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Effect of Microscopic Damage Events on Static and Ballistic Impact Strength of Triaxial Braid Composites

机译:微观损伤事件对三轴编织复合材料静弹道冲击强度的影响

摘要

The reliability of impact simulations for aircraft components made with triaxial-braided carbon-fiber composites is currently limited by inadequate material property data and lack of validated material models for analysis. Methods to characterize the material properties used in the analytical models from a systematically obtained set of test data are also lacking. A macroscopic finite element based analytical model to analyze the impact response of these materials has been developed. The stiffness and strength properties utilized in the material model are obtained from a set of quasi-static in-plane tension, compression and shear coupon level tests. Full-field optical strain measurement techniques are applied in the testing, and the results are used to help in characterizing the model. The unit cell of the braided composite is modeled as a series of shell elements, where each element is modeled as a laminated composite. The braided architecture can thus be approximated within the analytical model. The transient dynamic finite element code LS-DYNA is utilized to conduct the finite element simulations, and an internal LS-DYNA constitutive model is utilized in the analysis. Methods to obtain the stiffness and strength properties required by the constitutive model from the available test data are developed. Simulations of quasi-static coupon tests and impact tests of a represented braided composite are conducted. Overall, the developed method shows promise, but improvements that are needed in test and analysis methods for better predictive capability are examined.
机译:目前,由于材料性能数据不足和缺乏经过验证的材料模型可进行分析,因此对由三轴编织碳纤维复合材料制成的飞机部件进行冲击模拟的可靠性受到限制。也缺乏从系统获得的一组测试数据中表征分析模型中材料特性的方法。已经开发了基于宏观有限元的分析模型来分析这些材料的冲击响应。材料模型中使用的刚度和强度特性是通过一组准静态平面内拉伸,压缩和剪切试样水平测试获得的。测试中采用了全场光学应变测量技术,其结果用于帮助表征模型。编织复合材料的晶胞建模为一系列壳单元,其中每个单元建模为层压复合体。因此,可以在分析模型中近似编织结构。利用瞬态动态有限元代码LS-DYNA进行有限元仿真,并利用内部LS-DYNA本构模型进行分析。开发了从可用测试数据中获得本构模型所需的刚度和强度特性的方法。进行了拟编织复合材料的准静态试件试验和冲击试验的仿真。总体而言,已开发的方法显示出希望,但是要检验测试和分析方法中需要的改进,以实现更好的预测能力。

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