同时承受火灾和电流载荷的电线和电缆的可操作性评估

S. Puzach, O. Lebedchenko, V. Zykov, T. Chistyakov
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引用次数: 0

摘要

介绍。膨胀涂层被用作防止热流的一种手段,其任务是在火灾条件下保持电线和电缆的可操作性,以及同时的电流负载。然而,在实际火灾情况下,绝缘破坏对电缆可操作性的影响尚未得到研究。目标和目的。本文的目的是评估电线电缆在火灾和电流载荷同时作用下的实验可操作性。为此,采用实验测试装置,对各厂家生产的电线电缆进行实验测试。同时,评价了加热环境对电线电缆电阻率、电感、电容等电气参数的温度效应。理论背景。在真实火灾条件下,影响电缆绝缘加热的室内温度的依赖性与各种标准火灾条件下的相同依赖性有本质区别。因此,绝缘破坏过程可能发生在涂层膨胀开始之前。结果和讨论。研制了一种试验性测试装置。该单元允许逐渐的电缆加热与预设的温度测量间隔和电缆电气特性。得到了标准电缆的电阻率、电感和电容与电缆周围空气温度的关系。人们已经发现,导体或电缆的逐渐加热最终会导致其导电芯之间的短路,从而导致电流在电线和电缆中进一步传输。结果表明,在短circuit.Сonclusions之前,输入电信号的相位和幅度会发生剧烈变化。火灾和电流载荷同时作用于标准电线电缆,在温度范围内引起短路,在此温度范围内,绝缘表面不会产生阻燃涂层的膨胀。因此,这些涂层不能有效地保持电线电缆的可操作性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Operability evaluation of electrical wires and cables subjected to simultaneous fire and current loadings
Introduction. Intumescent coatings are used as a means of protection from heat flows, and their mission is to preserve the operability of wires and cables under fire conditions coupled with simultaneous current loading. However, the effect of insulation destruction on the operability of cables has not been studied for the case of a real fire regime.Goals and objectives. The purpose of the article is to evaluate the experimental operability of electrical wires and cables subjected to simultaneous effects of fire and current loadings.To achieve this purpose, an experimental testing unit was applied to conduct the experimental testing of wires and cables manufactured by various producers. At the same time, the temperature effect of the heated environment on electrical parameters of wires and cables, such as resistivity, inductance and capacitance, was evaluated.Theoretical background. In real fire conditions, dependence of indoor temperature, affecting the heating of cable insulation, differs essentially from the same dependencies in cases of various standard fire conditions. Therefore, the insulation destruction process may occur before the coating intumescence starts.Results and discussion. An experimental testing unit has been developed. This unit allows for the gradual cable heating with a pre-set temperature measurement interval and cable electrical characteristics. Dependencies of resistivity, inductance and capacitance of standard electrical cables on the temperature of the air surrounding the cable are obtained. It’s been discovered that the gradual heating of an electrical conductor or cable eventually leads to a short circuit between its conductive cores and further electric current transmission in electrical wires and cables. It is shown that phases and amplitudes of an input electrical signal can drastically change before the short circuit.Сonclusions. The simultaneous effect of fire and current loadings on standard electrical wires and cables causes a short circuit in the temperature range, in which no intumescence of flame retardant coatings is initiated on the insulation surface. Therefore, these coatings can ineffectively maintain the operability of electrical wires and cables.
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