The Experts below are selected from a list of 18210 Experts worldwide ranked by ideXlab platform

Lee Seunghwan - One of the best experts on this subject based on the ideXlab platform.

  • Optimization of anti-wear and anti-bacterial properties of beta TiNb alloy via controlling duty cycle in open-air laser nitriding
    'Elsevier BV', 2020
    Co-Authors: Chang Xianwen, Chan Chi-wai, Smith Graham, Quinn James, Carson Louise, Lee Seunghwan
    Abstract:

    A multifunctional beta TiNb surface, featuring wear-resistant and antibacterial properties, was successfully created by means of open-air fibre laser nitriding. Beta TiNb alloy was selected in this study as it has low Young’s modulus, is highly biocompatible, and thus can be a promising prosthetic joint material. It is, however, necessary to overcome intrinsically weak mechanical properties and poor wear resistance of beta TiNb in order to cover the range of applications to loadbearing and/or shearing parts. To this end, open-air laser nitriding technique was employed. A control of single processing parameter, namely duty cycle (between 5% and 100%), led to substantially different structural and functional properties of the processed beta TiNb surfaces as analyzed by an array of analytical tools. The TiNb samples nitrided at the Dc Condition of 60% showed a most enhanced performance in terms of improving surface hardness, anti-friction, antiwear and anti-bacterial properties in comparison with other Conditions. These findings are expected to be highly important and useful when TiNb alloys are considered as materials for hip/knee articular joint implant

  • Optimization of anti-wear and anti-bacterial properties of beta TiNb alloy via controlling duty cycle in open-air laser nitriding.
    'Elsevier BV', 2020
    Co-Authors: Chang Xianwen, Chan Chi-wai, Smith, Graham C, Quinn James, Carson Louise, Lee Seunghwan
    Abstract:

    From PubMed via Jisc Publications RouterHistory: received 2020-02-21, revised 2020-05-27, accepted 2020-06-04Publication status: ppublishA multifunctional beta TiNb surface, featuring wear-resistant and antibacterial properties, was successfully created by means of open-air fibre laser nitriding. Beta TiNb alloy was selected in this study as it has low Young's modulus, is highly biocompatible, and thus can be a promising prosthetic joint material. It is, however, necessary to overcome intrinsically weak mechanical properties and poor wear resistance of beta TiNb in order to cover the range of applications to load-bearing and/or shearing parts. To this end, open-air laser nitriding technique was employed. A control of single processing parameter, namely duty cycle (between 5% and 100%), led to substantially different structural and functional properties of the processed beta TiNb surfaces as analyzed by an array of analytical tools. The TiNb samples nitrided at the Dc Condition of 60% showed a most enhanced performance in terms of improving surface hardness, anti-friction, anti-wear and anti-bacterial properties in comparison with other Conditions. These findings are expected to be highly important and useful when TiNb alloys are considered as materials for hip/knee articular joint implants. [Abstract copyright: Copyright © 2020 Elsevier Ltd. All rights reserved.

Chang Xianwen - One of the best experts on this subject based on the ideXlab platform.

  • Optimization of anti-wear and anti-bacterial properties of beta TiNb alloy via controlling duty cycle in open-air laser nitriding
    'Elsevier BV', 2020
    Co-Authors: Chang Xianwen, Chan Chi-wai, Smith Graham, Quinn James, Carson Louise, Lee Seunghwan
    Abstract:

    A multifunctional beta TiNb surface, featuring wear-resistant and antibacterial properties, was successfully created by means of open-air fibre laser nitriding. Beta TiNb alloy was selected in this study as it has low Young’s modulus, is highly biocompatible, and thus can be a promising prosthetic joint material. It is, however, necessary to overcome intrinsically weak mechanical properties and poor wear resistance of beta TiNb in order to cover the range of applications to loadbearing and/or shearing parts. To this end, open-air laser nitriding technique was employed. A control of single processing parameter, namely duty cycle (between 5% and 100%), led to substantially different structural and functional properties of the processed beta TiNb surfaces as analyzed by an array of analytical tools. The TiNb samples nitrided at the Dc Condition of 60% showed a most enhanced performance in terms of improving surface hardness, anti-friction, antiwear and anti-bacterial properties in comparison with other Conditions. These findings are expected to be highly important and useful when TiNb alloys are considered as materials for hip/knee articular joint implant

  • Optimization of anti-wear and anti-bacterial properties of beta TiNb alloy via controlling duty cycle in open-air laser nitriding.
    'Elsevier BV', 2020
    Co-Authors: Chang Xianwen, Chan Chi-wai, Smith, Graham C, Quinn James, Carson Louise, Lee Seunghwan
    Abstract:

