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  2. Ultrasonic thickness measurement - Wikipedia

    en.wikipedia.org/wiki/Ultrasonic_Thickness...

    The ability to gauge thickness measurement without requiring access to both sides of the test piece, offers this technology a multitude of possible applications. Paint thickness gauges, ultrasonic coating thickness gauges, digital thickness gauges and many more options are available to test plastics, glass, ceramics, metal and other materials.

  3. Calo tester - Wikipedia

    en.wikipedia.org/wiki/Calo_tester

    The Calo tester, also known as a ball crater or coating thickness tester, is a simple and inexpensive piece of equipment used to measure the thickness of coatings.Coatings with thicknesses typically between 0.1 to 50 micrometres, such as Physical Vapor Deposition (PVD) coatings or Chemical Vapor Deposition (CVD) coatings, are used in many industries to improve the surface properties of tools ...

  4. Thin-film thickness monitor - Wikipedia

    en.wikipedia.org/wiki/Thin-film_thickness_monitor

    Thin-film thickness monitors, deposition rate controllers, and so on, are a family of instruments used in high and ultra-high vacuum systems. They can measure the thickness of a thin film, not only after it has been made, but while it is still being deposited, and some can control either the final thickness of the film, the rate at which it is deposited, or both.

  5. Mechanical plating - Wikipedia

    en.wikipedia.org/wiki/Mechanical_plating

    Mechanical plating, also known as peen plating, mechanical deposition, or impact plating, is a plating process that imparts the coating by cold welding fine metal particles to a workpiece. Mechanical galvanization is the same process, but applies to coatings that are thicker than 0.001 in (0.025 mm). [ 1 ]

  6. Diamond-like carbon - Wikipedia

    en.wikipedia.org/wiki/Diamond-like_carbon

    This same bearing steel was then coated with a 2.0 micron thickness DLC coating. Microhardness testing on the coated steel was then conducted, limiting indentation of the coating to a depth of approximately 0.15 microns, or 7.5 percent of the coating thickness. Measurements were repeated five times on uncoated steel and 12 times on coated steel.

  7. Ultrasonic testing - Wikipedia

    en.wikipedia.org/wiki/Ultrasonic_testing

    The first efforts to use ultrasonic testing to detect flaws in solid material occurred in the 1930s. [1] On May 27, 1940, U.S. researcher Dr. Floyd Firestone of the University of Michigan applies for a U.S. invention patent for the first practical ultrasonic testing method.