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Development of Reinforced Composite Materials with a Nanoporous Textile Substrate and a Brush-Structured Polymer Interfacial Layer

机译:用纳米孔纺织基材和刷子结构聚合物界面层的增强复合材料的研制

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摘要

A method for controlling the elastic deformation properties of polymeraEuro'fiber composites was developed. The rigidity of the material is increased by the penetration of the reinforcing polymer into the pore structure of the textile substrate to form D degrees branched interfacial layer. The nanoparticle size distribution in the polymer hydrosol products was analyzed by dynamic light scattering, the porosity of fibrous materials was measured by low temperature of adsorption and desorption of nitrogen vapor, and the polymeraEuro'polymer interactions were studied by IR spectroscopy and differential scanning calorimetry. The method was implemented in the development of a new range of garment interfacings and allowed solution of engineering problems associated with imparting to garments a complex geometric shape and its retention in wear.
机译:开发了一种控制聚合物复合材料的弹性变形特性的方法。 通过将增强聚合物渗透到纺织基材的孔结构中以形成D度支化界面层的刚性增加。 通过动态光散射分析聚合物氢化醇产物中的纳米粒子尺寸分布,通过低温吸附和氮气的解吸来测量纤维材料的孔隙率,并且通过IR光谱和差示扫描量热法研究了多种聚合物相互作用。 该方法在开发新的服装界面和允许与施加相关的工程问题的溶液方面实施,以促进复杂的几何形状及其在磨损中的保留。

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