    From PubMed via Jisc Publications RouterHistory: received 2020-02-21, revised 2020-05-27, accepted 2020-06-04Publication status: ppublishA multifunctional beta TiNb surface, featuring wear-resistant and antibacterial properties, was successfully created by means of open-air fibre laser nitriding. Beta TiNb alloy was selected in this study as it has low Young's modulus, is highly biocompatible, and thus can be a promising prosthetic joint material. It is, however, necessary to overcome intrinsically weak mechanical properties and poor wear resistance of beta TiNb in order to cover the range of applications to load-bearing and/or shearing parts. To this end, open-air laser nitriding technique was employed. A control of single processing parameter, namely duty cycle (between 5% and 100%), led to substantially different structural and functional properties of the processed beta TiNb surfaces as analyzed by an array of analytical tools. The TiNb samples nitrided at the Dc Condition of 60% showed a most enhanced performance in terms of improving surface hardness, anti-friction, anti-wear and anti-bacterial properties in comparison with other Conditions. These findings are expected to be highly important and useful when TiNb alloys are considered as materials for hip/knee articular joint implants. [Abstract copyright: Copyright © 2020 Elsevier Ltd. All rights reserved.

Carson Louise - One of the best experts on this subject based on the ideXlab platform.

  • Optimization of anti-wear and anti-bacterial properties of beta TiNb alloy via controlling duty cycle in open-air laser nitriding
    'Elsevier BV', 2020
    Co-Authors: Chang Xianwen, Chan Chi-wai, Smith Graham, Quinn James, Carson Louise, Lee Seunghwan
    Abstract:

    A multifunctional beta TiNb surface, featuring wear-resistant and antibacterial properties, was successfully created by means of open-air fibre laser nitriding. Beta TiNb alloy was selected in this study as it has low Young’s modulus, is highly biocompatible, and thus can be a promising prosthetic joint material. It is, however, necessary to overcome intrinsically weak mechanical properties and poor wear resistance of beta TiNb in order to cover the range of applications to loadbearing and/or shearing parts. To this end, open-air laser nitriding technique was employed. A control of single processing parameter, namely duty cycle (between 5% and 100%), led to substantially different structural and functional properties of the processed beta TiNb surfaces as analyzed by an array of analytical tools. The TiNb samples nitrided at the Dc Condition of 60% showed a most enhanced performance in terms of improving surface hardness, anti-friction, antiwear and anti-bacterial properties in comparison with other Conditions. These findings are expected to be highly important and useful when TiNb alloys are considered as materials for hip/knee articular joint implant

  • Optimization of anti-wear and anti-bacterial properties of beta TiNb alloy via controlling duty cycle in open-air laser nitriding.
    'Elsevier BV', 2020
    Co-Authors: Chang Xianwen, Chan Chi-wai, Smith, Graham C, Quinn James, Carson Louise, Lee Seunghwan
    Abstract:

    From PubMed via Jisc Publications RouterHistory: received 2020-02-21, revised 2020-05-27, accepted 2020-06-04Publication status: ppublishA multifunctional beta TiNb surface, featuring wear-resistant and antibacterial properties, was successfully created by means of open-air fibre laser nitriding. Beta TiNb alloy was selected in this study as it has low Young's modulus, is highly biocompatible, and thus can be a promising prosthetic joint material. It is, however, necessary to overcome intrinsically weak mechanical properties and poor wear resistance of beta TiNb in order to cover the range of applications to load-bearing and/or shearing parts. To this end, open-air laser nitriding technique was employed. A control of single processing parameter, namely duty cycle (between 5% and 100%), led to substantially different structural and functional properties of the processed beta TiNb surfaces as analyzed by an array of analytical tools. The TiNb samples nitrided at the Dc Condition of 60% showed a most enhanced performance in terms of improving surface hardness, anti-friction, anti-wear and anti-bacterial properties in comparison with other Conditions. These findings are expected to be highly important and useful when TiNb alloys are considered as materials for hip/knee articular joint implants. [Abstract copyright: Copyright © 2020 Elsevier Ltd. All rights reserved.

Quinn James - One of the best experts on this subject based on the ideXlab platform.

  • Optimization of anti-wear and anti-bacterial properties of beta TiNb alloy via controlling duty cycle in open-air laser nitriding
    'Elsevier BV', 2020
    Co-Authors: Chang Xianwen, Chan Chi-wai, Smith Graham, Quinn James, Carson Louise, Lee Seunghwan
    Abstract:

    A multifunctional beta TiNb surface, featuring wear-resistant and antibacterial properties, was successfully created by means of open-air fibre laser nitriding. Beta TiNb alloy was selected in this study as it has low Young’s modulus, is highly biocompatible, and thus can be a promising prosthetic joint material. It is, however, necessary to overcome intrinsically weak mechanical properties and poor wear resistance of beta TiNb in order to cover the range of applications to loadbearing and/or shearing parts. To this end, open-air laser nitriding technique was employed. A control of single processing parameter, namely duty cycle (between 5% and 100%), led to substantially different structural and functional properties of the processed beta TiNb surfaces as analyzed by an array of analytical tools. The TiNb samples nitrided at the Dc Condition of 60% showed a most enhanced performance in terms of improving surface hardness, anti-friction, antiwear and anti-bacterial properties in comparison with other Conditions. These findings are expected to be highly important and useful when TiNb alloys are considered as materials for hip/knee articular joint implant

