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首页> 外文期刊>The Journal of the Textile Institute >Mechanical modelling of materials coated with nanocomposite
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Mechanical modelling of materials coated with nanocomposite

机译:纳米复合材料包覆材料的机械建模

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摘要

The purpose of this study was to establish a mathematical equation that links the creep and relaxation forces to the clay percentage of nanocoated material based on a Zener analogical model. For this reason, a theoretical equation of the tensile resistance of a fabric coated with nanocomposites is presented. The samples whose properties are analysed by such equations were constructed from commercial resins, which are actually used in the textile field to enhance properties such as comfort, elasticity or impermeability of the fabric materials and the Tunisian natural clay. Relaxation deformations and creep forces were determined by using a dynamometer measuring the necessary force to maintain a constant elongation, and the calculated deformation when the fabric is stretched by a constant force equal to 80% of its rupture force. The mathematical equations obtained by modelling the coated fabric's mechanical behaviour help in analysing and explaining the measured rupture forces that have been presented in a previous work. It was found mat Young's modulus increases by increasing the clay quantity and the calculated values show that the values of mechanical resistance are in good agreement with the measured values of the tensile tests. Also, it was found that when nanocomposites are used in coating a fabric, the fabric becomes more elastic and more resistant, and this can be proved by Young's modulus and the viscosity (77 computing).
机译:这项研究的目的是建立一个基于Zener类比模型的将蠕变和松弛力与纳米涂层材料的粘土百分比联系起来的数学方程。因此,提出了涂覆有纳米复合材料的织物的拉伸强度的理论方程式。用这种方程式分析其性能的样品是用商业树脂制成的,这些树脂实际上用于纺织领域,以增强性能,例如织物材料和突尼斯天然粘土的舒适性,弹性或不渗透性。松弛变形和蠕变力通过使用测力计确定保持恒定伸长率所需的力来确定,并且当织物以等于其断裂力的80%的恒定力拉伸时计算出的变形。通过对涂层织物的机械性能进行建模而获得的数学方程式有助于分析和解释在先前的工作中提出的测量的断裂力。已发现,通过增加粘土量,可以使垫的杨氏模量增加,并且计算值表明机械阻力的值与拉伸试验的测量值非常吻合。而且,发现当使用纳米复合材料涂覆织物时,该织物变得更有弹性并且更耐久,这可以通过杨氏模量和粘度(77计算)来证明。

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