Affiliation:
1. Department of Dental Prosthodontics, Medical University of Lodz, ul. Pomorska 251, 92-213 Lodz, Poland
2. Institute of Materials Engineering, Lodz University of Technology, ul. Stefanowskiego 1/15, 90-924 Lodz, Poland
3. Pomeranian Medical University, ul. Rybacka 1, 70-204 Szczecin, Poland
Abstract
Background: Is abrasive blasting accompanied by the phenomenon of driving abrasive particles into the conditioned material? Methods: Three hundred and fifteen cylindrical disks of three types of metal alloy (chromium/cobalt, chromium/nickel, titanium, and sintered zirconium dioxide) were divided into four groups (n = 35) and sandblasted at pressures of 0.2, 0.4, or 0.6 MPa with aluminum oxide (Al2O3), grain size 50, 110, or 250 μm. Then, the surface topography was examined using a scanning microscope, and the amount of embedded grain was measured using quantitative metallography. For each group, five samples were randomly selected and subjected to Vickers hardness testing. In the statistical analyses, a three-factor analysis of variance was carried out, considering the type of material, the size of gradation of the abrasive, and the amount of pressure. Results: The smallest amounts of embedded abrasive (2.62) were observed in the ZrO2 treatment, and the largest (38.19) occurred in the treatment of the Ti alloy. An increase in the gradation and the pressure were a systematic increase in the amount of embedded grain. Conclusions: After abrasive blasting, abrasive particles were found on the surface of the materials. The amount of driven abrasive depends on the hardness of the processed material.
Subject
General Materials Science
Reference32 articles.
1. Performance of different abrasive materials during abrasive water jet machining of glass;Khan;J. Mater. Process. Tech.,2007
2. Influence of parameters of stream abrasive treatment of titanium surfaces on contact angle and surface free energy;Klimek;Mater. Eng.,2010
3. The effect of abrasive blasting on the strength of a joint between dental porcelain and metal base;Pietnicki;Acta Bioeng. Biomech.,2014
4. Airborne-particle abrasion parameters on the quality of titanium-ceramic bonds;Klimek;J. Prosth. Dent.,2015
5. Study of adhesion of different plasma-sprayed coatings to aluminium;Kozerski;Surf. Coat. Technol.,2006
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献