Composite coiled material for building

The invention discloses a composite coiled material for building. The top layer, the bottom layer and the connecting layer of the composite coiled material form a cavity. The cavity is filled with a curable composite material. The top layer is composed of thick fibers. The connecting layer is prepar...

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Hauptverfasser: WU YUZHE, LIANG DEZHI, SUN ZHILONG, HE ZHIYONG, ZHU DINGBO, LI MANCHANG, WANG JINCHANG, SHEN WENJUN, WANG SHUANGLONG, WANG CHUNYAN, ZHANG DONGLIANG, TIAN YANFU, WANG SHI, SHEN XIAOMING, JING XUDONG, ZHANG YONGNING, JIAO SHILU, LIU YOUQIAN, CHEN SHUXIANG, WANG ZHIWEI, ZHANG SHOUHONG, CAI XIAOMIN, DANG HAIMIN, PAN ZHENHUA, KANG JIAN, TANG WENGUO, KANG LUCAI, ZHANG LE'AN, ZHANG JUNJIAN, YAN XIAODONG, ZHANG CHANGSHUN, SUN YONGNING, HUA YONGLI, ZHANG XUTAN, QUE WEIDONG, LEI DAPENG, LIU WU
Format: Patent
Sprache:chi ; eng
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Zusammenfassung:The invention discloses a composite coiled material for building. The top layer, the bottom layer and the connecting layer of the composite coiled material form a cavity. The cavity is filled with a curable composite material. The top layer is composed of thick fibers. The connecting layer is prepared from oil-treated alkali-resistant fibers. The curable composite material is divided into upper and lower layers and fills the cavity. The curable composite material contacts with an additive and is cured. The curable composite material contains Sporosarcina pasteurii dry powder. After construction and use, the cured composite material can be subjected to secondary, tertiary and multiple hydration when contacting with water or a specific mixed or synthetic liquid. In hydration, the Sporosarcina pasteurii carries out biomineralization into limestone by urea degradation so that the microcracks of the curable composite material can be self-repaired. The composite coiled material has a repairrate of 30% or more to mi