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Evaluation of novel tool geometries in dry drilling aluminium 2024-T351/titanium Ti6Al4V stack

机译:干钻铝新工具几何形状评价2024-T351 /钛Ti6Al4V堆叠

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摘要

Three novel drill geometries, multipoint, step and double cone, were designed and experimentally evaluated to understand the effect of tool geometries on the machining performance of dry drilling Al/Ti stack. Results showed that the double cone drill achieved a better hole quality and a higher efficiency due to the smaller thrust force, broken chips, and less burrs compared to the other two drill geometries. The multipoint drill generated serrated chips in titanium alloy drilling. Significant microstructure deformation occurred in the adiabatic shear band (ASB) and the second shear band. Visible cracks propagated along the ASB from the free to back surface of the chip. Phase transformation from 13 phase to martensite occurred in the second shear band. The drill geometry design and experimental investigation in this paper could provide guidance for drill bit design and manufacturing for Al/Ti stack drilling.
机译:三种新颖的钻石几何形状,多点,步骤和双锥形设计,实验评估,以了解工具几何对干燥钻孔Al / Ti堆栈的加工性能的影响。 结果表明,与其他两个钻石几何形状相比,双锥钻钻取由于较小的推力,碎片,较少的毛刺而较小的孔质量和更高的效率。 钛合金钻井中的多点钻产生的锯齿状芯片。 在绝热剪切带(ASB)和第二剪切带中发生显着的微观结构变形。 可见裂缝沿ASB从芯片的自由到后表面传播。 从13相到马氏体的相变发生在第二剪切带中。 本文的钻头几何设计和实验研究可以为AL / TI堆叠钻探的钻头设计和制造提供指导。

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