DIN 808
Kruiskoppelingen, Verbindingen

Opmerking: prijzen voor alle typen met V = vierkant gat en buitendiameter d1 > 70 zijn alleen op aanvraag beschikbaar.

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Omschrijving

1Specification

Universal joints with friction bearing

Version in Steel

Types

  • Type EG: single, friction bearing
  • Type DG: double, friction bearing

Bore codes

  • Version B: without keyway
  • Version K: with keyway
  • Version V: with square

Steel

blank

Joint bearing areas / pins / bearing sleeves

case hardened

Version in Stainless Steel

Types

  • Type EG: single, friction bearing
  • Type DG: double, friction bearing

Bore code

  • Version B: without keyway
  • Version K: with keyway
  • Version V: with square

Stainless Steel AISI 304 NI

Universal joints with needle bearing

Types

  • Type EW: single, needle bearing
  • Type DW: double, needle bearing

Bore codes

  • Version B: without keyway
  • Version K: with keyway
  • Version V: with square

Steel

blank

Joint bearing areas, pins

case hardened

2Information

The permissible r.p.m. of universal joints with friction bearing DIN 808 is to a large extent dependent on the type of application such as load, duration, angular disposition as well as lubrication. For over 1000 r.p.m. universal joints with needle bearing should be used

For continuous use ample lubrication is essential. This achieved by fitting the joint with a grease filled gaiter GN 808.1 

3On request
  • with other or unequal bores
4Technical information

Permissible r.p.m. and torque 

5Mounting information
 

The single universal joints transfer the initial smooth rotation as an irregular rotation. One revolution of the drive shaft via single universal joint will cause the driven shaft to accelerate and decelerate twice. The extent of the irregularity depends on the operating angle ß.

In order to obtain a smooth rotation of the driven shaft two single or one double universal joint is required. In such cases where minor irregularities in the movement are acceptable or where minor operating angles are the norm a single universal joint will do.

 

For a smooth transfer of a rotating speed, the angle of inclination ß must be equal at both ends of the connecting shaft.

 

Due to a misconnection of the universal joint shafts, the irregular rotation of each joint is not compensated, but strengthened. This allows joint bearings and wedge profiles to be destroyed. For this reason, the markings of the universal joint shaft halves have to be opposite to each other.

 

Furthermore the bearings must be as close as possible to the universal joints.

For continuous operation of universal joints with friction bearings adequate lubrication is essential. If drip lubrication is not possible they should be lubricated at least once a day. It is also possible to fit the universal joint with a gaiter GN 808.1 which can be filled with oil or grease.

6Selection of the size

Universal joints with friction bearing, Type EG

 

The table shows the transferable output N and/or torques M of universal joints DIN 808, type EG (single friction bearing) in relation 

The values are only applicable to a constant speed of rotation, constant load and an operating inclination angle of max. 10°. They are not applicable to universal joints in Stainless Steel.

For larger inclination angles ß a nominal output N increased by the correction coefficient k and/or a nominal torque M has to be selected (see example below).

Conversion formular:

Torque M [Nm] = 9550 N[kW]/n [min-1]

Output N [kW] = M [Nm] x n [min-1]

1 kW = 1.36 PS / 1 PS = 0.736 kW

Example 1

Output to be transferred N = 0.65 kW

R.p.m. n = 230 min-1

Angle of inclination ß = 10°

Correction coefficient k = 1

Indicative output N‘= Nominal output N

Intersection point P results from 0.65 kW and 230 min-1 (which corresponds to a torque of 27 Nm).

The next size up universal joint corresponding to point P is the model with a diameter d1 = 25.

Example 2

Torque to be transferred M = 27 Nm

R.p.m. n = 230 min-1

Angle of inclination ß = 30°

Correction coefficient k = 2.25

Indicative torque = 2.25 x 27 Nm = 60 Nm

Intersection point P1 results from 61 Nm and 230 min-1 (which is equivalent to an indicative output N = 1.47 kW).

The next size up universal joint corresponding to P1 is the model with a diameter d1 = 36.

