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- W3085172828 endingPage "190" @default.
- W3085172828 startingPage "159" @default.
- W3085172828 abstract "The deployment of metallic biomaterials in both temporary and permanent implants has been revolutionizing the biomedical field. During the past five decades, many implant materials developed by various manufacturing techniques have been put into practical use for orthopedic applications. Production methods of these implants vary; one manufacturing method, powder metallurgy (PM), has demonstrated considerable progress in related manufacturing technologies, and remains a developing field. In this context, recent advances in adopting cost-effective PM manufacturing approaches have opened the possibility of contributing to the emerging market for medical devices and surgical implants within the next decade. PM techniques have also been used to manufacture porous structures, such as porous coatings for dental and orthopedic surgical implants that stimulate bone tissue ingrowth within the implant surface, thereby improving their fixation in the surrounding tissues. This chapter focuses on the development of metallic scaffolds and implants using PM techniques. For this reason, PM manufacturing has been explored exclusively for fabricating tissue engineering scaffolds and implants from a wide range of metallic biomaterials such as stainless steels (SS), cobalt-chromium (Co–Cr) alloys, titanium (Ti) and Ti alloys, and magnesium (Mg) alloys. The progress, limitations, challenges, and potential of PM in the manufacturing of metallic scaffolds and implants are also explained. An overview of the research gaps and future research directions is provided." @default.
- W3085172828 created "2020-09-21" @default.
- W3085172828 creator A5005640868 @default.
- W3085172828 creator A5022399770 @default.
- W3085172828 creator A5031117231 @default.
- W3085172828 creator A5039924530 @default.
- W3085172828 date "2020-01-01" @default.
- W3085172828 modified "2023-10-09" @default.
- W3085172828 title "Powder metallurgy in manufacturing of medical devices" @default.
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