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MICROMECHANICAL MODELING AND NUMERICAL SIMULATION OF CHAIN-MAIL ARMOR

机译:链甲装甲的微机械建模与数值模拟

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摘要

The microstructure of chain-mail (CM) armor consists of a network of small links that are connected together to form a sheet. A network-type model, amenable to straightforward numerical simulation, is formulated, where the links are modeled as supporting only axial (tensile) loading, and where the interconnections are idealized as three-dimensional frictionless pin-joints. Because of its use as a ballistic shield, the strain-rate dependent thermo-mechanical (viscoplastic) response is important, due to thermal softening. The philosophy behind the proposed direct modeling approach is to harness the dramatic increases in readily available scientific computing to simulate realistic responses of structural CM, by starting directly at the microscale, where relatively simple description of the material is possible. By employing enough of these simple structural elements, one can build an entire macroscale sheet of CM. The deformation of the CM is dictated by solving a ("link-coupled") system of differential equations for the motion of the interconnected masses. Large-scale simulations, illustrating the thermomechanical response of chain-mail material armor, undergoing impact with a rigid indenter, are presented to illustrate the potential of the approach in delivering realistic responses, involving dynamic rupture and penetration of structural CM.
机译:链甲(CM)装甲的微观结构由小链接网络组成,这些小链接被连接在一起以形成薄片。建立了适用于直接数值模拟的网络类型模型,其中链接被建模为仅支持轴向(拉伸)载荷,而互连被理想化为三维无摩擦销接头。由于其用作防弹盾,由于热软化,依赖于应变率的热机械(粘塑性)响应非常重要。所提出的直接建模方法背后的哲学是,通过直接从微观尺度开始,可以对材料进行相对简单的描述,从而利用易于获得的科学计算的急剧增长来模拟结构CM的真实响应。通过使用足够多的这些简单的结构元素,可以构建整个CM的宏观表。 CM的变形是通过求解相互连接的质量运动的微分方程(“链接耦合”)系统决定的。提出了大规模模拟,以说明链式邮件材料装甲的热机械响应,并通过刚性压头对其进行了冲击,以说明该方法在提供逼真的响应(包括动态CM破裂和结构CM穿透)方面的潜力。

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