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Estimation of heat flux and temperature field during drilling process using dynamic observers based on Green's function

机译:基于格林函数的动态观测器估算钻井过程中的热通量和温度场

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摘要

This study presents an inverse technique to estimate temperature and heat flux at the tool-piece interface during drilling process. The technique used a method based on Green's function and dynamic observers. While most works found in literature focused the tool, in this study the work piece was modeled thermally. The thermal model was obtained by numerical solution of the transient three-dimensional heat diffusion equation considering the drill as a moving heat source. Two numerical simulations were performed in order to evaluate the thermal model, the inverse algorithm and to locate measurement regions with low sensitivity. Finite volumes method was used to solve the heat diffusion equation. Experimental tests were performed using cemented carbide tool to drill a micro-alloyed steel workpiece (HSLA steel- High-Strength Low-Alloy). The heat flux generated at the cutting interface during the drilling process was estimated using the developed inverse technique and only experimental data from the heating period was used. After heat flux estimation the temperature field was calculated. Comparisons between experimental and estimated data present a good accordance for the thermocouples not used in the heat flux estimation.
机译:这项研究提出了一种逆向技术,用于估计钻孔过程中工具界面处的温度和热通量。该技术使用了一种基于格林函数和动态观察者的方法。尽管文献中发现的大多数作品都以工具为重点,但在本研究中,工件是通过热建模的。通过以钻头为移动热源的瞬态三维热扩散方程的数值解获得热模型。为了评估热模型,逆算法并以低灵敏度定位测量区域,进行了两个数值模拟。用有限体积法求解热扩散方程。使用硬质合金工具进行实验测试,以钻削微合金钢工件(HSLA钢-高强度低合金)。钻削过程中在切削界面处产生的热通量是使用开发的逆向技术估算的,仅使用了加热期间的实验数据。在估计热通量之后,计算温度场。实验数据和估算数据之间的比较非常符合未在热通量估算中使用的热电偶。

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