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Indentation and penetration of carbon fibre reinforced plastic laminates

机译:碳纤维增强塑料层压板的压痕和渗透

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Static tests were carried out on circular carbon fibre reinforced plastic plates of various thicknesses, which where loaded at the centre by a hemispherical steel indentor. The tests were stopped at predetermined values of the displacement, and the indentation after the loading stage was evaluated. Tests were also performed up to complete penetration, using different indentor diameters. The data generated were compared with similar results previously obtained under low-velocity impact conditions, and treated according to models developed for the dynamic case. Apparently, both the penetration energy and indentation were not affected by the loading speed. The new experimental results showed that an empirical law previously proposed by the authors, aiming to predict the indentation as a function of the absorbed energy, is inaccurate when high energy levels are imparted to the material. A new empirical law, more efficient than the earlier, was assessed. The data collected indicate that the constants appearing in the new model are negligibly influenced by the laminate type and thickness, and constraint conditions adopted.
机译:在各种厚度的圆形碳纤维增强塑料板上进行了静态测试,这些板在中心通过半球形钢压头加载。以预定的位移值停止测试,并评估加载阶段后的压痕。还使用不同的压头直径进行了测试,以完全穿透。将生成的数据与先前在低速冲击条件下获得的类似结果进行比较,并根据针对动态情况开发的模型进行处理。显然,穿透能量和压痕都不受加载速度的影响。新的实验结果表明,作者先前提出的旨在预测压痕随吸收能量而变化的经验定律在将高能级赋予材料时是不准确的。评估了比以前更有效的新经验法则。收集的数据表明,新模型中出现的常数受层压板类型和厚度以及采用的约束条件的影响可以忽略不计。

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