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Original Articles

Ignition of Titanium Powder Layers by Electrostatic Discharge

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Pages 823-845 | Received 02 Nov 2010, Accepted 10 Jan 2011, Published online: 12 Apr 2011

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Read on this site (1)

E. Beloni & E.L. Dreizin. (2012) Model of heating and ignition of conductive polydisperse powder in electrostatic discharge. Combustion Theory and Modelling 16:6, pages 976-993.
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Articles from other publishers (17)

Andrew W. Marsh, Andy X. Zheng, Gwendolyn T. Wang, Michael L. Hobbs, Sean P. Kearney & Yi Chen Mazumdar. (2023) Evolution of titanium particle combustion in potassium perchlorate and air. Combustion and Flame 253, pages 112787.
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Changpu Shen, Yongxiang Li, Yi Wang & Xuemeng Xu. (2022) Analysis of static electricity generation and elimination in the process of food powder screw feeding. Journal of Food Process Engineering 45:11.
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Shomik Mukhopadhyay, Mirko Schoenitz & Edward L. Dreizin. (2022) Effect of reactive B–Ti powder morphology on its removal from a surface and ignition by electro-static discharge. Journal of Electrostatics 120, pages 103766.
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Mohammad Zhiani & Akbar Zare. (2022) Investigation of electrical resistivity and electrostatic discharge sensitivity of Mg/ Ba(NO3)2/novolac resin composite. Journal of Electrostatics 120, pages 103755.
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Lijun Qin, Ting Gong, Jianguo Li, Ning Yan, Longfei Hui & Hao Feng. (2019) Tuning ignition and energy release properties of Zirconium powder by atomic layer deposited metal oxide coatings. Journal of Hazardous Materials 378, pages 120655.
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Oleg G. Glotov. (2018) Ignition and combustion of titanium particles. Experimental methods and results. Uspekhi Fizicheskih Nauk 189:02, pages 135-171.
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O G Glotov. (2019) Ignition and combustion of titanium particles: experimental methods and results. Physics-Uspekhi 62:2, pages 131-165.
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Lijun Qin, Ning Yan, Haixia Hao, Ting An, Fengqi Zhao & Hao Feng. (2018) Surface engineering of zirconium particles by molecular layer deposition: Significantly enhanced electrostatic safety at minimum loss of the energy density. Applied Surface Science 436, pages 548-555.
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Chunmiao Yuan, Jingzhi Cai, Paul Amyotte, Chang Li, Yajie Bu, Kangfu Liu & Gang Li. (2018) Fire hazard of titanium powder layers mixed with inert nano TiO2 powder. Journal of Hazardous Materials 346, pages 19-26.
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Chunmiao Yuan, Kangfu Liu, Paul Amyotte, Chang Li, Jingzhi Cai, Fuqiang Wang & Gang Li. (2017) Electric spark ignition sensitivity of nano and micro Ti powder layers in the presence of inert nano TiO 2 powder. Journal of Loss Prevention in the Process Industries 46, pages 84-93.
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Fernando Galembeck & Thiago A. L. BurgoFernando Galembeck & Thiago A. L. Burgo. 2017. Chemical Electrostatics. Chemical Electrostatics 169 183 .
Mi Guang-Bao, Huang Xu, Cao Jing-Xia, Wang Bao & Cao Chun-Xiao. (2016) Microstructure characteristics of burning products of Ti-V-Cr fireproof titanium alloy by frictional ignition. Acta Physica Sinica 65:5, pages 056103.
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Rayon A. Williams, Jaymin V. Patel & Edward L. Dreizin. (2014) Ignition of Fully Dense Nanocomposite Thermite Powders by an Electric Spark. Journal of Propulsion and Power 30:3, pages 765-774.
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Jennifer Wong, Hak-Kim Chan & Philip Chi Lip Kwok. (2013) Electrostatics in pharmaceutical aerosols for inhalation. Therapeutic Delivery 4:8, pages 981-1002.
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Chelsea Weir, Michelle L. Pantoya, Gautham Ramachandran, Tim Dallas, Daniel Prentice & Michael Daniels. (2013) Electrostatic discharge sensitivity and electrical conductivity of composite energetic materials. Journal of Electrostatics 71:1, pages 77-83.
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Muhammad Kashif Iqbal Khan, Maarten A.I. Schutyser, Karin Schroën & Remko M. Boom. (2012) Electrostatic powder coating of foods – State of the art and opportunities. Journal of Food Engineering 111:1, pages 1-5.
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Ervin Beloni, Priya R. Santhanam & Edward L. Dreizin. (2012) Electrical conductivity of a metal powder struck by a spark. Journal of Electrostatics 70:1, pages 157-165.
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