聚氨酯泡沫在节能建筑中的应用
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Application of Polyurethane Foam in Energy-Saving Building
  • 作者:矫立超 ; 戎贤 ; 孔祥飞 ; 杨志强
  • 英文作者:Jiao Lichao;Rong Xian;Kong Xiangfei;Yang Zhiqiang;School of Civil Engineering, Hebei University of Technology;School of Management, Henan University of Urban Construction;College of Energy and Environmental Engineering, Hebei University of Technology;Hebei Qugang Expressway Development Co., Ltd.;
  • 关键词:聚氨酯泡沫 ; 节能建筑 ; 保温 ; 应用
  • 英文关键词:polyurethane foam;;energy-saving building;;heat preservation;;application
  • 中文刊名:ACSN
  • 英文刊名:Engineering Plastics Application
  • 机构:河北工业大学土木与交通学院;河南城建学院管理学院;河北工业大学能源与环境工程学院;河北曲港高速公路开发有限公司;
  • 出版日期:2019-03-10
  • 出版单位:工程塑料应用
  • 年:2019
  • 期:v.47;No.353
  • 基金:河北曲港高速公路开发有限公司科技计划项目(QG2018-3)
  • 语种:中文;
  • 页:ACSN201903040
  • 页数:5
  • CN:03
  • ISSN:37-1111/TQ
  • 分类号:144-148
摘要
与传统建筑材料相比,聚氨酯泡沫具备保温效果好、防火性强和力学性能稳定等多方面的优势,聚氨酯泡沫在建筑外墙、屋顶、地板、门窗和供热管网等获得了广泛的应用。对聚氨酯泡沫在节能建筑中的使用优势、制备方法和应用范围进行了详细论述,指出在以后的发展过程中,聚氨酯泡沫产业应继续研发新型配方、施工技术和制备工艺,进一步降低生产成本,符合环保需求,为节能减排工作做出更大贡献。
        Compared with traditional building materials,polyurethane foam has many advantages such as excellent thermal insulation effect,strong ?re resistance and stable mechanical properties,polyurethane foam has been widely used in the external building walls,roofs,?ooring,doors,windows and heating pipes. The application scope,preparation method and advantages of polyurethane foam in energy-saving building were summarized. It was pointed out that in the future development process,the polyurethane foam industry should continue to develop new formula,construction technology and manufacturing technology,further reduce production costs, meeting the needs of environmental protectionand, make greater contributions to energy conservation and emission reduction work.
引文
[1]钱伯章,等.建筑节能,2009,37(2):56-60.Qian Bozhang,et al.Building Energy Efficiency,2009,37(2):56-60.
    [2]张在旭,等.中外能源,2015,20(12):14-18.Zhang Zaixu,et al.Sino-Global Energy,2015,20(12):14-18.
    [3]杨俊兰,等.建筑科学,2014,30(6):87-91.Yang Junlan,et al.Building Science,2014,30(6):87-91.
    [4]丁雪佳,等.化工进展,2009,28(2):278-282.Ding Xuejia,et al.Chemical Industry and Engineering Progress,2009,28(2):278-282.
    [5]Amaral C,et al.Energy and Buildings,2017,153:392-402.
    [6]陈勇军,等.塑料科技,2012,40(3):103-109.Chen Yongjun,et al.Plastics Science and Technology,2012,40(3):103-109.
    [7]贺梦琦.科技通报,2017,33(1):174-177+194.He Mengqi.Bulletin of Science and Technology,2017,33(1):174-177+194.
    [8]Singh H.Key Engineering Materials,2016,678:88-98.
    [9]杨春柏.中国塑料,2009,23(2):12-15.Yang Chunbai.China Plastics,2009,23(2):12-15.
    [10]Prociak A,et al.Polymer Testing,2000,19(6):705-712.
    [11]刘国胜,等.中国塑料,2011,25(11):5-9.Liu Guosheng,et al.China Plastics,2011,25(11):5-9.
    [12]胡胜利.聚氨酯工业,2001,16(3):21-23.Hu Shengli.Polyurethane Industry,2001,16(3):21-23.
    [13]Modesti M,et al.Polymer Degradation and Stability,2002,77(2):195-202.
    [14]田长山.聚氨酯工业,2003(2):44-46.Tian Changshan.Polyurethane Industry,2003(2):44-46.
