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首页> 外文期刊>Mathematical Problems in Engineering >Estimation of a Moving Heat Source due to a Micromilling Process Using the Modified TFBGF Technique
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Estimation of a Moving Heat Source due to a Micromilling Process Using the Modified TFBGF Technique

机译:使用改进的TFBGF技术估算由于微铣削过程而产生的移动热源

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Moving heat sources are present in numerous engineering problems as welding and machining processes, heat treatment, or biological heating. In all these cases, the heat input identification represents an important factor in the optimization of the process. The aim of this study is to investigate the heat flux delivered to a workpiece during a micromilling process. The temperature measurements were obtained using a thermocouple at an accessible region of the workpiece surface while micromilling a small channel. The analytical solution is calculated from a 3D transient heat conduction model with a moving heat source, called direct problem. The estimation of the moving heat source uses the Transfer Function Based on Green's Function Method. This method is based on Green's function and the equivalence between thermal and dynamic systems. The technique is simple without iterative processes and extremely fast. From the temperature on accessible regions it is possible to estimate the heat flux by an inverse procedure of the Fast Fourier Transform. A test of micromilling of 6365 aluminium alloy was made and the heat delivered to the workpiece was estimated. The estimation of the heat without use of optimization technique is the great advantage of the technique proposed.
机译:移动的热源存在于许多工程问题中,例如焊接和机械加工,热处理或生物加热。在所有这些情况下,热输入识别是过程优化中的重要因素。这项研究的目的是研究微铣削过程中传递到工件的热通量。使用热电偶在工件表面的可及区域进行微铣削小通道时获得温度测量值。解析解是根据具有直接热源的3D瞬态热传导模型计算得出的。移动热源的估计使用基于格林函数法的传递函数。该方法基于格林函数以及热与动力系统之间的等价关系。该技术非常简单,没有迭代过程,而且速度极快。根据可访问区域上的温度,可以通过快速傅立叶变换的逆过程来估算热通量。进行了6365铝合金的微铣削测试,并估算了传递到工件的热量。不使用优化技术的热量估算是所提出技术的巨大优势。

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