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Section 7.6(a)

Fits & Clearances

Drill sizes and hole preparation; clearance, transition and interference fits; schedules of fits and clearances; limits of bow, twist and wear; go/no-go gauging.

Simulation

Fits, clearances & tolerances

Fits, Clearances & TolerancesFull screen ↗
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Notes

Fits & clearances, summary notes

Main ideas
  • A fit is the dimensional relationship between a shaft and a hole, and there are three classes: clearance, transition and interference.
  • A CLEARANCE fit leaves the shaft smaller than the hole, so the parts assemble freely and can rotate or slide, a plain bearing.
  • An INTERFERENCE (press) fit makes the shaft larger than the hole, so the parts are forced together and held by friction, bushes and bearing races.
  • A TRANSITION fit falls between the two, giving either slight clearance or slight interference within tolerance, where accurate location matters more than free movement.
  • Clearance = hole size − shaft size. A positive result is a clearance fit, a negative result an interference fit.
  • Fits are specified on a hole basis (hole size fixed, shaft varied) or a shaft basis. The hole basis is the more common, because holes are harder to vary than shafts.
  • Measuring: micrometers and bore gauges for absolute sizes, feeler gauges for running clearances, dial gauges for end-float, backlash and run-out, and go/no-go gauges for a quick pass/fail. Compare the result against the schedule of fits and clearances in the maintenance manual.
  • Components must be clean and at a stable temperature when measured, because thermal expansion changes the reading, and the instrument itself must be in calibration.
  • ⚠ Exam trap: an interference fit has the SHAFT LARGER than the hole. Reversing that is the standard distractor.
Key formulas
Clearance
clearance = hole size − shaft size
Sign rule
positive → clearance fit · negative → interference fit
Interference fitting
heat the hole or chill the shaft to assemble
Solved examples
  1. A hole measures 25.02 mm and its shaft 25.05 mm. Identify the fit.

    Clearance = 25.02 − 25.05 = −0.03 mm. The negative result means the shaft is larger than the hole, so this is an interference (press) fit.

  2. Why is a bearing housing sometimes heated before a race is fitted?

    Heating expands the housing bore, temporarily turning an interference fit into a clearance so the race can be positioned without force. On cooling the bore contracts onto the race and the interference is restored, giving the grip the design relies on.

Mind map

Fits & clearances concept map

Fits & Clearances

Quiz

Fits & clearances quiz

Fits & Clearances, quiz

Ref 7.6(a)10 of 16Pass 75%
  1. 1. A hole measures 25.021 mm and its shaft 24.980 mm. The clearance is:

    0.041 mm
    0.021 mm
    0.980 mm
  2. 2. A torque wrench of 300 mm is fitted with the 100 mm extension shown, in line with the handle. To deliver 30 N·m at the fastener the wrench must be set to:

    L = 300 mmE = 100 mmfastener
    22.5 N·m
    40 N·m
    30 N·m
  3. 3. A shaft larger than its hole produces a:

    Interference fit
    Clearance fit
    Transition fit
  4. 4. Clearance is calculated as:

    Hole size − shaft size
    Shaft size − hole size
    Hole size + shaft size
  5. 5. A clearance fit is used where:

    Parts must rotate or slide freely
    A permanent assembly is required
    Accurate location matters most
  6. 6. A transition fit gives:

    Either slight clearance or slight interference
    Always clearance
    Always interference
  7. 7. Hole 25.02 mm, shaft 25.05 mm. The fit is:

    Interference
    Clearance
    Transition
  8. 8. A bearing housing is heated before fitting a race in order to:

    Expand the bore so the race can be positioned
    Soften the housing material
    Burn off the old lubricant
  9. 9. Running clearances are most directly measured with:

    Feeler gauges
    A micrometer
    A tensiometer
  10. 10. End-float and backlash are measured with a:

    Dial gauge
    Vernier caliper
    Steel rule