Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Precipitates in Biomedical Co-Cr-Mo-C-Si-Mn Alloys

View through CrossRef
The phase and dissolution behavior of precipitates in biomedical ASTM F75 Co-Cr-Mo-C-Si-Mn alloys were investigated. Alloys of five different compositions, Co-28Cr-6Mo-0.25C-1Si, Co-28Cr-6Mo-0.25C-1Mn, Co-28Cr-6Mo-0.25C-1Si-1Mn, Co-28Cr-6Mo-0.15C-1Si, and Co-28Cr-6Mo-0.35C-1Si, were heat-treated from 1448 to 1548 K. The precipitates observed in the as-cast and heat-treated alloys were carbides (M23C6type, h-phase, and p-phase) and an intermetallic compound (c-phase). The main precipitates observed after heat treatment at high temperatures such as 1548 K were p-phase and M23C6type carbide. At these high temperatures, two types of starlike precipitates—dense and stripe-patterned—were observed. The starlike-dense precipitate was the p-phase, and the starlike precipitate with a stripe pattern was identified as the M23C6type carbide and metallic fcc g-phase. In the alloys heat-treated at 1448 to 1498 K, blocky-dense M23C6type carbide was primarily observed. c-phase was detected in the Co-28Cr-6Mo-0.15C-1Si alloy under as-cast condition and after heat treatment at 1448–1523 K for a short holding time. The addition of Si seemed to increase the holding time for complete precipitate dissolution because of the effects of Si on the promotion of p-phase formation at high temperatures and the increased carbon activity in the metallic matrix.
Title: Precipitates in Biomedical Co-Cr-Mo-C-Si-Mn Alloys
Description:
The phase and dissolution behavior of precipitates in biomedical ASTM F75 Co-Cr-Mo-C-Si-Mn alloys were investigated.
Alloys of five different compositions, Co-28Cr-6Mo-0.
25C-1Si, Co-28Cr-6Mo-0.
25C-1Mn, Co-28Cr-6Mo-0.
25C-1Si-1Mn, Co-28Cr-6Mo-0.
15C-1Si, and Co-28Cr-6Mo-0.
35C-1Si, were heat-treated from 1448 to 1548 K.
The precipitates observed in the as-cast and heat-treated alloys were carbides (M23C6type, h-phase, and p-phase) and an intermetallic compound (c-phase).
The main precipitates observed after heat treatment at high temperatures such as 1548 K were p-phase and M23C6type carbide.
At these high temperatures, two types of starlike precipitates—dense and stripe-patterned—were observed.
The starlike-dense precipitate was the p-phase, and the starlike precipitate with a stripe pattern was identified as the M23C6type carbide and metallic fcc g-phase.
In the alloys heat-treated at 1448 to 1498 K, blocky-dense M23C6type carbide was primarily observed.
c-phase was detected in the Co-28Cr-6Mo-0.
15C-1Si alloy under as-cast condition and after heat treatment at 1448–1523 K for a short holding time.
The addition of Si seemed to increase the holding time for complete precipitate dissolution because of the effects of Si on the promotion of p-phase formation at high temperatures and the increased carbon activity in the metallic matrix.

Related Results

Copper Alloys
Copper Alloys
Abstract The article contains sections titled: ...
Bioresorbable Zn-based alloys for biomedical applications
Bioresorbable Zn-based alloys for biomedical applications
(English) Biodegradable metals emerged as promising materials for bioresorbable devices avoiding the potential side effects of permanent implants. Among them, zinc (Zn) arose dueto...
Diffusion and its Application in NiMnGa Alloys
Diffusion and its Application in NiMnGa Alloys
Heusler NiMnGa alloys are often categorized as ferromagnetic shape memory alloys or magnetocaloric materials, which are important for both practical applications and fundamental re...
Thermal stability of extruded Mg-Y-Nd alloy structure
Thermal stability of extruded Mg-Y-Nd alloy structure
Introduction. Today, bioresorbable magnesium alloys possessing the required physical, mechanical, corrosion, and biological properties, are promising materials for orthopedic and c...
The Effect of Aging Treatment on the Properties of Cold-Rolled Cu-Ni-Si-Co Alloys with Different Mg Contents
The Effect of Aging Treatment on the Properties of Cold-Rolled Cu-Ni-Si-Co Alloys with Different Mg Contents
Cu-Ni-Si is a prominent example of a high-end lead frame copper alloy. The enhancement of strength without compromising electrical conductivity has emerged as a prominent research ...
Stability of TaC precipitates in a Co–Re-based alloy being developed for ultra-high-temperature applications
Stability of TaC precipitates in a Co–Re-based alloy being developed for ultra-high-temperature applications
Co–Re alloys are being developed for ultra-high-temperature applications to supplement Ni-based superalloys in future gas turbines. The main goal of the alloy development is to inc...
Current aspects of hydrogen and oxygen content in aluminum alloys
Current aspects of hydrogen and oxygen content in aluminum alloys
The analysis of the scientific researches devoted to questions of influence of the content of hydrogen and oxide inclusions in aluminum alloys in the context of these impurities in...
Corrosion and Oxide Properties of HANA Alloys
Corrosion and Oxide Properties of HANA Alloys
Abstract The corrosion behavior of HANA alloys has been investigated at 360°C in a pure water autoclave as well as in a pressurized water reactor (PWR)-simulating lo...

Back to Top