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Tensile compressive and fatigue strength of a quasi-isotropic carbon fiber reinforced plastic laminate with a punched hole

机译:用冲孔孔的准各向同性碳纤维增强塑料层压板的拉伸压缩和疲劳强度

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摘要

The mechanical properties of a quasi-isotropic carbon fiber reinforced plastic (CFRP) laminate with a punched hole were investigated. During the punching process, pressure was applied to the laminate through the upper and lower blank holders of a punching machine; the clearance between the punch and blank holders was set to be small to suppress damage in the CFRP laminates. Due to the dragging of plies encountered during punching, the surface of the punched hole was relatively uneven as compared to that of the drilled hole. However, the effect of the uneven surface created during the punching process was not as significant on the tensile and compressive strength of the open hole as compared to the manufacturing damages generated by drilling processes. The stress–number of cycles to failure curves for the open-hole tension–tension fatigue tests also showed comparable results between the punched- and drilled-hole specimens. These results indicate that there were no significant differences in the mechanical properties of CFRP laminates with a punched hole, and thus present the possibility of a highly productive hole-making process using the punching method.
机译:研究了用冲孔孔的准各向同性碳纤维增强塑料(CFRP)层压体的机械性能。在冲压过程中,将压力施加到通过冲孔机的上部和下坯料的层压材料;冲头和空白支架之间的间隙设置为小以抑制CFRP层压板损坏。由于在冲压期间遇到的帘布层的拖动,与钻孔相比,冲孔孔的表面相对不均匀。然而,与通过钻井过程产生的制造损坏相比,在冲压过程中产生的不均匀表面的效果在开孔的拉伸和压缩强度上并不显着。开孔张力疲劳试验的失效曲线的循环循环的应力次数也显示出打孔和钻孔样本之间的可比结果。这些结果表明CFRP层压板的机械性能与冲孔孔的机械性能没有显着差异,因此使用冲压方法存在高效的空穴制造工艺的可能性。

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