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Enhancement of Delamination Resistance by Novel Z-pinning for Composite Laminated Structures

机译:复合层压结构新型Z型抗化抗分层耐药性的增强

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Z-pin reinforced laminates are usually manufactured by inserting the pins vertically into the laminate. However, in the present work, we consider a method in which pins are inserted at an angle to the vertical to enhance pullout strength via mechanical interlocking. This method of reinforcement not only increases the contact area of the z-pin with the laminate, but also reduces the stresses in the interface layer between the pin and the laminate, thus delaying delamination. Experiments were conducted to verify computational results under tensile loading conditions on reinforced laminates manufactured from IM8-epoxy prepregs. Test results showed increase in pullout strengths and thus the potential for increase in delamination resistance with increasing pin angles. In addition, a novel variety of pin, namely the threaded pin, was used to reinforce laminate specimens and tested under tensile loading. Results showed that the threaded pin provided superior pullout strengths when compared with laminates with smooth steel and carbon fiber inserts.
机译:Z销加强层压材料通常通过垂直插入层压板来制造。然而,在本作工作中,我们考虑一种方法,其中销以一定角度插入垂直方向以通过机械互锁增强拉出强度。这种加强方法不仅将Z销的接触面积与层压板增加,而且还减少了销和层压板之间的界面层中的应力,从而延迟分层。进行实验以验证由IM8-环氧预浸料制成的增强层压板上的拉伸负载条件下的计算结果。试验结果表明拉出强度的增加,从而增加了与增加销角度的分层电阻增加的可能性。此外,使用新颖的销,即螺纹销,用于加强层压标本并在拉伸载荷下测试。结果表明,与具有光滑钢和碳纤维插入件的层压板相比,螺纹销提供了出色的拉出强度。

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