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An evaluation of heat partition in the high-speed turning of AISI/SAE 4140 steel with uncoated and TiN-coated tools

机译:用无涂层和TiN涂层刀具评估aIsI / saE 4140钢的高速车削中的热分区

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摘要

In manufacturing by machining, thermal loads on cutting tools can have a major influence on tool wear and hence process cost, especially at higher cutting speeds. An investigation has been undertaken to determine heat partition into the cutting tool for high-speed machining of AISI/SAE 4140 high-strength alloy steel with uncoated and TiN-coated tools. The cutting tests have been performed at cutting speeds ranging between 100 and 880 m/min with a feed rate of 0.1 mm/rev and a constant depth of cut of 2.5 mm. Cutting temperatures are measured experimentally using an infrared thermal imaging camera. The sticking and sliding regions are investigated from an examination of the tool-chip contact region using a scanning electron microscope (SEM). In addition, non-uniform heat intensity is modelled according to the contact phenomena. In this work, evaluation of the fraction of heat flowing into the cutting tool is carried out by iteratively reducing the available heat flux until the finite element method (FEM) temperatures are simultaneously matched at multiple points with the experimentally measured temperatures. This paper elucidates on the differences in thermal shielding for uncoated and TiN-coated tools. It is found that heat partition into the cutting tool decreases from a fraction of 0.41 to 0.17 for conventional cutting speeds and increases from 0.19 to 0.24 for high-speed machining when using uncoated carbide cutting tools. On the other hand, with TiN-coated tools, heat partition varies from 0.35 down to 0.095 for the whole range of cutting speeds. These results clearly show that the use of TiN-coated tools generally reduces heat partition into the cutting tool, but does so more significantly in high-speed machining (HSM) as compared with conventional machining speeds. The driver behind this study on heat partition in machining with TiN coatings is the design of coatings with enhanced thermal shielding properties. © IMechE 2008.
机译:在通过机械加工制造时,切削刀具上的热负荷会对切削刀具的磨损和加工成本产生重大影响,尤其是在较高切削速度下。已经进行了一项调查,以确定在切削刀具中的热分配,以便使用未涂层和TiN涂层的刀具对AISI / SAE 4140高强度合金钢进行高速加工。切削测试已在100至880 m / min的切削速度下进行,进给速度为0.1 mm / rev,恒定切削深度为2.5 mm。切割温度是使用红外热像仪通过实验测量的。通过使用扫描电子显微镜(SEM)对工具-芯片接触区域进行检查来研究粘附和滑动区域。另外,根据接触现象对不均匀的热强度进行建模。在这项工作中,通过迭代减少可用的热通量,直到有限元方法(FEM)温度同时在多个点上与实验测得的温度相匹配,来评估流入切削工具的热量份额。本文阐明了未涂层和TiN涂层工具在热屏蔽方面的差异。已经发现,当使用非涂层硬质合金切削刀具时,进入切削刀具的热量分配从传统切削速度的比例从0.41降低到0.17,而对于高速加工则从0.19升高到0.24。另一方面,使用TiN涂层刀具时,在整个切削速度范围内,热分配范围从0.35降至0.095。这些结果清楚地表明,使用TiN涂层的刀具通常会减少热量在切削刀具中的分配,但是与传统的加工速度相比,在高速加工(HSM)中更明显。这项有关TiN涂层加工中热分配的研究的推动力是具有增强的热屏蔽性能的涂层设计。 ©IMechE 2008。

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