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Compressive mechanics of warp-knitted spacer fabrics. Part II : a dynamic model

机译:经编间隔织物的压缩力学。第二部分:动态模型

摘要

This part presents a dynamic model for predicting the impact compressive responses of warp-knitted spacer fabrics under various loading conditions using quasi-static compressive stress–strain data. The model was established based on a nonlinear mass-spring-damper system by considering spacer yarns as nonlinear springs with damping effect and representation of their stiffness by the constitutive model developed in Part I. Based on the dynamic model, the impact compressive responses of a typical warp-knitted spacer fabric was parametrically studied in terms of damping ratio, initial velocity, striker mass and contact area. The study indicates that damping can reduce the peak acceleration and peak displacement regardless of loading conditions, and the increase of the initial velocity can enhance the damping effect. Increasing initial velocity or striker mass while keeping the counterpart constant can increase the peak acceleration and peak displacement. However, at a constant kinetic energy, either increasing striker mass or decreasing initial velocity can reduce the peak acceleration, but the peak displacement keeps constant. The study also shows that an optimal size of the spacer fabric exists for achieving minimal peak acceleration under impact at a certain kinetic energy. Experimental validation by drop-weight impact tests demonstrates that the predictions of the dynamic model are in satisfactory agreement with the experimental results. Using the quasi-static compressive data from a simple test, this dynamic model can numerically simulate the full time-response of warp-knitted spacer fabrics under various impact conditions.
机译:这一部分提供了一个动态模型,该模型使用准静态压缩应力-应变数据来预测在各种载荷条件下经编间隔织物的冲击压缩响应。该模型是基于非线性质量弹簧-阻尼器系统建立的,该模型通过将间隔纱视为具有阻尼效果的非线性弹簧,并通过第一部分中开发的本构模型来表示其刚度。对典型的经编间隔织物进行了阻尼比,初始速度,撞针质量和接触面积的参数化研究。研究表明,阻尼可以减小峰值加速度和峰值位移,而与载荷条件无关,而初始速度的增加可以增强阻尼效果。在保持对方恒定的同时增加初始速度或撞针质量可以增加峰值加速度和峰值位移。但是,在恒定的动能下,增加撞针质量或降低初始速度会降低峰值加速度,但峰值位移保持恒定。研究还表明,存在一定的间隔织物尺寸,可以在一定动能下实现最小的峰值加速度。落锤冲击试验的实验验证表明,动力学模型的预测与实验结果令人满意。使用来自简单测试的准静态压缩数据,该动态模型可以数值模拟在各种冲击条件下经编间隔织物的全时响应。

著录项

  • 作者

    Liu Y; Hu H;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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