MachinistCharts

M14 bolt torque

Tighten an M14 × 2 class 8.8 bolt to 141 N·m (104 ft-lb) with dry threads, or 105 N·m when lubricated. Class 10.9 takes 201 N·m and class 12.9 takes 235 N·m.

Calculated from ISO 898-1 and ISO 724. Updated .

Class 8.8, dry threads
141N·m
104 ft-lb  or  1,244 in-lb
Class
Threads
Unit
Torque dialBands mark each grade at dry torque

M14 torque by property class

Tap a row to show it on the dial. The unit switch above changes every value on this page.

M14 bolt torque by property class, dry and lubricated
Property classDry torqueLubricatedClamp loadProof loadProof stress

Clamp load is 75 % of proof load. Dry: K = 0.20. Lubricated: K = 0.15.

M14 at a glance

Wrench, hex key, drill and clearance sizes for the same bolt, so you can set up the job from one page.

Ø14S 21P 2
M14 × 2 hex bolt, ISO 4017Proportions to scale
Thread
M14 × 2 coarse
Stress area As
115.4 mm²
Wrench / socket
21 mm ISO / 22 mm DIN
Hex key, socket cap
12 mm ISO 4762
Tap drill
12 mm
12.5 mm for M14 × 1.5
Proof load, 8.8
67.0 kN
Clearance hole, ISO 273
15 close   15.5 normal   16.5 loose mm

Before you tighten

Lubricant changes the number

Oil, moly paste or anti-seize lowers the nut factor K, so the same torque produces far more clamp load. Use the lubricated value whenever the threads are oiled, or the bolt can yield.

Tighten in a star pattern

On flanges and covers, bring every bolt to about 30 %, then 70 %, then full torque, crossing the pattern each pass. Finish with one round at full torque in sequence.

Give the thread enough grip

Engage at least one diameter of thread in steel, about 1.5 diameters in cast iron and 2 diameters in aluminium, or the internal thread strips before the bolt reaches its clamp load.

These are general starting values for steel bolts in steel nuts or tapped steel. When the equipment, gasket or fastener maker publishes a torque, use theirs. Never reuse torque-to-yield bolts.

How the number is worked out

The M14 class 8.8 figure, step by step. Every size on this site is calculated the same way.

T = K × F × d
K
0.20, nut factor for dry plain steel
F
50.2 kN, 75 % of the 67.0 kN proof load
d
14 mm, nominal diameter
T = 0.20 × 50,216 N × 0.01 m = 140.6 N·m

Where the inputs come from

Proof stress is taken from ISO 898-1: 580 MPa for class 8.8 at this diameter, 830 MPa for 10.9 and 970 MPa for 12.9. Multiply by the tensile stress area of 115.4 mm² to get the proof load.

The stress area comes from As = π/4 × (d − 0.9382 p)². Target clamp load is 75 % of proof load, the usual figure for joints that will be taken apart again.

Lubricated values use K = 0.15. For other coatings or preload targets, use the torque calculator.

Other metric sizes

Common questions

What is the torque for an M14 8.8 bolt?

About 141 N·m (104 ft-lb) with dry threads and about 105 N·m lubricated, based on 75 % of proof load.

What is the torque for an M14 10.9 bolt?

About 201 N·m (148 ft-lb) dry and 151 N·m lubricated.

What is the torque for an M14 12.9 bolt?

About 235 N·m (173 ft-lb) dry and 176 N·m lubricated.

What size wrench fits an M14 bolt?

21 mm for ISO hex bolts and 22 mm for older DIN hex bolts. An M14 socket head cap screw takes a 12 mm hex key.

What drill size do I need to tap M14?

Use a 12 mm drill for M14 × 2 coarse thread.

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