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Mechanical Properties of Materials

Mechanical Properties of Materials

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In the oral environment, restorative and prosthetic materials and appliances are exposed to chemical, thermal and mechanical challenges. The mechanical properties of a material define how it responds to the application of a physical force. Recent advances in nanotechnology and 3D printing have rapidly spread, and manufacturers continuously develop new materials and solutions to provide high-quality dental care, with particular attention being paid to long-term follow-up. Restorative dentistry, prosthodontics, oral surgery, implants, periodontology and orthodontics are all involved in this continuing evolution. This Special Issue focuses on all the recent technology that can enhance the mechanical properties of materials used in all of the different branches of dentistry.

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Keywords

  • adhesive restorations
  • anisotropic yielding criterion
  • AZ31 magnesium alloy
  • CAD/CAM
  • composite repair
  • composite resins
  • composites
  • compressive strength
  • Concrete
  • Dental materials
  • different curing temperatures
  • digital dentistry
  • dry environments
  • Finite element method
  • fixed partial denture
  • flexural strength
  • Fracture
  • fracture properties
  • indentation size effect
  • lithium disilicate
  • mandibular advancement device
  • microhybrid composite
  • minimal invasive dentistry
  • nanoindentation
  • obstructive sleep apnea
  • Orthodontics
  • PMMA
  • Polymerization
  • resin bonded bridge
  • sandblasting
  • surface roughness
  • surface treatment
  • Technology, engineering, agriculture
  • Technology: general issues
  • temperature crossover effect
  • temperature rise
  • zirconia

Links

DOI: 10.3390/books978-3-0365-1085-9

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