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Study of the forming processes of the arbolite structure during the chemical activation of flax shove

机译:亚麻灌木化学激活过程中缺失结构的形成过程研究

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As one of the ways of directed formation of structures in arbolite(wood concrete),the use of properties of organic additive might serve.A capillary-porous,chemically active material is used for this purpose.The structure of capillaries and pores determines the perspective of directed mass transfer within the"binding substance-additive"system,and the chemical activity of flax shove fibers can replace the physical bonds of the components with stronger ones,the chemical bonds.To determine the ways of modification of the additive,an aqueous solution of calcium sulfate hemihydrate(CaSO4·0.5H2O)was applied along with liquid glass.The substantiation of the chemistry of the processes occurring in the wood-cement compositions during their strengthening was given.Analysis of the dynamics of strengthening of the material has shown that as a result of the chemical activation of flax fibers,the internal structure of capillaries and pores experience colmatage,which inhibits water absorption inside them,and also stronger bonds of flax fibers with cement stone are formed.With the application of the proposed technology,the compressive strength of arbolite increases almost 1.4 times,and the strength under transverse bending increases 1.6 times.
机译:作为arbolite(木质混凝土)中结构形成的方法之一,使用有机添加剂的性能可能为此目的使用。毛细管多孔,化学活性材料用于此目的。毛细血管和毛孔的结构决定了视角在“结合物质 - 添加剂”系统中的定向传质,亚麻吹纤维的化学活性可以用更强的化学键代替组分的物理键,化学键。确定添加剂的改性方式,水性硫酸钙半水合物(CasO4·0.5H 2 O)的溶液和液体玻璃施用。给出了在其强化期间在木水泥组合物中发生的方法的化学化学。分析了加强材料的动态所示即由于亚麻纤维的化学活化,毛细血管和孔隙的内部结构经历了含有内部的吸水性的科尔玛HEM,也形成了亚麻纤维的亚麻纤维的粘合剂形成。在该技术的应用中,胰蛋白矿石的抗压强度几乎增加了几乎1.4倍,横向弯曲的强度增加了1.6倍。

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