氧化鎂電纜的簡介 Introduction of Magnesium Oxide Cable
發布日期：2015-08-29 00:00 來源：http://www.shoerate.com 點擊：
輕燒鎂粉" href="/index.html" target="_self">http://www.shoerate.com銅芯銅護套氧化鎂絕緣防火電纜(以下簡稱氧化鎂電纜)，是一種外層采用無縫銅管護套、中間充填輕燒鎂粉作絕緣材料、以單股銅棒作為導體的新型電纜。它不但能耐高溫、防火、防爆、阻燃，而且載流量大、外徑小、機械強度高、使用壽命長、一般不需要獨立接地導線。因此，氧化鎂電纜被廣泛應用於危險、惡劣、高溫的環境中，如核電站、冶金、化工、礦井、製窯等。近年來，隨著各種技術工藝的蓬勃發展，氧化鎂電纜也較多的應用於高層樓房、機場、碼頭、地鐵等民用建築，用以保障在火災情況下消防水泵、消防電梯、局部照明、應急疏散指示、保安監視、防煙排煙係統、自備電源等消防用電及重要設備的不間斷運行。
http://www.shoerate.com Copper core copper sheathed magnesium oxide insulated fire-resistant cable (hereinafter referred to as magnesium oxide cable) is a seamless copper tube sheath on the outer layer and light-burned magnesium powder filled as insulation material in the middle New type of cable with single-stranded copper rod as conductor. It not only can withstand high temperature, fire, explosion, flame retardant, but also has large current carrying capacity, small outer diameter, high mechanical strength, long service life, and generally does not require independent grounding wires. Therefore, magnesium oxide cables are widely used in dangerous, harsh and high-temperature environments, such as nuclear power plants, metallurgy, chemicals, mines, and kiln manufacturing. In recent years, with the vigorous development of various technologies, magnesium oxide cables have also been used in high-rise buildings, airports, terminals, subways and other civil buildings to protect fire pumps, fire elevators, local lighting, Uninterrupted operation of emergency evacuation instructions, security surveillance, smoke prevention and exhaust systems, self-provided power supplies and other important fire equipment.
Structure and model specifications of magnesium oxide cable:
The manufacturing process of magnesium oxide fireproof cable is relatively complicated. There are two main methods. First, lightly burned magnesium powder is poured between the seamless copper tube on the outer layer and the core copper conductor, and then compacted. Second, the lightly burned magnesium powder is pressed into a hollow cylinder. It is inserted between the conductor and the copper pipe, and then it is repeated through drawing, annealing, and drawing to make a cable. It should be noted that during the processing of magnesium oxide cables, it is necessary to continuously check the compactness of magnesium oxide and the air tightness of copper pipes. By understanding the manufacturing process and method of magnesium oxide cable, we can see that the structure of the cable is mainly composed of three parts: the seamless copper tube sheath of the outer layer, light-burned magnesium powder that plays an insulating role in the middle, and copper with the core as the conductor. Baton.
The types of magnesium oxide cables can be divided into BTTQ light cables (500V class) and BTTZ heavy cables (750V class). The Kempinski project is mainly BTTZ heavy cables. Its specifications are mainly single-core, two-core, three-core, four-core, seven-core, twelve-core and so on. Single-core to four-core magnesium oxide cables are mainly used for power and lighting, and more than seven cores are mainly used for communication and control. The maximum cross-section of single-core cable can reach 4002m㎡, and the maximum cross-section of two-core to four-core cable core is 25m㎡.
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