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首页> 外文期刊>Journal of Composite Materials >Strength Prediction and Measurement in Model Multilayered Discontinuous Tow Reinforced Composites
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Strength Prediction and Measurement in Model Multilayered Discontinuous Tow Reinforced Composites

机译:模型多层不连续丝束增强复合材料的强度预测和测量

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The purpose of this work is to perform analytical modeling and experimentally produce idealized composite laminates reinforced with high-modulus discontinuous-fiber tows to evaluate the theoretical upper limits of tensile strength as compared to continuous-fiber composites.The idealized composite represents a staggered mosaic of prepreg tape strips of equal width and length.Three-dimensional analysis was performed to evaluate the energy relase rate of the possible damage accumulation modes,such as two delamination and splitting emanating from tape strip ends in plies with different orientations.The effect of residual stress was also evaluated on the delamination propagation energy release rates as well as tow end crack formation loads.Failure mechanisms for unidirectional and quasi-isotropic laminates were established by comparing the calculated energy releases rates for tows in different locations to the critical Mode II energy release for axial cracking in the material system.Specially designed experiments were conducted to verify the failure mechanism predictions and evaluate proposed design charges for strength increase in the discontinuous-fiber tow reinforced composites.
机译:这项工作的目的是进行分析建模并通过实验生产高模量不连续纤维丝束增强的理想化复合材料层压板,以评估与连续纤维复合材料相比抗张强度的理论上限。进行了三维分析,评估了可能的损伤累积模式的能量释放率,例如在方向不同的层中从条带末端产生两次分层和分裂。残余应力的影响通过比较计算出的不同位置的丝束能量释放率与临界模式II的能量释放,建立了单向和准各向同性层压板的破坏机理,建立了单向和准各向同性层压板的破坏机理。材料系统中的轴向裂纹进行了精心设计的实验,以验证破坏机理的预测并评估为增加不连续纤维丝束增强复合材料的强度而提出的设计费用。

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