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Strain Rate Effect on the Failure Behavior of Kevlar 49 Fabric and Single Yarn

机译:应变速率对Kevlar 49织物和单纱破坏行为的影响

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High strength woven fabrics are ideal materials for use in structural and aerospace systems where large deformations and high-energy absorption are required.Their high strength to weight ratio and ability to resist high-speed impacts enables them to be more efficient than metals in many applications,including ballistic armors,propulsion engine containment systems and fabric-reinforced composites.In order to facilitate the design and improvement of such applications,this study investigates the mechanical behavior of Kevlar 49 fabric and single yarn under quasi-static and dynamic tensile loadings.The experimental results show that the fabric exhibits non-linear in tension,and can deform up to 20% before complete failure under quasi-static loading.The fabric has identical Young's modulus in warp and fill directions,but has different crimp strain,tensile strength and ultimate strain.The sample size has little effect on the mechanical properties of the fabric.The dynamic tensile behaviors of the fabric and single yarn were investigated at strain rates from 25 to 170 s-1 by using a high rate servo-hydraulic testing machine.Results show that their dynamic material properties in terms of Young's modulus,tensile strength,maximum strain and toughness increase with increasing strain rate.
机译:高强度机织织物是用于要求大变形和高能量吸收的结构和航空航天系统的理想材料,它们的高强度重量比和抵抗高速撞击的能力使它们在许多应用中比金属更有效为了促进此类应用的设计和改进,本研究研究了Kevlar 49织物和单纱在准静态和动态拉伸载荷下的力学性能。实验结果表明,该织物表现出非线性的拉伸性能,在准静态载荷下完全破坏前可变形达20%。该织物在经向和纬向具有相同的杨氏模量,但具有不同的卷曲应变,拉伸强度和极限应变。样品尺寸对织物的机械性能影响很小。动态拉伸性能使用高速伺服液压试验机在25至170 s-1的应变速率下对织物和单纱进行了研究。结果表明,它们的动态材料性能在杨氏模量,拉伸强度,最大应变和韧性方面均得到提高随着应变率的增加。

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