首页> 外文期刊>International journal of engineering research in Africa >Interaction of Mineral and Polymer Fibers with Cement Stone and their Effect on the Physical-Mechanical Properties of Cement Composites
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Interaction of Mineral and Polymer Fibers with Cement Stone and their Effect on the Physical-Mechanical Properties of Cement Composites

机译:矿物纤维和聚合物纤维与水泥石的相互作用及其对水泥复合材料物理力学性能的影响

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摘要

Cement-based penetrating waterproof compounds compact the concrete structure due to penetration into the microcracks, pores and capillaries of slightly soluble crystalline hydrates. The coatings made from them do have some drawbacks such as low tensile strength and shrinkage, which may lead to cracks and reduce impermeability. Dispersed fiber reinforcement allows improving these parameters. The surface electric properties of glass fibers and polyester fiber were studied; their ability to be a substrate for the growth of crystalline hydrates was studied; X-ray phase and thermal analysis of cement hydration products with a complex chemical additive providing penetrating action were carried out; electron microscopic studies of the contact zone between fibers and crystalline hydrates were carried out; experimental studies of the dependence of the composition physical and mechanical and hydrophysical properties on the additive and fiber content were carried out. It was found that a dense liner of crystalline hydrates and hydrosilicate gel is formed around the glass fiber and polyester fiber with a silicone dressing size. Between the crystalline hydrates and the fiber surface, strong electro-heterogeneous contacts are formed, which provide the high physical and mechanical properties of the composite. The amount of the complex chemical additive and polyester fiber that provides the maximum strength and minimum water absorption of the composition is determined experimentally.
机译:水泥基渗透性防水化合物由于渗透到微溶性,微溶性结晶水合物的微裂纹,孔和毛细管中而使混凝土结构致密。由它们制成的涂层确实具有一些缺点,例如低的拉伸强度和收缩率,这可能导致裂纹并降低不渗透性。分散纤维增强可以改善这些参数。研究了玻璃纤维和聚酯纤维的表面电性能。研究了它们作为结晶水合物生长底物的能力;对具有渗透作用的复杂化学添加剂的水泥水合产物进行了X射线相分析和热分析;对纤维和结晶水合物之间的接触区进行了电子显微镜研究。对组成物的物理,机械和水物理性质对添加剂和纤维含量的依赖性进行了实验研究。发现在玻璃纤维和聚酯纤维的周围,形成具有硅酸盐敷料尺寸的结晶水合物和氢硅酸盐凝胶的致密衬里。在结晶水合物和纤维表面之间,形成了强电异质接触,从而为复合材料提供了很高的物理和机械性能。提供组合物的最大强度和最小吸水率的复合化学添加剂和聚酯纤维的量通过实验确定。

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