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An integrated numerical study for using minimum quantity lubrication (MQL) when machining austempered ductile iron (ADI)

机译:使用最小数量润滑(MQL)加工稳定性延展铁(ADI)的集成数值研究

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摘要

Machining difficult-to-cut materials is still an ongoing area of research because of the promising advantages of these materials in different industrial applications. Austempered Ductile Iron (ADI) is among the difficult-to-cut materials as it is usually associated with short tool life and poor surface integrity and quality. Flood coolant is an effective approach to eliminate the high generated heat when machining ADI. However, the use of conventional flood coolant is not a sustainable approach. Minimum quantity lubrication (MQL) is one of the environmentally friendly cooling approaches, which has been demonstrated to be an effective near dry machining technique. There is a gap in the open literature in the area of numerical modelling of the thermal and heat transfer behavior when machining ADI. Thus, this research focuses on simulating the cutting heat distribution on the cutting tool during machining of ADI by developing an integrated numerical model (finite element & computational fluid dynamics). Two cooling techniques were used in this work namely; dry and MQL. In terms of dry cutting, the simulated temperature values were in good agreement with the experimental results with an error of 5.74%. Regarding the MQL, there was a 10.74% margin of error between the results from the experimental and the integrated numerical model.
机译:加工难以切割的材料仍然是持续的研究领域,因为这些材料在不同的工业应用中的优势。奥氏体型球墨铸铁(ADI)是难以切割的材料之一,因为它通常与短工具寿命和表面完整性和质量差相关。洪水冷却剂是加工ADI时消除高产生热量的有效方法。然而,使用传统的洪水冷却剂不是可持续的方法。最小数量润滑(MQL)是环保冷却方法之一,已经证明是近近干加工技术。在加工ADI时,在热传热行为的数值模型中存在开放文献中的空隙。因此,本研究专注于通过开发集成数值模型(有限元和计算流体动力学)在加工ADI时模拟切削工具的切割热分布。这项工作中使用了两种冷却技术;干燥和mql。在干切削方面,模拟温度值与实验结果吻合良好,误差为5.74%。关于MQL,实验和集成数值模型的结果之间存在10.74%的误差幅度。

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