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Rake Face Temperature when Machining with Coated Cutting Tools

机译:用涂层切削刀具加工时的耙面温

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Infrared thermography through transparent cutting tools has been used to measure the chip-tool interface temperature. It is of interest to extend this technique to study changes in interface temperature when tool coatings are used. An initial attempt is made here to measure the chip-tool interface temperature distribution when cutting Ti6Al4V with a TiN coated YAG tool. The TiN coating thickness is kept low at about 100 nm to minimize the temperature difference between the front (chip-TiN interface) and the back (TiN-YAG interface) faces of the coating. The transparency of the YAG tool allows near infrared radiation emitted by the back face of the TiN coating to be imaged. A novel method is used to measure the emissivity of the TiN/YAG interface. Using this method, and the available blackbody calibration of the temperature vs. intensity response of the imaging system, the images are converted into temperature maps. The performance of the coated tool is also evaluated in terms of machining force and tool wear characteristics. Coatings that remain intact during the experiments will reduce ambiguity in interpretation of the results.
机译:红外热成像通过透明切削工具已用于测量芯片工具界面温度。扩展该技术旨在延长使用工具涂层时研究界面温度的变化。此处进行初始尝试以测量用锡涂层的YAG工具切割Ti6Al4V时测量芯片工具接口温度分布。锡涂层厚度在约100nm处保持低,以最小化涂层的前部(芯片型接口)和背面(锡锡接口)面之间的温差。 YAG工具的透明度允许由待成像的锡涂层的背面发射的近红外辐射。一种新的方法用于测量锡/ YAG接口的发射率。使用此方法,以及可用的黑体校准的温度与成像系统的强度响应,图像被转换为​​温度图。还在加工力和工具磨损特性方面评估涂层工具的性能。在实验期间保持完整的涂层将减少对结果的解释中的模糊性。

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