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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Evaluation and prediction of temperature-dependent tensile strength of unidirectional carbon fiber-reinforced polymer composites
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Evaluation and prediction of temperature-dependent tensile strength of unidirectional carbon fiber-reinforced polymer composites

机译:单向碳纤维增强聚合物复合材料随温度变化的拉伸强度的评估和预测

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摘要

To predict temperature-dependent tensile strength of unidirectional CFRP composites, numerical analysis and model simulation were conducted in terms of experimental results. The effect of elevated temperatures on tensile strength of CFRP sheets was evaluated between 20°C and 120°C, and the storage moduli of two types of epoxy resins, with glass transition temperatures (T_g) of 42°C and 45°C, were tested by DMA. The tensile experiments of CFRP sheets show that the tensile strength exhibits stable behavior at the low-temperature range (below glass transition temperature), but drops rapidly during the glass transition region, and then reaches a plateau. Analysis results indicate that the degradation of tensile strength is mainly due to matrix softening and loss of fiber-matrix adhesion, based on which a semi-empirical model is proposed to precisely describe tensile strength reduction as the temperature increases. The parameters of the model consist of the glass transition temperature of polymer matrix, the polymer glass transition region, and the residual strength after the glass transition region. Model prediction of tensile strength vs. temperature shows good agreement with the experimental results.
机译:为了预测单向CFRP复合材料的温度依赖性拉伸强度,根据实验结果进行了数值分析和模型模拟。在20°C至120°C之间评估了高温对CFRP片材拉伸强度的影响,两种环氧树脂在玻璃化转变温度(T_g)为42°C和45°C时的储能模量分别为经DMA测试。 CFRP片材的拉伸实验表明,拉伸强度在低温范围(低于玻璃化转变温度)下表现出稳定的行为,但在玻璃化转变区域内迅速下降,然后达到平稳状态。分析结果表明,抗拉强度的下降主要是由于基体软化和纤维-基体粘合力的损失,在此基础上,提出了一个半经验模型来精确描述随着温度的升高抗拉强度的降低。该模型的参数包括聚合物基体的玻璃化转变温度,聚合物玻璃化转变区域和玻璃化转变区域之后的残余强度。抗张强度与温度的模型预测表明与实验结果吻合良好。

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