共查询到16条相似文献,搜索用时 62 毫秒
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伴随环保要求的提升和人们环境意识的提高,水玻璃作为一种环境友好型粘结剂受到广大研究者以及消费者的垂青。但水玻璃因其自身的结构而导致的固化后耐水性差的问题尚未得到彻底的解决及其不同的固化途径而产生的固化机理亦是琳琅满目,从而使水玻璃在其应用原理以及解决其相应的缺陷上受到阻碍。故文中对近几年来所研究的水玻璃固化机理以及提高其耐水性途径上进行了详细的分析以促进和拓宽水玻璃的改性研究及应用领域。 相似文献
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综述了近几年所研究的水玻璃的固化机理,以及提高其耐水性的途径,以促进和拓宽水玻璃的改性研究及应用领域。 相似文献
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为实现牡蛎壳和余泥渣土两种固废资源的利用,提出了预处理的牡蛎壳经磷酸或磷酸氢二铵(DAP)活化后固化土体,制得牡蛎壳固化土。试验测定了不同配比的牡蛎壳固化土的力学性能,研究牡蛎壳固化土的边坡抗冲刷性能,并使用扫描电镜和X射线衍射仪观察固化土的微观结构,分析其固化机理。结果表明,掺磷酸、DAP能提高牡蛎壳固化土的抗压强度,其中掺加DAP的效果更好。材料最佳配比(质量分数)为:73.6%土,18.4%牡蛎壳(粒径≤1 mm),8%DAP。其烘干抗压强度达到2.14 MPa,是牡蛎壳稳定余泥渣土抗压强度的2.43 倍,软化系数达到0.5,改变了原土遇水崩解的特性。在室内边坡冲刷试验中,掺DAP牡蛎壳固化土与素土相比,有效降低了坡面冲刷的产沙量。微观结构分析表明,磷酸、DAP分别与牡蛎壳作用生成磷酸钙晶体、羟基磷灰石,两者都能胶结土粒,从而固化土体。 相似文献
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Hu Zhou Xiaohong Wang Taofen Wang Jian Jian Zhihua Zhou Jianxian Zeng Lingwei Zeng Guoqing Liu 《大分子材料与工程》2019,304(3)
Polyurethane synthetic papers based on different inorganic fillers are prepared via wet phase inversion process and inorganic mineral filling modification technique. The surface and cross‐section morphology, tensile strength and elongation at break, fire resistance, water and oil adsorption, ink contact angle, writing and printing effects, and water resistance of synthetic paper are investigated, respectively. A large number of pores are present on the surface and in the interior of the synthetic papers and provide huge space for ink molecules. The synthetic paper with transparent powder filled exhibits the optimal performance in tensile strength and elongation at break. Moreover, the fire resistance of polyurethane is improved by inorganic particles, and the highest limit oxygen index value of synthetic paper reaches up to 31.8%, which meets the standard of flame retardant. Meanwhile, filled synthetic papers exhibit high water and oil adsorption capacity, good ink‐affinity, excellent writing and printing effects. In addition, filled synthetic papers perform well in water resistance when written and printed synthetic papers are immersed in water. This work may provide a new idea to design a novel, greener, and multifunctional synthetic paper for its broad applications. 相似文献
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通过苯酚羟基醚化和环氧豆油(ESO)扩链聚合制备了环氧豆油/酚醛(PR)交联树脂,采用扫描电子显微镜和热分析分别研究了醚化和扩链对改性酚醛树脂微观形貌及抗吸水性的影响.ESO扩链聚合物与酚醛树脂不相容,通过醚化反应可改善相容性并接枝形成软硬链段交联网络.ESO与酚醛交联聚合能够增强树脂的抗吸水性,由该交联树脂制得的纸层... 相似文献
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