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作 者:孟玮[1] 鞠峰 操乐娟 MENG Wei JU Feng CAO Lejuan(Taizhou Institute of Sci. & Tech., NUST, Taizhou 225300, China Taizhou Tongyi Construction Engineering Quality Test Co. Ltd.,Taizhou 225300,China)
机构地区:[1]南京理工大学泰州科技学院,江苏泰州225300 [2]泰州市同一建设工程质量检测有限公司,江苏泰州225300
出 处:《新型建筑材料》2017年第6期127-129,142,共4页New Building Materials
基 金:泰州市科技支撑社会发展项目(SSF20160012)
摘 要:选取了40、60、80、100目粒径的废旧轮胎再生橡胶粉对复合保温砂浆进行改性试验,研究橡胶粉掺量对复合保温砂浆基本性能的影响。结果表明:掺不同细度橡胶粉保温砂浆试件抗折及抗压强度、干密度随着橡胶粉掺量的增加整体均呈下降趋势;橡胶粉掺量在20%以内时不同细度橡胶粉试件的导热系数差异不大,橡胶粉掺量为50%时,100目橡胶粉试件导热系数最低,为0.0798W/(m·K)。并结合微观形态,探讨了复合保温砂浆内部各材料之间的工作机理。This paper selected 40 mesh,60 mesh,80 mesh and 100 mesh size of waste tire modification to test reclaimed rubber powder. The influence of rubber powder content on the basic performance of composite insulation mortar was studied. The results show that with the increase of rubber powder content, the flexural strength,compressive strength and dry density of the samples with different rubber powder fineness are decreased. Difference of thermal conductivity is not big when rubber powder content was within 20%. When the content was 50%,thermal conductivity of the 100 mesh rubber powder sample was the lowest, reaching 0.0798 W/(m·K). Combined with the microscopic morphology,the working mechanism of each material in the composite insulation mortar was discussed.
分 类 号:TU551.34[建筑科学—建筑技术科学]
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