TORQUE INFORMATION

TIGHTENING TORQUE INFORMATION FOR BOLTS

Adjustment of Torque for Tightening Method and Friction Coefficient
Two major points have to be accounted for when installing a fastener.

a )  Inaccuracy of torque wrench tightening method can range anywhere from ±17 to ±23%
b )  The friction coefficient changes when using lubrication on the thread.

Inaccuracy of tightening method

A torque wrench has a “scatter” (tolerance) of ±17% to ±23%. We must account for this in order not to over-tighten the fastener.

Example:
A M30-12.9 fastener has a maximum tightening torque of 2,280 Nm, based on a friction coefficient of 0.125 (zinc plated)
Maximum torque: 2,280Nm (= 123%) (or 117%)
Mean torque if scatter is +23% = 2,280 / 1.23 = 1,854 Nm
Minimum torque if scatter is +23% = 1,854 x 0.77 = 1,428 Nm
Torque should be set to 1,854 Nm (mean torque) on the torque wrench
The accuracy of the tightening method needs to be accounted for, in order to not over-tighten the fastener.

Friction coefficient

The surface condition of a fastener may change the torque that can be applied and needs to be accounted for.

Friction coefficients for standard finish fasteners

Surface Condition

Lubrication Condition

Screw

Nut

Oiled

MoS2-Paste

– no treatment – phosphate

– no treatment

0.12-0.18

0.05-0.10

– electroplated appx. 8 μm

– electroplated appx. 5 μm

0.12-0.18

– dacromet-coated 6-8 μm

– dacromet-coated 6-8 μm

0.10-0.14

Example: A M-30-12.9 fastener using MoS2 paste.
A M-30-12.9 fastener has a maximum tightening torque of 1,970 Nm, based on a friction coefficient of 0.100 (lubricated medium using MoS2 paste)
Maximum torque: 1,970Nm (= 123%) (or 117%)
Mean torque if scatter is +23% = 1,970 / 1.23 = 1,602 Nm
Minimum torque if scatter is +23% = 1,602 x 0.77 = 1,234 Nm
Torque should be set to 1,602 Nm (mean torque) on the torque wrench

The accuracy of the tightening method, as well as the change in friction, needs to be accounted for in order not toover tighten the fastener.

A torque value will be influenced by the fastening methods and tools used. The only way to determine an exact torque value is by actual application. The following figures are general guidelines only.

Figures in ft. lbs.

0

Property class 316

Property Class 8.8

10.9

12.9

M3

0.8

0.8

1.1

1.3

M4

1.8

1.8

2.6

3.1

M5

3.6

3.6

5.1

6.2

M6

7

7

10

12

M8

17

17

25

29

M10

33

33

48

58

M12

60

60

85

102

M14

97

97

137

165

M16

150

150

208

250

M18

201

201

287

342

M20

282

282

398

479

M22

390

390

522

664

M24

499

499

750

843

M27

746

746

1051

1256

M30

982

982

1383

1657

M33

1331

1331

1875

2250

M36

1717

1717

2407

2895

M39

2220

2220

3120

3750

M42

2737

2737

3840

4638

M45

3390

3390

4762

5722

M48

4095

4095

5775

6825

M52

5250

5250

7387

9000

M56

6547

6547

9225

11280

M60

8175

8175

11475

13800

M64

9900

9900

13950

17175

M68

12000

12000

16950

20100

M72

14250

14250

20100

24000

M76

16800

16800

23625

28350

M80

19725

19725

27600

33375

M85

24000

24000

33225

40125

M90

28350

28350

38925

47700

M95

33450

33450

46875

56250

M100

39000

39000

54750

66000

Torque- Metric Fasteners

Diameter

Recommended Seating Torque (NM)

Proof Torque min. (NM)

ISO 4762 DIN 912

DIN 7984

ISO 10642 DIN 7991

ISO 7380

ISO 7379

ISO 4014 / 4017 DIN 931 / DIN 933

ISO 4162

ISO 4026 / 4027 / 4029

Socket Cap Screws

Low Head Socket Cap Screws

Flat Head Counter Shank Socket Cap Screws

Buttom Head Socket Cap Screws

Scocket Shoulder Screws

Hexagon Headcap Screws

Hexagon Flange Screws

Socket Set Screws

10.9

12.9

10.9

10.9

12.9

10.9

13

12.9

10.9

12.9

10.9

12.9

45H

M1.6

0.25

0.3

M2

0.5

0.63

M2.5

1.03

1.27

M3

1.83

2.20

1.15

1.15

1.35

1.15

1.4

0.9

M4

4.27

4.83

2.7

2.7

3.1

2.7

3.1

2.5

M5

8.64

10

5.4

5.4

6.1

5.4

6.1

8.64

10

8.64

10

5

M6

14.7

16.8

9.15

9.15

10.5

9.15

11

5.6

14.7

16.8

14.7

16.8

8.5

M6.5

5.6

M8

35.6

41

22

22

26

22

26

9.6

35.6

41

35.6

41

20

M10

70.5

81

44

44

52

44

52

25

70.6

81

70.6

81

40

M12

123

142

77

77

90

77

90

51

123

142

123

142

65

M13

51

M14

195

226

122

122

143

195

226

195

226

65

M16

305

350

190

190

225

190

225

92

305

350

305

350

160

M18

420

485

262

420

485

310

M20

596

685

371

370

440

245

596

685

310

M22

811

930

811

930

M24

1031

1180

1031

1180

M25

485

M27

1508

1230

1508

1730

M30

2048

2380

2048

2380

M33

2787

3262

M36

3580

4190

M39

5420

5420

Torque – Imperial Fasteners

Diameter

Recommended Seating Torque (NM)

Proof Torque min. (in-lb)

ASME B 18.3

ASME B18.2.1

ASME B18.2.1

ASME B18.3

Socket Cap Screws

Low HeadSocket Cap Screws

Flat Head Counter Shank Socket Cap Screws

Buttom Head Socket Cap Screws

Scocket Shoulder Screws

Hexagon Headcap Screws SAE J429 Grade B

Hexagon Flange Screws SAE J429 Grade B

Socket Set Screws

#0

2.26

1.42

1.42

1.1

#1

4.01

2.52

2.52

2.1

#2

6.65

4.18

4.18

2.1

#3

10.1

6.33

6.33

6

#4

14.1

8.88

8.88

8.88

6

#5

20.8

13.1

13.1

13.1

11

#6

26.2

16.5

16.5

16.5

11

#8

48

30.1

30.1

30.1

23

#10

69.5

43.7

43.7

43.7

40

1/4

166

104

104

104

35

134

134

94

5/16"

342

215

215

215

90

277

277

183

3/8"

608

382

382

382

200

491

491

317

7/16"

973

611

611

785

785

502

1/2"

1484

931

931

931

363

1202

1202

750

9/16"

1732

1732

5/8"

2792

1722

1722

1722

922

2386

2386

1460

3/4"

4952

3054

1864

4225

4225

2520

7/8"

7991

4928

6823

5750

1"

11979

7388

3443

10226

8000

1-1/8"

16968

10464

14485

1-1/4"

23944

14766

5637

20442

1-3/8"

31394

19360

26806

1-1/2"

41511

25692

12002

35573

Tighting the bolt with the help of torque wrench

Torque distribution chart

Type of lubrication

Coefficient of friction