Drive Shafts
 

DANA Industrial Drive Shafts Catalogue

Data sheets
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Series 390 max. bearing life
Design

0.01 with length compensation, tubular design
0.02 with large length compensation, tubular design
0.03 without length compensation, tubular design
9.01 with length compensation, short design
9.02 with length compensation, short design
9.03 with length compensation, short design
9.04 without length compensation, double flange shaft design

0.01

 
  Standard flange connection   Dowel pin connection according to DIN 15451
   
  8-hole flange 10-hole flange   8-hole flange 10-hole flange

0.02


0.03


9.01
9.02
9.03



9.04


Series 390 max. bearing life

Shaft size

390.60

390.65

390.70

390.75

390.80

TCS

kNm

60

90

130

190

255

TK

kNm

47

70

102

145

195

TDW

kNm

23

36

53

75

102

LC

-

14,8

70,2

238

618

1563

Deflection angle

ß °

15

15

15

15

15

Flange-ø

A

mm

285

315

350

390

435

Rotation-ø

K

mm

240

265

300

330

370

 

B 1)

mm

245

280

310

345

385

BS 1)

mm

240

270

300

340

378

C 2)

mm

175

175

220

250

280

F 3)

mm

6

6

7

7

9

G

mm

20

22

25

28

32

H 4)

mm

20,1

22,1

22,1

24,1

27,1

HS 4.1)

mm

28

30

32

32

35

I 5)

-

8

8

10

10

10

IS 5.1)

-

4

4

4

4

4

M

mm

135

150

170

190

210

S

mm

167,7 x 9,8

218,2 x 8,7

219 x 13,3

273 x 11,6

273 x 19

W 7)

-

115 x 2,5

150 x 3

150 x 3

185 x 5

185 x 5

TCS
TK


TDW
Lc

*
Functional limit torque *
Catalogue torque *
(Friction tight flange without dowel pins have a lower
transmittable torque)
Fatigue torque *
Bearing capacity factor *

Explanations see Selection of cardan shafts
ß = max. deflection angle per joint 1) Tolerance +- 0,1 mm
2) Spigot fit H7
3) Effective spigot depth
4) Tolerance + 0,2 mm
4.1) Fit H12
5) Number of flange holes
(Standard flange connection)
5.1) Number of flange holes
(Dowel pin connection)
7) Involute spline DIN 5480


Length dimensions * weights

Design

Shaft size

390.60

390.65

390.70

390.75

390.80

0.01

Lz min

mm

870

980

1070

1210

1280

La

mm

100

135

135

170

170

G

kg

133

216

275

397

476

GR

kg

38,2

45,0

67,5

74,8

119

Jm

kgm²

1,04

1,61

2,51

4,20

8,20

JmR

kgm²

0,239

0,494

0,716

1,28

1,72

C

Nm/rad.

1,0 x 10

1,65 x 10

2,43 x 10

3,3 x 10

4,7 x 10

CR

Nm/rad.

2,43 x 10

5,04 x 10

7,3 x 10

1,3 x 10

1,75 x 10

0.02*

Lz min

mm

990

1080

1170

1295

1365

La min

mm

200

220

220

250

250

G

kg

178

280

337

508

586

GR

kg

38,2

45,0

67,5

74,8

119

0.03

Lf min

mm

640

710

800

890

960

G

kg

109

206

218

303

383

GR

kg

38,2

45,0

67,5

74,8

119

9.01

Lz

mm

845

599

1045

1175

1245

La

mm

100

135

135

170

170

G

kg

131

204

263

392

472

9.02

Lz

mm

810

890

980

1100

1170

La

mm

70

75

75

95

95

G

kg

129

195

254

373

453

9.03

Lz

mm

750

835

925

1030

1100

La

mm

65

75

75

85

85

G

kg

129

198

259

376

456

9.04

Lf

mm

540

600

680

760

840

G

kg

108

146

209

284

379

Lz min
La
Lf min
Lz + La
G
GR
Jm
JmR
C
CR
shortest possible compressed length
Length compensation
shortest fixed length
max. operating length
Weight of shaft
Weight per 1 m tube
Moment of inertia
Moment of inertia per 1 m tube
Torsional stiffness or shaft without tube
Torsional stiffness per 1 m tube
* Larger length compensation on request

Flange bolt connections are also supplied on request.
For summary see Flange boltings.

Further designs on request
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