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Performance studies of multilayer hard surface coatings (TiN/TiCN/Al_2O_3/TiN) of indexable carbide inserts in hard machining: Part-I (An experimental approach)

机译:可转位硬质合金刀片的多层硬质表面涂层(TiN / TiCN / Al_2O_3 / TiN)在硬加工中的性能研究:第一部分(实验方法)

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摘要

In recent years, hard machining using CBN and ceramic inserts became an emerging technology than traditional grinding and widely used manufacturing processes. However the relatively high cost factors associated with such tools has left a space to look for relatively low cost cutting tool materials to perform in an acceptable range. Multilayer coated carbide insert is the proposed alternative in the present study due to its low cost. Thus, an attempt has been made to have an extensive study on the machinability aspects such as flank wear, chip morphology, surface roughness in finish hard turning of AISI 4340 steel (HRC 47 ± 1) using multilayer coated carbide (TiN/TiCN/Al_2O_3/TiN) insert under dry environment. Parametric influences on turning forces are also analyzed. From the machinability study, abrasion and chipping are found to be the dominant wear mechanism in hard turning. Multilayer TiN coated carbide inserts produced better surface quality and within recommendable range of 1.6 μm i.e. comparable with cylindrical grinding. At extreme parametric conditions, the growth of tool wear was observed to be rapid thus surface quality affected adversely. The chip morphology study reveals a more favorable machining environment in dry machining using TiN coated carbide inserts. The cutting speed and feed are found to have the significant effect on the tool wear and surface roughness from ANOVA study. It is evident that, thrust force (Fy) is the largest component followed by tangential force (Fz) and the feed force (Fx) in finish hard turning. The observations yield the machining ability of multilayer TiN coated carbide inserts in hard turning of AISI 4340 steel even at higher cutting speeds.
机译:近年来,与传统的磨削和广泛使用的制造工艺相比,使用CBN和陶瓷刀片进行硬加工已成为一种新兴技术。然而,与这种工具相关的相对较高的成本因素留下了寻找可在可接受范围内执行的相对低成本的切削工具材料的空间。由于其低成本,多层涂层硬质合金刀片是本研究中建议的替代方法。因此,已尝试对使用多层涂层硬质合金(TiN / TiCN / Al_2O_3)的AISI 4340钢(HRC 47±1)进行精加工时的可机加工性方面(如后刀面磨损,切屑形态,表面粗糙度)进行广泛的研究。 / TiN)插入在干燥的环境中。还分析了对转向力的参数影响。从可加工性研究中,发现磨损和碎裂是硬车削的主要磨损机理。多层TiN涂层硬质合金刀片可产生更好的表面质量,并在1.6μm的推荐范围内,即与圆柱磨削相当。在极端参数条件下,观察到工具磨损的增长很快,因此表面质量受到不利影响。切屑形态研究表明,在使用TiN涂层硬质合金刀片的干式加工中,加工环境更为优越。通过ANOVA研究发现切削速度和进给量对刀具磨损和表面粗糙度有重要影响。显然,在精加工硬车削中,推力(Fy)是最大的分量,其次是切向力(Fz)和进给力(Fx)。观察结果表明,即使在更高的切削速度下,多层TiN涂层硬质合金刀片在AISI 4340钢的硬车削中也具有加工能力。

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