Chris Wyatt
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NDT Acoustic Emission Testing (AE) Level I Review

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Chris Wyatt
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NDT Acoustic Emission Testing (AE) Level I

Questão 1 de 14

1

A qualitative description of the sustained signal level produced by rapidly occurring acoustic emission events is the accepted term for:

Selecione uma das seguintes:

  • burst emission.

  • acoustic emission signature.

  • acoustic emission signal.

  • continuous emission.

Explicação

Questão 2 de 14

1

Attenuation of a wave is best defined by which statement?

Selecione uma das seguintes:

  • A decrease in frequency with distance traveled.

  • A decrease in amplitude with distance traveled.

  • A decrease in wave speed with distance traveled.

  • A change in direction as a function of time.

Explicação

Questão 3 de 14

1

The number of times the acoustic emission signal exceeds a preset threshold during any selected portion of a test is called the acoustic emission ______________.

Selecione uma das seguintes:

  • response

  • count

  • count rate

  • energy

Explicação

Questão 4 de 14

1

The most common frequency range of acoustic emission testing is:

Selecione uma das seguintes:

  • 10-15 kHz.

  • 100-300 kHz.

  • 500-750 kHz.

  • 1-5 MHz.

Explicação

Questão 5 de 14

1

Discontinuities that are not readily detectable by acoustic emission testing are:

Selecione uma das seguintes:

  • leaks.

  • plastic deformation.

  • growing cracks.

  • rounded inclusions.

Explicação

Questão 6 de 14

1

The total energy loss of a propagating wave is called:

Selecione uma das seguintes:

  • scatter.

  • dispersion.

  • diffraction.

  • attenuation.

Explicação

Questão 7 de 14

1

Hold periods at high loads during fiberglass-reinforced pressure (FRP) vessel examinations using ASME Article 11 are necessary to:

Selecione uma das seguintes:

  • calculate the Felicity Ratio.

  • check for leaks.

  • monitor continued damage.

  • measure the Kaiser Ratio.

Explicação

Questão 8 de 14

1

In acoustic emission testing per ASME Section V, Article 11, sensor spacing on fiberglass-reinforced pressure (FRP) vessels is governed by:

Selecione uma das seguintes:

  • attenuation.

  • the test article temperature.

  • sensor diameter.

  • the type of couplant.

Explicação

Questão 9 de 14

1

How can an examiner be assured that proper contact has been made between the sensor and the vessel?

Selecione uma das seguintes:

  • Apply extra couplant around the sensor.

  • Use heavy-duty fasteners on sensors and cables.

  • Measure the peak amplitude response from a simulated acoustic emission source.

  • Use acoustic waveguides.

Explicação

Questão 10 de 14

1

The source of the energy of the acoustic emission wave during crack growth is the:

Selecione uma das seguintes:

  • acoustic emission sensor.

  • surface energy of the new crack.

  • elastic stress field in the structure.

  • power supply from the mainframe to the preamplifier.

Explicação

Questão 11 de 14

1

Which of the following can be a significant source of background noise?

Selecione uma das seguintes:

  • In-rushing fluid.

  • Wind.

  • Radio transmissions.

  • All of the above.

Explicação

Questão 12 de 14

1

The elastic energy that is released by materials when they undergo deformation is called:

Selecione uma das seguintes:

  • transformation.

  • acoustic emission.

  • brittle fracture.

  • isotrophy.

Explicação

Questão 13 de 14

1

During loading, a metallic structure emits throughout the test period. When the load is reduced and then reapplied, no emissions are noted until the previous stress level was exceeded. This is an example of:

Selecione uma das seguintes:

  • the Dunegan Corollary.

  • the Kaiser Effect

  • the Felicity Ratio

  • a Hsu-Nielsen source

Explicação

Questão 14 de 14

1

The founder of modern acoustic emission technology was:

Selecione uma das seguintes:

  • Conrad Earl Krieder.

  • Professor Firestone.

  • James C. Bolling

  • Josef Kaiser

Explicação