碳化钨对堆焊涂层磨粒磨损的影响

IF 1.5 Q3 ENGINEERING, MECHANICAL Advances in Tribology Pub Date : 2018-06-04 DOI:10.1155/2018/4047818
P. Pichler, M. Leitner, F. Grün, J. Hassler
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引用次数: 1

摘要

本研究的目的是研究在不同的摩擦轮试验(FWT)配置中,基体中含有和不含有碳化钨(WC)的堆焊层的磨料磨损损失以及磨损机制。FWT设置根据转轮的材料而变化,其中利用钢和橡胶材料来实现不同的磨损机制,作为石材铣削和低密度木材切割工艺的代表性条件。在橡胶轮测试条件下,包括WC细颗粒在内的涂层具有最高的耐磨性,在这种条件下,微切削是主要影响因素。与不含WC的硬面层相比,平均材料损失主要减少了约75%。相反,如果使用钢轮作为旋转配对物,则与没有WC的情况相比,精细WC增强涂层的平均材料损失增加了93%。因此,与没有WC的条件相比,具有相对粗糙WC的涂层显示出最小的材料损失,降低了70%以上。总之,WC在堆焊层中的加入显著提高了耐磨性。实验磨损试验结果强调了这样一个事实,即为了实现最佳耐磨性,需要考虑在役条件下的主要磨损机制,正确定义硬面层的材料特性。
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Effect of Tungsten Carbides on Abrasive Wear of Hardfacing Coatings
The aim of this study is to investigate the abrasive wear loss as well as the wear mechanisms of hardfacing layers with and without tungsten carbides (WC) included in the matrix in different friction wheel test (FWT) configurations. The FWT setup is varied in regard to the materials of the rotating wheels, whereat steel and rubber materials are utilized to achieve varying wear mechanisms as representative conditions for stone milling as well as low density wood cutting processes. Coatings including fine particles of WC highlight the highest resistance against abrasive wear in rubber wheel testing condition, at which microcutting acts as the dominant effect. In comparison to the hardfacings without WC, the mean material loss majorly decreases by about 75%. On the contrary, the mean material loss of fine WC reinforced coatings increases up to 93% compared to the condition without WC if a steel wheel is utilized as rotating counterpart. Thereby, the coatings with comparably coarse WC reveal the minimum material loss with a decrease over 70% compared to the condition without WC. In conclusion, the inclusion of WC in hardfacing coatings significantly increases the wear resistance. The experimental wear test results highlight the fact that in order to achieve the optimal wear resistance the material characteristics of the hardfacings need to be properly defined considering the predominant wear mechanisms under in-service conditions.
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来源期刊
Advances in Tribology
Advances in Tribology ENGINEERING, MECHANICAL-
CiteScore
5.00
自引率
0.00%
发文量
1
审稿时长
13 weeks
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