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木质材料加工用刀片的WC-Co复合材料耐磨性测试

Testing for Abrasion Resistance of WC-Co Composites for Blades Used in Wood-Based Material Processing.

作者信息

Wachowicz Joanna, Fik Joanna, Bałaga Zbigniew, Stradomski Grzegorz

机构信息

Department of Mechanical Processing of Wood, Institute of Wood Sciences and Furniture, Warsaw University of Life Sciences, Nowoursynowska Street, 166, 02-787 Warsaw, Poland.

Faculty of Science and Technology, Jan Dlugosz University in Czestochowa, Armii Krajowej Street 13/15, 42-200 Czestochowa, Poland.

出版信息

Materials (Basel). 2023 Aug 25;16(17):5836. doi: 10.3390/ma16175836.

Abstract

Commonly used tool materials for machining wood-based materials are WC-Co carbides. Although they have been known for a long time, there is still much development in the field of sintered tool materials, especially WC-Co carbides and superhard materials. The use of new manufacturing methods (such as FAST-field-assisted sintering technology), which use pulses of electric current for heating, can improve the properties of the materials used for cutting tools, thereby increasing the cost-effectiveness of machining. The ability to increase tool life without the downtime associated with tool wear allows significant cost savings, particularly in mass production. This paper presents the results of a study of the effect of grain size and cobalt content of carbide tool sinters on the tribological properties of the materials studied. The powders used for consolidation were characterised by irregular shape and formed agglomerates of different sizes. Tribological tests were carried out using the T-01 (ball-on-disc) method. In order to determine the wear kinetics, the entire friction path was divided into 15 cycles of 200 m and the weight loss was measured after each stage. In order to determine the mechanism and intensity of wear of the tested materials under technically dry friction conditions, the surface of the tested sinters was observed before the test and after 5, 10, and 15 cycles. The conclusions of the study indicate that the predominant effect of surface cooperation at the friction node is abrasion due to the material chipping that occurs during the process. The results confirm the influence of sintered grain size and cobalt content on durability. In the context of the application of the materials in question for cutting tools, it can be pointed out that sintered WC(0.4)_4 has the highest potential for use in the manufacture of cutting tools.

摘要

加工木质材料常用的刀具材料是WC-Co硬质合金。尽管它们已被人们熟知很长时间,但烧结刀具材料领域仍有很大的发展空间,尤其是WC-Co硬质合金和超硬材料。使用新型制造方法(如FAST-场辅助烧结技术),利用电流脉冲进行加热,可以改善切削刀具所用材料的性能,从而提高加工的成本效益。在不出现与刀具磨损相关的停机时间的情况下延长刀具寿命的能力能够大幅节省成本,在大规模生产中尤为如此。本文介绍了一项关于硬质合金刀具烧结体的晶粒尺寸和钴含量对所研究材料的摩擦学性能影响的研究结果。用于固结的粉末形状不规则,形成了不同尺寸的团聚体。摩擦学测试采用T-01(球盘)法进行。为了确定磨损动力学,将整个摩擦路径划分为15个200米的循环,并在每个阶段后测量重量损失。为了确定测试材料在技术干燥摩擦条件下的磨损机制和强度,在测试前以及5、10和15个循环后观察测试烧结体的表面。研究结论表明,在摩擦节点处,表面协同作用的主要影响是由于加工过程中发生的材料崩裂而产生的磨损。结果证实了烧结晶粒尺寸和钴含量对耐久性的影响。就所讨论的材料在切削刀具中的应用而言,可以指出,烧结WC(0.4)_4在切削刀具制造中具有最高的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f8f/10488490/2afe01cea564/materials-16-05836-g001.jpg

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