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Impact of Anisotropy on the Elastic Modulus of Basic Woven Fabric Structure

机译:各向异性对基础织物结构弹性模量的影响

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Anisotropy is the characteristic which is typical for most materials, especially woven fabrics. Influence of direction of tensile force action on the properties of the fabric is big and frequently tested. The woven fabric can be defined as orthogonal elastomer. The values of elastic modulus of woven fabrics for different angles of extension direction were analyzed. Three types of fabric samples of different weaves (plain, twill, sateen) and the same raw material composition were tested under tensile forces in seven directions with 15° increment with respect to the weft direction. Elastic modulus of woven fabrics was determined experimentally in the laboratory. Based on the experimentally obtained values, theoretically calculated elastic modulus for arbitrarily chosen fabric directions was calculated. A good agreement between experimental results and the calculated obtained values of the elastic modulus was shown, and thus the theoretical equations can be used with high accuracy to calculate the elastic modulus of the fabric in various directions. Therefore, the measurements need to be implemented when the tensile force is acting on the fabric only in the warp (90°), weft (0°) and at angle of 45°.
机译:各向异性是大多数材料,尤其是编织织物的典型特性。拉伸力作用方向对织物性质的影响大,经常测试。织物可以定义为正交弹性体。分析了用于不同延伸方向的不同角度的织造织物的弹性模量的值。在七个方向上在拉伸力下,在纬向纬向纬向纬度下,在拉伸力下测试三种不同编织的织物样品和相同的原料组合物。在实验室实验确定编织织物的弹性模量。基于实验所获得的值,计算了用于任意所选择的织物方向的理论计算的弹性模量。示出了实验结果与所得弹性模量的计算值之间的良好一致性,因此理论方程可以高精度地使用,以计算织物在各种方向上的弹性模量。因此,当拉力仅在织物上仅在经纱(90°),纬纱(0°)和45°角度时,需要实现测量。

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