{"title":"Experimental research on temporary closed wall constructed by graphene polyurethanen in coal mine","authors":"Wang Hua’e, Tang Yibo, Guo Pengwei, Huang Shihua, Zhou Jinqiang, Guo-ping Qian","doi":"10.16265/J.CNKI.ISSN1003-3033.2020.03.017","DOIUrl":null,"url":null,"abstract":"In order to address problems of heavy materials and inefficient construction of traditional mine ventilation structuresꎬ a new type of graphene polyurethane foam was developed and its performance for various structures was tested. Firstlyꎬ new graphene polyurethane foam was prepared using one ̄step method. Thenꎬ its hermeticity was tested through gas permeability experiments of plastic films and sheets. Finallyꎬ its structures were analyzed by using a comprehensive thermal analyzerꎬ a Fourier transform infrared spectrometer and a metallographic microscope. The results show that the density of new graphene polyurethane foam is only 40 kg / m . Infrared spectrum shows that it is rich in organic functional groups such as C = Cꎬ C = Oꎬ ̄OHꎬ ̄CO and ̄NHꎬ and based on observation of metallurgical microscopeꎬ distribution of 160 μm foam is uniform and stable. And the new material remains highly efficient and hermetic within 30 days of simulation testꎬ maintains excellent thermal stability within 400 °Cꎬ and can 中 国 安 全 科 学 学 报 China Safety Science Journal 第30卷 2020年 extinguish within 0 13 s from fireꎬ thus reducing fire risks during its use as a temporary ventilation structure in the mine.","PeriodicalId":9976,"journal":{"name":"中国安全科学学报","volume":"25 1","pages":"109"},"PeriodicalIF":0.0000,"publicationDate":"2020-03-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"中国安全科学学报","FirstCategoryId":"1089","ListUrlMain":"https://doi.org/10.16265/J.CNKI.ISSN1003-3033.2020.03.017","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
In order to address problems of heavy materials and inefficient construction of traditional mine ventilation structuresꎬ a new type of graphene polyurethane foam was developed and its performance for various structures was tested. Firstlyꎬ new graphene polyurethane foam was prepared using one ̄step method. Thenꎬ its hermeticity was tested through gas permeability experiments of plastic films and sheets. Finallyꎬ its structures were analyzed by using a comprehensive thermal analyzerꎬ a Fourier transform infrared spectrometer and a metallographic microscope. The results show that the density of new graphene polyurethane foam is only 40 kg / m . Infrared spectrum shows that it is rich in organic functional groups such as C = Cꎬ C = Oꎬ ̄OHꎬ ̄CO and ̄NHꎬ and based on observation of metallurgical microscopeꎬ distribution of 160 μm foam is uniform and stable. And the new material remains highly efficient and hermetic within 30 days of simulation testꎬ maintains excellent thermal stability within 400 °Cꎬ and can 中 国 安 全 科 学 学 报 China Safety Science Journal 第30卷 2020年 extinguish within 0 13 s from fireꎬ thus reducing fire risks during its use as a temporary ventilation structure in the mine.
期刊介绍:
China Safety Science Journal is administered by China Association for Science and Technology and sponsored by China Occupational Safety and Health Association (formerly China Society of Science and Technology for Labor Protection). It was first published on January 20, 1991 and was approved for public distribution at home and abroad.
China Safety Science Journal (CN 11-2865/X ISSN 1003-3033 CODEN ZAKXAM) is a monthly magazine, 12 issues a year, large 16 folo, the domestic price of each book is 40.00 yuan, the annual price is 480.00 yuan. Mailing code 82-454.
Honors:
Scopus database includes journals in the field of safety science of high-quality scientific journals classification catalog T1 level
National Chinese core journals China Science and technology core journals CSCD journals
The United States "Chemical Abstracts" search included the United States "Cambridge Scientific Abstracts: Materials Information" search included