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Evaluating the effectiveness of PCD tools on machinability of titanium alloy Ti-6Al-4V in high speed end milling under various wet cutting conditions

机译:评估PCD工具在各种湿切削条件下在高速端铣削中对Ti-6Al-4V钛合金切削性能的有效性

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Superior properties of titanium alloy Ti-6Al-4V over many other materials like higher strength to weight ratio, ability to maintain strength at elevated temperatures (around 500°C) and ability to resist against corrosion in severe environmental conditions have made them as an excellent choice for using them in many aerospace and bio-medical industrial applications. But the properties which had made them an ideal choice for most practical applications severely hinders their machinability and therefore is renowned as difficult to machine material. The low thermal conductivity of titanium alloys does not allow the generated heat to dissipate away quickly and thus results in chemical reaction with cutting tool materials at higher temperatures. Several researchers have tried to reduce tool-chip interface temperature, increase tool life and surface quality with carbide tools by applying different cutting fluids like water based emulsions flood cooling, oil flood coolant, minimum quantity lubrication MQL and various liquid nitrogen LiN cryogenic cooling techniques and has found some advantages of MQL & LiN cooling in terms of not only in improved surface roughness & tool life but also in controlling the hazardous environmental impact by eliminating the use of hazardous and expensive traditional flood coolant equipment. Moreover the thrust for higher quality and productivity has directed the attention of researchers on using super hard cutting tool materials for machining of titanium alloys. Super hard cutting tool like polycrystalline diamond PCD, Poly Cubic Boron Nitride PCBN and Binderless CBN inspite of their higher cost has many advantages over carbide tools like higher thermal conductivity, lower wear rate and high hot strength. Studies have shown that PCD tools can give better tool life and surface roughness as compared to carbide and PCBN tools. The studies on evaluating the effectiveness of PCD insert in high speed end milling of titanium alloy h- s not yet considered the effect of different types of cooling strategies. Therefore there is need to study the effectiveness of PCD tools in various wet cutting conditions and find optimal coolant which can help to increase tool life and can provide better surface quality and therefore this study is specifically designed to address above mentioned issues. Four different type of coolants “water based flood cooling, oil based flood coolant, MQL and LIN cryogenic cooling technique has been applied and their effect on tool-chip interface temperature, tool edge temperature, cutting forces and stresses acting on tool edge are observed using Finite element, FE numerical simulations. FE numerical simulations are widely employed in academic research field because it provides fast & reliable results and thus eliminates expensive experimentation costs which otherwise is always required. Results have shown that the LiN cooling technique has shown clear advantages over MQL and flood coolant techniques in terms of temperature near the tool rake face and in reducing cutting forces and stresses acting on cutting edge. Therefore from the study it can be concluded that LiN cooling can be used for machining of titanium alloys with PCD inserts for getting maximum productivity and part quality.
机译:钛合金Ti-6Al-4V优于许多其他材料,例如更高的强度重量比,在高温(约500°C)下保持强度的能力以及在恶劣环境条件下的耐腐蚀能力,这些使它们成为出色的材料在许多航空航天和生物医学工业应用中使用它们的选择。但是使它们成为大多数实际应用的理想选择的性能严重阻碍了它们的可加工性,因此以难以加工的材料而闻名。钛合金的低导热性不允许所产生的热量迅速散发,因此导致在较高温度下与切削刀具材料发生化学反应。几位研究人员已尝试通过使用不同的切削液(例如水基乳液溢流冷却,溢油冷却剂,最小量润滑MQL和各种液氮LiN低温冷却技术)来降低硬质合金刀具的刀具-芯片界面温度,延长刀具寿命和表面质量。已经发现了MQL和LiN冷却的一些优势,不仅在改善表面粗糙度和工具寿命方面,而且还通过消除使用危险且昂贵的传统洪水冷却剂设备来控制危险的环境影响。此外,更高质量和生产率的推动力已将研究人员的注意力吸引到使用超硬切削刀具材料加工钛合金上。诸如聚晶金刚石PCD,聚立方氮化硼PCBN和无粘结剂CBN之类的超硬切削刀具尽管成本较高,但与硬质合金刀具相比具有许多优势,如导热系数高,磨损率低和热强度高。研究表明,与硬质合金和PCBN刀具相比,PCD刀具可以提供更好的刀具寿命和表面粗糙度。评估PCD刀片在钛合金高速端铣削中的有效性的研究尚未考虑不同类型的冷却策略的影响。因此,有必要研究PCD刀具在各种湿切削条件下的有效性,并找到最佳的冷却液,这有助于延长刀具寿命并提供更好的表面质量,因此,本研究专门针对上述问题而设计。应用了四种不同类型的冷却剂:水基注水冷却,油基注水冷却剂,MQL和LIN低温冷却技术,并观察了它们对刀-屑界面温度,刀刃温度,切削力和作用在刀刃上的应力的影响。有限元,有限元数值模拟。有限元数值模拟在学术研究领域得到了广泛的应用,因为它提供了快速可靠的结果,从而消除了通常需要的昂贵的实验费用。结果表明,在工具前刀面附近的温度以及减小切削力和作用在切削刃上的应力方面,LiN冷却技术已显示出优于MQL和溢流冷却剂技术的明显优势。因此,从研究中可以得出结论,LiN冷却可用于加工带有PCD刀片的钛合金,从而获得最大的生产率和零件质量。

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