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Development and verification of a meso-scale based dynamic material model for plain-woven single-ply ballistic fabric

机译:平纹单层弹道织物中尺度动态材料模型的开发与验证

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A meso-scale unit-cell based continuum material constitutive model has been developed for plain-woven single-ply ballistic fabric materials. This model, due to its computational efficiency, is suitable for use in computational analyses of the ballistic-protection performance of multi-layer body-armor vests. The model utilizes the continuum-level in-plane and out-of-plane deformation-state of the material, an energy minimization procedure and a simple account of yarn slip to update the structure/architecture of the fabric unit cell. Forces and moments developed within the structural components of the unit cell are then used to compute the continuum-level stress state at the material points associated with the unit cell in question. The model is implemented in a user-material subroutine suitable for use within commercial finite-element programs. To validate the model, a series of transient non-linear dynamic analyses of the impact of a square-shaped fabric patch with a spherical projectile is carried out and the computed results compared with their counterparts obtained using a more traditional finite-element approach within which yarns and yarn weaving are modeled explicitly. The results obtained show that the material model provides a reasonably good description for the fabric deformation and fracture behavior under a variety of boundary conditions applied to fabric edges and under varying fictional conditions present at the yarn/yarn and projectile/fabric interfaces. In addition, the overall ballistic energy absorption capacity of the fabric as well as its yarn-strain energy, yarn-kinetic energy, and frictional sliding contributions are predicted with reasonable accuracy by the proposed material model for fabric.
机译:已经开发出了一种基于中尺度单胞的连续体材料本构模型,用于平纹单层弹道织物材料。由于其计算效率高,该模型适合用于多层防弹背心的防弹性能的计算分析。该模型利用了材料的连续水平平面内和平面外变形状态,能量最小化过程以及对纱线滑移的简单考虑来更新织物单元的结构/体系结构。然后,在晶胞的结构组件中产生的力和力矩将用于计算与所讨论的晶胞相关的材料点处的连续水平应力状态。该模型在适用于商业有限元程序的用户材料子例程中实现。为了验证该模型,对具有球形弹丸的方形织物补丁的影响进行了一系列瞬态非线性动力学分析,并将计算结果与使用更传统的有限元方法获得的结果进行了比较。纱线和纱线编织是明确建模的。所获得的结果表明,该材料模型为在施加于织物边缘的各种边界条件下以及在纱线/纱线和弹丸/织物界面处存在的各种虚构条件下的织物变形和断裂行为提供了相当好的描述。此外,织物的总体弹道能量吸收能力以及其纱线应变能,纱线动能和摩擦滑动贡献可以通过所提出的织物材料模型以合理的准确性进行预测。

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