Cobalt-based alloys are widely used in the manufacture of joint prostheses. In this study, the effect of boron additions and heat treatment on the ASTM F75 was evaluated by rotating bending fatigue. The boron ranged from 0.06–1 wt %. The alloys were tested in as-cast and heat-treated conditions. In the as-cast condition, the infinite life was observed at 380 MPa, improving to 433–615 MPa according to the amount of boron added. In the heat treatment condition, the fatigue resistance was improved only in the base alloy. The addition of 0.06 wt % boron and heat treatment led to the same resistance as in the as-cast condition. Adding large amounts of boron combined with heat treatment diminished the fatigue limit. The fracture analy...
The relatively good combination of high strength and ductility makes bainitic steels a candidate to ...
The effect of boron on the abrasive wear behavior of the austenitic Fe-Cr-C-Si-B hardfacing alloys w...
The effect of boron on the abrasive wear behavior of the austenitic Fe-Cr-C-Si-B hardfacing alloys w...
Cobalt-based alloys are extensively used in orthopedic applications for joint replacements due to th...
A fracture mechanics approach was used to investigate the fatigue behavior of a large grained cobalt...
The durability of powder metallurgy nickel base superalloys employed as compressor and turbine disks...
The aim of this study was to investigate the effects of boronizing on the surface hardness, microstr...
Heat-resistant alloys based on Ni-Cr system are widely used as alloys for the manufacture of rings, ...
This thesis addresses the effect of boron contents in a range between 0.0004-0.0025 wt.-% in laborat...
A study was made on the effects of adding 0.5 weight percent boron to the ordered intermetallic Coba...
[[abstract]]This study discusses the wear resistance and high-temperature compression strength of Cu...
Although post-heat treatment can improve the fatigue life of selective laser melting (SLM)-fabricate...
Statement of problem. For laboratory production, it would he economically advisable to reuse excess ...
The deformation-induced phase transition from fcc to hcp causes local embrittlement of the metal mat...
High-temperature mechanical properties of high-boron austenitic steels (HBASs) were studied at 850 °...
The relatively good combination of high strength and ductility makes bainitic steels a candidate to ...
The effect of boron on the abrasive wear behavior of the austenitic Fe-Cr-C-Si-B hardfacing alloys w...
The effect of boron on the abrasive wear behavior of the austenitic Fe-Cr-C-Si-B hardfacing alloys w...
Cobalt-based alloys are extensively used in orthopedic applications for joint replacements due to th...
A fracture mechanics approach was used to investigate the fatigue behavior of a large grained cobalt...
The durability of powder metallurgy nickel base superalloys employed as compressor and turbine disks...
The aim of this study was to investigate the effects of boronizing on the surface hardness, microstr...
Heat-resistant alloys based on Ni-Cr system are widely used as alloys for the manufacture of rings, ...
This thesis addresses the effect of boron contents in a range between 0.0004-0.0025 wt.-% in laborat...
A study was made on the effects of adding 0.5 weight percent boron to the ordered intermetallic Coba...
[[abstract]]This study discusses the wear resistance and high-temperature compression strength of Cu...
Although post-heat treatment can improve the fatigue life of selective laser melting (SLM)-fabricate...
Statement of problem. For laboratory production, it would he economically advisable to reuse excess ...
The deformation-induced phase transition from fcc to hcp causes local embrittlement of the metal mat...
High-temperature mechanical properties of high-boron austenitic steels (HBASs) were studied at 850 °...
The relatively good combination of high strength and ductility makes bainitic steels a candidate to ...
The effect of boron on the abrasive wear behavior of the austenitic Fe-Cr-C-Si-B hardfacing alloys w...
The effect of boron on the abrasive wear behavior of the austenitic Fe-Cr-C-Si-B hardfacing alloys w...