Question
Download Solution PDFWhat will be the average pressure in plate clutch when the axial force is 4 kN. The inside radius of the contact surface is 50 mm and the outside radius is 100 mm. Assume uniform wear.
Answer (Detailed Solution Below)
Detailed Solution
Download Solution PDFConcept:
We calculate the average pressure in a plate clutch under uniform wear conditions using the axial force and contact area.
Given:
- Axial force, \( W = 4 \, \text{kN} = 4000 \, \text{N} \)
- Inner radius, \( r_i = 50 \, \text{mm} \)
- Outer radius, \( r_o = 100 \, \text{mm} \)
- Uniform wear condition
Step 1: Calculate Effective Contact Area
For uniform wear, the effective area is the lateral surface area of a truncated cone:
\( A = 2\pi r_i (r_o - r_i) \)
\( A = 2\pi \times 50 \times (100 - 50) \)
\( A = 2\pi \times 50 \times 50 = 5000\pi \, \text{mm}^2 \)
\( A \approx 15708 \, \text{mm}^2 \)
Step 2: Compute Average Pressure
\( P_{avg} = \frac{W}{A} \)
\( P_{avg} = \frac{4000}{15708} \)
\( P_{avg} \approx 0.2546 \, \text{N/mm}^2 \)
Correction:
For uniform wear, the average pressure is actually calculated over the entire annular area:
\( A = \pi (r_o^2 - r_i^2) \)
\( A = \pi (100^2 - 50^2) = \pi (10000 - 2500) = 7500\pi \, \text{mm}^2 \)
\( A \approx 23562 \, \text{mm}^2 \)
\( P_{avg} = \frac{4000}{23562} \approx 0.17 \, \text{N/mm}^2 \)
Last updated on May 28, 2025
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