首页> 外文期刊>The Journal of the Textile Institute >Responses of 3D biaxial spacer weft-knitted composite circular plate under impact loading. Part II: impact tests and FEM calculation
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Responses of 3D biaxial spacer weft-knitted composite circular plate under impact loading. Part II: impact tests and FEM calculation

机译:3D双轴垫片纬编复合圆板在冲击载荷下的响应。第二部分:冲击试验和有限元计算

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The responses of 3D biaxial spacer weft-knitted composite circular plate under impact loading had been investigated both in experimental and finite-element analysis (FEA). The impact tests were carried out with a modified split Hopkinson pressure bar (SHPB) apparatus and copared with the results from the quasi-static indentation tests. The load-displacement curves of the composite circular plate under impact were obtained to analyze the energy absorption and dynamic responses. It is found that the failure loads, energy absorptions, and impact deformation increase with the increase of impact velocity. The damage along the course direction is more severe than that along the wale direction. The main damage mechanism includes matrix spallation in the rear side under impact, while the fiber extension and pullout in quasi-static test. Incorporated with the unit-cell model developed in Part 1 of this paper (B. Sun, H. Hu, & B. Gu, The Journal of the Textile Institute, 101, 28-34) a user-defined subroutine VUMAT (FORTRAN Vectorized User Material) was developed to connect with commercially available finite-element code ABAQUS/Explicit. The interaction between the subroutine and ABAQUS/Explicit was analyzed. The impact responses of the knitted composite can be calculated with the subroutine and ABAQUS/Explicit. The good agreement between the experimental and finite-element method calculation indicates the feasibility of extending the unit-cell model to engineering structures made of the 3D knitted composite.
机译:在实验和有限元分析(FEA)中都研究了3D双轴间隔纬编复合圆板在冲击载荷下的响应。冲击试验是使用改进的分体式霍普金森压力棒(SHPB)仪器进行的,并与准静态压痕试验的结果进行了比较。得到了复合圆板在冲击下的载荷-位移曲线,以分析其能量吸收和动力响应。结果表明,随着冲击速度的增加,破坏载荷,能量吸收和冲击变形增加。沿航向的损害比沿纵行方向的损害更为严重。主要的损坏机制包括受到冲击时后侧的基体剥落,而准静态测试中的光纤延伸和拉出。结合本文第1部分中开发的单位单元模型(B. Sun,H。Hu和B. Gu,纺织学院学报,101,28-34),用户定义的子例程VUMAT(FORTRAN矢量化)用户资料)被开发为与市售的有限元代码ABAQUS / Explicit连接。分析了子例程与ABAQUS / Explicit之间的交互。可以使用子例程和ABAQUS / Explicit计算编织复合材料的冲击响应。实验和有限元方法计算之间的良好一致性表明将单元格模型扩展到3D针织复合材料制成的工程结构的可行性。

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