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Cold Expansion Process with Multiple Balls—Numerical Simulation and Comparison with Single Ball and Tapered Mandrels

机译:具有多个球数模拟的冷膨胀过程和单球和锥形心轴的比较

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摘要

Cold expansion technology is an extended method used in aeronautics to increase fatigue life of holes and hence extending inspection intervals. During the cold expansion process, a mechanical mandrel is forced to pass along the hole generating compressive residual hoop stresses. The most widely accepted geometry for this mandrel is the tapered one and simpler options like balls have generally been rejected based on the non-conforming residual hoop stresses derived from their use. In this investigation a novelty process using multiple balls with incremental interference, instead of a single one, was simulated. Experimental tests were performed to validate the finite element method (FEM) models and residual hoop stresses from multiple balls simulation were compared with one ball and tapered mandrel simulations. Results showed that the use of three incremental balls significantly reduced the magnitude of non-conforming residual hoop stresses and the extension of these detrimental zone.
机译:冷膨胀技术是航空中使用的扩展方法,以提高孔的疲劳寿命,从而扩展检验间隔。在冷膨胀过程中,机械心轴被迫沿着产生压缩残余箍应力的孔。该心轴的最广泛接受的几何形状是锥形的一个,并且通常基于源自其使用的不合格的残余箍应力,通常被拒绝。在本研究中,模拟了使用多个球的新颖性进程,而不是单个滚珠,而不是单个一个。进行实验测试以验证有限元方法(FEM)模型,与多个球模拟的剩余箍应力与一个球和锥形心轴模拟进行比较。结果表明,使用三个增量球显着降低了不合格的残余箍应力和这些损害区的延伸的大小。

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