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Mechanical behavior and damage degree of hybrid glass/carbon composites at low temperature

机译:低温下混合玻璃/碳复合材料的机械性能和损伤程度

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Hybrid composite samples with different carbon and glass fiber layers arrangement were produced by resin transfer molding (RTM) in an attempt to disclose the effects of low temperature on their flexural and low velocity impact behavior. Flexural tests were carried out at T = -50 degrees C and the failure modes were examined, while impact tests, always at T = -50 degrees C, were performed at penetration and at indentation in the range from 10 J to 30 J. The damage extension was accurately evaluated by ultrasonic non-destructive testing. The results were then compared with the room temperature ones obtained in a previous paper to highlight the influence of the temperature. The compression after impact tests were carried out at room temperature for samples previously impacted at both room and low temperature to assess the damage tolerance of the different hybrid configurations. Stacking sequence was found to govern both the flexural and impact behavior of laminates. At low temperature, the flexural strength and modulus values improved over the corresponding room temperature values irrespective of the stacking sequence, while an easier damage propagation and less residual strength were detected in dynamic loading.
机译:通过树脂传递模塑(RTM)制备了不同碳纤维和玻璃纤维层排列的混杂复合材料样品,试图揭示低温对其弯曲和低速冲击行为的影响。弯曲试验在T=-50°C下进行,并检查失效模式,而冲击试验(始终在T=-50°C下)在10 J至30 J范围内的穿透和压痕处进行。通过超声波无损检测准确评估损伤扩展。然后将结果与前一篇论文中获得的室温结果进行比较,以突出温度的影响。在室温下对之前在室温和低温下受到冲击的样品进行冲击后压缩试验,以评估不同混合配置的损伤容限。发现堆叠顺序控制层压板的弯曲和冲击行为。在低温下,与相应的室温值相比,无论堆叠顺序如何,弯曲强度和模量值都有所提高,而在动态加载中,损伤扩展更容易,残余强度更低。

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