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Compressive experiment and numerical simulation of 3D carbon/carbon composite open-hole plates

机译:3D碳/碳复合孔板的压缩实验与数值模拟

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摘要

Experiments and finite element analysis were carried out for the problem of open-hole sensitivity of 3D carbon/carbon composite material plates. Finite element models of the representative volume element and open-hole plates of 3D carbon/carbon composite were established. Transition method between macro-level stress and meso-level stress was given, and numerical simulation on the compressive failure of open-hole plates was implemented based on this method. By uniaxial compressive tests of 3D carbon/carbon composite open-hole plates, good agreement between numerical results and experiments was observed. In addition, the influence of width-to-diameter ratio (WTDR) on the compressive strength was analyzed. The results show that the compressive strength of the WTDR-6 open-hole plate is larger than that of the WTDR-4 open-hole plate. It can be considered that the carbon/carbon composite plate is insensitive to the opening hole when the WTDR reaches to 6. And the result of the investigation provides insight into the design of carbon/carbon composite open-hole plates.
机译:针对3D碳/碳复合材料板的开孔敏感性问题进行了实验和有限元分析。建立了代表体积元和3D碳/碳复合材料的开孔板的有限元模型。给出了宏观应力和中观应力之间的过渡方法,并基于此方法对裸眼板的压缩破坏进行了数值模拟。通过3D碳/碳复合材料开孔板的单轴压缩试验,观察到数值结果与实验吻合良好。此外,分析了宽径比(WTDR)对抗压强度的影响。结果表明,WTDR-6孔板的抗压强度比WTDR-4孔板的抗压强度大。可以认为当WTDR达到6时,碳/碳复合材料板对开孔不敏感。研究结果为碳/碳复合材料多孔板的设计提供了见识。

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