Impact Behavior of Hybrid Glass/Carbon Epoxy Composites

IF 2.6 4区 工程技术 Q2 MECHANICS Journal of Applied Mechanics-Transactions of the Asme Pub Date : 2013-05-01 DOI:10.1115/1.4023344
M. Perez-Martin, A. Enfedaque, W. Dickson, F. Gálvez
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引用次数: 18

Abstract

The high velocity impact performance in hybrid woven carbon and S2 and E glass fabric laminates manufactured by resin transfer molding (RTM) was studied. Specimens with different thicknesses and glass-fiber content were tested against 5.5 mm spherical projectiles with impact velocities ranging from 300 to 700 m/s to obtain the ballistic limit. The resulting deformation and fracture micromechanisms were studied. Several impacts were performed on the same specimens to identify the multihit behavior of such laminates. The results of the fracture analysis, in conjunction with those of the impact tests, were used to describe the role played by glass-fiber hybridization on the fracture micromechanisms and on the overall laminate performance under high velocity impact.
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杂化玻璃/环氧碳复合材料的冲击性能
研究了树脂传递模塑(RTM)法制备的复合碳织物与S2、E玻璃织物复合材料的高速冲击性能。采用不同厚度、不同玻璃纤维含量的试样,对冲击速度为300 ~ 700 m/s的5.5 mm球形弹丸进行了试验,得到了其弹道极限。对其变形和断裂微观机制进行了研究。在同一试样上进行了多次撞击,以确定这种层压板的多次撞击行为。断裂分析结果与冲击试验结果相结合,用于描述玻璃纤维杂交对高速冲击下断裂微观机制和层合板整体性能的作用。
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来源期刊
CiteScore
4.80
自引率
3.80%
发文量
95
审稿时长
5.8 months
期刊介绍: All areas of theoretical and applied mechanics including, but not limited to: Aerodynamics; Aeroelasticity; Biomechanics; Boundary layers; Composite materials; Computational mechanics; Constitutive modeling of materials; Dynamics; Elasticity; Experimental mechanics; Flow and fracture; Heat transport in fluid flows; Hydraulics; Impact; Internal flow; Mechanical properties of materials; Mechanics of shocks; Micromechanics; Nanomechanics; Plasticity; Stress analysis; Structures; Thermodynamics of materials and in flowing fluids; Thermo-mechanics; Turbulence; Vibration; Wave propagation
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