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Low-Velocity Impact Response and Finite Element Analysis of Four-Step 3-D Braided Composites

机译:四步3-D编织复合材料的低速冲击响应和有限元分析

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The low-velocity impact characters of 3-D braided carbon/epoxy composites were investigated from experimental and finite element simulation approaches. The quasi-static tests were carried out at a constant velocity of 2 mm/min on MTS 810.23 material tester system to obtain the indentation load–displacement curves and indentation damages. The low-velocity tests were conducted at the velocities from 1 m/s to 6 m/s (corresponding to the impact energy from 3.22 J to 116 J) on Instron Dynatup 9250 impact tester. The peak force, energy for peak force, time to peak force, and total energy absorption were obtained to determine the impact responses of 3-D braided composites. A unit cell model was established according to the microstructure of 3-D braided composites to derive the constitutive equation. Based on the model, a user-defined material subroutine (VUMAT) has been compiled by FORTRAN and connected with commercial finite element code ABAQUS/Explicit to calculate the impact damage. The unit cell model successfully predicted the impact response of 3-D braided composites. Furthermore, the stress wave propagation and failure mechanisms have been revealed from the finite element simulation results and ultimate damage morphologies of specimens.
机译:通过实验和有限元模拟方法研究了3-D编织碳/环氧树脂复合材料的低速冲击特性。在MTS 810.23材料测试仪系统上以2mm / min的恒定速度进行准静态测试,以获得压痕载荷-位移曲线和压痕损伤。低速测试是在Instron Dynatup 9250冲击测试仪上以1m / s至6m / s的速度进行的(对应于从3.22J至116J的冲击能量)。获得了峰值力,峰值力的能量,达到峰值力的时间以及总能量吸收,从而确定了3-D编织复合材料的冲击响应。根据3-D编织复合材料的微观结构,建立了晶胞模型,导出了本构方程。在该模型的基础上,FORTRAN编译了用户定义的材料子例程(VUMAT),并将其与商业有限元代码ABAQUS / Explicit连接起来,以计算冲击破坏。晶胞模型成功地预测了3-D编织复合材料的冲击响应。此外,从有限元模拟结果和试样的最终损伤形态揭示了应力波的传播和破坏机理。

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