1 |
An enhanced fire hazard assessment model and validation experiments for vertical cable trays  |
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2 |
NUREG/CR-6850, “Fire PRA Methodology for Nuclear Power Facilities” (2005). |
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3 |
Fire behaviors of flame-retardant cables part I: Decomposition, swelling and spontaneous ignition  |
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4 |
An approach for reliability prediction of instrumentation & control cables by artificial neural networks and Weibull theory for probabilistic safety assessment of NPPs  |
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5 |
Electrical aging markers for EPR-based low-voltage cable insulation wiring of nuclear power plants  |
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6 |
S. G. Choi, Y. J. Nam, S. Y. Jin and S. K. Kim, “Characteristics of HFIX Insulated Wire Sheaths Contaminated by Pollutants”, Fire Science and Engineering, Vol. 34, No. 3, pp. 8-17(2020). |
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7 |
Investigating the burning characteristics of electric cables used in the nuclear power plant by way of 3-D transient FDS code  |
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8 |
E. H. Jang, M. H. Kim, M. C. Lee, S. K. Lee and Y. S. Moon, “Experimental Study on the Toxicity Characteristics of Non-Class 1E Cables According to Accelerated Deterioration”, Fire Science and Engineering, Vol. 33, No. 6, pp. 105-113(2019). |
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9 |
NUREG-0800, “Standard Review Plan for the Review of Safety Analysis Reports for Nuclear Power Plant” (2017). |
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10 |
IEEE-383, “IEEE Standard for Type Test of Class 1E Electric Cables, Field Splices, and Connections for Nuclear Power Generating Stations” (1974). |
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11 |
ISO 5660-1, “Reaction to Fire Tests – Heat Release, Smoke Production and Mass Loss Rate – Part 1: Heat Release Rate (Cone Calorime-ter Method) and Smoke Production Rate (Dynamic Measurement)” (2015). |
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12 |
Fire reaction properties of polystyrene-based nanocomposites using nanosilica and nanoclay as additives in cone calorimeter test  |
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13 |
NES 713, “Determination of the Toxicity Index of the Products of Combustion from Small Specimens of Materials”(2012). |
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14 |
B. N. Jang and J. H. Choi, “Flame Retardant and Flame Retardant Resin Research Trend”, Polymer Science and Technology, Vol. 20, No. 1, pp. 8-15 (2009). |
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15 |
Electron Beam Irradiation Cross Linking of Halogen-Free Flame-Retardant Ethylene Vinyl Acetate (EVA) Copolymer by Silica Gel Microencapsulated Ammonium Polyphosphate and Char-Forming Agent  |
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16 |
Cone calorimeter analysis of flame retardant poly (methyl methacrylate)-silica nanocomposites  |
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17 |
Chemorheological Aspects in Polymer Irradiation  |
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18 |
J. S. Choi, J. Y. Sohn and J. H. Shin, “Changes in the Chemical Structure and the Thermal/Physical Properties of Fluoropolymer Films Induced by Gamma Irradiation under Various Environments”, Polymer (Korea), Vol. 38, No. 4, pp. 457-463 (2014). |
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19 |
H. J. Seo, N. K. Kim, S. K. Lee, Y. S. Moon and M. C. Lee, “An Experimental Study on the Combustion Characteristics of Non Class 1E cables”, Journal of The Korean Society of Combustion, Vol. 24, No. 1, pp. 15-24 (2019). |
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20 |
E. Jin and Y. J. Chung, “Smoke Hazard Assessment of Cypress Wood Coated with Boron/Silicon Sol Compounds”, Fire Science and Engineering, Vol. 34, No. 1, pp. 1-10 (2020). |
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21 |
Fire behavior and smoke emission of phosphate–based inorganic fire‐retarded polyester resin  |
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22 |
Z. Zhang, Y. He and Y. Wu, “Experimental Study on Smoke Characteristics of Aviation Cable Material Based on Cone Calorimeter”, 2019 9th International Conference, Fire Science and Fire Protection Engineering, pp. 1-7 (2019). https://doi.org/10.1109/ICFSFPE48751.2019.9055786 |
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23 |
Influence of ferrocene on smoke suppression properties and combustion behavior of intumescent flame-retardant epoxy composites  |
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24 |
Heat release of polymer composites in fire  |
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25 |
Recent Research Progress on the Flame-Retardant Mechanism of Halogen-Free Flame Retardant Polypropylene  |
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26 |
Reduced Combustion Efficiency of Chlorinated Compounds, Resulting in Higher Yields of Carbon Monoxide  |
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