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Effect of Z-pin on the through-the-thickness strength of woven composite laminates

机译:Z引脚对织物层压板贯穿厚度强度的影响

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Delamination failure occurs due to the out-of-plane loading because of the weakness in the thickness directional properties of composite materials. The z-pinned composite has been developed to overcome such a problem. In this study, the mechanical properties of z-pinned composite laminates were examined using the analytical model. The effects of z-pins on the strength in the thickness direction were investigated. Fibers in the laminate are gradually waved by the formation of resin rich zone caused by inserting the z-pins. A constitutive model was developed for the predictions of strengths of woven z-pinned composites. The changes in the strengths in the in-plane and out-of-plane directions of the woven z-pinned composites and the effects of controlling parameters such as the diameter of z-pin and densities of z-pin on the strengths were identified. It was found that the out-of-plane tensile strength increases 14% relative to that of composite without z-pins when the diameter of z-pin is 0.25 mm. However, the in-plane tensile strength and in-plane and out-of-plane shear strengths were reduced to 9%, 7% and 8%, respectively, over the strengths of composite without z-pins. Qualitatively good correlations are obtained between the results of the suggested model and the experiments.
机译:由于复合材料的厚度定向性质的弱度,由于平面外负荷而发生分层失败。已经开发出Z-Pinned复合材料来克服这样的问题。在该研究中,使用分析模型检查Z型固化层压板的机械性能。研究了Z引脚对厚度方向上强度的影响。层压板中的纤维通过形成通过插入Z-销而形成的树脂富区逐渐挥发。开发了一个组成型模型,用于预测编织Z固定复合材料的强度。鉴定了平面内和平面外方向的强度的变化以及控制参数的效果,例如Z引脚直径和Z引脚的密度。结果发现,当Z引脚的直径为0.25mm时,平面外拉伸强度相对于没有Z引脚的复合材料的抗拉强度增加14%。然而,在没有Z引脚的复合材料的强度下,平面内拉伸强度和面内和平面外剪切强度分别降低至9%,7%和8%。在建议的模型和实验的结果之间获得定性良好的相关性。

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