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Preparation of High-Strength Co-Cr-Mo Alloy Rods Via Hot-Caliber Rolling

59 Pages Posted: 29 Apr 2020 Publication Status: Accepted

See all articles by Kenta Yamanaka

Kenta Yamanaka

Tohoku University - Institute for Materials Research (IMR)

Manami Mori

National Institute of Technology, Sendai College - Department of Materials and Environmental Engineering

Kazuo Yoshida

Tohoku University - Institute for Materials Research (IMR)

Sandra Balvay

University of Claude Bernard Lyon 1 - MATEIS-UMR CNRS 5510

Daniel Hartmann

University of Claude Bernard Lyon 1 - MATEIS-UMR CNRS 5510

Damien Fabrègue

Université de Lyon - MATEIS CNRS UMR 5510

Akihiko Chiba

Tohoku University - Institute for Materials Research (IMR)

Abstract

Co-Cr-Mo alloys have various remarkable properties and in recent times their use has been extended in biomedical applications in recent times. In this study, small-diameter Co-Cr-Mo alloy rods, which can be used in spinal instrumentation surgery, were prepared using a developed manufacturing system that enables hot-caliber rolling immediately after the induction heating of a rod workpiece. The effects of rolling temperature (850-1150 °C) and the amount of deformation (up to 0.45 in equivalent strain) on the microstructure, mechanical properties, and cytocompatibility of the rods were examined to determine the processing-microstructure-property relationship and to optimize the processing parameters. The microstructural evolution, which was found to be associated with grain refinement due to the simultaneous dynamic recrystallization (DRX) and accumulation of lattice defects during hot-caliber rolling, significantly strengthened the alloy and maintained the ductility. Bi-directional deformation during hot-caliber rolling at higher rolling temperatures enhanced the DRX, thus realizing uniformly distributed fine grains without preferential orientations, which resulted in the homogeneous mechanical properties of the obtained rods. Consequently, an enhanced strength-ductility combination, which was superior to those obtained in the existing literature, was achieved. Moreover, the cytocompatibility experiments using human MG-63 osteoblast-like cells at various intervals (3, 6, and 10 days) revealed a limited detrimental influence on the cell proliferation and cell migration on the sample hot-rolled at 1150 °C. The developed manufacturing system can be employed for the fabrication of high-strength Co-Cr-Mo alloy rods with high durability, and it can be implemented in low-profile systems for spinal instrumentation surgery.

Keywords: biomedical Co−Cr−Mo alloys, thermomechanical processing, microstructure, mechanical properties, cytocompatibility

Suggested Citation

Yamanaka, Kenta and Mori, Manami and Yoshida, Kazuo and Balvay, Sandra and Hartmann, Daniel and Fabrègue, Damien and Chiba, Akihiko, Preparation of High-Strength Co-Cr-Mo Alloy Rods Via Hot-Caliber Rolling. Available at SSRN: https://ssrn.com/abstract=3580466 or http://dx.doi.org/10.2139/ssrn.3580466

Kenta Yamanaka (Contact Author)

Tohoku University - Institute for Materials Research (IMR) ( email )

SKK Building, Katahira 2
Aoba-ku, Sendai, Miyagi 980-8577
Japan

Manami Mori

National Institute of Technology, Sendai College - Department of Materials and Environmental Engineering

8 Nodayama, Medeshima-Shiote
Natori, 981-1239
Japan

Kazuo Yoshida

Tohoku University - Institute for Materials Research (IMR)

SKK Building, Katahira 2
Aoba-ku, Sendai, Miyagi 980-8577
Japan

Sandra Balvay

University of Claude Bernard Lyon 1 - MATEIS-UMR CNRS 5510

Villeurbanne, F-69621
France

Daniel Hartmann

University of Claude Bernard Lyon 1 - MATEIS-UMR CNRS 5510

Villeurbanne, F-69621
France

Damien Fabrègue

Université de Lyon - MATEIS CNRS UMR 5510

43 Bl du 11 novembre 1918
Villeurbanne Cedex, Villeurbanne cedex 69621
France

Akihiko Chiba

Tohoku University - Institute for Materials Research (IMR)

SKK Building, Katahira 2
Aoba-ku, Sendai, Miyagi 980-8577
Japan

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