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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Influence of the worn tool affected by built-up edge (BUE) on micro end-milling process performance: A 3D finite element modeling investigation
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Influence of the worn tool affected by built-up edge (BUE) on micro end-milling process performance: A 3D finite element modeling investigation

机译:受影响边缘(BUE)影响的磨损工具对微结束铣削过程的性能:3D有限元建模调查

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摘要

Micro milling process has been utilized for several decades due to the flexibility of the process in producing complex components. The small size of the process makes the comprehension of cutting phenomenon details more difficult. This study presents a 3D finite element modeling (3D FEM) approach for the micro end-milling process of Aluminum material (Al6082-T6). 3D FEM simulations are carried out in full slot micro end-milling and contour up milling. The model first implements the actual tool geometry and then the effect of typical built-up edge (BUE) on the milling tool. The influence of BUE on the process performance is investigated by comparing the predicted 3d chip flow shape, burr formation and cutting forces with experiments conducted on an ultra-high precision micro milling center. Simulations indicate that BUE has significant impact on the chip shape and chip load for different teeth engagements. Results prove that also burr height is negatively affected by the presence of BUE. The predicted micro milling cutting forces resulted affected by BUE with different teeth engagements. Analysis of experimental measured forces indicates comparable results in respect to simulated profiles confirming the usefulness of the develop 3D FE modelling approach.
机译:由于制备复杂组分的工艺的灵活性,微铣过程已经使用了数十年。这种过程的小尺寸使得对切割现象的理解更加困难。本研究提出了一种用于铝材料的微端铣削过程的3D有限元建模(3D FEM)方法(AL6082-T6)。 3D FEM模拟是在全槽微端铣削和轮廓上进行的。该模型首先实现实际的刀具几何形状,然后实现典型的内置边缘(BUE)对铣削工具的影响。通过将预测的3D芯片流动形状,毛刺形成和切割力与在超高精密微铣削中心进行的实验进行比较,研究了Bue对工艺性能的影响。模拟表明Bue对不同齿啮合的芯片形状和芯片负荷产生显着影响。结果证明,在Bue的存在下,也存在毛刺高度。预测的微铣削切割力导致Bue影响,具有不同的齿啮合。实验测量力的分析表明了关于模拟型材的可比结果,证实了发展3D FE模型方法的有用性。

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