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  2. I Tested The Best Curling Irons Recommended By ... - AOL

    www.aol.com/tested-best-curling-irons...

    ghd Soft Curl 1 1/4-Inch Curling Iron. Though a great tool for every hair type, the ghd soft curl was designed to style even the toughest to manage hair. Despite the large barrel and high quality ...

  3. Hip replacement - Wikipedia

    en.wikipedia.org/wiki/Hip_replacement

    Hip replacement is one of the most common orthopaedic operations, though patient satisfaction varies widely. Approximately 58% of total hip replacements are estimated to last 25 years. The average cost of a total hip replacement in 2012 was $40,364 in the United States, and about $7,700 to $12,000 in most European countries.

  4. Hair iron - Wikipedia

    en.wikipedia.org/wiki/Hair_iron

    Hair iron. A hair iron or hair tong is a tool used to change the arrangement of the hair using heat. There are three general kinds: curling irons, used to make the hair curly, straightening irons, commonly called straighteners or flat irons, used to straighten the hair, and crimping irons, used to create crimps of the desired size in the hair.

  5. Bioceramic - Wikipedia

    en.wikipedia.org/wiki/Bioceramic

    A titanium hip prosthesis, with a ceramic head and polyethylene acetabular cup. Ceramics are now commonly used in the medical fields as dental and bone implants. Surgical cermets are used regularly. Joint replacements are commonly coated with bioceramic materials to reduce wear and inflammatory response.

  6. Joint replacement - Wikipedia

    en.wikipedia.org/wiki/Joint_replacement

    Some ceramic materials commonly used in joint replacement are alumina (Al 2 O 3), zirconia (ZrO 2), silica (SiO 2), hydroxyapatite (Ca 10 (PO 4) 6 (OH) 2), titanium nitride (TiN), silicon nitride (Si 3 N 4). A combination of titanium and titanium carbide is a very hard ceramic material often used in components of arthroplasties due to the ...

  7. Titanium biocompatibility - Wikipedia

    en.wikipedia.org/wiki/Titanium_biocompatibility

    Biocompatibility. Titanium is considered the most biocompatible metal due to its resistance to corrosion from bodily fluids, bio-inertness, capacity for osseointegration, and high fatigue limit. Titanium's ability to withstand the harsh bodily environment is a result of the protective oxide film that forms naturally in the presence of oxygen.

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