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Application of Special Intel-facial Layers to Improve Adhesion of Superhard Coatings to Cutting Edges

机译:特殊英特尔面部层的应用改善超硬涂层与切割边缘的粘附性

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In the article the chosen investigations of the adhesion force of thin, superhard coatings to the cutting edges made of cemented carbides are presented. For identification of the adhesion force of coatings to substrate an automatic scratch tester constructed at Poznan University of Technology was applied. The estimation of the adhesion force (value of critical load measured during scratch test) was carried out on the base of the vibration signal. Results of investigations are pointed at the influence of a surface preparation (degreasing, etching, low and high-temperature sputtering) on a critical load values. It was found that the most effective method for surface preparation is low temperature sputtering. The influence of the TiC, TiN, TiC+TiN and TiC+Al_2O_3+TiN interfacial layers on increase of the adhesion force of BN coating to cemented carbides substrate was observed.
机译:在制品中,提出了所选择的薄,超硬涂层的粘附力与由粘合碳化物制成的切削刃的粘附力的研究。为了鉴定涂层的粘附力,施用在波兹南工业大学建造的自动划痕测试仪。在振动信号的基础上进行粘附力的估计(在划痕测试期间测量的临界负荷值)。对表面制备(脱脂,蚀刻,低和高温溅射)对临界负载值的影响指出的结果。发现最有效的表面制备方法是低温溅射。观察了TiC,TiN,TiC + TiN和TiC + Al_2O_3 +锡界面层对Bn涂层粘附力的增加的影响,对粘合碳化物衬底的增加。

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