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首页> 外文期刊>Journal of aerospace engineering >Effect of z-Pins on Fracture in Composite Cocured Double Cantilever Beams
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Effect of z-Pins on Fracture in Composite Cocured Double Cantilever Beams

机译:z钉对复合固结双悬臂梁断裂的影响

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The paper illustrates a new approach to the evaluation of the effect of z-pins on deformations and the strain energy release rate in composite double cantilever beams (DCB) subject to a standard fracture toughness test. The effect of z-pins is modeled by an elastic foundation, based on previously published work. The approach to the solution is based on a separate analysis of the intact and delaminated parts of DCB. The rotational stiffness of the intact part is obtained from the Rayleigh-Ritz solution for this part subjected to a force couple, rather than modeling the rotational restraint by introducing an elastic foundation, as has been done in the previous studies. Subsequently, the deformation of the delaminated part of DCB is analyzed exactly by solving the equation of equilibrium with the appropriate boundary conditions. Based on this solution, the compliance, the rate of change of compliance, and the strain energy of the specimen can be evaluated. The results illustrate the beneficial effect of z-pins on the resistance of DCB to delamination cracking.
机译:本文阐述了一种新方法,用于评估z钉对复合双悬臂梁(DCB)中的变形和应变能释放率的影响,该方法经过标准断裂韧性测试。基于先前发表的工作,通过弹性基础对z销的效果进行建模。解决方案的方法基于对DCB完整部分和分层部分的单独分析。完整零件的旋转刚度是从受力耦合的零件的Rayleigh-Ritz解中获得的,而不是像以前的研究那样通过引入弹性基础来模拟旋转约束。随后,通过在适当的边界条件下求解平衡方程,可以精确地分析DCB脱层部分的变形。基于此解决方案,可以评估柔度,柔度变化率和样品的应变能。结果表明z引脚对DCB耐分层开裂的有益作用。

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