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Extended infrared thermography applied to orthogonal cutting: Mechanical and thermal aspects

机译:扩展红外热成像技术应用于正交切割:机械和热学方面

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摘要

The temperature knowledge is essential to understand and model the phenomena involved in metal cutting. A global measured value can only provide a clue of the heat generation during the process; however the deep understanding of the thermal aspects of cutting requires temperature field measurement. This paper focuses on infrared thermography applied to orthogonal cutting and enlightens an original experimental setup. A lot of information were directly measured or post-processed. These were mainly focused on the geometrical or thermo mechanical aspects of chip formation, i.e. tool-chip contact length, chip thickness, primary shear angle, heat flux generated in the shear or friction zones, and tool-chip interface temperature distribution. This paper proposes an experimental setup and postprocessing techniques enabling to provide numerous, fundamental and original information about the metal cutting process. Some comparisons between collected data and previous experimental or theoretical results were made.
机译:温度知识对于理解和建模与金属切削有关的现象至关重要。全局测量值只能提供过程中产生热量的线索;但是,对切削热方面的深入了解需要测量温度场。本文重点介绍了应用于正交切割的红外热成像技术,并启发了原始实验设置。许多信息被直接测量或后处理。这些主要集中在切屑形成的几何或热机械方面,即工具-切屑接触长度,切屑厚度,主剪切角,在剪切或摩擦区域中产生的热通量以及工具-切屑界面温度分布。本文提出了一种实验装置和后处理技术,能够提供有关金属切割过程的大量,基本的原始信息。在收集的数据和先前的实验或理论结果之间进行了一些比较。

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