首页> 外文学位 >Measurement of Transient Tool Internal Temperature Fields by Novel Micro Thin Film Sensors Embedded in Polycrystalline Cubic Boron Nitride Cutting Inserts.
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Measurement of Transient Tool Internal Temperature Fields by Novel Micro Thin Film Sensors Embedded in Polycrystalline Cubic Boron Nitride Cutting Inserts.

机译:通过嵌入在多晶立方氮化硼切削刀片中的新型微型薄膜传感器测量瞬态工具内部温度场。

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摘要

Monitoring and control of thermomechanical phenomena in tooling are imperative for advancing fundamental understanding, enhancing reliability, and improving workpiece quality in material removal processes. Polycrystalline cubic boron nitride (PCBN) tools are being used heavily in numerous machining processes, e.g., machining of hardened low carbon steel and superalloys. These processes are very sensitive to variations in local cutting conditions at, or close to, the tool-workpiece interface, but lack a thorough understanding of fundamental transient thermo-mechanical phenomena present. As a result, abrupt catastrophic tool failures and degraded machined surfaces frequently occur. Existing sensors are not suitable for process control and monitoring, as they are either destructively embedded and/or do not possess the necessary spatial and temporal resolution to provide relevant data during machining.;This research presents a novel approach for obtaining thermomechanical data from the close vicinity (i.e., 10s of micrometers) of the tool-workpiece interface. Arrays of micro thin film thermocouples with junction size 5 x 5 mum were fabricated by standard microfabrication methods and have been successfully embedded into PCBN using diffusion bonding. Electron microscopy and X-ray spectroscopy were employed to examine material interactions at the bonding interface and to determine optimal bonding parameters. Static and dynamic sensor performances have been characterized. The sensors exhibit excellent linearity up to 1300 °C, fast rise time of 150 ns, and possess good sensitivity.;The inserts instrumented with embedded thin film C-type thermocouples were successfully applied to measure internal tool temperatures as close as 70 mum to the cutting edge while machining aluminum and hardened steel workpieces at industrially relevant cutting parameters. Acquired temperature data follow theoretical trends very well. Correlations between temperature and cutting parameters have been established. The embedded micro thin film sensor array provided unprecedented temporal and spatial resolution as well as high accuracy for micro-scale transient tool-internal temperature field measurements. Tool internal temperature maps were generated. In the frequency domain, obtained thermal data indicated the onset of machining chatter earlier than conventional force measurement method. This work also discusses how the embedded sensor array's high spatial resolution provides means to shed lights on the mechanisms of chip-formation and chip segmentation.
机译:监控和控制模具中的热机械现象对于提高基础理解,增强可靠性和改善材料去除过程中的工件质量至关重要。多晶立方氮化硼(PCBN)工具在许多机加工过程中大量使用,例如,机加工硬化的低碳钢和超合金。这些过程对工具-工件界面处或附近的局部切削条件的变化非常敏感,但对当前出现的基本瞬态热机械现象缺乏透彻的了解。结果,经常发生突然的灾难性工具故障和退化的加工表面。现有传感器不适合过程控制和监视,因为它们要么被破坏性地嵌入和/或不具有必要的时空分辨率以在加工过程中提供相关数据。本研究提出了一种从近距离获取热机械数据的新颖方法工具-工件界面的附近(即10微米)。通过标准微细加工方法制造了结尺寸为5 x 5微米的微型薄膜热电偶阵列,并已通过扩散结合成功地嵌入到PCBN中。电子显微镜和X射线光谱学用于检查键合界面处的材料相互作用并确定最佳键合参数。静态和动态传感器性能已被表征。传感器在高达1300°C的温度下具有出色的线性度,快速上升时间为150 ns,并具有良好的灵敏度。带有嵌入式薄膜C型热电偶的插入件已成功应用于测量内部刀具温度,最接近70微米。在工业上相关的切削参数下加工铝和淬硬钢工件时的切削刃。采集的温度数据非常符合理论趋势。已经建立了温度和切削参数之间的相关性。嵌入式微薄膜传感器阵列提供了空前的时间和空间分辨率,以及用于微型瞬态工具内部温度场测量的高精度。生成了工具内部温度图。在频域中,所获得的热数据表明加工颤动的发生要比传统的力测量方法更早。这项工作还讨论了嵌入式传感器阵列的高空间分辨率如何为阐明芯片形成和芯片分割的机制提供手段。

著录项

  • 作者

    Werschmoeller, Dirk.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Electronics and Electrical.;Engineering Materials Science.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:57

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