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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Hybrid experimental/modelling methodology for identifying the convective heat transfer coefficient in cryogenic assisted machining
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Hybrid experimental/modelling methodology for identifying the convective heat transfer coefficient in cryogenic assisted machining

机译:混合实验/建模方法,用于鉴定低温辅助加工中的对流传热系数

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摘要

Cryogenic assisted machining has become a very popular method in the metal cutting industry, as it enables the cooling of a cutting zone for improving surface integrity or/and tool life without contaminating the machined part. However, the thermal interaction between liquid nitrogen (LN2) and a hot cutting zone remains unclear. The main objective of this work is to analyse the thermal phenomena occurring at the LN2 jet/workpiece interface. The nitrogen liquid/gas phase proportion has a significant influence on the heat transfer. To determine the influence of LN2 jet parameters on the convective heat transfer coefficient, a model based on the projection of an LN2 jet on a workpiece instrumented with thermocouples is proposed. The most influential parameters of the thermal distribution and heat transfer coefficient are LN2 pressure, nozzle diameter, projection angle and the distance between the nozzle and the workpiece surface. (C) 2017 Elsevier Ltd. All rights reserved.
机译:低温辅助加工已成为金属切削工业中的一种非常受欢迎的方法,因为它能够冷却切割区域以改善表面完整性或/和工具寿命而不污染加工部分。 然而,液氮(LN2)和热切割区之间的热相互作用仍不清楚。 这项工作的主要目的是分析LN2喷射/工件界面发生的热现象。 氮液/气相比例对热传递产生了显着影响。 为了确定LN2喷射参数对对流传热系数的影响,提出了一种基于LN2射流投射的模型,该模型在用热电偶仪表中的工件上的探测器。 热分布和传热系数最有影响力的参数是LN2压力,喷嘴直径,投影角度和喷嘴和工件表面之间的距离。 (c)2017 Elsevier Ltd.保留所有权利。

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