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Simulation and experimental study of ultrasonic cutting for aluminum honeycomb by disc cutter

机译:圆盘切割器铝蜂窝纤维超声切割的仿真与实验研究

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摘要

Aluminum honeycomb has been widely used in many industrial fields, especially the aeronautics and aerospace industries, owing to its high strength and stiffness to weight ratio. Machining of aluminum honeycomb is usually associated with deformations and burrs. Ultrasonic cutting has been introduced as a promising method to overcome these constraints. In order to conduct in-depth research on the ultrasonic cutting for aluminum honeycomb by disc cutter, a 3D finite element model is carried out and verification tests are performed. Comparison result of simulated and experimental cutting forces indicates that the developed model agrees well with the experiment. Based on the developed model, cutting forces and contact relationship between cutter and honeycomb during the cutting process are studied. The reason for the periodic increase in cutting force is analyzed, subsequently. Moreover, the stress distribution in the cutting zone and honeycomb morphologies under different cutting conditions are compared and analyzed. Results show that the hexagonal structure of aluminum honeycomb can be protected and machining quality can be improved by using ultrasonic vibration. Therefore, high quality and efficient machining for aluminum honeycomb can be achieved.
机译:铝蜂窝已广泛应用于许多工业领域,尤其是航空航天行业,由于其高强度和重量比。铝蜂窝的加工通常与变形和毛刺有关。超声切割已被引入克服这些约束的有希望的方法。为了通过盘式切割器对铝蜂窝状的超声切割进行深入研究,进行3D有限元模型,进行验证测试。模拟和实验切削力的比较结果表明,发达的模型与实验相一致。基于开发的模型,研究了切割过程中切割器和蜂窝之间的切割力和接触关系。随后分析了切割力周期性增加的原因。此外,比较和分析了在不同切割条件下切割区和蜂窝形态的应力分布。结果表明,通过使用超声波振动,可以保护铝蜂窝状的六角形结构,并通过超声波振动提高加工质量。因此,可以实现高质量,高效的铝蜂窝状加工。

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