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Dynamic tensile process of blended fabric using finite element method

机译:使用有限元法的混纺织物的动态拉伸工艺

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Purpose Tensile property is one basic mechanics performance of the fabric. In general, not only the tensile values of the fabric are needed, but also the dynamic changing process under the tension is also needed. However, the dynamic tensile process cannot be included in the common testing methods by using the instruments after fabric weaving. Design/methodology/approach By choosing the weft yarn and warp yarn in the fabric as the minimum modeling unit, 1:1 finite element model of the whole woven fabrics was built by using AutoCAD software according to the measured geometric parameters of the fabrics and mechanical parameters of yarns. Then, the fabric dynamic tensile process was simulated by using the ANSYS software. The stress-strain curve along the warp direction and shrinkage rate curve along the weft direction of the fabrics were simulated. Meanwhile, simulation results were verified by comparing to the testing results. Findings It is shown that there are four stages during the fabric tensile fracture process along the warp direction under the tension. The first stage is fabric elastic deformation. The second stage is fabric yield deformation, and the change rate of stress begins to slow down. The third stage is fiber breaking, and the change of stress fluctuates since the breaking time of the fibers is different. The fourth stage is fabric breaking. Originality/value In this paper, the dynamic tensile process of blended woven fabrics was studied by using finite element method. Although there are differences between the simulation results and experimental testing results, the overall tendency of simulation results is the same as the experimental testing results.
机译:目的拉伸性能是织物的一种基本力学性能。通常,不仅需要织物的拉伸值,而且还需要张力下的动态变化过程。然而,通过在织物编织后使用仪器不能包含动态拉伸过程。设计/方法/方法通过将织物中的纬纱和经纱作为最小建模单元,1:1通过根据织物和机械测量的几何参数使用AutoCAD软件构建了整个编织织物的有限元模型纱线参数。然后,通过使用ANSYS软件模拟织物动态拉伸过程。模拟沿着织物的纬纱方向的经纱方向和收缩速率曲线的应力 - 应变曲线。同时,通过与测试结果相比,验证了仿真结果。结果表明,织物拉伸裂缝过程中有四个阶段沿着张力下的经线方向。第一阶段是织物弹性变形。第二阶段是织物产量变形,压力变化率开始减速。第三阶段是纤维破裂,并且由于纤维的断裂时间不同,压力波动的变化是不同的。第四阶段是织物破裂。本文的原创性/值,采用有限元法研究了混合织物的动态拉伸过程。虽然模拟结果与实验测试结果之间存在差异,但模拟结果的总体趋势与实验测试结果相同。

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