9.1 A driver gear on the shaft of an electrical motor has 30 teeth and meshes with a gear on a countershaft which has 80 teeth - NSC Mechanical Technology Welding and Metalwork - Question 9 - 2016 - Paper 1
Question 9
9.1 A driver gear on the shaft of an electrical motor has 30 teeth and meshes with a gear on a countershaft which has 80 teeth. There is a driver gear with 40 teeth ... show full transcript
Worked Solution & Example Answer:9.1 A driver gear on the shaft of an electrical motor has 30 teeth and meshes with a gear on a countershaft which has 80 teeth - NSC Mechanical Technology Welding and Metalwork - Question 9 - 2016 - Paper 1
Step 1
9.1.1 The rotation frequency of the electrical motor
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Answer
To find the rotational frequency of the electric motor, use the formula:
Na=Td×NcTa×Nd
Where:
Ta = Number of teeth on motor gear = 30
Td = Number of teeth on driven gear = 80
Nc = Number of teeth on countershaft gear = 40
Nd = Final driven gear teeth = 63
Now calculating:
Na=80×4030×63=1200 r/min
The rotation frequency of the electrical motor is 8.4 r/s.
Step 2
9.1.2 The speed ratio of the gear train
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Answer
The speed ratio can be calculated using the formula:
Speed ratio=Driven teethDriver teeth
For the final driven gear:
Speed ratio=3080=2.67extor4.2:1
Step 3
9.2.1 The rotational frequency of the pulley on the washing machine
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Answer
Using the relationship between the diameters and rotational speeds:
N1×D1=N2×D2
Where:
D1 = Diameter of driven pulley = 600mm
D2 = Diameter of driving pulley = 800mm
Rearranging:
N2=D2N1×D1=8007.2×600=5.4 r/s
Step 4
9.2.2 The power that can be transmitted
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Answer
Power can be calculated using the formula:
P=(T1−T2)×F
Where:
T1=300N
T2=2.5
Thus:
P=(300−120)×5.4=2442.90extWor2.44kW
Step 5
9.3 How can the volume of a certain mass of gas be changed?
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Answer
The volume of a given mass of gas can be changed by altering its pressure, its temperature, or both. Increasing the temperature will increase the volume, while increasing the pressure will decrease the volume.
Step 6
9.4 Define Boyle's law with reference to gases.
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Answer
Boyle's law states that the volume of a given mass of gas is inversely proportional to the pressure exerted on it, provided the temperature remains constant. Mathematically, this can be expressed as:
PV=k
where P is the pressure, V is the volume, and k is a constant.
Step 7
9.5.1 The fluid pressure in the hydraulic system when in equilibrium
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Answer
To find the fluid pressure:
PA=AF
Where:
Load, F=320N
Area, A=4π(D2)
Piston Area calculation gives:
AA=1.26×10−380×D2/4
Thus fluid pressure is:
PA=AAFA=63661.98extPaor63.66extkPa
Step 8
9.5.2 The diameter of piston B.
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