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Precipitates in As-Cast and Heat-Treated ASTM F75 Co-Cr-Mo-C Alloys Containing Si and/or Mn

机译:含硅和/或锰的经铸造和热处理的ASTM F75 Co-Cr-Mo-C合金中的沉淀物

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The effect of the addition of Si or Mn to ASTM F75 Co-28Cr-6Mo-0.25C alloys on precipitate formation as well as dissolution during solution treatment was investigated. Three alloys—Co-28Cr-6Mo-0.25C-1Si (1Si), Co-28Cr-6Mo-0.25C-1Mn (1Mn), and Co-28Cr-6Mo-0.25C-1Si-1Mn (1Si1Mn)—were heat treated from 1448 K to 1548 K (1175 °C to 1275 °C) for a holding time of up to 43.2 ks. In the case of the as-cast 1Si and 1Si1Mn alloys, the precipitates were M23C6-type carbide, η phase (M6C-M12C–type carbide), and π phase (M2T3X-type carbide with a β-Mn structure), while in the case of the as-cast 1Mn alloy, M23C6-type carbide and η phase were detected. The 1Si and 1Si1Mn alloys required longer heat-treatment times for complete precipitate dissolution than did the 1Mn alloys. During the solution treatment, blocky dense M23C6-type carbide was observed in all the alloys over the temperature range of 1448 K to 1498 K (1175 °C to 1225 °C). At the heat-treatment temperature of 1523 K (1250 °C), starlike precipitates with stripe patterns—comprising M23C6-type carbide and metallic face-centered-cubic (fcc) γ phase—were detected in the 1Si and 1Si1Mn alloys. A π phase was observed in the 1Si and 1Si1Mn alloys heat treated at 1523 K and 1548 K (1250 °C and 1275 °C) and in the 1Mn alloy heat treated at 1548 K (1275 °C); its morphology was starlike-dense. The addition of Si appeared to promote the formation of the π phase in Co-28Cr-6Mo-0.25C alloys at 1523 K and 1548 K (1250 °C and 1275 °C). Thus, the addition of Si and Mn affects the phase and morphology of the carbide precipitates in biomedical Co-Cr-Mo alloys.
机译:研究了在ASTM F75 Co-28Cr-6Mo-0.25C合金中添加Si或Mn对沉淀形成以及固溶处理过程中溶解的影响。加热了三种合金-Co-28Cr-6Mo-0.25C-1Si(1Si),Co-28Cr-6Mo-0.25C-1Mn(1Mn)和Co-28Cr-6Mo-0.25C-1Si-1Mn(1Si1Mn)在1448 K至1548 K(1175°C至1275°C)的温度下处理,保持时间长达43.2 ks。对于铸态1Si和1Si1Mn合金,析出物为M 23 C 6 型碳化物,η相(M 6 CM 12 C型碳化物)和π相(具有β-Mn结构的M 2 T 3 X型碳化物),而对于铸态1Mn合金,检测到M 23 C 6 型碳化物和η相。 1Si和1Si1Mn合金比1Mn合金需要更长的热处理时间才能完全溶解沉淀。在固溶处理期间,在1448 K至1498 K(1175°C至1225)的温度范围内的所有合金中均观察到块状致密M 23 C 6 型碳化物°C)。在1523 K(1250°C)的热处理温度下,星状沉淀物呈条纹状-包含M 23 C 6 型碳化物和金属面心立方(fcc)γ相-在1Si和1Si1Mn合金中检测到。在1523 K和1548 K(1250°C和1275°C)热处理的1Si和1Si1Mn合金中以及在1548 K(1275°C)热处理的1Mn合金中观察到π相。它的形态是密集的星形。在1523 K和1548 K(1250°C和1275°C)下,添加Si似乎促进了Co-28Cr-6Mo-0.25C合金中π相的形成。因此,Si和Mn的添加会影响生物医学Co-Cr-Mo合金中碳化物沉淀的相和形态。

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