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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. List of sensors - Wikipedia

    en.wikipedia.org/wiki/List_of_sensors

    Metal detector; Planar Hall sensor; Radio direction finder; Test light; Voltage detector; ... Ultrasonic thickness gauge; Ultra-wideband radar; Variable reluctance ...

  4. Ultrasonic testing - Wikipedia

    en.wikipedia.org/wiki/Ultrasonic_testing

    ISO 16809: Non-destructive testing -- Ultrasonic thickness measurement (2012) ISO 16831: Non-destructive testing -- Ultrasonic testing -- Characterization and verification of ultrasonic thickness measuring equipment (2012) ISO 17640: Non-destructive testing of welds - Ultrasonic testing - Techniques, testing levels, and assessment (2010)

  5. Laser ultrasonics - Wikipedia

    en.wikipedia.org/wiki/Laser_ultrasonics

    Laser-ultrasonics uses lasers to generate and detect ultrasonic waves. [1] It is a non-contact technique used to measure materials thickness, detect flaws and carry out materials characterization. The basic components of a laser-ultrasonic system are a generation laser, a detection laser and a detector.

  6. Champion Rower, 27, Dies After Free-Diving Accident in the ...

    www.aol.com/lifestyle/champion-rower-27-dies...

    A champion rower has died while free-diving. According to a GoFundMe page, shared last week, 27-year-old Austin Regier died in the Philippines on November 14, 2024. "He was swimming with new ...

  7. Robotic non-destructive testing - Wikipedia

    en.wikipedia.org/wiki/Robotic_Non-Destructive...

    Direct beam EMAT, where the tool induces ultrasonic waves into the metal at a 0° angle (or perpendicular to the metal surface), is the most common inspection method. Direct beam inspections determine metal thickness as well as detect and measure the following defects: Metal loss on the internal surface (e.g., pitting corrosion, general metal loss)

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