Metric threads·M16×2
M16×2
Tap drill
14 mm

M16×2 thread — 14 mm tap drill, 13.546 mm minor diameter

Coarse

M16×2 is a coarse thread: 16 mm across with a 2 mm pitch. The bolt’s minor diameter is 13.546 mm, the tap drill 14 mm and the stress area 156.67 mm².

Outside diameter
16 mm
Pitch
2 mm (Coarse)
Pitch diameter
14.701 mm
Minor diameter (bolt)
13.546 mm
Minor diameter (nut)
13.835 mm
Thread height
1.227 mm
Stress area
156.67 mm²
Threads per inch
12.7

The thread is a 60° triangle

ISO defines the thread profile as an equilateral 60° triangle. Its height H is 0.866 × pitch, and every other diameter is that triangle cut back by a fixed fraction of H.

H = 0.866 × 2 = 1.732 mm · 14.701 = 16 − 0.75 × 1.732

The stress area sets the strength

A bolt’s load capacity is worked out from this area, not from the outside diameter. It is the area of a circle whose diameter is the average of the pitch and minor diameters.

Other pitches at this diameter

A tighter pitch cuts shallower, leaving a thicker core. That is why fine threads suit thin walls and places that vibrate.

One size up and down

The 35 coarse threads

Each diameter has one default pitch. When someone just says “M8”, they mean M8×1.25.

How to read this

  • The number after M is the outside diameter in mm; the number after × is the pitch in mm.
  • H = 0.866 × pitch. The pitch diameter is d − 0.75H, the nut’s minor diameter d − 1.25H.
  • Take the tap drill as outside diameter minus pitch, then pick the nearest drill you own.
  • Load capacity comes from the stress area, not from the outside diameter.

Frequently asked questions

Q. What drill do I need to tap M16×2?

14 mm — the 16 mm outside diameter minus the 2 mm pitch. Use the nearest drill you have.

Q. What is the minor diameter of M16×2?

13.546 mm on the bolt and 13.835 mm in the nut, with the pitch diameter between them at 14.701 mm.

Q. Is it a coarse or a fine thread?

Coarse — plain “M16” means exactly this size.

Q. How much load does it take?

Its stress area is 156.67 mm². Multiply that by the bolt’s strength grade to get the load it carries.