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Kevlar and Carbon Composite Body Armor - Analysis and Testing

机译:凯夫拉尔纤维和碳纤维复合材料车身装甲-分析和测试

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摘要

Kevlar materials make excellent body armor due to their fabric-like flexibility and ultra-high tensile strength. Carbon composites are made up from many layers of carbon AS-4 material impregnated with epoxy. Fiber orientation is bidirectional, orientated at 0° and 90°. They also have ultra-high tensile strength but can be made into relatively hard armor pieces. Once many layers are cut and assembled they can be ergonomicically shaped in a mold during the heated curing process. Kevlar and carbon composites can be used together to produce light and effective body armor. This paper will focus on computer analysis and laboratory testing of a Kevlar/carbon composite cross-section proposed for body armor development. The carbon composite is inserted between layers of Kevlar. The computer analysis was performed with a Lagrangian transversely isotropic material model for both the Kevlar and Carbon Composite. The computer code employed is AUTODYN. Both the computer analysis and laboratory testing utilized different fragments sizes of hardened steel impacting on the armor cross-section. The steel fragments are right-circular cylinders. Laboratory testing was undertaken by firing various sizes of hardened steel fragments at square test coupons of Kevlar layers and heat cured carbon composites. The V_(50) velocity for the various fragment sizes was determined from the testing. This V_(50) data can be used to compare the body armor design with other previously designed armor systems. AUTODYN computer simulations of the fragment impacts were compared to the experimental results and used to evaluate and guide the overall design process. This paper will include the detailed transversely isotropic computer simulations of the Kevlar/carbon composite cross-section as well as the experimental results and a comparison between the two. Conclusions will be drawn about the design process and the validity of current computer modeling methods for Kevlar and carbon composites.
机译:凯夫拉尔材料具有类似织物的柔韧性和超高的拉伸强度,因此具有出色的防弹衣性能。碳复合材料由多层环氧浸渍的AS-4碳材料制成。纤维定向是双向的,定向在0°和90°。它们还具有超高的抗张强度,但可以制成相对较硬的装甲件。一旦切割并组装了许多层,就可以在加热固化过程中在模具中按人体工程学对它们进行成型。凯夫拉尔纤维和碳纤维复合材料可一起使用,以产生轻巧有效的防弹衣。本文将重点研究用于防弹衣开发的凯夫拉尔/碳纤维复合材料截面的计算机分析和实验室测试。将碳复合材料插入凯夫拉尔的各层之间。对于凯夫拉尔纤维和碳纤维复合材料,均使用拉格朗日横向各向同性材料模型进行计算机分析。使用的计算机代码是AUTODYN。计算机分析和实验室测试都使用了不同大小的硬化钢碎片,这些碎片会影响装甲的横截面。钢碎片是直圆柱体。实验室测试是通过在芳纶层和热固化碳复合材料的方形测试试样上烧制各种尺寸的硬化钢碎片来进行的。通过测试确定了各种碎片尺寸的V_(50)速度。此V_(50)数据可用于将防弹衣设计与其他先前设计的装甲系统进行比较。将片段撞击的AUTODYN计算机模拟与实验结果进行比较,并用于评估和指导整个设计过程。本文将包括凯夫拉尔/碳纤维复合材料横截面的详细横观各向同性计算机模拟,以及实验结果和两者之间的比较。将得出有关凯夫拉尔纤维和碳纤维复合材料当前计算机建模方法的设计过程和有效性的结论。

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