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Determination of Bond Strengths in Non-woven Fabrics: a Combined Experimental and Computational Approach

机译:非织造织物中粘合强度的测定:一种综合实验性和计算方法

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摘要

Interfiber bonds are important structural components in non-woven fabrics. Bond fracture greatly affects the strength and damage progression in a fiber network structure. Here, we present a novel combined experimental and computational approach to extract bond strengths in non-wovens. In this method, a small specimen is imaged and the obtained 3D geometry of the network is directly modeled in a finite element framework. Bond properties are determined by matching finite element simulation predicted mechanical response to the experimental data. This method is demonstrated by applying it to six specimens of a commercial polypropylene non-woven. A four parameter bi-linear interface law is used with normal stiffness k, shear stiffness beta k, separation at the start of damage d (1), and separation at total loss of bond stiffness d (2). The determined normal strength (kd (1))and shear strength (beta kd (1)) are (1.3 +/- 0.3) x 10(2) MPa and (1.0 +/- 0.2) x 10(2) MPa, respectively. To show that the obtained bond parameters can be applied to a new specimen, a cross validation is conducted whereby parameters are fit from five specimens and then evaluated on the sixth. Additional validation of the obtained bond strength parameters was conducted with larger size artificial network simulations and peel tests. The proposed method in this work carries the dual advantages of characterizing actual bonds in a non-woven and characterizing hundreds of bonds simultaneously. The method can be applied to a variety of non-woven fabrics that are bonded at fiber-fiber intersections.
机译:纤维粘合是非织造织物中的重要结构部件。粘合骨折极大地影响光纤网络结构中的强度和损伤进展。在这里,我们提出了一种新的组合实验和计算方法来提取非织造型粘合强度。在该方法中,成像小样本,并且在有限元框架中直接建模网络的3D几何形状。通过匹配有限元模拟预测对实验数据的机械响应来确定粘合性。通过将其施加到六种商业聚丙烯无纺布的六个标本来证明该方法。四个参数双线性界面法用于正常刚度K,剪切刚度βk,在损伤的开始时分离(1),并在键刚度D(2)的总损失处分离。确定的正常强度(Kd(1))和剪切强度(βkd(1))分别为(1.3 +/- 0.3)×10(2)MPa和(1.0 +/- 0.2)×10(2)MPa 。为了表明,所获得的粘合参数可以应用于新标本,进行交叉验证,从而从五个标本符合参数,然后在第六个标本中进行评估。通过较大尺寸的人工网络模拟和剥离试验进行所获得的粘合强度参数的额外验证。该工作中所提出的方法具有在非织造和表征数百键的非织造和表征数百键的实际键合的双重优点。该方法可以应用于在纤维纤维交叉处粘合的各种非织造织物。

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