AbstractThe aim of present research was to study the effect of some surface modification processes on wettability of Ti6Al4V surfaces for medical implants quantified by using the measurement of contact angle. The surface modification procedures of several disc samples were performed by sand blasting, acid etching, passivation, and their combinations. Sand blasting was done with 250...300μm SiO2 large grits. The acid etching process was performed in a dual bath of H2SO4 1n and HCl 1n (1:1) at different elevated temperatures (60°C, 80°C, and 100°C) using different process durations (1h, 3h, 6h, 12h, and 24h). Passivation was done in 30% HNO3 at room temperature. On modified surfaces we evaluated topography, by measuring roughness, and analyzi...
Abstract Objective To compare the surface roughness of sandblasted, large grit, acid‐etched (SLA) su...
This review covers several basic methodologies of surface treatment and their effects on titanium (T...
The increasing use of titanium in the biomedical field arises from the excellent biocompatibility du...
In the biomedical field, water contact angle is a useful gauge to follow how a biomaterial surface w...
Titanium and its alloys have been used extensively over the past 25 years as biomedical materials in...
In this study, micro- and nanosurface structures were fabricated by sandblasting (S), acid-etching (...
The purpose of this investigation was to create an acid etched implant surface that results in a sur...
The purpose of this study was to characterize the etching mechanism, namely, the etching rate and th...
Titanium surface characteristics, including microtopography, chemical composition, and wettability, ...
Titanium is the most prevalent material for use in dental implants because of its mechanical propert...
AbstractThe aim of present research was to find an effective method to manufacture sand blasted and ...
Osseointegration level of titanium used for dental implant is related to the composition and roughne...
Chemical mechanical polishing (CMP) has been introduced in previous studies as a synergistic techniq...
Surface topography and physical-chemical properties usually play a key-role in both osseointegration...
The purpose of this paper consists in the evaluation of the contact angle at the interface of Co-Cr ...
Abstract Objective To compare the surface roughness of sandblasted, large grit, acid‐etched (SLA) su...
This review covers several basic methodologies of surface treatment and their effects on titanium (T...
The increasing use of titanium in the biomedical field arises from the excellent biocompatibility du...
In the biomedical field, water contact angle is a useful gauge to follow how a biomaterial surface w...
Titanium and its alloys have been used extensively over the past 25 years as biomedical materials in...
In this study, micro- and nanosurface structures were fabricated by sandblasting (S), acid-etching (...
The purpose of this investigation was to create an acid etched implant surface that results in a sur...
The purpose of this study was to characterize the etching mechanism, namely, the etching rate and th...
Titanium surface characteristics, including microtopography, chemical composition, and wettability, ...
Titanium is the most prevalent material for use in dental implants because of its mechanical propert...
AbstractThe aim of present research was to find an effective method to manufacture sand blasted and ...
Osseointegration level of titanium used for dental implant is related to the composition and roughne...
Chemical mechanical polishing (CMP) has been introduced in previous studies as a synergistic techniq...
Surface topography and physical-chemical properties usually play a key-role in both osseointegration...
The purpose of this paper consists in the evaluation of the contact angle at the interface of Co-Cr ...
Abstract Objective To compare the surface roughness of sandblasted, large grit, acid‐etched (SLA) su...
This review covers several basic methodologies of surface treatment and their effects on titanium (T...
The increasing use of titanium in the biomedical field arises from the excellent biocompatibility du...