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Preparation and properties of novel building materials at low temperature

机译:新型建材的低温制备与性能

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With the rapid development of science and technology, civil engineering in the cryogenic environment has become popular. It is reported that Pykrete (a mixture made of approximately 14 wt% of sawdust and 86 wt% of water) is stronger after cryogenic treatment. We utilized newspaper instead of sawdust and added Sodium Carboxyl Methyl Cellulose-Gelatin Polyelectrolyte Complex (SGPC) into water to make Ultimate Pykrete in order to improve mechanical strength. Results indicate that Ultimate Pykrete has several desirable properties including high strength, low weight and short curing time, therefore can potentially be utilized as a building material for civil engineering in the cryogenic environment with the demand of sustainable development.
机译:随着科学技术的飞速发展,在低温环境下的土木工程已经普及。据报道,经过低温处理后,Pykrete(由约14 wt%的木屑和86 wt%的水组成的混合物)更坚固。我们利用报纸代替锯末,并在水中添加了羧甲基甲基纤维素钠-明胶聚电解质复合物(SGPC),以制备终极Pykrete,以提高机械强度。结果表明,Ultimate Pykrete具有一些理想的性能,包括高强度,低重量和较短的固化时间,因此,在可持续发展的需求下,可以潜在地用作低温环境下土木工程的建筑材料。

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  • 来源
    《Materials & design》 |2015年第2期|464-468|共5页
  • 作者

    Jia Hui Li; Zhen Wei; Chao Wu;

  • 作者单位

    No.2 Secondary School Attached to East China Normal University, No. 555, Chen Hui Road, Pudong New District, Shanghai 201203, PR China;

    No.2 Secondary School Attached to East China Normal University, No. 555, Chen Hui Road, Pudong New District, Shanghai 201203, PR China;

    No.2 Secondary School Attached to East China Normal University, No. 555, Chen Hui Road, Pudong New District, Shanghai 201203, PR China;

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