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Comparison of TiN-coated tools using CVD and PVD processes during continuous cutting of Ni-based superalloys

机译:镍基高温合金连续切削过程中使用CVD和PVD工艺的TiN涂层工具的比较

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摘要

High-strength, low-conducting Ni-based superalloys require higher cutting force and cutting temperature than other materials during the machining process. To understand how the coating characteristics such as defects formation and physical and mechanical properties affect cutting performance. TiN coatings were deposited by three physical vapor deposition (PVD) methods (arc ion plating, sputtering, and hollow cathode) and chemical vapor deposition (CVD). Sputtering and CVD yielded TiN coatings with fewer defects than other methods. Subsequently, the damage to the TiN coatings during machining of alloy 718 was investigated under continuous turning. Tools coated by sputtering and CVD exhibited micro-abrasion wear without heavy fracture or delimitation of the coating. Furthermore, the CVD coating showed the best cutting performance and lower plastic deformation than the PVD coatings. TiN coatings were characterized by X-ray diffraction, nanoindentation, electron back-scatter diffraction, and transmission electron microscopy. As the hardness of the coatings was measured before and after heat treatment, the CVD coating was more resistant to softening due to heating than the PVD coatings. The reduced hardness of the PVD coatings was attributed to strain release, atomic rearrangement, and grain growth in the PVD coatings. Such high-strength coatings with good high-temperature stability and low-defect density offer strong protection to cutting tools during machining of Ni-based superalloys. Based on the results of this study, fine structure CVD-deposited coatings may be good candidate coating for cutting of the Ni-based superalloys. (C) 2015 Elsevier B.V. All rights reserved.
机译:高强度,低导电性的镍基高温合金在加工过程中需要比其他材料更高的切削力和切削温度。了解诸如缺陷形成和物理机械性能等涂层特性如何影响切削性能。通过三种物理气相沉积(PVD)方法(电弧离子镀,溅射和空心阴极)和化学气相沉积(CVD)沉积TiN涂层。溅射和CVD产生的TiN涂层的缺陷少于其他方法。随后,在连续车削下研究了在合金718加工过程中对TiN涂层的损坏。通过溅射和CVD涂覆的工具表现出微磨损,而没有严重的断裂或涂层划界。此外,与PVD涂层相比,CVD涂层显示出最佳的切削性能和较低的塑性变形。 TiN涂层的特征在于X射线衍射,纳米压痕,电子反向散射衍射和透射电子显微镜。由于在热处理前后测量了涂层的硬度,因此与PVD涂层相比,CVD涂层由于加热而更耐软化。 PVD涂层硬度降低归因于PVD涂层中的应变释放,原子重排和晶粒长大。这种具有良好的高温稳定性和低缺陷密度的高强度涂层在加工镍基高温合金时为切削工具提供了强大的保护。根据这项研究的结果,精细结构的CVD沉积涂层可能是切削Ni基高温合金的良好候选涂层。 (C)2015 Elsevier B.V.保留所有权利。

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