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Tribological investigations into the operational behavior of self-piloting drilling tools

机译:自动驾驶钻井工具运行性能的摩擦学研究

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Deep-hole drilling tools are equipped with guide pads, which guide and support the tool in the hole. Wear on the cutting edges has only a secondary effect on the hole surface quality, because it is the guide pads that exert the final forming influence on the wall of the hole. The wear behavior of guide pads is quite different from that of the cutting parts. Materials which are generally known to be unsuitable for use as cutting material when cutting steel bring good results when used as pad materials. This paper describes methods with which to optimize the guide pads of drilling tools in order to influence tool life and workpiece quality. It includes investigations on a specifically developed model test stand, which made it possible to analyze the tribological processes between the pad and the wall of the hole independently of the actual drilling process. Finite element simulations for the purpose of guide pads, in terms of the choice of design best suited to the load conditions, are also described. Deep-hole drilling tests give a proof for the increased cutting capacity being achieved with new guiding pads.
机译:深孔钻具配有导向垫,可在井内引导和支撑刀具。切削刃上的磨损对孔表面质量仅具有次要影响,因为导向垫会对孔壁产生最终的成型影响。导向板的磨损行为与切削零件的磨损行为有很大不同。众所周知,在切割钢时不适合用作切割材料的材料在用作垫板材料时会带来良好的效果。本文介绍了一些方法,这些方法可优化钻孔工具的导向垫,以影响工具的寿命和工件的质量。它包括在专门开发的模型测试台上进行的研究,这使得可以独立于实际钻孔过程来分析垫和孔壁之间的摩擦过程。还介绍了以导向垫为目的的有限元模拟,该模拟是根据最适合负载条件的设计选择来进行的。深孔钻探测试证明了使用新的导向垫可以提高切削能力。

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