Titanium and titanium alloys are some of the best materials for medical implants owing to their excellent properties including biocompatibility, corrosion resistance and high fatigue strength among others. However, many implants have to be removed after implantation because of bacterial infection. Coating titanium implants with copper or silver has demonstrated antibacterial abilities and has therefore been widely applied to solve this problem. Ion implantation, physical vapour deposition, magnetron sputtering and many other different methods are used to coat these materials. However, until now, there is no method that allows for concurrent machining and coating of the antibacterial layer. Electrical Discharge Machining (EDM) has demonstrat...
Together, 316L steel, magnesium-alloy, Ni-Ti, titanium-alloy, and cobalt-alloy are commonly employed...
The implant associated infections (IAI) have been identified as one of the primary causes of bone im...
Electrical discharge machining (EDM) produces complex shapes and permits high-precision machining of...
Previous studies have revealed the potential of powder mixed electrical discharge machining (PMEDM) ...
Abstract Objective: This research aims to observe the extent to which several surface treatment te...
This work presents an investigation on Wire Electric Discharge Machining (WEDM) of Pure Titanium (Gr...
In this work is presented an investigation on Wire Electric Discharge Machining (WEDM) of Pure Titan...
The use of metallic powder mixed electrical discharge machining (PMEDM) is an alternative of machini...
Ti and its alloys are the most commonly-used materials for biomedical applications. However, bacteri...
This paper presents investigation on the alloying capability of Cu-TaC electrode during electrical d...
In order to combine the antimicrobial effect of silver with mechanical and chemical properties of ti...
Background: The increase in orthopaedic implants, as a result of an ageing population, is accompanie...
In modern medicine, biomaterials have been widely used as implants. Among biomaterials, titanium med...
Aim The present in vitro study was designed to evaluate the surface characteristics, biocompatibilit...
The resistance of a material to an indentation on microscopic scale is an indication of its micro-ha...
Together, 316L steel, magnesium-alloy, Ni-Ti, titanium-alloy, and cobalt-alloy are commonly employed...
The implant associated infections (IAI) have been identified as one of the primary causes of bone im...
Electrical discharge machining (EDM) produces complex shapes and permits high-precision machining of...
Previous studies have revealed the potential of powder mixed electrical discharge machining (PMEDM) ...
Abstract Objective: This research aims to observe the extent to which several surface treatment te...
This work presents an investigation on Wire Electric Discharge Machining (WEDM) of Pure Titanium (Gr...
In this work is presented an investigation on Wire Electric Discharge Machining (WEDM) of Pure Titan...
The use of metallic powder mixed electrical discharge machining (PMEDM) is an alternative of machini...
Ti and its alloys are the most commonly-used materials for biomedical applications. However, bacteri...
This paper presents investigation on the alloying capability of Cu-TaC electrode during electrical d...
In order to combine the antimicrobial effect of silver with mechanical and chemical properties of ti...
Background: The increase in orthopaedic implants, as a result of an ageing population, is accompanie...
In modern medicine, biomaterials have been widely used as implants. Among biomaterials, titanium med...
Aim The present in vitro study was designed to evaluate the surface characteristics, biocompatibilit...
The resistance of a material to an indentation on microscopic scale is an indication of its micro-ha...
Together, 316L steel, magnesium-alloy, Ni-Ti, titanium-alloy, and cobalt-alloy are commonly employed...
The implant associated infections (IAI) have been identified as one of the primary causes of bone im...
Electrical discharge machining (EDM) produces complex shapes and permits high-precision machining of...