Alternative oxidants and processing procedures for pyrotechnic time delays

This study was directed at the pyrotechnic time delay compositions that are used in detonator assemblies. The objectives were to: --Investigate effective alternatives for the barium and lead-based oxidants currently used, maintaining the use of silicon as fuel --Develop easy to use, realistic measur...

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Main Author: Ricco, Isabel Maria Moreira
Other Authors: Prof W Focke
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/2263/27915
Ricco, I 2004, Alternative oxidants and processing procedures for pyrotechnic time delays, MEng dissertation, University of Pretoria, Pretoria, viewed yymmdd < http://hdl.handle.net/2263/27915 >
http://upetd.up.ac.za/thesis/available/etd-09132005-115831/
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-up-oai-repository.up.ac.za-2263-279152017-07-20T04:11:28Z Alternative oxidants and processing procedures for pyrotechnic time delays Ricco, Isabel Maria Moreira Prof W Focke isabel.ferreira@sappi.com Detonator Antimony trioxide Lead chromate Silicon Burn speed Copper antimonite Time delay Pyrotechnic UCTD This study was directed at the pyrotechnic time delay compositions that are used in detonator assemblies. The objectives were to: --Investigate effective alternatives for the barium and lead-based oxidants currently used, maintaining the use of silicon as fuel --Develop easy to use, realistic measurement techniques for burn rates and shock tube ignitability --Determine the variables that affect burn rate, and --Evaluate alternative processing routes to facilitate intimate mixing of the component powders. Lead chromate and copper antimonite were found to be suitable oxidants for silicon in time delay compositions. They were ignitable by shock tubing, a relatively weak ignition source. The measured burn speeds for these systems showed a bimodal dependence on stoichiometry. Measured burn rates varied between 6-28 mm/s. Lead chromate is potentially a suitable alternative to the oxidant currently used in the medium burn rate commercial composition. It burns faster than copper antimonite. The latter is potentially a suitable replacement oxidant for the slow and medium compositions. Antimony trioxide-based compositions exhibited unreliable performance with respect to ignition with shock tubing. The addition of aluminium powder or fumed silica was found to reduce the burn rate. Increasing the silicon particle size (<3,5<font face="symbol">m</font>m) also decreased the burn speed for copper antimonite and lead chromate compositions. Addition of fumed silica improved the flow properties of the lead chromate, copper antimonite and antimony trioxide powders allowing for easier mixing. The silicon powder was found to react violently with water in alkaline solutions. This makes particle dispersion in a wet-mixing process problematic. Dissertation (MEng (Chemical Engineering))--University of Pretoria, 2006. Chemical Engineering unrestricted 2013-09-07T12:34:41Z 2005-09-13 2013-09-07T12:34:41Z 2004-12-12 2006-09-13 2005-09-13 Dissertation http://hdl.handle.net/2263/27915 Ricco, I 2004, Alternative oxidants and processing procedures for pyrotechnic time delays, MEng dissertation, University of Pretoria, Pretoria, viewed yymmdd < http://hdl.handle.net/2263/27915 > http://upetd.up.ac.za/thesis/available/etd-09132005-115831/ © 2004, University of Pretoria. All rights reserved. The copyright in this work vests in the University of Pretoria. No part of this work may be reproduced or transmitted in any form or by any means, without the prior written permission of the University of Pretoria.
collection NDLTD
sources NDLTD
topic Detonator
Antimony trioxide
Lead chromate
Silicon
Burn speed
Copper antimonite
Time delay
Pyrotechnic
UCTD
spellingShingle Detonator
Antimony trioxide
Lead chromate
Silicon
Burn speed
Copper antimonite
Time delay
Pyrotechnic
UCTD
Ricco, Isabel Maria Moreira
Alternative oxidants and processing procedures for pyrotechnic time delays
description This study was directed at the pyrotechnic time delay compositions that are used in detonator assemblies. The objectives were to: --Investigate effective alternatives for the barium and lead-based oxidants currently used, maintaining the use of silicon as fuel --Develop easy to use, realistic measurement techniques for burn rates and shock tube ignitability --Determine the variables that affect burn rate, and --Evaluate alternative processing routes to facilitate intimate mixing of the component powders. Lead chromate and copper antimonite were found to be suitable oxidants for silicon in time delay compositions. They were ignitable by shock tubing, a relatively weak ignition source. The measured burn speeds for these systems showed a bimodal dependence on stoichiometry. Measured burn rates varied between 6-28 mm/s. Lead chromate is potentially a suitable alternative to the oxidant currently used in the medium burn rate commercial composition. It burns faster than copper antimonite. The latter is potentially a suitable replacement oxidant for the slow and medium compositions. Antimony trioxide-based compositions exhibited unreliable performance with respect to ignition with shock tubing. The addition of aluminium powder or fumed silica was found to reduce the burn rate. Increasing the silicon particle size (<3,5<font face="symbol">m</font>m) also decreased the burn speed for copper antimonite and lead chromate compositions. Addition of fumed silica improved the flow properties of the lead chromate, copper antimonite and antimony trioxide powders allowing for easier mixing. The silicon powder was found to react violently with water in alkaline solutions. This makes particle dispersion in a wet-mixing process problematic. === Dissertation (MEng (Chemical Engineering))--University of Pretoria, 2006. === Chemical Engineering === unrestricted
author2 Prof W Focke
author_facet Prof W Focke
Ricco, Isabel Maria Moreira
author Ricco, Isabel Maria Moreira
author_sort Ricco, Isabel Maria Moreira
title Alternative oxidants and processing procedures for pyrotechnic time delays
title_short Alternative oxidants and processing procedures for pyrotechnic time delays
title_full Alternative oxidants and processing procedures for pyrotechnic time delays
title_fullStr Alternative oxidants and processing procedures for pyrotechnic time delays
title_full_unstemmed Alternative oxidants and processing procedures for pyrotechnic time delays
title_sort alternative oxidants and processing procedures for pyrotechnic time delays
publishDate 2013
url http://hdl.handle.net/2263/27915
Ricco, I 2004, Alternative oxidants and processing procedures for pyrotechnic time delays, MEng dissertation, University of Pretoria, Pretoria, viewed yymmdd < http://hdl.handle.net/2263/27915 >
http://upetd.up.ac.za/thesis/available/etd-09132005-115831/
work_keys_str_mv AT riccoisabelmariamoreira alternativeoxidantsandprocessingproceduresforpyrotechnictimedelays
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