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Important formulas

Cutting speed and rotational speed

v = (D・π・n) : (π)

n = (v・1000) : (D・π)

n = speed (rpm)
v = cutting speed (m/min)
D = nominal diameter (mm)

Calculation of the core hole Ø

d4 = D - P*

D = nominal diameter (mm)
P = pitch

* not valid for TR, RD or conical threads

Oversize on the tap for a given coating thickness

h = 2・(a : sin α)

a = layer thickness
α = 1/2 flank angle

sin 30° = 0.5
sin 27.5° = 0.461
sin 15° = 0.259

Calculation of chip thickness

ae = (P2・0.5) : (z・l4)

P = Pitch
z = Number of grooves
l4 = Gate length

Calculation of forces during thread cutting

MD = (kc・h2・d1) : (8000) Nm

P = (MD・n) : (9500) kW

Pm = (P) : (ηM) kW

kc = Specific cutting force N/mm² according to table
h = Thread pitch
d1 = Nominal Ø (m)
n = Speed (rpm)
Pm = Required machine drive power
ηM = Machine efficiency

Conversion inch to mm

1 inch = 25.4 mm

> for example, 28 whole per inch correspond = approx. 0.90 mm

MaterialRm/UTS
(N/mm2)
Kc-Valor(N/mm2)
Unalloyed structural steel-7002300
Free cutting steel-7002300
Structural steel500-9502500
Quenched and tempered steel, medium strength500-9502600
Nitriding beam, quenched and tempered950-14003600
Tool steel950-14003600
Stainless and acid resistant steel austenitic500-9503200
Aluminum alloys, long-chipping-550800
Copper alloys, long-chipping300-7001100
Gray cast iron100-400 
(120-260 HB)
1250
Alloy gray cast iron150-250 
(160-230 HB)
1600
Malleable cast iron350-700 
(150-280 HB)
1100
Aluminum alloys, short-chipping-400680
Copper alloys, short-chipping-500720