivity have an opposite effect.
author2 Oh Joo Tien
author_facet Oh Joo Tien
Sim, Wenchao.
format Final Year Project
author Sim, Wenchao.
author_sort Sim, Wenchao.
title Understanding the structural and magnetic properties of Ni0.77Fe0.16Cu0.05Cr0.02 by mechanical alloying
title_short Understanding the structural and magnetic properties of Ni0.77Fe0.16Cu0.05Cr0.02 by mechanical alloying
title_full Understanding the structural and magnetic properties of Ni0.77Fe0.16Cu0.05Cr0.02 by mechanical alloying
title_fullStr Understanding the structural and magnetic properties of Ni0.77Fe0.16Cu0.05Cr0.02 by mechanical alloying
title_full_unstemmed Understanding the structural and magnetic properties of Ni0.77Fe0.16Cu0.05Cr0.02 by mechanical alloying
title_sort understanding the structural and magnetic properties of ni0.77fe0.16cu0.05cr0.02 by mechanical alloying
publishDate 2009
url http://hdl.handle.net/10356/15439
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