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Prediction Method for Temporal Change in Fiber Orientation on Cylindrical Braided Preforms

机译:圆柱形编织预成型坯纤维取向时间变化的预测方法

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Abstract An advantage of braided fabrics is that the fiber bundle orientation angle, called the "braiding angle," can be changed. Because the braiding angle affects the fabric's mechanical properties, changing the angle is an important means of adjusting the stiffness distribution as required. However, when the braiding angle is changing from an initial braiding angle to a targeted braiding angle designated by the longitudinal velocity of the mandrel, some delay occurs before the actual braiding angle reaches the targeted braiding angle. Previously, several models have been developed in order to predict braiding angles, although a prediction method for a temporal change in braiding angle caused by the mandrel velocity change has not been presented. In order to obtain the temporal change in braiding angle under unsteady-state conditions, this paper presents a step response model in braiding angle on a cylindrical braided fabric. Furthermore, the method is verified with the experimental data. As a consequence, the model has proved effective for predicting fiber orientation on a cylindrical braided preform under unsteady-state conditions.
机译:摘要编织织物的一个优点是可以改变纤维束的定向角,称为“编织角”。由于编织角度会影响织物的机械性能,因此更改角度是根据需要调整刚度分布的重要手段。然而,当编织角从初始编织角改变为由心轴的纵向速度指定的目标编织角时,在实际编织角达到目标编织角之前发生一些延迟。先前,已经开发了几种模型来预测编织角,尽管还没有提出由心轴速度变化引起的编织角随时间变化的预测方法。为了获得非稳态条件下编织角的时间变化,本文提出了一种圆柱编织织物上编织角的阶跃响应模型。此外,该方法得到了实验数据的验证。结果,该模型已证明可有效预测非稳态条件下圆柱形编织预成型坯上的纤维取向。

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