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Plastic Cable Carriers

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Technical Data — M Series<br />

Type MT 0950<br />

Chain cross section<br />

in accordance with section in schematic<br />

illustration<br />

Bi from 100 - 600 mm in sections of 1 mm<br />

Stay variant “RMD“<br />

Frame stay – Aluminium cover system<br />

Protective covers on the outside are “hinged”<br />

to both sides<br />

Protective covers on the inside can be<br />

released by turning through 90°!<br />

Calculation of chain width:<br />

B k = B i + 39 mm<br />

54.5<br />

80<br />

83.5<br />

Calculation of chain width over<br />

universal connector:<br />

B EF = B i + 44 mm<br />

B i<br />

B k<br />

B EF<br />

19.5<br />

KR<br />

Glide shoes can be attached<br />

for long travel lengths<br />

Calculation Example:<br />

Inside width B i = 400 mm<br />

Chain width B k = 439 mm<br />

Chain width over<br />

universal connector B EF = 444 mm<br />

Intrinsic chain weight q k = 14.7 kg/m<br />

Calculation of the difference in the<br />

additional load ∆q z<br />

7.0 kg/m – 14.7 kg/m = –7.7 kg/m<br />

The permitted additional load q z in<br />

accordance with the load diagrams is<br />

reduced by 7.7 kg/m<br />

Intrinsic chain weight qk in kg/m<br />

18<br />

16<br />

14<br />

12<br />

10<br />

8<br />

6<br />

4<br />

0 100 200 300 400 500 600<br />

Chain width Bk in mm<br />

Reference weight = Intrinsic chain weight qk = 7.0 kg/m (in accordance with load diagram)<br />

Calculation Example<br />

Intrinsic chain weight depending on chain width B k<br />

Glide shoes<br />

For long travel lengths, gliding in a channel, interchangeable glide<br />

shoes are used. These can be produced from different plastics<br />

and guarantee optimum friction and wear ratios. For travel speeds<br />

> 2.5 m/s highly wear-resistant plastic is used.<br />

MT Subject to technical changes! 3.721

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