AbstractPorous titanium with the porosity in the range of 44-77% was successfully prepared by space holder sintering process. The size of large pores had been controlled by fractionized the holder. The pore size of the as-prepared samples exhibited bimodal distribution, i.e., the size of large pores was about 200-500μm and the size of small pores was approximate several micrometers. The mechanism for the formation of the pores was explored and the optimal process was determined in this paper. The compressive behavior of the porous titanium was investigated at different processing variables. It was found that the yielding strength and Young's modulus were strongly depended on the sintering temperature, porosity and pore size. Therefore, the ...
In the 21st century metals and alloys are considered to be the base for all manufacturing and engine...
In the present work, the use of porous titanium is proposed as a solution to the difference in stiff...
Porous titanium is a new structural and functional material. It is widely used in many fields since ...
Titanium and its alloys are reference materials in biomedical applications because of their desirabl...
<p></p><p>ABSTRACT It has proposed the use of porous titanium to reduce the problem of mechanical in...
Biocompatibility, bone-like mechanical properties, and good bone-to-implant anchorage are current re...
The excellent properties of Ti have resulted in its generalised use for bone implants. However, Ti i...
The high Young’s modulus of titanium with respect to that one of the bone is the main cause of the s...
Porous titanium samples with a porosity of 1.34~15.54% were prepared by a spark plasma sintering (SP...
International audienceTitanium and its alloy foams have been receiving a growing interest for biomed...
Reducing the elastic modulus and also improving biological fixation to the bone is possible by using...
Porous titanium specimens have been produced by means of the space holder method. Titanium grade 3 (...
Porous titanium specimens have been produced by means of the space holder method. Titanium grade 3 (...
The excellent properties of Ti have resulted in its generalised use for bone implants. However, Ti i...
Reducing the stiffness of titanium is an important issue to improve the behavior of this material wh...
In the 21st century metals and alloys are considered to be the base for all manufacturing and engine...
In the present work, the use of porous titanium is proposed as a solution to the difference in stiff...
Porous titanium is a new structural and functional material. It is widely used in many fields since ...
Titanium and its alloys are reference materials in biomedical applications because of their desirabl...
<p></p><p>ABSTRACT It has proposed the use of porous titanium to reduce the problem of mechanical in...
Biocompatibility, bone-like mechanical properties, and good bone-to-implant anchorage are current re...
The excellent properties of Ti have resulted in its generalised use for bone implants. However, Ti i...
The high Young’s modulus of titanium with respect to that one of the bone is the main cause of the s...
Porous titanium samples with a porosity of 1.34~15.54% were prepared by a spark plasma sintering (SP...
International audienceTitanium and its alloy foams have been receiving a growing interest for biomed...
Reducing the elastic modulus and also improving biological fixation to the bone is possible by using...
Porous titanium specimens have been produced by means of the space holder method. Titanium grade 3 (...
Porous titanium specimens have been produced by means of the space holder method. Titanium grade 3 (...
The excellent properties of Ti have resulted in its generalised use for bone implants. However, Ti i...
Reducing the stiffness of titanium is an important issue to improve the behavior of this material wh...
In the 21st century metals and alloys are considered to be the base for all manufacturing and engine...
In the present work, the use of porous titanium is proposed as a solution to the difference in stiff...
Porous titanium is a new structural and functional material. It is widely used in many fields since ...