纳米材料在多层导电耐热聚合物管道生产中的应用

IF 0.9 4区 化学 Q4 CHEMISTRY, MULTIDISCIPLINARY Russian Journal of General Chemistry Pub Date : 2024-10-29 DOI:10.1134/S1070363224090354
A. E. Zverev, A. V. Markov, E. V. Kalugina, V. V. Bitt
{"title":"纳米材料在多层导电耐热聚合物管道生产中的应用","authors":"A. E. Zverev,&nbsp;A. V. Markov,&nbsp;E. V. Kalugina,&nbsp;V. V. Bitt","doi":"10.1134/S1070363224090354","DOIUrl":null,"url":null,"abstract":"<p>It is known that cable channels, often consisting of multilayer polymer pipes, are used to protect cable lines. Taking into account the fact that cables are heated during operation, important criteria for the reliability of the cable channel are increased heat resistance and flame resistance - for the inner layer of the pipe. Even the most reliable system cannot completely eliminate the possibility of cable damage up to a short circuit in the line. In case of cable breakage, bare wires will be located on the wall of the polymer pipe. In this case, finding the place of cable breakage through the wall of a pipe traditionally made of HDPE dielectric is extremely difficult. When choosing a cable channel of a special design made of special electrically conductive PCM, even in case of damage to the conductive line, it will be possible not only to avoid further destruction, but also to determine the breakdown location. In the assortment of POLYPLASTIC Group there are fundamentally new technical, technological and constructive solutions of current-seeking pipes for cable channels produced under the trademark ELECTROPIPE OS RS OMP, which allows you to determine the place of cable breakdown with an accuracy of up to 12 m. The paper presents a comparative study of multilayer polymer pipes of the ELECTROPIPE RS series, ELECTROPIPE OS RS with an internal refractory layer and ELECTROPIPE OS RS OMP with an internal electrically conductive layer based on a special refractory composition and carbon nanotube concentrate (CNTC). The content of CNTC is 5–10 wt %. All tests were carried out on real pipe samples. The physicomechanical (tensile strength, modulus of elasticity and elongation) and electrophysical characteristics (insulation resistance), as well as resistance to flame (exposure to hot wire, a test for flammability according to the ROSSETI method) were investigated.</p>","PeriodicalId":761,"journal":{"name":"Russian Journal of General Chemistry","volume":"94 9","pages":"2566 - 2570"},"PeriodicalIF":0.9000,"publicationDate":"2024-10-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Application of Nanomaterials in the Production of Multilayer Electrically Conductive and Heat-Resistant Polymer Pipes\",\"authors\":\"A. E. Zverev,&nbsp;A. V. Markov,&nbsp;E. V. Kalugina,&nbsp;V. V. Bitt\",\"doi\":\"10.1134/S1070363224090354\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>It is known that cable channels, often consisting of multilayer polymer pipes, are used to protect cable lines. Taking into account the fact that cables are heated during operation, important criteria for the reliability of the cable channel are increased heat resistance and flame resistance - for the inner layer of the pipe. Even the most reliable system cannot completely eliminate the possibility of cable damage up to a short circuit in the line. In case of cable breakage, bare wires will be located on the wall of the polymer pipe. In this case, finding the place of cable breakage through the wall of a pipe traditionally made of HDPE dielectric is extremely difficult. When choosing a cable channel of a special design made of special electrically conductive PCM, even in case of damage to the conductive line, it will be possible not only to avoid further destruction, but also to determine the breakdown location. In the assortment of POLYPLASTIC Group there are fundamentally new technical, technological and constructive solutions of current-seeking pipes for cable channels produced under the trademark ELECTROPIPE OS RS OMP, which allows you to determine the place of cable breakdown with an accuracy of up to 12 m. The paper presents a comparative study of multilayer polymer pipes of the ELECTROPIPE RS series, ELECTROPIPE OS RS with an internal refractory layer and ELECTROPIPE OS RS OMP with an internal electrically conductive layer based on a special refractory composition and carbon nanotube concentrate (CNTC). The content of CNTC is 5–10 wt %. All tests were carried out on real pipe samples. The physicomechanical (tensile strength, modulus of elasticity and elongation) and electrophysical characteristics (insulation resistance), as well as resistance to flame (exposure to hot wire, a test for flammability according to the ROSSETI method) were investigated.</p>\",\"PeriodicalId\":761,\"journal\":{\"name\":\"Russian Journal of General Chemistry\",\"volume\":\"94 9\",\"pages\":\"2566 - 2570\"},\"PeriodicalIF\":0.9000,\"publicationDate\":\"2024-10-29\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Russian Journal of General Chemistry\",\"FirstCategoryId\":\"92\",\"ListUrlMain\":\"https://link.springer.com/article/10.1134/S1070363224090354\",\"RegionNum\":4,\"RegionCategory\":\"化学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q4\",\"JCRName\":\"CHEMISTRY, MULTIDISCIPLINARY\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Russian Journal of General Chemistry","FirstCategoryId":"92","ListUrlMain":"https://link.springer.com/article/10.1134/S1070363224090354","RegionNum":4,"RegionCategory":"化学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"CHEMISTRY, MULTIDISCIPLINARY","Score":null,"Total":0}
引用次数: 0

