Powder injection moulding (PIM) is a process that combines the technologies of plastic injection moulding and powder metallurgy. The fabrication of titanium alloy-hydroxyapatite (Ti6Al4V/HA) composite using PIM is still poorly reported due to the difficulties in processing two different materials namely the metal and ceramic. Such promising composite can be proposed as an implant material due to its great properties. Hence, this work aims to characterise the properties of Ti6Al4V/HA composite produced by PIM. In this work, 90 wt% of Ti6Al4V and 10 wt% of HA were mixed with a binder system of 60 wt% palm stearin and 40 wt% polyethylene. The powder loading of the feedstock was 66 vol%. The feedstock with a pseudoplastic flow is pr...
Metal Injection Moulding (MIM) is an efficient method for high volume production of complex shape co...
The selection and formulation of binder systems play an important role in powder injection moulding ...
The combination of metallic bio-inert material, stainless-steel 316L (SS316L) and a bio-active mater...
Powder injection moulding (PIM) is widely used to produce complex shapes of Titanium and its alloys....
Powder injection moulding (PIM) is widely used to produce complex shapes of Titanium and its alloys....
Powder injection molding (PIM) is a net-shaping process that can fabricate complex shaped of product...
Hydroxyapatite (HA), a ceramic phosphate with good biocompatibility, has been extensively used in th...
The objectives are to study the feasibility of fabricating porous Ti-6Al-4V/HA composite parts by th...
The objectives are to study the feasibility of fabricating porous Ti-6Al-4V/HA composite parts by th...
owder injection molding (PIM) is able to produce porous titanium alloy/hydroxyapatite composite thro...
Metal injection moulding (MIM) is a cost-effective technique for producing small, complex, precision...
Binder and powder formulation are crucial for powder injection molding (PIM) process that can be obt...
Metal injection moulding (MIM) is a cost-effective technique for producing small, complex, precision...
Powder injection molding (PIM) is able to produce porous titanium alloy/hydroxyapatite composite thr...
Both experimental and numerical analysis of powder injection molding (PIM) of Ti-6Al-4V alloy were p...
Metal Injection Moulding (MIM) is an efficient method for high volume production of complex shape co...
The selection and formulation of binder systems play an important role in powder injection moulding ...
The combination of metallic bio-inert material, stainless-steel 316L (SS316L) and a bio-active mater...
Powder injection moulding (PIM) is widely used to produce complex shapes of Titanium and its alloys....
Powder injection moulding (PIM) is widely used to produce complex shapes of Titanium and its alloys....
Powder injection molding (PIM) is a net-shaping process that can fabricate complex shaped of product...
Hydroxyapatite (HA), a ceramic phosphate with good biocompatibility, has been extensively used in th...
The objectives are to study the feasibility of fabricating porous Ti-6Al-4V/HA composite parts by th...
The objectives are to study the feasibility of fabricating porous Ti-6Al-4V/HA composite parts by th...
owder injection molding (PIM) is able to produce porous titanium alloy/hydroxyapatite composite thro...
Metal injection moulding (MIM) is a cost-effective technique for producing small, complex, precision...
Binder and powder formulation are crucial for powder injection molding (PIM) process that can be obt...
Metal injection moulding (MIM) is a cost-effective technique for producing small, complex, precision...
Powder injection molding (PIM) is able to produce porous titanium alloy/hydroxyapatite composite thr...
Both experimental and numerical analysis of powder injection molding (PIM) of Ti-6Al-4V alloy were p...
Metal Injection Moulding (MIM) is an efficient method for high volume production of complex shape co...
The selection and formulation of binder systems play an important role in powder injection moulding ...
The combination of metallic bio-inert material, stainless-steel 316L (SS316L) and a bio-active mater...