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Thermal Effects of Design and Materials on QuadGard™ Body Armor Systems

机译:设计和材料对QuadGard™防弹衣系统的热效应

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摘要

QuadGard™ arm and leg protection systems were developed to better protect key areas of arms and legs from blast fragments. The purpose of this investigation was to use sweating thermal manikin Walter™ and examine the intrinsic clothing insulation (R_(cl)), intrinsic clothing evaporative resistance (R_(ecl)), micro-climate temperature, and moisture retention of three QuadGard™ systems (QG Ⅱ, QG Ⅳ Ventilated, and QG Ⅳ Not Ventilated) constructed with two ballistic materials, Dyneema~® and Kevlar~®. With similar protection level, the ballistic material Dyneema~®, consistently measured lower in R_(cl) and R_(ecl) than the ballistic material Kevlar~®, indicating body armor made with ballistic material Dyneema~® is more comfortable. There was no significant difference between QG Ⅱ and QG Ⅳ Ventilated in R_(cl) and there was no significant difference between the three armor systems in R_(ecl) This indicated that design features have the potential to reduce thermal stress on the human body when protective clothing is necessary.
机译:QuadGard™手臂和腿部保护系统的开发旨在更好地保护手臂和腿部的关键区域免受爆炸碎片的伤害。这项研究的目的是使用冒汗的人体暖身Walter™并检查三个QuadGard™系统的固有衣物隔热性(R_(cl)),固有衣物蒸发阻力(R_(ecl)),微气候温度和水分保持力(QGⅡ,QGⅣ通风和QGⅣ不通风)由两种弹道材料Dyneema®和Kevlar〜®制成。在类似的防护等级下,防弹材料Dyneema®的R_(cl)和R_(ecl)始终低于防弹材料Kevlar〜®,这表明用防弹材料Dyneema®制成的防弹衣更加舒适。 R_(cl)中通气的QGⅡ和QGⅣ之间无显着差异,R_(ecl)中的三个装甲系统之间无显着差异。这表明设计特征具有降低人体热应力的潜力。防护服是必要的。

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