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Computational Fluid Dynamic Analysis of Coolant Flow in Turning

机译:冷却液流动的计算流体动力学分析

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摘要

Application of coolant to the cutting domain is increasingly important in machining titanium alloy, nickel-base superalloy and other difficult-to-machine materials. However, the effect of coolant speed on the accessibility of coolant to the tool tip has not yet been investigated. For this reason, the computational fluid dynamics analysis was applied to the coolant flow in turning where coolant is applied from the side of end flank face to the tool tip. In this study the free surface analysis or two phase computational fluid dynamics analysis of coolant and air was conducted for visualizing the flow of coolant around the tool tip. The capillary force is considered in the analysis because the gap between the tool flank face and machined surface is very small. The volume fraction of liquid obtained in finite volumes showed the accessibility of coolant to the tool tip. It is found to be difficult for coolant to access to the tool tip through a narrow gap between the tool flank face and machined surface when the coolant speed is not high. It is also found that the accessibility of coolant is improved as the speed of coolant is increased.
机译:冷却剂在切割结构域中的应用在加工钛合金,镍基超合金和其他难以对机材料中越来越重要。然而,尚未研究冷却剂速度对冷却剂到工具尖端的可达性的影响。因此,将计算流体动力学分析应用于转动时的冷却剂流,其中冷却剂从端部侧面侧面施加到工具尖端。在这项研究中,对冷却剂和空气的自由表面分析或两相计算流体动力学分析用于可视化工具尖端周围的冷却剂的流动。在分析中考虑毛细力,因为工具侧面和机加工表面之间的间隙非常小。在有限体积中获得的液体的体积分数显示冷却剂到工具尖端的可访问性。当冷却剂速度不高时,冷却剂难以通过工具侧面和机加工表面之间的窄间隙进入工具尖端。还发现,随着冷却剂的速度增加,冷却剂的可访问性得到改善。

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