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Microplasma Sprayed Hydroxyapatite Coatings

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

There has been enormous growth in the use of medical implants. However, in the case of hip replacement, loosening of metallic prosthesis fixed with polymethylmethylacrylate bone cement has resulted in painstaking revision surgery, which is a major problem for the patient, surgeon, and biomedical technology itself. In fact, global recognition of this problem led to the development of cementless fixation through the novel introduction of a bioactive hydroxyapatite (HAp) coating on biomedical-grade metallic implants. Since then, a wide variety of coating methods have evolved to make the HAp coatings on metallic implants more reliable.

Microplasma Sprayed Hydroxyapatite Coatings discusses plasma spraying and other related HAp coating techniques, focusing on the pros and cons of macroplasma sprayed (MAPS)- and microplasma sprayed (MIPS)-HAp coatings. The book begins by explaining what a biomaterial really is, what the frequently used term biocompatibility stands for, and why it is so important for biomaterials to be biocompatible. It then:

Examines the structural, chemical, macromechanical, micro/nanomechanical, and tribological properties and residual stress of HAp coatingsEvaluates the efficacies under simulated body fluid immersion for MAPS- and MIPS-HAp coatings developed on biomedical implant-grade SS316L substratesOffers a comprehensive survey of state-of-the-art in vivo studies of MIPS-HAp coatings, presenting the results of pioneering research related to bone defect fixationShedding light on the future scope and possibilities of MIPS-HAp coatings, Microplasma Sprayed Hydroxyapatite Coatings provides a valuable reference for students, researchers, and practitioners of biomedical engineering and materials science.

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Detaljer
  • SprogEngelsk
  • Sidetal288
  • Udgivelsesdato26-07-2017
  • ISBN139781138748866
  • Forlag Crc Press
  • FormatPaperback
Størrelse og vægt
  • Vægt453 g
  • coffee cup img
    10 cm
    book img
    15,6 cm
    23,4 cm

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    Stress Map Body Spraying Fuel Plasma spraying Fracture Hydroxyapatite coating Residual Stress Simulated Toughness Fluid MIPs Nanoindentation technique HVOF 15th Post-operative Day Berkovich Nanoindentation APS Coating Atmospheric Plasma Sprayed Coating Coating techniques Fluoridate HAp Coating Substrate Interface Cold Spraying Technique Compressive Residual Stress HAp Coating Micromechanical Properties Hydroxyapatite Coating Tribological Properties HAp Coating Chemical Properties HAp Coating Macromechanical Properties Hydroxyapatite Coating Nanomechanical Properties HAp Coating In Vitro Studies HAp Coating Nanomechanical Properties high-velocity HAp Coatings HAp Coating Structural Properties Hydroxyapatite Coating Chemical Properties Hydroxyapatite Coating Macromechanical Properties Hydroxyapatite Coating Residual Stress Macroplasma Sprayed Hydroxyapatite Coating Macroplasma Sprayed Coating MIPS-HAp Coating In Vivo Studies MAPS-HAp Coating MIPS Coating FTIR Spectrum Microplasma Sprayed Hydroxyapatite Coating In Vivo Studies MIPS HAp Coating HAp Coating HAp Coating Residual Stress HVOF Process Hydroxyapatite Coating In Vitro Studies Hydroxyapatite Coating Micromechanical Properties Hydroxyapatite Coating Structural Properties Plasma Spraying Parameters HAp Coating Tribologicial Properties SBF Solution residual Sliding Distance Tensile Residual Stress Microplasma Sprayed Coating Uncoated Group MAPS Coating Vicker’s Microindentation Microplasma Sprayed Hydroxyapatite Coating SBF Immersion Plasma Spray HAp Coating
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