A new approach to fabricate TiNi surfaces combining the advantages of both monolithic and porous materials for implants is used in this work. New materials were obtained by depositing a porous TiNi powder onto monolithic TiNi plates followed by sintering at 1200 °C. Then, further modification of the material surface with a high-current-pulsed electron beam (HCPEB) was carried out. Three materials obtained (one after sintering and two after subsequent beam treatment by 30 pulses with different pulse energy) were studied by XRD, SEM, EDX, surface profilometry, and by means of electrochemical measurements, including OCP and EIS. Structural and compositional changes caused by HCPEB treatment were investigated. Surface properties of the samples ...
grantor: University of TorontoThis thesis focused on the production of noble metal, surfac...
The paper reports on a new method of plasma immersion ion implantation for the surface modification ...
Nano-sized TiNi powder with an average size of 50nm was consolidated using spark plasma sintering (S...
new approach to fabricate TiNi surfaces combining the advantages of both monolithic and porous mater...
The research is devoted to study the structural condition and their evolution from the surface to th...
The paper addresses the study of the surface condition of two-dimensional porous TiNi-based powder m...
The study of the influence of electron-beam treatment on the structural features of a TiNi powder al...
The objective of the present research is development of НРРІВ technology for surface processing of c...
TiNi shape memory alloys (SMAs) are unique metallic biomaterials due to the combination of superelas...
Abstract – Investigation results of elemental com-position, structural-phase conditions and surface ...
In order to study the conditions of modification of the surface layer of the system coating (TiCuN)/...
Objectives A novel technique based on plasma immersion ion implantation (PIII) is presented to modif...
Metallic materials are commonly used in biomedical applications, especially with the increased use o...
The paper reports on a study of structural phase states and their cross-sectional in-depth evolution...
OBJECTIVES: A novel technique based on plasma immersion ion implantation (PIII) is presented to mod...
grantor: University of TorontoThis thesis focused on the production of noble metal, surfac...
The paper reports on a new method of plasma immersion ion implantation for the surface modification ...
Nano-sized TiNi powder with an average size of 50nm was consolidated using spark plasma sintering (S...
new approach to fabricate TiNi surfaces combining the advantages of both monolithic and porous mater...
The research is devoted to study the structural condition and their evolution from the surface to th...
The paper addresses the study of the surface condition of two-dimensional porous TiNi-based powder m...
The study of the influence of electron-beam treatment on the structural features of a TiNi powder al...
The objective of the present research is development of НРРІВ technology for surface processing of c...
TiNi shape memory alloys (SMAs) are unique metallic biomaterials due to the combination of superelas...
Abstract – Investigation results of elemental com-position, structural-phase conditions and surface ...
In order to study the conditions of modification of the surface layer of the system coating (TiCuN)/...
Objectives A novel technique based on plasma immersion ion implantation (PIII) is presented to modif...
Metallic materials are commonly used in biomedical applications, especially with the increased use o...
The paper reports on a study of structural phase states and their cross-sectional in-depth evolution...
OBJECTIVES: A novel technique based on plasma immersion ion implantation (PIII) is presented to mod...
grantor: University of TorontoThis thesis focused on the production of noble metal, surfac...
The paper reports on a new method of plasma immersion ion implantation for the surface modification ...
Nano-sized TiNi powder with an average size of 50nm was consolidated using spark plasma sintering (S...