 

Universal joints with needle bearing, Type EW

 

The table shows the transferable output N and/or torques M of universal joints DIN 808, type EW (single needle bearing) in relation 

The values are only applicable to a constant speed of rotation, constant load and an operating inclination angle of max. 10°.

For larger inclination angles ß a nominal output N increased by the correction coefficient k and/or a nominal torque M has to be selected (see example below).

Conversion formular:

Torque M [Nm] = 9550 N[kW]/n [min-1]

Output N [kW] = M [Nm] x n [min-1]

1 kW = 1.36 PS / 1 PS = 0.736 kW

Example 1

Torque to be transferred N = 5.5 kW

R.p.m. n = 2300 min-1

Angle of inclination ß = 10°

Correction coefficient k = 1

Indicative output N‘= Nominal output N

Intersection point P results from 5.5 kW and 2300 min-1 (which corresponds to a torque of 23 Nm).

The next size up universal joint corresponding to point P is the model with a diameter d1 = 28.

Example 2

Torque to be transferred M = 23 Nm

R.p.m. n = 2300 min-1

Angle of inclination ß = 18°

Correction coefficient k = 1.43

Indicative torque = 1.43 x 23 Nm = 33 Nm

Intersection point P1 results from 33 Nm and 2300 min-1 (which is equivalent to an indicative output N = 7.9 kW).

The next size up universal joint corresponding to P1 is the model with a diameter d1 = 32.

 
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161611405 DIN 808-16-B6-34-EG-NI
€ 108,92
161611415 DIN 808-16-B6-56-DG-NI
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161611420 DIN 808-16-B8-40-EG-NI
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161611060 DIN 808-16-B8-62-DG-NI
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161611440 DIN 808-16-K6-34-EG-NI
€ 163,19
470004306 DIN 808-16-K6-56-DG-NI
€ 258,27
161611450 DIN 808-16-K8-40-EG-NI
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161611061 DIN 808-16-K8-62-DG-NI
€ 259,62
161611451 DIN 808-16-V6-34-EG-NI
470004320 DIN 808-16-V6-56-DG-NI
470004321 DIN 808-16-V8-40-EG-NI
€ 483,68
470004322 DIN 808-16-V8-62-DG-NI
161610147 DIN 808-22-B10-48-EG-NI
€ 108,92
161611455 DIN 808-22-B10-74-DG-NI
€ 206,59
161610135 DIN 808-22-K10-48-EG-NI
€ 163,19
161611487 DIN 808-22-K10-74-DG-NI
€ 260,01
470004323 DIN 808-22-V10-48-EG-NI
470004324 DIN 808-22-V10-74-DG-NI
161610185 DIN 808-25-B12-56-EG-NI
€ 121,90
161611520 DIN 808-25-B12-86-DG-NI
€ 218,45
161611545 DIN 808-25-K12-56-EG-NI
€ 175,58
161611541 DIN 808-25-K12-86-DG-NI
€ 272,26
470004325 DIN 808-25-V12-56-EG-NI
€ 480,51
470004326 DIN 808-25-V12-86-DG-NI
161611103 DIN 808-32-B16-105-DG-NI
€ 259,54
161610170 DIN 808-32-B16-68-EG-NI
€ 132,83
470004314 DIN 808-32-K16-105-DG-NI
€ 308,22
161611645 DIN 808-32-K16-68-EG-NI
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470004328 DIN 808-32-V16-105-DG-NI
470004327 DIN 808-32-V16-68-EG-NI
161611700 DIN 808-42-B20-128-DG-NI
€ 364,90
161610214 DIN 808-42-B20-82-EG-NI
€ 197,23
100713810 DIN 808-42-K20-128-DG-NI
€ 405,38
161611740 DIN 808-42-K20-82-EG-NI
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470004330 DIN 808-42-V20-128-DG-NI
470004329 DIN 808-42-V20-82-EG-NI
161611800 DIN 808-50-B25-108-EG-NI
€ 294,85
161611815 DIN 808-50-B25-163-DG-NI
€ 606,17
161611850 DIN 808-50-K25-108-EG-NI
€ 347,65
161610271 DIN 808-50-K25-163-DG-NI
€ 646,97
470004331 DIN 808-50-V25-108-EG-NI
470004332 DIN 808-50-V25-163-DG-NI

