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Time–temperature viscoelastic behavior of an interlaminar‐toughened epoxy composite

机译:层间增韧环氧树脂复合材料的时间-温度粘弹性行为

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AbstractViscoelastic deformation of an interlaminar‐toughened laminated composite was investigated, and effects of the interlaminar heterogeneity were examined. Dynamic mechanical experiments were performed on the laminates and neat matrix resins of the laminated composite in the temperature range of 82–210°C to probe linear time‐temperature behavior. The reason for using torsional shear deformation for probing was that it usually is more dominated by the matrix. In the relatively low‐temperature regime, time‐temperature superposition was applicable, and the effect of the interlaminar heterogeneity was found to be not pronounced. A methodology based on the Arrhenius activation energy approach was proposed for predictions of long‐term viscoelasticity of the heterogeneous‐phase composite. The effects of the interlaminar toughening phase became more significant at temperatures greater than theTgof the toughening phase and presented some limitations for accurate predictions of time‐dependent behavior. © 1993 Joh
机译:摘要 研究了层间增韧层合复合材料的粘弹性变形,并研究了层间非均质性的影响。在82–210°C的温度范围内,对层合复合材料的层合板和纯基体树脂进行了动态力学实验,以探究线性时间-温度行为。使用扭转剪切变形进行探测的原因是它通常更受基体支配。在相对低温的条件下,时间-温度叠加是适用的,并且发现层间异质性的影响不明显。提出了一种基于阿伦尼乌斯活化能方法的多相复合材料长期粘弹性预测方法。层间增韧相的温度比增韧相的温度大,对时间依赖性行为的准确预测存在一些局限性。© 1993年 Joh

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