Chowdhury Mohammad Shariful Islam, Bose Bipasha, Fox-Rabinovich German, Veldhuis Stephen Clarence
Department of Mechanical Engineering, McMaster Manufacturing Research Institute (MMRI), McMaster University, 1280 Main Street West, Hamilton, ON L8S4L7, Canada.
Materials (Basel). 2021 May 24;14(11):2799. doi: 10.3390/ma14112799.
The machining of Ti6Al4V alloy, especially at low cutting speeds, is associated with strong Built-Up Edge (BUE) formation. The PVD coatings applied on cutting tools to machine such materials must have the necessary combination of properties to address such an underlying wear mechanism. The present work investigates and shows that TiB PVD coating can be designed to have certain mechanical properties and tribological characteristics that improve machining in cases where BUE formation is observed. Three TiB coatings were studied: one low hardness coating and two high hardness coatings with varied coating thicknesses. Wear performances for the various TiB coated carbide tools were evaluated while rough turning Ti6Al4V. Tool wear characteristics were evaluated using tool life studies and the 3D wear volume measurements of the worn surface. Chip morphology analyses were done to assess the in-situ tribological performance of the coatings. The micro-mechanical properties of the coatings were also studied in detail to co-relate with the coatings' performances. The results obtained show that during the rough turning of Ti6Al4V alloy with intensive BUE formation, the harder TiB coatings performed worse, with coating delamination on the rake surface under operation, whereas the softer version of the coating exhibited significantly better tool life without significant coating failure.
Ti6Al4V合金的加工,尤其是在低切削速度下,会产生严重的积屑瘤(BUE)。用于加工此类材料的切削刀具上所涂覆的物理气相沉积(PVD)涂层必须具备必要的综合性能,以应对这种潜在的磨损机制。当前的研究表明,TiB PVD涂层可以设计成具有特定的机械性能和摩擦学特性,从而在观察到积屑瘤形成的情况下改善加工性能。研究了三种TiB涂层:一种低硬度涂层和两种不同涂层厚度的高硬度涂层。在粗车削Ti6Al4V时,评估了各种TiB涂层硬质合金刀具的磨损性能。通过刀具寿命研究和磨损表面的三维磨损体积测量来评估刀具磨损特性。进行切屑形态分析以评估涂层的原位摩擦学性能。还详细研究了涂层的微观力学性能,以将其与涂层性能相关联。所得结果表明,在积屑瘤大量形成的Ti6Al4V合金粗车削过程中,较硬的TiB涂层表现较差,在切削过程中前刀面出现涂层分层,而较软的涂层则表现出明显更长的刀具寿命,且涂层无明显失效。