Requirements for cables as categories of construction products and thermal resistance of power cables

G. Bezprozvannych, M. V. Grynyshyna, Y. Moskvitin
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Abstract

Introduction. One of the main driving factors of the demand for cable and conductor products is the modern trend of urbanization, which leads to an increase in cities with significantly increased requirements for electrical networks of transportation and distribution of electrical energy. This requires the development of appropriate infrastructure with significant demand for electricity in the commercial, industrial and residential sectors. The construction industry uses a wide range of cables with an appropriate set of electrical and mechanical properties, resistance to the influence of external climatic factors, and, first of all, must meet fire safety requirements. Increasing construction activity is stimulating the market for fire-resistant cables in the construction industry. According to the Construction Products Regulation, power, telecommunication cables, data cables, control and management, fiber optic refer to construction products in the EU member states. These cables are intended for the supply of electrical energy and communication, which are permanently installed in buildings and other engineering structures. Power, telecommunications, data and control cables are considered construction products, and are the only electrical products classified as construction. Over the next 15 years, Eastern Europe is expected to see increased growth in the construction industry, as the end of the war in Ukraine requires nearly $1 trillion in reconstruction. A strategic task in the reconstruction of the country is the use of cable and conductor products with increased operational properties, including in the construction industry. Significant efforts and investments in innovation and certification of cable and conductor products require manufacturers to create construction products of the «Power, control and communication cables» category with a high level of fire safety in accordance with the Euroclassification of cables in terms of reaction to fire depending on the level of safety. Purpose. Analysis of fire safety requirements for cables as a category of construction products and determination of thermal resistance of power cables based on experimental thermal studies of modern electrical insulating compositions. Methodology. The thermal stability of power cables with a voltage of 0,66/1 kV was determined, depending on the design, based on the conducted experimental studies of the thermal stability of electrical insulation materials, between the core filling and the polymer sheath, removed from the cable samples. On the basis of the conducted correlation analysis between thermal resistance and fire load, which are important parameters for confirming the quality and safety of the entire cable, it has been proven that the efficiency of halogen-free compositions to meet fire safety requirements increases with the increase in the cross-section and number of cores in the cable. Practical value. Determining the heat load and fire resistance of cables of various designs and areas of application based on the obtained experimental data on the heat of combustion of polymer cable materials is necessary and justified at the stage of mastering and determining the prospects for the production of cables with modern halogen-free electrical insulation compositions in accordance with fire safety requirements.
对作为建筑产品类别的电缆和电力电缆耐热性的要求
导言。对电缆和导体产品需求的主要驱动因素之一是现代城市化趋势,城市化导致城市数量增加,对电能运输和分配网络的需求显著增加。这就需要发展相应的基础设施,满足商业、工业和住宅领域的大量用电需求。建筑行业使用的电缆种类繁多,具有适当的电气和机械性能,能抵御外部气候因素的影响,首先必须满足消防安全要求。建筑活动的不断增加刺激了建筑行业耐火电缆市场的发展。根据《建筑产品条例》,在欧盟成员国,电力电缆、通信电缆、数据电缆、控制和管理电缆、光纤属于建筑产品。这些电缆用于供应电能和通信,永久性地安装在建筑物和其他工程结构中。电力、通信、数据和控制电缆被视为建筑产品,也是唯一被归类为建筑产品的电气产品。在未来 15 年内,由于乌克兰战争的结束需要近 1 万亿美元的重建资金,预计东欧的建筑业将出现增长。国家重建的一项战略任务就是在建筑业等领域使用具有更高可操作性的电缆和导体产品。在电缆和导体产品的创新和认证方面所做的巨大努力和投资,要求制造商根据欧洲电缆分级标准,按照安全等级对火灾反应进行分类,生产出具有高防火安全等级的 "电力、控制和通信电缆 "类建筑产品。目的。分析电缆作为一类建筑产品的防火安全要求,并根据现代电气绝缘材料的热实验研究确定电力电缆的耐热性。方法。根据从电缆样品中取出的芯线填充物和聚合物护套之间电气绝缘材料热稳定性的实验研究,根据设计确定了电压为 0.66/1 千伏的电力电缆的热稳定性。热阻和火灾荷载是确认整条电缆质量和安全的重要参数,根据热阻和火灾荷载之间的相关分析,可以证明无卤组合物满足火灾安全要求的效率随着电缆横截面和芯线数量的增加而提高。实用价值。在掌握和确定使用符合防火安全要求的现代无卤电气绝缘成分生产电缆的前景阶段,根据所获得的聚合物电缆材料燃烧热实验数据确定各种设计和应用领域电缆的热负荷和耐火性是必要和合理的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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