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Performance evaluation of coated carbide and coated cermet tools when turning hardened tool steel

机译:车削淬硬工具钢时的涂层硬质合金和涂层金属陶瓷刀具的性能评估

摘要

Hardened steel is widely used in the manufacture of dies, mould and automotive components such as bearings, gears and shafts. The continuous improvements and developments in cutting tool technology coupled with the availability of suitable machine tools have made it possible to machine steel in its hardened form thereby eliminating the heat treatment step, which is required in the conventional approach. Commercially available plastic mould steel, Stavax ESR, which is a premium grade stainless tool steel, has been hardened to (43 ~ 45 HRC) and turned using two commercially available cutting tool inserts with various side cutting edge angles and at various cutting speeds and feed rates. Turning was performed dry and a constant depth of cut was set. The cutting tool inserts used were physical vapor deposition (PVD) multi coated TiCN based cermet grade with TiN inner layer, TiCN intermediate layer and a TiN outer layer (KT 315); and a cobalt enriched, multi coated carbide grade with thick moderate temperature chemical vapor deposition (MTCVD) - TiCN inner layer, an Al2O3 intermediate layer and TiCN and TiN outer layers (KC9110). Tool performance, tool failure modes and wear mechanisms of the said tools were investigated under various cutting conditions. The surface roughness of the turned part and the chip morphology were studied while the cutting forces were also measured. The performance of the cutting tools is described using response surface methodology. The cutting speed and feed are found have an effect on the various responses investigated. Additionally, the side cutting edge angle is also found to provide secondary contribution to the tool life and surface roughness. The use of -5o side cutting edge angle resulted in longest tool and better surface roughness. The mathematical models developed are statistically valid and sound, particularly for Fc. These are verified by the confirmation run experiments and therefore can be used for prediction within the limits of the factors investigated. KC 9110 outperformed KT 315 in terms of tool life for almost all of the cutting conditions tested. The only exception is at a low feed rate of 0.09 mm/rev and a low cutting speed of 100 m/min where the tool life of KT 315 was more than 30 minutes and this was the longest tool life achievable. For KT 315, flank wear and catastrophic failure are the dominant failure modes whereas for KC 9110 it was end clearance wear and flank wear. Flank and end clearance wear probably occur by both abrasive and adhesive wear mechanisms with abrasive wear being the major source of material removal. Catastrophic failure could be associated with a combination of abrasion, adhesion, diffusion, fracture and plastic deformation wear mechanisms. Saw-tooth chips are produced at almost all conditions with the exception of cutting at low cutting speed and feed. White layers are also detected on the chip underside.
机译:硬化钢被广泛用于模具,模具和汽车零部件的制造,例如轴承,齿轮和轴。切削工具技术的不断改进和发展,再加上合适机床的可用性,使得以硬化形式加工钢成为可能,从而省去了常规方法中所需的热处理步骤。商用塑料模具钢Stavax ESR是一种优质不锈钢工具钢,已硬化至(43〜45 HRC),并使用两个商用切削刀具刀片进行了车削,这些切削刀具具有不同的侧面切削刃角度以及不同的切削速度和进给速度费率。进行干车削并设定恒定的切削深度。使用的切削刀具刀片为具有TiN内层,TiCN中间层和TiN外层的物理气相沉积(PVD)多层TiCN基金属陶瓷品级(KT 315);以及具有厚的中温化学气相沉积(MTCVD)的富钴多涂层硬质合金等级-TiCN内层,Al2O3中间层以及TiCN和TiN外层(KC9110)。在各种切削条件下研究了所述工具的工具性能,工具故障模式和磨损机理。研究了车削零件的表面粗糙度和切屑形态,同时还测量了切削力。使用响应曲面方法描述了切削工具的性能。发现切削速度和进给会影响所研究的各种响应。另外,还发现侧面切削刃角对刀具寿命和表面粗糙度提供了辅助作用。使用-5o侧面切削刃角可延长刀具使用寿命,并提高表面粗糙度。建立的数学模型在统计上有效且可靠,尤其是对于Fc。这些已通过确认运行实验验证,因此可在所研究因素的范围内用于预测。在几乎所有测试的切削条件下,KC 9110的刀具寿命均优于KT 315。唯一的例外是在0.09 mm / rev的低进给速度和100 m / min的低切削速度下,KT 315的刀具寿命超过30分钟,这是可获得的最长刀具寿命。对于KT 315,侧面磨损和灾难性故障是主要的故障模式,而对于KC 9110,则是末端间隙磨损和侧面磨损。侧面磨损和端部间隙磨损可能是由磨料磨损和粘合剂磨损机制共同引起的,而磨料磨损是材料去除的主要来源。灾难性故障可能与磨损,粘附,扩散,断裂和塑性变形磨损机制相结合。锯齿状切屑几乎在所有条件下都会产生,但切削速度和进给速度较低时除外。在芯片底面也检测到白色层。

著录项

  • 作者

    Mohd. Yusof Noordin;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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