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首页> 外文期刊>Journal of Materials Engineering and Performance >Development of a Meso-Scale Material Model for Ballistic Fabric and Its Use in Flexible-Armor Protection Systems
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Development of a Meso-Scale Material Model for Ballistic Fabric and Its Use in Flexible-Armor Protection Systems

机译:弹道织物中尺度材料模型的开发及其在柔性防弹系统中的应用

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A meso-scale ballistic material model for a prototypical plain-woven single-ply flexible armor is developed and implemented in a material user subroutine for the use in commercial explicit finite element programs. The main intent of the model is to attain computational efficiency when calculating the mechanical response of the multi-ply fabric-based flexible-armor material during its impact with various projectiles without significantly sacrificing the key physical aspects of the fabric microstructure, architecture, and behavior. To validate the new model, a comparative finite element method analysis is carried out in which: (a) the plain-woven single-ply fabric is modeled using conventional shell elements and weaving is done in an explicit manner by snaking the yarns through the fabric and (b) the fabric is treated as a planar continuum surface composed of conventional shell elements to which the new meso-scale unit-cell based material model is assigned. The results obtained show that the material model provides a reasonably good description for the fabric deformation and fracture behavior under different combinations of fixed and free boundary conditions. Finally, the model is used in an investigation of the ability of a multi-ply soft-body armor vest to protect the wearer from impact by a 9-mm round nose projectile. The effects of inter-ply friction, projectile/yarn friction, and the far-field boundary conditions are revealed and the results explained using simple wave mechanics principles, high-deformation rate material behavior, and the role of various energy-absorbing mechanisms in the fabric-based armor systems.
机译:在材料用户子例程中开发并实现了原型原型平纹单层柔性装甲的中尺度弹道材料模型,并在商业子程序有限元程序中使用了该子模型。该模型的主要目的是在计算多层织物基柔性装甲材料在受到各种弹丸撞击时的机械响应时获得计算效率,而不会显着牺牲织物微结构,结构和行为的关键物理方面。为了验证该新模型,进行了比较有限元方法分析,其中:(a)使用常规壳单元对平纹单层织物进行建模,并通过在织物中na绕纱线以明确的方式进行编织。 (b)将织物视为由常规壳单元组成的平面连续表面,并为其分配了新的基于中尺度单位单元的材料模型。获得的结果表明,材料模型为固定和自由边界条件的不同组合下的织物变形和断裂行为提供了合理的良好描述。最后,该模型用于研究多层软质防弹背心保护穿戴者免受9毫米圆鼻子射弹冲击的能力。揭示了层间摩擦,弹丸/纱线摩擦以及远场边界条件的影响,并使用简单的波浪力学原理,高变形率材料行为以及各种能量吸收机制在结构中的作用来解释结果。基于织物的装甲系统。

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