    [15]Pokharel N,et al.Journal of Constructional Steel Research,2003,59(12):1 533-1 552.
    [16]尹波,等.高分子材料科学与工程,2004,20(9):151-154,158.Yin Bo,et al.Polymer Materials Science&Engineering,2004,20(9):151-154,158.
    [17]Bledzki A K,et al.Composites Science and Technology,2001,72(15):2 405-2 411.
    [18]方伟,等.油气田地面工程,1998,17(3):75-76.Fang Wei,et al.Oil-Gas Field Surface Engineering,1998,17(3):75-76.
    [19]汪广恒,等.化工进展,2012,31(5):1 076-1 081.Wang Guangheng,et al.Chemical Industry and Engineering Progress,2012,31(5):1 076-1 081.
    [20]马丽红.石化技术,2016,23(6):24-25+36.Ma Lihong.Petrochemical Industry Technology,2016,23(6):24-25+36.
    [21]高晓敏,等.四川兵工学报,2002,23(1):19-20.Gao Xiaomin,et al.Sichuan Ordnance Journal,2002,23(1):19-20.
    [22]鲁江,等.工程塑料应用,2005,33(7):36-38.Lu Jiang,et al.Engineering Plastics Application,2005,33(7):36-38.
    [23]Cay Y.Energy Education Science and Technology Part A:Energy Science and Research,2011,28(1):83-94.
    [24]尤光星,等.建筑节能,2015,43(12):41-43.You Guangxing,et al.Building Energy Efficiency,2015,43(12):41-43.
    [25]高群,等.中国,201010174230.1[P].2010-05-14.Gao Qun,et al.CN,201010174230.1[P].2010-05-14.
    [26]谢松芬.中国,201610728154.1[P].2016-08-25.Xie Songfen.CN,201610728154.1[P].2016-08-25.
    [27]陆伟苗,等.东北林业大学学报,2018,46(2):67-71.Lu Weimiao,et al.Journal of Northeast Forestry University,2018,46(2):67-71.
    [28]贾丰春,等.合成树脂及塑料,2015,32(4):100-102.Jia Fengchun,et al.China Synthetic Resin and Plastics,2015,32(4):100-102.
    [29]葛建,等.建筑施工,2001,23(3):198-200.Ge Jian,et al.Building Construction,2001,23(3):198-200.
    [30]杨斌,等.中国建筑防水,2011(19):41-45+49.Yang Bin,et al.China Building Waterproofing,2011(19):41-45+49.
    [31]Vincelas F F C,et al.Applied Thermal Engineering,2017,122:806-819.
    [32]祝峻.塑料工业,2016,44(5):15-17+74.Zhu Jun.China Plastics Industry,2016,44(5):15-17+74.
    [33]赵洪凯,等.建筑技术,2015,46(11):1 020-1 023.Zhao Hongkai,et al.Architecture Technology,2015,46(11):1 020-1 023.
    [34]朱海静,等.工程塑料应用,2003(7):62-64.Zhu Haijing,et al.Engineering Plastics Application,2003(7):62-64.
    [35]郭亚莉,等.中国,201310490927.3[P].2013-10-20.Guo Yali,et al.CN,201310490927.3[P].2013-10-20.
    [36]郭晓飞.新型建筑材料,2001(4):24-26.Guo Xiaofei.New Building Materials,2001(4):24-26.
    [37]闫成文,等.新型建筑材料,2005(10):30-32.Yan Chengwen,et al.New Building Materials,2005(10):30-32.
    [38]李进卫.化学工业,2015,33(10):38-41.Li Jinwei.Chemical Industry,2015,33(10):38-41.
    [39]刘明福.山西建筑,2001(4):141-142.Liu Mingfu.Shanxi Architecture,2001(4):141-142.
    [40]郭兴忠,等.建筑材料学报,2014,17(2):261-265+297.Guo Xingzhong,et al.Journal of Building Materials,2014,17(2):261-265+297.
    [41]贾雪芹,等.中国,201310660827.0[P].2013-12-09.Jia Xueqin,et al.CN,201310660827.0[P].2013-12-09.
    [42]徐业峰,等.聚氨酯工业,2017,32(3):1-4.Xu Yefeng,et al.Polyurethane Industry,2017,32(3):1-4.
    [43]韩德福,等.中国,201620201036.0[P].2016-03-16.Han Defu,et al.CN,201620201036.0[P].2016-03-16.