DocumentCode
1791141
Title
SEM Analysis on Burning Melted Beads of Copper Wire
Author
Jin-Zhuan Zhang
Author_Institution
Dept. of Fire Protection Eng., Chinese People´s Armed Police Forces Acad., Langfang, China
fYear
2014
fDate
25-26 Oct. 2014
Firstpage
628
Lastpage
631
Abstract
In this study, melted marks of different cross section copper wires were prepared by simulating the conditions of the fire scene. The influence of the temperature and time in fire environment, the cooling rate, and the cross section of the wires on the microstructures of the burning melted beads was studied by scanning electron microscope (SEM) systematically. The prepared melted marks were put into the muffle furnace for different thermal treatments, and then cooled by air or spraying water. With increasing the temperature and prolonging the heating duration, the crystal boundary became more compact and the crystal particles distributed more regularly. Particularly, when the burning melted beads formed at a high temperature of about 1200°C and cooled by spraying water, the typical eutectoid organizations were observed which are commonly formed in the primary short circuited melted beads. And the beads prepared with the thinner wire are more sensitive to the change of the environment. The study is provided as references for fire traces evidence identification of electrical fire.
Keywords
cooling; copper; crystal microstructure; melting; scanning electron microscopy; wires (electric); SEM; SEM analysis; burning melted bead; cooling rate; cross section copper wire; crystal particle; eutectoid organization; fire scene; melted mark; microstructure; muffle furnace; scanning electron microscope; spraying water; thermal treatment; Fires; Microstructure; Scanning electron microscopy; Spraying; Water heating; Wires; SEM analysis; burning melted mark; cooper wire; microstructure;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Computation Technology and Automation (ICICTA), 2014 7th International Conference on
Conference_Location
Changsha
Print_ISBN
978-1-4799-6635-6
Type
conf
DOI
10.1109/ICICTA.2014.156
Filename
7003619
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