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Off-Axis Creep Recovery of Unidirectional Carbon/Epoxy Composites at High Temperature

机译:高温单向碳/环氧复合材料的离轴蠕变恢复

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摘要

Off-axis creep recovery behavior after complete unloading during creep at a constant stress is examined for a unidirectional T800H/3631 carbon/epoxy composite laminate at high temperature. Creep and creep recovery tests are performed on plain coupon specimens with four kinds of fiber orientations: 10, 30, 45 and 90°. It is observed that the creep strain appeared at a high stress does not completely recover after full removal of the creep stress, indicating that an irrecoverable creep strain has developed under the prior constant stress loading. Variable stress creep simulations are attempted using the modified kinematic hardening model for homogenized anisotropic inelastic composites in which an accelerated change in kinematic hardening over a certain range of viscoplastic strain is considered. Comparison with experimental results demonstrates that the proposed model can adequately describe the off-axis creep and creep recovery behaviors of the unidirectional composite system under constant and variable stress conditions.
机译:对于高温下的单向T800H / 3631碳/环氧树脂复合材料层压板,检查了在恒定应力下蠕变过程中完全卸载后的轴外蠕变恢复行为。蠕变和蠕变恢复测试是在具有四种纤维取向的普通试样块上进行的:10、30、45和90°。可以观察到,在完全消除蠕变应力后,高应力下出现的蠕变应变不会完全恢复,这表明在先前的恒定应力载荷下已经产生了不可恢复的蠕变应变。尝试使用改进的运动硬化模型对均质各向异性非弹性复合材料进行可变应力蠕变模拟,其中考虑了在一定范围的粘塑性应变下运动硬化的加速变化。与实验结果的比较表明,所提出的模型可以充分描述单轴复合系统在恒定和可变应力条件下的离轴蠕变和蠕变恢复行为。

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