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首页> 外文期刊>Chemistry and Materials Research >The Study of Degdradation Cable Isolation of PVC (Polyvinil Chloride) : A Comparison of Isolation Cable Between Short Circut and Open Flame
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The Study of Degdradation Cable Isolation of PVC (Polyvinil Chloride) : A Comparison of Isolation Cable Between Short Circut and Open Flame

机译:聚氯乙烯(PVC)降解电缆绝缘的研究:短路与明火隔离电缆的比较

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Research about The study of degdradation cable isolation of PVC (Polyvinil Chloride) : A comparison of isolation cable between short circut and open flame was carried out. The purposes of this research are i) to know degradation process of cable isolation from melting to be short circut occurring and ii) to know comparison of fire cable due to overload or open flame. This research is experimental laboratory whereas cable “NYA” size 1x1.5mm used as sample. Subsequently, samples are divided as: i) normal sample (without electric current) (as well as reference); (ii) samples were flowed by using Electrical current 16, 25 dan 35 Ampere, respectively; iii) Sample was flowed by using electrical current until short circuts occurred, and iv) Sample was burned by open flame. All samples were characterized with FTIR, SEM-EDS and XRD, respectively. The results showed that: i) FTIR Data. FTIR Spectra of short cable significantly changing compared to normal cable isolation. It means, flowing electric current to the cable caused temperature of cable will be increased, it may initiated oxidation occurred at functional group of esther which was existed in cable isolation; ii) SEM EDS Data. Supply of electron into cable caused overheating at cable, whereas degradation process for cable isolation occurred. The continuity of degradation will result pyrolisis (carbonization) at surface of isolation. Therefore SEM image proved that increasing of electron supply at degradation process will be accelerating pyrolisis process; and iii) XRD Data. Increasing current electric will be increasing intensity of carbon (number of carbon atoms increased) and decreasing intensity the number of oxygen atoms (number of oxygen atoms increased). All of data indicated when open flame happened at cables so the number of oxygen will be increased, whereas carbon has been burned. Based on all data concluded whereas degradation process of isolation cable by giving overload of electrical current it clearly showed that significantly differences with cable isolation of open flame. It may be concluded that the burning cable isolation of open flame was caused by degradation functional group. On the other side cable of open flame, the number of carbon will be decreased.
机译:关于聚氯乙烯(polyvinil Chloride)的脱角电缆隔离研究的研究:进行了短路和明火隔离电缆的比较。这项研究的目的是:i)了解电缆隔离从熔化到短路的退化过程,以及ii)了解由于过载或明火引起的火电缆的比较。这项研究是实验实验室,而电缆“ NYA”尺寸为1x1.5mm作为样本。随后,样本被划分为:i)正常样本(无电流)(以及参考); (ii)分别用电流16、25 dan 35 Ampere流动样品; iii)使样品流过电流直到发生短路,并且iv)用明火燃烧样品。所有样品分别用FTIR,SEM-EDS和XRD表征。结果表明:i)FTIR数据。与普通电缆隔离相比,短电缆的FTIR光谱有很大变化。这意味着,流向电缆的电流会导致电缆温度升高,并可能引发在电缆隔离层中存在的醚官能团处发生氧化; ii)SEM EDS数据。电缆中的电子供应会导致电缆过热,而电缆隔离的降解过程却发生了。降解的连续性将导致隔离表面的热解(碳化)。因此,SEM图像证明了降解过程中电子供应的增加将加速热解过程。 iii)XRD数据。电流的增加将增加碳的强度(碳原子数增加)而降低强度的氧原子数(氧原子数增加)。所有数据都表明电缆上发生明火时会增加氧气的数量,而碳已被燃烧。根据所有数据得出的结论,而隔离电缆通过提供电流过载而退化的过程则清楚地表明,明火电缆的隔离与绝缘电缆存在显着差异。可以得出结论,明火燃烧电缆的隔离是由官能团的降解引起的。在明火的另一侧电缆上,碳的数量将减少。

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