摘要

众所周知,电缆槽通常由多层聚合物管组成,用于保护电缆线路。考虑到电缆在运行过程中会发热,电缆槽可靠性的重要标准是提高管道内层的耐热性和阻燃性。即使是最可靠的系统,也无法完全消除电缆因线路短路而损坏的可能性。如果电缆断裂,裸线将位于聚合物管壁上。在这种情况下,通过传统的高密度聚乙烯电介质管壁找到电缆破损处是非常困难的。如果选择由特殊导电性 PCM 制成的特殊设计的电缆通道,即使导电线受到破坏,不仅可以避免进一步破坏,还可以确定断裂位置。在 POLYPLASTIC 集团的产品系列中,以 ELECTROPIPE OS RS OMP 商标生产的用于电缆通道的寻流管具有全新的技术、工艺和结构解决方案,可以精确到 12 米地确定电缆故障位置。本文对 ELECTROPE RS 系列的多层聚合物管道、带有内部耐火层的 ELECTROPE OS RS 和带有基于特殊耐火成分和碳纳米管浓缩物 (CNTC) 的内部导电层的 ELECTROPE OS RS OMP 进行了比较研究。CNTC 的含量为 5-10 wt %。所有测试均在实际管道样品上进行。对物理机械特性(拉伸强度、弹性模量和伸长率)和电物理特性(绝缘电阻)以及阻燃性能(暴露在热丝中,根据 ROSSETI 方法进行可燃性测试)进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

摘要图片

查看原文
分享 分享
微信好友 朋友圈 QQ好友 复制链接
本刊更多论文
Application of Nanomaterials in the Production of Multilayer Electrically Conductive and Heat-Resistant Polymer Pipes

It is known that cable channels, often consisting of multilayer polymer pipes, are used to protect cable lines. Taking into account the fact that cables are heated during operation, important criteria for the reliability of the cable channel are increased heat resistance and flame resistance - for the inner layer of the pipe. Even the most reliable system cannot completely eliminate the possibility of cable damage up to a short circuit in the line. In case of cable breakage, bare wires will be located on the wall of the polymer pipe. In this case, finding the place of cable breakage through the wall of a pipe traditionally made of HDPE dielectric is extremely difficult. When choosing a cable channel of a special design made of special electrically conductive PCM, even in case of damage to the conductive line, it will be possible not only to avoid further destruction, but also to determine the breakdown location. In the assortment of POLYPLASTIC Group there are fundamentally new technical, technological and constructive solutions of current-seeking pipes for cable channels produced under the trademark ELECTROPIPE OS RS OMP, which allows you to determine the place of cable breakdown with an accuracy of up to 12 m. The paper presents a comparative study of multilayer polymer pipes of the ELECTROPIPE RS series, ELECTROPIPE OS RS with an internal refractory layer and ELECTROPIPE OS RS OMP with an internal electrically conductive layer based on a special refractory composition and carbon nanotube concentrate (CNTC). The content of CNTC is 5–10 wt %. All tests were carried out on real pipe samples. The physicomechanical (tensile strength, modulus of elasticity and elongation) and electrophysical characteristics (insulation resistance), as well as resistance to flame (exposure to hot wire, a test for flammability according to the ROSSETI method) were investigated.

求助全文
通过发布文献求助,成功后即可免费获取论文全文。 去求助
来源期刊
CiteScore
1.40
自引率
22.20%
发文量
252
审稿时长
2-4 weeks
期刊介绍: Russian Journal of General Chemistry is a journal that covers many problems that are of general interest to the whole community of chemists. The journal is the successor to Russia’s first chemical journal, Zhurnal Russkogo Khimicheskogo Obshchestva (Journal of the Russian Chemical Society ) founded in 1869 to cover all aspects of chemistry. Now the journal is focused on the interdisciplinary areas of chemistry (organometallics, organometalloids, organoinorganic complexes, mechanochemistry, nanochemistry, etc.), new achievements and long-term results in the field. The journal publishes reviews, current scientific papers, letters to the editor, and discussion papers.
期刊最新文献
Synthesis of Betulin and Allobetulin Derivatives Containing Heterylthioacetoxyl Groups Synthesis of New Hydrazones Based on 3-Hydroxy-4,8,9,11-tetramethyl-12H-6,12-methanodibenzo[d,g][1,3,2]dioxaphosphocine-2-carbaldehyde-6-oxide Synthesis and Rheological Studies of Ionic Hydrogels of Chitosan with 5-Norbornene-2,3-dicarboxylic Acid Comparative Study of the Catalytic Activity of Hypervalent Halogen(III) and Chalcogen(IV) Salts in the Imine–Isocyanide Coupling One-Pot Synthesis of Substituted Benzimidazole-Pyrimidine Derivatives
×
引用
GB/T 7714-2015
复制
MLA
复制
APA
复制
导出至
BibTeX EndNote RefMan NoteFirst NoteExpress
×
×
提示
您的信息不完整,为了账户安全,请先补充。
现在去补充
×
提示
您因"违规操作"
具体请查看互助需知
我知道了
×
提示
现在去查看 取消
×
提示
确定
0
微信
客服QQ
Book学术公众号 扫码关注我们
反馈
×
意见反馈
请填写您的意见或建议
请填写您的手机或邮箱
已复制链接
已复制链接
快去分享给好友吧!
我知道了
×
扫码分享
扫码分享
Book学术官方微信
Book学术文献互助
Book学术文献互助群
群 号:481959085
Book学术
文献互助 智能选刊 最新文献 互助须知 联系我们:info@booksci.cn
Book学术提供免费学术资源搜索服务,方便国内外学者检索中英文文献。致力于提供最便捷和优质的服务体验。
Copyright © 2023 Book学术 All rights reserved.
ghs 京公网安备 11010802042870号 京ICP备2023020795号-1