  • Optimization of anti-wear and anti-bacterial properties of beta TiNb alloy via controlling duty cycle in open-air laser nitriding.
    'Elsevier BV', 2020
    Co-Authors: Chang Xianwen, Chan Chi-wai, Smith, Graham C, Quinn James, Carson Louise, Lee Seunghwan
    Abstract:

    From PubMed via Jisc Publications RouterHistory: received 2020-02-21, revised 2020-05-27, accepted 2020-06-04Publication status: ppublishA multifunctional beta TiNb surface, featuring wear-resistant and antibacterial properties, was successfully created by means of open-air fibre laser nitriding. Beta TiNb alloy was selected in this study as it has low Young's modulus, is highly biocompatible, and thus can be a promising prosthetic joint material. It is, however, necessary to overcome intrinsically weak mechanical properties and poor wear resistance of beta TiNb in order to cover the range of applications to load-bearing and/or shearing parts. To this end, open-air laser nitriding technique was employed. A control of single processing parameter, namely duty cycle (between 5% and 100%), led to substantially different structural and functional properties of the processed beta TiNb surfaces as analyzed by an array of analytical tools. The TiNb samples nitrided at the Dc Condition of 60% showed a most enhanced performance in terms of improving surface hardness, anti-friction, anti-wear and anti-bacterial properties in comparison with other Conditions. These findings are expected to be highly important and useful when TiNb alloys are considered as materials for hip/knee articular joint implants. [Abstract copyright: Copyright © 2020 Elsevier Ltd. All rights reserved.

Chan Chi-wai - One of the best experts on this subject based on the ideXlab platform.

  • Optimization of anti-wear and anti-bacterial properties of beta TiNb alloy via controlling duty cycle in open-air laser nitriding
    'Elsevier BV', 2020
    Co-Authors: Chang Xianwen, Chan Chi-wai, Smith Graham, Quinn James, Carson Louise, Lee Seunghwan
    Abstract:

    A multifunctional beta TiNb surface, featuring wear-resistant and antibacterial properties, was successfully created by means of open-air fibre laser nitriding. Beta TiNb alloy was selected in this study as it has low Young’s modulus, is highly biocompatible, and thus can be a promising prosthetic joint material. It is, however, necessary to overcome intrinsically weak mechanical properties and poor wear resistance of beta TiNb in order to cover the range of applications to loadbearing and/or shearing parts. To this end, open-air laser nitriding technique was employed. A control of single processing parameter, namely duty cycle (between 5% and 100%), led to substantially different structural and functional properties of the processed beta TiNb surfaces as analyzed by an array of analytical tools. The TiNb samples nitrided at the Dc Condition of 60% showed a most enhanced performance in terms of improving surface hardness, anti-friction, antiwear and anti-bacterial properties in comparison with other Conditions. These findings are expected to be highly important and useful when TiNb alloys are considered as materials for hip/knee articular joint implant

  • Optimization of anti-wear and anti-bacterial properties of beta TiNb alloy via controlling duty cycle in open-air laser nitriding.
    'Elsevier BV', 2020
    Co-Authors: Chang Xianwen, Chan Chi-wai, Smith, Graham C, Quinn James, Carson Louise, Lee Seunghwan
    Abstract:

    From PubMed via Jisc Publications RouterHistory: received 2020-02-21, revised 2020-05-27, accepted 2020-06-04Publication status: ppublishA multifunctional beta TiNb surface, featuring wear-resistant and antibacterial properties, was successfully created by means of open-air fibre laser nitriding. Beta TiNb alloy was selected in this study as it has low Young's modulus, is highly biocompatible, and thus can be a promising prosthetic joint material. It is, however, necessary to overcome intrinsically weak mechanical properties and poor wear resistance of beta TiNb in order to cover the range of applications to load-bearing and/or shearing parts. To this end, open-air laser nitriding technique was employed. A control of single processing parameter, namely duty cycle (between 5% and 100%), led to substantially different structural and functional properties of the processed beta TiNb surfaces as analyzed by an array of analytical tools. The TiNb samples nitrided at the Dc Condition of 60% showed a most enhanced performance in terms of improving surface hardness, anti-friction, anti-wear and anti-bacterial properties in comparison with other Conditions. These findings are expected to be highly important and useful when TiNb alloys are considered as materials for hip/knee articular joint implants. [Abstract copyright: Copyright © 2020 Elsevier Ltd. All rights reserved.