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Note: Please see attachment for more clarification XXXXXXXXXXTQME 2: Maintainability Engineering 1. An ultrasonic beam travels through a 4-inch thick aluminum alloy plate and strikes a body of water....

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Note: Please see attachment for more clarification

XXXXXXXXXXTQME 2: Maintainability Engineering

1. An ultrasonic beam travels through a 4-inch thick aluminum alloy plate and strikes a body of water. The following data for aluminum alloy and water are given.

(a) Calculate the acoustic impedances of aluminum alloy and water. Indicate units

(b) Calculate the percent of ultrasonic wave energy reflected

(c) Calculate the percent of ultrasonic wave energy transmitted

2. The rotational speed of a turbine shaft is 3600 RPM

(a) Calculate the rotational speed in Hz.

(b) Give an example of a non-synchronous frequency of shaft speed (Hz)

(c) Give an example of a sub-synchronous frequency of shaft speed (Hz)

(d) Give an example of a harmonic frequency of shaft speed (Hz)

3. The drive gear in a gearbox has 32 teeth. It drives a pinion with 16 teeth. The drive

gear shaft speed is 180 RPM. Calculate the following.

(a) Drive gear shaft speed in Hz

(b) Tooth mesh frequency (Hz)

(c) Rotational speed of the pinion (Hz)

4. The ball pass frequency of the inner race (BPFI) in a ball bearing is given by

The following parameters are given: Bd = 8 mm, Pd = 40 mm, ? = 0°.

(a) Define (in words) ball pass frequency of the inner race (BPFI)

(b) Simplify the expression for BPFO in terms of Nb and fr using the above data

(c) If Nb = 9 and fr = 30 Hz, calculate the BPFI (in Hz) for this bearing.

5. The figure below shows the motor current pattern during the open-to-close stroke of a motor-operated valve. Match the letters B, C, and D in the figure with the statements below.

(a)_____ Valve seating current at the end of the stroke.

(b) _____ Motor inrush current upon starting.

(c) _____ The normal running current

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TQME 2: Maintainability Engineering An ultrasonic beam travels through a 4-inch thick aluminum alloy plate and strikes a body of water. The following data for aluminum alloy and water are given. Calculate the acoustic impedances of aluminum alloy and water. Indicate units Calculate the percent of ultrasonic wave energy reflected Calculate the percent of ultrasonic wave energy transmitted The rotational speed of a turbine shaft is 3600 RPM Calculate the rotational speed in Hz. Give an example of a non-synchronous frequency of shaft speed (Hz) Give an example of a sub-synchronous frequency of shaft speed (Hz) Give an example of a harmonic frequency of shaft speed (Hz) The drive gear in a gearbox has 32 teeth. It drives a pinion with 16 teeth. The drive gear shaft speed is 180 RPM. Calculate the following. Drive gear shaft speed in Hz Tooth mesh frequency (Hz) Rotational speed of the pinion (Hz) The ball pass frequency of the inner race (BPFI) in a ball bearing is given by The following parameters are given: Bd = 8 mm, Pd = 40 mm, ? = 0°. (a) Define (in words) ball pass frequency of the inner race (BPFI) (b) Simplify the expression for BPFO in terms of Nb and fr using the above data (c) If Nb = 9 and fr = 30 Hz, calculate the BPFI (in Hz) for this bearing. The figure below shows the motor current pattern during the open-to-close stroke of a motor-operated valve. Match the letters B, C, and D in the figure with the statements below. XXXXXXXXXXa)_____ Valve seating current at the end of the stroke. XXXXXXXXXXb) _____ Motor inrush current upon starting. XXXXXXXXXXc) _____ The normal running current

Answered Same Day Dec 26, 2021

Solution

Robert answered on Dec 26 2021
113 Votes
TQME 2: Maintainability Engineering
1. An ultrasonic beam travels through a 4-inch thick aluminum alloy plate and strikes a
ody of water. The following data for aluminum alloy and water are given.


(a) Calculate the acoustic impedances of aluminum alloy and water. Indicate units
(b) Calculate the percent of ultrasonic wave energy reflected
(c) Calculate the percent of ultrasonic wave energy transmitted
Solution:
a)
The acoustic impedance (Z) of a material is defined as the product of its density (p)
and acoustic velocity (V).
Z = pV
Z(aluminium)=2.8*0.6 =1.68 g/cm^2. usec
Z(water ) = 1*0.15 = 0.15 g/cm^2. usec
)

Reflected Power =69.9%
c)
transmitted power = 30.1%
2. The rotational speed of a tu
ine shaft is 3600 RPM
(a) Calculate the rotational speed in Hz.
(b) Give an example of a non-synchronous frequency of...
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