Surface modification techniques of magnesium-based alloys for implant applications

被引:12
|
作者
Mahto, Vinod Kumar [1 ]
Singh, Arvind Kumar [1 ]
Malik, Anup [1 ]
机构
[1] Malaviya Natl Inst Technol Jaipur, Dept Mech Engn, Jaipur 302017, Rajasthan, India
关键词
Biomaterials; Magnesium alloys; Implant applications; Surface modification; Conversion and non-conversion coatings; IN-VITRO CORROSION; MG-CA ALLOYS; MECHANICAL-PROPERTIES; ELECTROPHORETIC DEPOSITION; POTENTIODYNAMIC POLARIZATION; HYDROTHERMAL TREATMENT; DEGRADATION BEHAVIOR; CONVERSION COATINGS; RESISTANCE; AZ31;
D O I
10.1007/s11998-022-00716-9
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Biodegradable materials like magnesium-based alloys are widely employed for making implants. Mg-based alloys show good biocompatibility, biodegradability, and mechanical properties similar to bone material unlike other commonly used implant materials, i.e., stainless steel, titanium, and Co-Cr alloy, which have negligible degradation rates and require revision surgery for the removal of the implant. Magnesium alloy-based implant has high degradation rates and avoids the need for a second surgery. But high degradation rates and poor mechanical properties in magnesium alloys also pose a challenge to their use as implant material. In the absence of controlled degradation, they can degrade completely before serving their intended purpose in the human body. Several surface modification techniques are used to control the degradation rates. Surface coating is one of the methods of surface modification. This paper discusses various types of surface coating techniques for magnesium-based alloys. This paper also discusses the future scope of surface technology of magnesium-based implant materials.
引用
收藏
页码:433 / 455
页数:23
相关论文
共 50 条
  • [1] Surface modification techniques of magnesium-based alloys for implant applications
    Vinod Kumar Mahto
    Arvind Kumar Singh
    Anup Malik
    Journal of Coatings Technology and Research, 2023, 20 : 433 - 455
  • [2] Systems, Properties, Surface Modification and Applications of Biodegradable Magnesium-Based Alloys: A Review
    Chen, Junxiu
    Xu, Yu
    Kolawole, Sharafadeen Kunle
    Wang, Jianhua
    Su, Xuping
    Tan, Lili
    Yang, Ke
    MATERIALS, 2022, 15 (14)
  • [3] Synthesis of Magnesium-Based Alloys by Mechanical Alloying for Implant Applications
    Gonzaga, Sergio
    Molina, Arturo
    Guardian, Rene
    Martinez, Horacio
    Velez, Edna Vazquez
    Tapia, Jesus Santa-Olalla
    COATINGS, 2023, 13 (02)
  • [4] Investigation of magnesium-based alloys for biomedical applications
    Vojtech, D.
    Cizova, H.
    Volenec, K.
    KOVOVE MATERIALY-METALLIC MATERIALS, 2006, 44 (04): : 211 - 223
  • [5] Research of Magnesium-based Alloys for Medical Applications
    Cheng Jingtao
    PROCEEDINGS OF THE 2014 INTERNATIONAL CONFERENCE ON EDUCATION TECHNOLOGY AND INFORMATION SYSTEM (ICETIS 2014), 2014, 115 : 631 - 635
  • [6] A review on properties of magnesium-based alloys for biomedical applications
    Rout, Pradipta Kumar
    Roy, Sudesna
    Ganguly, Sourav
    Rathore, Dinesh Kumar
    Biomedical Physics and Engineering Express, 2022, 8 (04):
  • [7] PLASMA SURFACE MODIFICATION OF MAGNESIUM-BASED AND RELATED MATERIALS
    Chu, Paul K.
    MAGNESIUM TECHNOLOGY 2016, 2016, : 329 - 330
  • [8] Corrosion Behavior in Magnesium-Based Alloys for Biomedical Applications
    Xu, Liming
    Liu, Xingwang
    Sun, Kang
    Fu, Rao
    Wang, Gang
    MATERIALS, 2022, 15 (07)
  • [9] A review on properties of magnesium-based alloys for biomedical applications
    Rout, Pradipta Kumar
    Roy, Sudesna
    Ganguly, Sourav
    Rathore, Dinesh Kumar
    BIOMEDICAL PHYSICS & ENGINEERING EXPRESS, 2022, 8 (04):
  • [10] Superplasticity of magnesium-based alloys
    Draugelates, U
    Schram, A
    Kedenburg, CC
    MAGNESIUM TECHNOLOGY 2000, 2000, : 341 - 344