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Experimental Study of Drilling Temperature Geometrical Errors and Thermal Expansion of Drill on Hole Accuracy When Drilling CFRP/Ti Alloy Stacks

机译:钻井CFRP / Ti合金堆栈钻孔钻孔钻孔精度钻孔温度几何误差和热膨胀的实验研究

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摘要

The drilling of holes in CFRP/Ti (Carbon Fiber-Reinforced Plastic/Titanium alloy) alloy stacks is one of the frequently used mechanical operations during the manufacturing of fastening assemblies in temporary civil aircraft. A combination of inhomogeneous behavior and poor machinability of CFRP/Ti alloy stacks in one short drilling brought challenges to the manufacturing community. The impact of the drilling temperature and time delay factor under various cutting conditions on hole accuracy when machining CFRP/Ti alloy stacks is poorly studied. In this paper, the drilling temperature, the phenomenon of thermal expansion of the drill tool, and hole accuracy are investigated. An experimental study was carried out using thermocouples, the coordinate measuring machine method, and finite element analysis. The results showed that the time delay factor varied from 5 (s) to 120 (s), influences the thermal-dependent properties of CFRP, and leads to an increase in hole roundness. Additionally, the thermal expansion of the drill significantly contributes to the deviation of the hole diameter in Ti alloy.
机译:CFRP / Ti(碳纤维增强塑料/钛合金)合金叠层的钻孔是在临时民用飞机上制造紧固组件期间的经常使用的机械操作之一。在一个短钻孔中,CFRP / Ti合金叠层的不均匀行为和可差的可加工性的组合给制造界带来了挑战。在加工CFRP / TI合金堆栈时,钻井温度和时间延迟因子在各种切割条件下对孔精度的影响很差。本文研究了钻孔温度,钻孔工具的热膨胀现象,以及孔精度。使用热电偶,坐标测量机方法和有限元分析进行实验研究。结果表明,从5(s)到120(s)变化的时间延迟因子影响CFRP的热依赖性,并导致孔圆度的增加。另外,钻头的热膨胀显着促进了Ti合金中孔径的偏差。

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