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Comparative evaluation of machinability characteristics of Nimonic C-263 using CVD and PVD coated tools

机译:使用CVD和PVD涂层工具对Nimonic C-263的切削性能进行比较评估

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摘要

Machining of Nimonic C-263 has always been a challenging task owing to its hot strength, low thermal conductivity, tendency to work harden and affinity towards tool materials. Although coated tools have been used to overcome some of these challenges, selection of coated tool with appropriate deposition technique is of immense significance. The current study attempts to comparatively evaluate various performance measures in machining of Nimonic C-263 such as surface roughness, cutting force, cutting temperature, chip characteristics, and tool wear with particular emphasis on different modes of tool failure for commercially available inserts with multi-component coating deposited using chemical vapour deposition (CVD) and physical vapour deposition (PVD) techniques. Influence of cutting speed (Vc) and machining duration (t) has also been investigated using both coated tools. The study demonstrated remarkable decrease in surface roughness (74.3%), cutting force (6.3%), temperature (13.4%) and chip reduction coefficient (22%) with PVD coated tool consisting of alternate layers of TiN and TiAlN over its CVD coated counterpart with TiCN/Al2O3 coating in bilayer configuration. Severe plastic deformation and chipping of cutting edge and nose, abrasive nose and flank wear along with formation of built-up-layer (BUL) were identified as possible mechanisms of tool failure. PVD coated tool successfully restricted different modes of tool wear for the entire range of cutting speed. Superior performance can be attributed to the hardness and wear resistance properties, thermal stability due to presence of TiAlN phase and excellent toughness owing to PVD technique and multilayer architecture. (c) 2016 Elsevier Ltd. All rights reserved.
机译:尼莫尼C-263的机械加工一直是一项艰巨的任务,因为它的强度高,导热系数低,易于变硬并且对工具材料具有亲和力。尽管已使用涂覆工具来克服这些挑战中的某些挑战,但是选择具有适当沉积技术的涂覆工具具有巨大意义。当前的研究试图比较性地评估Nimonic C-263加工中的各种性能指标,例如表面粗糙度,切削力,切削温度,切屑特性和刀具磨损,尤其着重于市售多刀头镶刀的不同刀具失效模式。使用化学气相沉积(CVD)和物理气相沉积(PVD)技术沉积的组件涂层。切削速度(Vc)和加工时间(t)的影响也已使用两种涂层工具进行了研究。该研究表明,在其CVD涂层对应物上由TiN和TiAlN交替层组成的PVD涂层工具,表面粗糙度(74.3%),切削力(6.3%),温度(13.4%)和切屑减小系数(22%)显着降低双层配置的TiCN / Al2O3涂层。严重的塑性变形和切削刃和刀尖的碎裂,磨头和侧面磨损以及形成堆积层(BUL)被确定为刀具故障的可能机制。 PVD涂层刀具成功地在整个切削速度范围内限制了不同的刀具磨损方式。优异的性能归因于其硬度和耐磨性,由于存在TiAlN相而产生的热稳定性以及归因于PVD技术和多层结构的出色韧性。 (c)2016 Elsevier Ltd.保留所有权利。

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