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Flank wear studies on alumina tools in steel cutting.

机译:钢切割中氧化铝工具的侧面磨损研究。

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摘要

The mechanisms/processes in the evolution of flank wear patterns of alumina ceramic tools in the machining of annealed and hardened steels (AISI 1045 and 4340) were investigated microscopically. A new flank wear model separating the athermal (mechanical) and thermal (chemical) wear aspects was presented. A framework for a mechanical wear model was proposed in terms of work hardness, fractal description of tool surface, and fracture energy. Additionally the fundamental behavior of chemical wear was investigated in terms of work chemistry, oxidation of steels, and tool-work interfacial interaction.;The flank wear on alumina tools increased with increasing cutting speed and distance on both annealed AISI 1045 and 4340, which have the same hardness. However, both chemical and mechanical wear mechanisms were found to be active to a different degree with workpiece/alumina tool pairs. There is a critical cutting speed above which chemical wear was observed (83 m/min). From the heating experiments, it was found that the large difference in wear amount along the workpieces at higher speeds (;A wear model has been developed and experimentally verified which provides a separation of mechanical and chemical wear aspects both qualitatively and quantitatively. A further model is proposed based on the concept of equivalent cutting energy per unit cutting distance at various cutting speeds within which the wear model plays a part. This concept along with the proposed fractal description would be useful in classifying the mechanical fracture modes with cutting speed and work hardness. The flank wear curves of alumina tool on annealed and hardened steels may serve as guidelines for selecting the optimum speed condition of machining.
机译:微观研究了退火和淬硬钢(AISI 1045和4340)加工过程中氧化铝陶瓷刀具的侧面磨损方式演变的机理/过程。提出了一种将非热(机械)磨损和热(化学)磨损方面分开的新的侧面磨损模型。根据工作硬度,工具表面的分形描述和断裂能,提出了一种机械磨损模型的框架。此外,还研究了化学磨损的基本行为,包括工作化学,钢的氧化以及工具-工作界面之间的相互作用。;在AISI 1045和4340退火后,氧化铝工具的侧面磨损随着切削速度和距离的增加而增加。一样的硬度。然而,发现化学/机械磨损机制在工件/氧化铝工具对中都具有不同程度的作用。有一个临界切削速度,高于该速度时观察到化学磨损(83 m / min)。从加热实验中发现,在较高速度下沿工件的磨损量存在很大差异(;已开发并通过实验验证了磨损模型,该模型从质量和数量上分离了机械和化学磨损方面。基于在不同的切削速度下单位切削距离的等效切削能量的概念提出了该概念,该概念与所提出的分形描述一起将有助于根据切削速度和工作硬度对机械断裂模式进行分类。退火和淬硬钢上氧化铝刀具的侧面磨损曲线可作为选择最佳加工速度条件的指导。

著录项

  • 作者

    Kim, Sukyoung.;

  • 作者单位

    The University of Vermont and State Agricultural College.;

  • 授予单位 The University of Vermont and State Agricultural College.;
  • 学科 Materials science.;Engineering Materials science.;Mechanical engineering.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 284 p.
  • 总页数 284
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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