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Theoretical and Experimental Analysis of the Metal-Based Ignition Propensity Test Thermodynamics Cover

Theoretical and Experimental Analysis of the Metal-Based Ignition Propensity Test Thermodynamics

Open Access
|Sep 2018

References

  1. 1. American Society of Testing Materials (ASTM) American Standard 2187-16. Standard Test Method for Measuring the Ignition Strength of Cigarettes; ASTM, West Conshohocken, PA, USA, 2016.
  2. 2. International Organization of Standardization (ISO): International Standard 12863:2010. Standard Test Method for Assessing the Ignition Propensity of Cigarettes; ISO, Geneva, Switzerland, 2010.
  3. 3. Guindos, P., A. Patel, T. Kolb, P. Meinlschmidt, F. Schlüter, and B. Plinke: Experimental and Numerical Characterization of the Influence of a Smoldering Cellulosic Substrate on a Cigarette’s Ignition Propensity Test; Fire Technology (Accepted for publication) (2018).10.1007/s10694-017-0699-2
  4. 4. Gann, R.G. and W.F. Guthrie: Robustness of Measuring the Ignition Strength of Cigarettes With ASTM Method E2187-02b; NIST TN 1454 (2003).
  5. 5. Su, J.Z., P. Leroux, and J.C. Latour: Cigarette Ignition Propensity Testing: First Series; Institute for Research in Construction, National Research Council Canada (2003).
  6. 6. Gann, R.G.: Measuring the Ignition Propensity of Cigarettes; in: Proceedings of the Interflam Fire Science and Engineering Conference (2007) pp. 145–55, London, UK.
  7. 7. Mehta, S.: Cigarette Ignition Risk Project; U.S. Consumer Product Safety Commission, Maryland, US, 2012.
  8. 8. Guindos, P., C. Michel, and C. Weichert: Numerical Model to Quantify the Influence of the Cellulosic Substrate on the Ignition Propensity Tests; Beitr. Tabakforsch. Int. 27 (2016) 102–112.10.1515/cttr-2016-0012
  9. 9. Mitler, H.E. and G.N. Walton: Modeling the Iignition of Soft Furnishings by a Cigarette; US Department of Commerce, National Institute of Standards and Technology, 1993.10.6028/NIST.SP.852-3
  10. 10. Gann, R.G., M.C. Bruns, E.J. Hnetkovsky, and W.F. Guthrie: Interlaboratory Study of an Alternate Substrate for Use in ASTM 2187. NIST Technical Note 1874 (2016).10.6028/NIST.TN.1874
  11. 11. Baker, R.: Temperature Variation Within a cigarette Combustion Coal During the Smoking Cycle; High Temp. Sci. 7 (1975) 184–224.
  12. 12. MatWeb, LLC: MatWeb™ Materials Database; http://www.matweb.com/ (accessed August 2018), Blacksburg, VA, USA.
  13. 13. American Iron and Steel Institute: A Designer’s Handbook Series N°9004: High Temperature Characteristics of Stainless Steel. Washington, DC, USA, 2002.
Language: English
Page range: 52 - 64
Submitted on: Jan 11, 2018
Accepted on: May 17, 2018
Published on: Sep 19, 2018
Published by: Institut für Tabakforschung GmbH
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2018 Pablo Guindos, Apurva Patel, Minia-Xisela Rodriguez, published by Institut für Tabakforschung GmbH
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.