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10.1 Draw a neat sketch of a metric V-screw thread and indicate the THREE diameters of the screw thread - NSC Mechanical Technology Fitting and Machining - Question 10 - 2019 - Paper 1

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10.1 Draw a neat sketch of a metric V-screw thread and indicate the THREE diameters of the screw thread. 10.2 Explain what is meant by the lead of a screw thread. ... show full transcript

Worked Solution & Example Answer:10.1 Draw a neat sketch of a metric V-screw thread and indicate the THREE diameters of the screw thread - NSC Mechanical Technology Fitting and Machining - Question 10 - 2019 - Paper 1

Step 1

Draw a neat sketch of a metric V-screw thread and indicate the THREE diameters of the screw thread.

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Answer

  1. Start by sketching a profile of a metric V-screw thread.
  2. Indicate the three main diameters:
    • Pitch diameter (A): The diameter where the width of the thread and the groove are equal.
    • Minor diameter (B): The smallest diameter of the thread, typically at the root.
    • Major diameter (C): The largest diameter of the screw thread, measured at the crest.

Step 2

Explain what is meant by the lead of a screw thread.

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Answer

The lead of a screw thread is defined as the distance a thread will advance axially in one complete revolution. It is calculated as the product of the pitch and the number of starts. For a single-start thread, the lead is the same as the pitch, while for multi-start threads, it is the pitch multiplied by the number of starts.

Step 3

The lead of the thread.

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Answer

To calculate the lead:

Lead=Pitch×Number of Starts\text{Lead} = \text{Pitch} \times \text{Number of Starts}

For this thread:

  • Pitch = 4 mm
  • Number of starts = 3

Lead=4 mm×3=12 mm\text{Lead} = 4 \text{ mm} \times 3 = 12 \text{ mm}

Step 4

The mean circumference of the thread.

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Answer

The mean circumference can be calculated using the formula:

Mean circumference=π×OD\text{Mean circumference} = \pi \times \text{OD}

where:

  • OD = Crest diameter - 4 × Pitch
  • OD = 68 mm - 4 mm = 64 mm

Thus:

Mean circumference=π×64 mm201.06 mm\text{Mean circumference} = \pi \times 64 \text{ mm} \approx 201.06 \text{ mm}

Step 5

The helix angle of the thread.

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Answer

The helix angle (θ\theta) can be calculated using:

tan(θ)=LeadMean circumference\tan(\theta) = \frac{\text{Lead}}{\text{Mean circumference}}

Using the values calculated:

  • Lead = 12 mm
  • Mean circumference = 201.06 mm

Thus:

θ=tan1(12207.35)3.31°\theta = \tan^{-1}\left(\frac{12}{207.35}\right)\approx 3.31°

Step 6

The leading tool angle.

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Answer

The leading tool angle (α\alpha) is calculated as:

α=90°(Helix angle+Clearance angle)\alpha = 90° - (\text{Helix angle} + \text{Clearance angle})

Substituting values:

  • Helix angle = 3.31°
  • Clearance angle = 3°

Thus:

α=90°(3.31°+3°)=83.69°\alpha = 90° - (3.31° + 3°) = 83.69°

Step 7

The following tool angle.

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Answer

The following tool angle (β\beta) is calculated using:

β=90°(Helix angleClearance angle)\beta = 90° - (\text{Helix angle} - \text{Clearance angle})

Thus:

β=90°(3.31°3°)=90.31°\beta = 90° - (3.31° - 3°) = 90.31°

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