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Mechanical Behavior of Circular Hybrid Braids Under Tensile Loads

机译:拉伸载荷下圆形混合编织的力学行为。

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摘要

In this work, the mechanical behavior of hybrid circular braids without a core under tensile loads is studied experimentally and analytically. A predictive model of the mechanical response of the braids based on the constituent yarn characteristics and machine parameters is developed. The structural geometry of the fabric is analyzed and used to build the mechanical model. Image analysis is employed to experimentally characterize the structural parameters of the braids, their deformation, and the braid and crimp angles of the yarns. Hybrid braids with two different yarn systems are manufactured at various braid angles. The structures are tested in tension and their strain response is recorded. Experimental results are compared to theoretical values, and the model predictions have good accuracy. In the case of high braid angles, the theoretical model underestimates the strength of the fabric.
机译:在这项工作中,通过试验和分析研究了无芯混合圆形编织物在拉伸载荷下的力学行为。建立了基于组成纱线特性和机器参数的编织物机械响应的预测模型。分析织物的结构几何形状并用于建立力学模型。图像分析用于实验表征编织物的结构参数,其变形以及纱线的编织角和卷曲角。具有两种不同纱线系统的混合编织物以各种编织角制造。对结构进行拉伸测试,并记录其应变响应。将实验结果与理论值进行比较,模型预测具有良好的准确性。在高编织角的情况下,理论模型会低估织物的强度。

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