Domanowski Piotr, Betiuk Marek
Faculty of Mechanical Engineering, UTP University of Science and Technology, Al. Prof. S. Kaliskiego 7, 85-796 Bydgoszcz, Poland.
Lukasiewicz Research Network, Institute of Precision Mechanics, ul. Duchnicka 3, 01-796 Warszawa, Poland.
Materials (Basel). 2021 May 17;14(10):2625. doi: 10.3390/ma14102625.
The purpose of the paper is to present a new Recatest testing technique which uses a series of abrasions within a scratch and its innovative application to describe selected quantitative parameters of locally, plastically deformed substrate and coating materials detected on the spherical microsection in the scratch test. The exposed material structures are subject to a metallographic analysis which allows for the determination of the quantitative parameters, which in turn allow for a description of the change in dynamics of the coating structure within the scratch area as a function of load. These parameters include scratch depth (), coating thickness (), flash height (, ), depth of intended material (), material depth under scratch (), and material depth under coating (). The paper also includes a description of the Recalo test device designed by the authors, which is used to make a series of spherical abrasion traces on the scratch surface. Recalo is dedicated to the Recatest technique. The analysed material was the CrN/CrCN/HS6-5-2, AlCrN -Alcrona-Balinit/D2 coatings deposited on tool steels.
本文的目的是介绍一种新的Recatest测试技术,该技术利用划痕内的一系列磨损及其创新应用来描述在划痕试验中球形微截面上检测到的局部塑性变形基体和涂层材料的选定定量参数。对暴露的材料结构进行金相分析,以确定定量参数,进而描述划痕区域内涂层结构动力学随载荷的变化。这些参数包括划痕深度()、涂层厚度()、飞边高度(,)、预定材料深度()、划痕下材料深度()和涂层下材料深度()。本文还介绍了作者设计的用于在划痕表面制作一系列球形磨损痕迹的Recalo测试装置。Recalo专用于Recatest技术。分析的材料是沉积在工具钢上的CrN/CrCN/HS6-5-2、AlCrN -Alcrona-Balinit/D2涂层。