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采用不同方法制造的高速钢切削刀片的表面形貌对其工艺和功能特性的影响。

The Effect of the Surface Topography of High-Speed Steel Cutting Blades Made Using Various Methods on Their Technological and Functional Properties.

作者信息

Kupczyk Maciej Jan, Komolka Jędrzej, Józwik Jerzy

机构信息

Faculty of Mechanical Engineering, Institute of Mechanical Technology, Poznan University of Technology, Piotrowo 3, 60-695 Poznan, Poland.

Department in Production Engineering, Faculty of Mechanical Engineering, Lublin University of Technology, Nadbystrzycka 36, 20-618 Lublin, Poland.

出版信息

Materials (Basel). 2023 Sep 27;16(19):6442. doi: 10.3390/ma16196442.

Abstract

Indication of the proper scope of application of high-speed steels (HSS) produced by conventional methods and powder metallurgy for cutting tool blades requires a thorough assessment of their properties in various cutting conditions. According to common knowledge, the properties of tools made of both types of steel are largely determined by the arrangement of carbide phases. It turns out, however, that the surface morphology of the cutting blades is at least as important for their operational properties. This was already indicated by the preliminary research of the authors of the article, in which it was found that the surface topography significantly affects their durability depending on the applied value of the cutting speed in dry machining conditions and in the presence of a cooling lubricant. As it turned out, contrary to the literature data, blades made of sintered HSS do not have better service properties in all cutting conditions than blades made by conventional methods (e.g., in forging and hot rolling processes). Hence, it was necessary to determine the justified range of use of both types of steel for cutting blades. Cutting blades with a similar chemical composition from conventional high-speed steel and those produced in the powder metallurgy process were tested. Wear curves were determined on the basis of the tests. On this basis, for the assumed value of the blunting index, the tool life of the cutting edges was determined during the cutting of selected structural steel, commonly used for high-strength machine parts. Tests of the cutting ability of the blades were carried out without and with the use of a cooling--lubricating liquid. In order to correctly interpret the obtained results of the wear and durability tests of the cutting edges, verification tests were carried out. A detailed analysis of the research material made it possible to determine the recommended range of applicability of conventional and sintered HSS for the tested case.

摘要

确定传统方法生产的高速钢(HSS)和粉末冶金高速钢在切削刀具刀片上的正确应用范围,需要全面评估它们在各种切削条件下的性能。根据常识,这两种类型钢材制成的刀具性能在很大程度上取决于碳化物相的排列。然而,事实证明,切削刀片的表面形态对其使用性能至少同样重要。本文作者的初步研究已经表明了这一点,研究发现,在干式加工条件下以及有冷却润滑剂存在的情况下,表面形貌根据所应用的切削速度值显著影响刀具的耐用性。结果表明,与文献数据相反,烧结高速钢制成的刀片在所有切削条件下并不都比传统方法(如锻造和热轧工艺)制成的刀片具有更好的使用性能。因此,有必要确定这两种类型钢材在切削刀片上合理的使用范围。对传统高速钢和粉末冶金工艺生产的化学成分相似的切削刀片进行了测试。根据测试确定了磨损曲线。在此基础上,对于假定的钝圆指数值,确定了在切削常用于高强度机械零件的选定结构钢时切削刃的刀具寿命。在不使用和使用冷却润滑液的情况下进行了刀片切削能力测试。为了正确解释所获得的切削刃磨损和耐用性测试结果,进行了验证测试。对研究材料的详细分析使得能够确定传统高速钢和烧结高速钢在所测试情况下的推荐适用范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d26/10574017/a5a96968dfaa/materials-16-06442-g001.jpg

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