铜线过电流故障燃烧过程及热力学特性参数的实验研究

IF 2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Weifeng Wang, Xiaohan Ji, Lin Shi, Cuizhen Lu, Hanfei Liu, Huifei Lv, Xuanchong Zhao, Xiaoyun Gui
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引用次数: 0

摘要

铜线过流故障是电气火灾的重要原因,其燃烧过程相对复杂。本研究取导线的额定电流为32A,采用电气故障模拟装置。将过电流Io分别设置为128A、160A、192A、224A后,分析pvc绝缘铜线的燃烧演化过程、绝缘层热解气的演化以及官能团的变化。结果表明:pvc绝缘铜线发生过流故障时,芯线变红,线材变形,放烟,绝缘层滴水,线材熔断,发生连续燃烧。当电流为Io < 160A时,导线上只有一个熔点。此外,当pvc绝缘铜线发生过流故障时,其温升速率呈指数增长,可分为初始积热阶段、熔丝阶段和连续燃烧阶段三个阶段。此外,在聚氯乙烯保温层燃烧过程中还析出CO、HCl、CH4、烯烃、脂肪族和芳香族化合物。保温层的质量随着温度的升高而降低,在300℃时失重率较高。研究结论为火灾事故的物证鉴定提供了实验依据和技术支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An experimental study on the combustion process and thermodynamic characteristic parameters of copper wire overcurrent fault

The overcurrent fault of copper wire is an important cause of electrical fire, and the combustion process of which is relatively complicated. In this study, the rated current of 32A of the wire was taken, and the electrical fault simulation device was used. After the overcurrent Io was set to 128A, 160A, 192A, and 224A, respectively, to analyze the combustion evolution process of PVC-insulated copper wire, the evolution of pyrolysis gas from the insulating layer, and the change of functional groups. The results show that when the overcurrent fault of PVC-insulated copper wire happened, the core wire was turning red, the wire was deforming, the smoke was releasing, the insulating layer was dripping, the wire was fusing, and the continuous burning occurred. When the current Io < 160A, there was only one fusing point on the wire. In addition, when an overcurrent fault occurred in the PVC-insulated copper wire, the temperature rise rate increased exponentially, which can be divided into three stages of the initial heat accumulation stage, the wire fusing stage, and the continuous burning stage. Furthermore, CO, HCl, CH4, olefins, and aliphatic and aromatic compounds were precipitated during the combustion process of the PVC insulating layer. The quality of the insulating layer decreased with the increase in temperature, and the weight loss rate was higher at 300°C. The conclusions of this study have provided experimental basis and technical support for the physical and evidence identification of fire accidents.

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来源期刊
Fire and Materials
Fire and Materials 工程技术-材料科学:综合
CiteScore
4.60
自引率
5.30%
发文量
72
审稿时长
3 months
期刊介绍: Fire and Materials is an international journal for scientific and technological communications directed at the fire properties of materials and the products into which they are made. This covers all aspects of the polymer field and the end uses where polymers find application; the important developments in the fields of natural products - wood and cellulosics; non-polymeric materials - metals and ceramics; as well as the chemistry and industrial applications of fire retardant chemicals. Contributions will be particularly welcomed on heat release; properties of combustion products - smoke opacity, toxicity and corrosivity; modelling and testing.
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