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A Finite Element Model of Ultrasonically Assisted Drilling in Carbon/Epoxy Composites

机译:碳/环氧树脂复合材料超声辅助钻削的有限元模型

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Ultrasonically assisted drilling (UAD) is a novel machining technique suitable for drilling difficult-to-machine materials such as carbon/epoxy composites, where ultrasonic vibrations are superimposed on the tip of the revolving drill bit. Recently, UAD has been shown to possess several advantages in comparison to conventional drilling, including a reduced thrust force and torque, reduced drilling-induced damage and overall improvement in roundness and surface finish of the drilled hole. Here, a finite element model of UAD in carbon/epoxy composite is presented. This model accounts for volumetric and thermal softening phenomena in the workpiece material under the influence of localized vibro-impacts, which is a characteristic feature of UAD. The model was implemented in Abaqus/Explicit and validated with results from experiments, demonstrating a reasonable correlation between them. A parametric study was also carried out to examine the effect of variation in intensity of ultrasonic energy on the extent of softening in the carbon/epoxy composite for UAD.
机译:超声辅助钻探(UAD)是一种新颖的加工技术,适用于钻削难加工的材料,例如碳/环氧复合材料,其中超声振动叠加在旋转钻头的尖端。最近,UAD已显示出与常规钻孔相比具有多个优点,包括减小的推力和扭矩,减少的钻孔引起的损坏以及钻孔的圆度和表面光洁度的总体改善。在此,提出了碳/环氧树脂复合材料中UAD的有限元模型。该模型解决了局部振动冲击影响下工件材料中的体积软化和热软化现象,这是UAD的特征。该模型在Abaqus / Explicit中实现,并通过实验结果进行了验证,证明了它们之间的合理相关性。还进行了参数研究,以检查超声能量强度变化对UAD碳/环氧树脂复合材料软化程度的影响。

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