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Damage of PVD-coated cutting tools due to interrupted cutting of Ni-based superalloys

机译:由于Ni基超合金中断切割而导致的PVD涂层切削刀具的损坏

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Ni-based superalloys are typically difficult-to-cut materials. During machining, the cutting forces and temperatures of these superalloys are generally higher than those of other materials. Therefore, the tool life of the coated carbide cutting tools used for superalloy machining is shortened. This study evaluates the damage of the coated end mills during interrupted cutting of alloy 718 and finds the coating properties necessary for improved cutting of Ni-based superalloys. Damage of the PVD-TiN-coated cutting tools was observed by scanning electron microscopy and transmission electron microscopy of the surfaces and cross sections. In addition, friction forces were measured during turning for some coatings, and hardness of the coatings was measured after annealing. Plastic deformation of the coating and crack formation was shown to occur at the coating cross section. In addition, we determined that the major factor for the damage was high friction force between the coating surface and work material at high temperatures. In summary, coatings with stability at high temperatures and low friction forces during machining can reduce the damage of coated cutting tools, thus increasing the tool life.
机译:基于Ni的高温合金通常是难以切割的材料。在加工过程中,这些超合金的切割力和温度通常高于其他材料的切割力和温度。因此,缩短了用于高温合金加工的涂层碳化物切削刀具的刀具寿命。该研究评估了在合金718的中断切割过程中涂覆的端铣刀的损伤,并找到了改进的Ni基超合金切割所必需的涂布性能。通过扫描电子显微镜和横截面的透射电子显微镜观察PVD-锡涂覆的切削工具的损伤。另外,在转动某些涂层期间测量摩擦力,并且在退火后测量涂层的硬度。显示涂层和裂缝形成的塑性变形在涂布横截面上发生。此外,我们确定损坏的主要因素是涂层表面和高温下的工作材料之间的高摩擦力。总之,在加工过程中具有高温和低摩擦力的涂层可以减少涂层切削工具的损坏,从而增加了刀具寿命。

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