l1

l3

Gewicht (g)

d2 H7

s H10

d1

l4

d2 H7 Boring

t+1 max montagelengte van de schacht

l2

34 17 40 6 N.v.t. 16 N.v.t. 6 8 N.v.t.
N.v.t. 17 60 6 N.v.t. 16 22 6 8 56
40 20 33 8 N.v.t. 16 N.v.t. 8 11 N.v.t.
N.v.t. 20 65 8 N.v.t. 16 22 8 11 62
34 17 38 6 N.v.t. 16 N.v.t. 6 8 N.v.t.
N.v.t. 17 65 6 N.v.t. 16 22 6 8 56
40 20 40 8 N.v.t. 16 N.v.t. 8 11 N.v.t.
N.v.t. 20 65 8 N.v.t. 16 22 8 11 62
34 17 40 N.v.t. V 6* 16 N.v.t. N.v.t. 8 N.v.t.
N.v.t. 17 60 N.v.t. V 6* 16 22 N.v.t. 8 56
40 20 40 N.v.t. V 8* 16 N.v.t. N.v.t. 11 N.v.t.
N.v.t. 20 64 N.v.t. V 8* 16 22 N.v.t. 11 62
48 24 100 10 N.v.t. 22 N.v.t. 10 12 N.v.t.
N.v.t. 24 150 10 N.v.t. 22 26 10 12 74
48 24 97 10 N.v.t. 22 N.v.t. 10 12 N.v.t.
N.v.t. 24 144 10 N.v.t. 22 26 10 12 74
48 24 90 N.v.t. V 10* 22 N.v.t. N.v.t. 12 N.v.t.
N.v.t. 24 145 N.v.t. V 10* 22 26 N.v.t. 12 74
56 28 154 12 N.v.t. 25 N.v.t. 12 13 N.v.t.
N.v.t. 28 225 12 N.v.t. 25 30 12 13 86
56 28 146 12 N.v.t. 25 N.v.t. 12 13 N.v.t.
N.v.t. 28 219 12 N.v.t. 25 30 12 13 86
56 28 140 N.v.t. V 12* 25 N.v.t. N.v.t. 13 N.v.t.
N.v.t. 28 219 N.v.t. V 12* 25 30 N.v.t. 13 86
N.v.t. 34 435 16 N.v.t. 32 37 16 16 105
68 34 290 16 N.v.t. 32 N.v.t. 16 16 N.v.t.
N.v.t. 34 427 16 N.v.t. 32 37 16 16 105
68 34 289 16 N.v.t. 32 N.v.t. 16 16 N.v.t.
N.v.t. 34 427 N.v.t. V 16* 32 37 N.v.t. 16 105
68 34 274 N.v.t. V 16* 32 N.v.t. N.v.t. 16 N.v.t.
N.v.t. 41 919 20 N.v.t. 42 46 20 18 128
82 41 600 20 N.v.t. 42 N.v.t. 20 18 N.v.t.
N.v.t. 41 900 20 N.v.t. 42 46 20 18 128
82 41 600 20 N.v.t. 42 N.v.t. 20 18 N.v.t.
N.v.t. 41 886 N.v.t. V 20* 42 46 N.v.t. 18 128
82 41 570 N.v.t. V 20* 42 N.v.t. N.v.t. 18 N.v.t.
108 54 1130 25 N.v.t. 50 N.v.t. 25 26 N.v.t.
N.v.t. 54 1620 25 N.v.t. 50 55 25 26 163
108 54 1098 25 N.v.t. 50 N.v.t. 25 26 N.v.t.
N.v.t. 54 1628 25 N.v.t. 50 55 25 26 163
108 54 1065 N.v.t. V 25* 50 N.v.t. N.v.t. 26 N.v.t.
N.v.t. 54 1585 N.v.t. V 25* 50 55 N.v.t. 26 163