Report on industrial attachment with Advanced Technology Research Centre : processing and characterization of oxidizer-coated metal powders

In the processing of oxidizer-coated fuel, a co-spray drying of a feed mixture of Al and NaNO2 (in solution) was carried out. The process parameters (Table 1) adopted was derived from an optimized process condition for the spray drying of 1%w/v of NaNO2 which resulted in spherical clusters of NaNO2...

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Main Author: Lee, Priscilla Li Yi.
Other Authors: Hng Huey Hoon
Format: Industrial Attachment (IA)
Language:English
Published: 2011
Subjects:
Online Access:http://hdl.handle.net/10356/46524
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-465242023-03-04T15:43:09Z Report on industrial attachment with Advanced Technology Research Centre : processing and characterization of oxidizer-coated metal powders Lee, Priscilla Li Yi. Hng Huey Hoon School of Materials Science & Engineering Advanced Technology Research Centre (ATREC) DRNTU::Engineering::Materials In the processing of oxidizer-coated fuel, a co-spray drying of a feed mixture of Al and NaNO2 (in solution) was carried out. The process parameters (Table 1) adopted was derived from an optimized process condition for the spray drying of 1%w/v of NaNO2 which resulted in spherical clusters of NaNO2 of relative uniform particle size range of 80 to 150 μm. Both spherical Al of 3.84μm (NHY130) and granules Al of 15μm (NHY100) were used in separate co-spray drying processes to study the effect of the difference in morphology of Al used on the resulting morphology of the co-spray dried products. As a result, spherical clusters of Al and NaNO2 of particle size range of 174 – 326 μm were produced from the usage of both NHY130 and NHY100 in feed formulations of Al: NaNO2 = 1:9, 3:7 and 1:1 weight ratios. The only difference between the usages of different Al was that spherical clusters of 1S1 were of bigger particle size than that of 1N1, which was due to the formation of hollow structures in 1S1. (Table 2) This phenomenon was attributed to the much smaller size of the Al particles (5μm) used as compared to the spray dried NaNO2 of about 100μm. 2011-12-13T06:49:39Z 2011-12-13T06:49:39Z 2010 2010 Industrial Attachment (IA) http://hdl.handle.net/10356/46524 en Nanyang Technological University 86 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::Materials
spellingShingle DRNTU::Engineering::Materials
Lee, Priscilla Li Yi.
Report on industrial attachment with Advanced Technology Research Centre : processing and characterization of oxidizer-coated metal powders
description In the processing of oxidizer-coated fuel, a co-spray drying of a feed mixture of Al and NaNO2 (in solution) was carried out. The process parameters (Table 1) adopted was derived from an optimized process condition for the spray drying of 1%w/v of NaNO2 which resulted in spherical clusters of NaNO2 of relative uniform particle size range of 80 to 150 μm. Both spherical Al of 3.84μm (NHY130) and granules Al of 15μm (NHY100) were used in separate co-spray drying processes to study the effect of the difference in morphology of Al used on the resulting morphology of the co-spray dried products. As a result, spherical clusters of Al and NaNO2 of particle size range of 174 – 326 μm were produced from the usage of both NHY130 and NHY100 in feed formulations of Al: NaNO2 = 1:9, 3:7 and 1:1 weight ratios. The only difference between the usages of different Al was that spherical clusters of 1S1 were of bigger particle size than that of 1N1, which was due to the formation of hollow structures in 1S1. (Table 2) This phenomenon was attributed to the much smaller size of the Al particles (5μm) used as compared to the spray dried NaNO2 of about 100μm.
author2 Hng Huey Hoon
author_facet Hng Huey Hoon
Lee, Priscilla Li Yi.
format Industrial Attachment (IA)
author Lee, Priscilla Li Yi.
author_sort Lee, Priscilla Li Yi.
title Report on industrial attachment with Advanced Technology Research Centre : processing and characterization of oxidizer-coated metal powders
title_short Report on industrial attachment with Advanced Technology Research Centre : processing and characterization of oxidizer-coated metal powders
title_full Report on industrial attachment with Advanced Technology Research Centre : processing and characterization of oxidizer-coated metal powders
title_fullStr Report on industrial attachment with Advanced Technology Research Centre : processing and characterization of oxidizer-coated metal powders
title_full_unstemmed Report on industrial attachment with Advanced Technology Research Centre : processing and characterization of oxidizer-coated metal powders
title_sort report on industrial attachment with advanced technology research centre : processing and characterization of oxidizer-coated metal powders
publishDate 2011
url http://hdl.handle.net/10356/46524
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