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Calculadora de Ajuste H7/r6

Visual, interactive ISO 286 tolerance calculator to view min/max limits, clearance, transition and interference on shaft and hole fits such as H7/g6, H7/h6, H7/k6 or H7/p6.

Ajuste ISO 286

Hole

Class

H7

IT1 more accurateIT18 more tolerance

Shaft

Class

r6

IT1 more accurateIT18 more tolerance

Cross-section view of the fit

Tolerances visually exaggerated to make the type of fit clear.

Interference fit
ISO 286 tolerance chart for diameter 50 mmMax hole50.025 mmMin. hole50.000 mmMax axis50.048 mmMin axis50.033 mmNOMINAL50 mm

Actual hole

50.000 a 50.025 mm

Tolerancia: 0.000 a 0.025 mm

Actual shaft

50.033 a 50.048 mm

Tolerancia: 0.033 a 0.049 mm

Holgura/apriete

-0.049 a -0.008 mm

Difference between the allowed hole and the allowed shaft.

Apriete medio

Preset H7/r6

Press fits with good torque transmission and difficult disassembly.

Quick reading

How to interpret it

Hole H7 and shaft r6. If the minimum clearance is negative there can be interference. If both clearances are positive there is always play.

There may be a small percentage of error against the official standard, since it isn't legal to reproduce the full ISO tables verbatim. Always validate with official ISO 286 and the controlled drawing before making critical parts.

H7/r6 fit: limits by diameter (ISO 286)

Apriete medio. Press fits with good torque transmission and difficult disassembly.

Example at Ø25 mm: hole H7 from 0 to +21 µm and shaft r6 from +27 to +40 µm, which gives an interference between 6 and 40 µm.

How it is made: the H7 hole (IT7) by reaming, fine boring or internal grinding; the r6 shaft (IT6) by grinding or fine turning on a machine in good condition. Check both with a plug gauge and a micrometer, not with a caliper.

How it is assembled: with a press or by heating the steel hub: about 247 °C at Ø25 and 191 °C at Ø50 to absorb the maximum interference plus 0.001·D of assembly clearance.

Deviations in µm. Positive clearance: loose fit; negative: interference.
Ø range (mm)Hole H7Shaft r6Min. clearanceMax. clearance
1–30 / +9+11 / +17-17-3
3–60 / +12+15 / +22-22-3
6–100 / +14+19 / +28-28-5
10–180 / +17+23 / +34-33-5
18–300 / +21+27 / +40-40-6
30–500 / +25+33 / +49-48-8
50–800 / +30+42 / +60-60-12
80–1200 / +35+53 / +75-75-18
120–1800 / +40+66 / +91-91-25
180–2500 / +46+81 / +110-110-35
250–3150 / +52+96 / +128-128-44
315–4000 / +57+111 / +146-146-54
400–5000 / +62+127 / +166-166-65

Mathematical formula of the ISO tolerance system

First the IT tolerance is obtained and then it is positioned according to the letter.

Tramo nominal: > 30 a 50 mm

1. Anchura IT

i = 0,45 · ∛D + 0,001 · D

`D` is the mean diameter of the nominal range. The multiplier is then applied: IT6 = 10i, IT7 = 16i, IT8 = 25i, IT9 = 40i.

2. Position of the letter

H7, K11, g6, p6...

The letter places the area with respect to the nominal. Uppercase for hole (`ES/EI`) and lowercase for axis (`es/ei`).

3. Resultado de montaje

holgura = agujero - eje

If the minimum clearance is positive, it is a clearance fit. If the maximum is negative, it is an interference fit. If it crosses zero, it is a transition fit.

Hole

min. = nominal + EImax. = nominal + ES

Shaft

min. = nominal + eimax. = nominal + es

Clearance

min. = min. hole - max. shaftmax. = max. hole - min. shaft

The IT formula is public and indicative; the fundamental deviations per letter are computed by the tool's engine. For critical production, always validate against official ISO 286 and the controlled drawing.

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From the loosest to the tightest. Open the fit you need to see the hole and shaft deviations, the resulting clearance or interference and how to assemble it.

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