Metallic Foam Bone: Processing, Modification and by Cuie Wen

By Cuie Wen

Metallic Foam Bone: Processing, amendment and Characterization and Properties examines using porous metals as novel bone substitute fabrics. With a powerful concentrate on fabrics technology and scientific functions, the booklet additionally examines the amendment of metals to make sure their biocompatibility and efficacy in vivo.

Initial chapters talk about processing and construction equipment of metals for tissue engineering and biomedical purposes which are via themes on functional functions in orthopedics and dentistry. eventually, the booklet addresses the outside technology of metal foam and the way it may be adapted for clinical applications.

This e-book is a invaluable source for fabrics scientists, biomedical engineers, and clinicians with an curiosity in cutting edge biomaterials for orthopedic and bone restoration.

  • Introduces biomaterials researchers to a promising, swiftly constructing expertise for exchanging challenging tissue
  • Increases familiarity with various applied sciences, allowing fabrics scientists and engineers to enhance the fabric homes of porous metals
  • Explores the medical functions of steel foams in orthopedics and dentistry

Show description

By Cuie Wen

Metallic Foam Bone: Processing, amendment and Characterization and Properties examines using porous metals as novel bone substitute fabrics. With a powerful concentrate on fabrics technology and scientific functions, the booklet additionally examines the amendment of metals to make sure their biocompatibility and efficacy in vivo.

Initial chapters talk about processing and construction equipment of metals for tissue engineering and biomedical purposes which are via themes on functional functions in orthopedics and dentistry. eventually, the booklet addresses the outside technology of metal foam and the way it may be adapted for clinical applications.

This e-book is a invaluable source for fabrics scientists, biomedical engineers, and clinicians with an curiosity in cutting edge biomaterials for orthopedic and bone restoration.

  • Introduces biomaterials researchers to a promising, swiftly constructing expertise for exchanging challenging tissue
  • Increases familiarity with various applied sciences, allowing fabrics scientists and engineers to enhance the fabric homes of porous metals
  • Explores the medical functions of steel foams in orthopedics and dentistry

Show description

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Extra info for Metallic Foam Bone: Processing, Modification and Characterization and Properties

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References [1] Hutmacher DW. Scaffold design and fabrication technologies for engineering tissuesd state of the art and future perspectives. J Biomater Sci Polym Ed 2001;12(1):107e24. [2] Sachlos E, Czernuszka J. Making tissue engineering scaffolds work. Review: the application of solid freeform fabrication technology to the production of tissue engineering scaffolds. Eur Cell Mater 2003;5(29):39e40. [3] Truscott M, et al. Using RP to promote collaborative design of customised medical implants.

Mater Des 2014;54:727e33. [22] Olakanmi E, Cochrane R, Dalgarno K. A review on selective laser sintering/melting (SLS/SLM) of aluminium alloy powders: processing, microstructure, and properties. Prog Mater Sci 2015;74:401e77. [23] Morgan R, et al. High density net shape components by direct laser re-melting of singlephase powders. J Mater Sci 2002;37(15):3093e100. [24] Hollister SJ. Hierarchical bioactive materials for tissue reconstruction: integrated design and manufacturing challenges. Jom 2011;63(4):56e65.

4 Melt vacuum solidification foaming: vacuum foaming technique In 2005, Renger and Kaufmann [67] introduced the vacuum foaming technique (VFT) for the fabrication of porous Mg as a cost-efficient foaming process, based on the reduced pressure test. The principle for this process is that gas inclusions in the molten Mg expand when the surrounding pressure is reduced sufficiency. Therefore they used thin-walled, high-pressure die casting Mg scraps as the precursor, since these are a good source of oxides stemming from the high-turbulence casting process.

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