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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Investigation on the Thermoelastic Constant of Carbon Fibre Composites
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Investigation on the Thermoelastic Constant of Carbon Fibre Composites

机译:调查的热弹性常数碳纤维复合材料

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摘要

Orthotropic materials show different thermo-elastic constants depending on their fibre orientation. While most materials undergo a positive elongation with increasing temperature, carbon fibres present a heat-shrink behaviour, which in carbon fibre composites has an important consequence on thermoelastic constants. A decrease in thermoelastic constant with frequency has already been observed in glass fibre composites. Experiments made on uniaxial carbon fibre composites showed that the longitudinal thermoelastic constant increases with the frequency, while the transverse constant decreases. Furthermore, due to the opposite signs of the thermoelastic carbon fibre constant and of the surrounding resin matrix, the absolute values of the longitudinal thermoelastic constant were ten times lower in CFRPs than in GFRPs. An analytical model could successfully reproduce the frequency dependence of the longitudinal thermoelastic constant, thus helping to explain the reason for the observed behaviour. Two calibration samples were used to obtain the thermoelastic constants in the longitudinal and transverse directions. The values of the thermoelastic constants were then applied to a test sample with fibres forming an angle of 10° to the load direction. The expected theoretical results were compared with the results experimentally obtained, showing good agreement. A preliminary calibration of the longitudinal and transverse thennoelastic constants proved to be a useful approach to obtaining the correct value of the thermoelastic constant in a generic direction.
机译:正交的材料显示不同弹性常数取决于他们的纤维取向。积极的伸长随着温度增加,碳纤维呈现一个塑胶的行为,在碳纤维复合材料具有重要的吗结果在热弹性常数。减少热弹性常数与频率已经观察到玻璃纤维复合材料。纤维复合材料表明,纵向热弹性常数的增加频率,而横向常数减少。碳纤维的热弹性常数和周围的树脂基体,绝对的值纵向的热弹性常数低十倍比gfrp碳纤维增强塑料。分析模型可以成功地繁殖纵向的频率依赖性热弹性常数,从而帮助解释观察到的行为的原因。校准样品被用来获得纵向和热弹性常数横向方向。热弹性常数被应用到测试样本与纤维形成一个角度10°到负载的方向。结果与结果实验获得,显示良好的协议。初步的纵向和校准被证明是一个横向thennoelastic常量有用的方法来获得正确的值一个通用的热弹性常数方向。

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