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11
EN
6.5 Power level selection
The shape, weight, size and internal clearances, all
affect to the time required to heat up a bearing. The
large variety of bearings precludes the possibility of
pro
viding a speciic power level setting for each type.
Instead, the following guidelines are provided:
•
In the case of shielded or sealed bearings with
metallic inserts, the LOW POWER mode must
be
always
selected. Light metallic rings can heat
up much faster than the rest of the component.
This might damage the bearing or the heater
itself due to too high temperatures.
•
In the case of very small bearings, the power of
the TWIM 15 is automatically lowered.
If too fast heating is detected, the LOW POWER
mode must be selected. If the component
heats up faster than what can be read by the
temperature probe, the component might reach
temperatures above the desired level.
•
In the case of the TWIM 15, heating bearings
with a tight internal clearance (C1 or C2) or
preloaded bearings is not an issue.
If a too high temperature difference is detected,
the LOW POWER mode must be selected.
Slow heating ensures that the bearing expands
evenly, thereby preventing damage to the
bearing.
7. Safety features
The TWIM 15 is equipped with the following safety
features:
•
Automatic overheating protection of the
heater.
The heater has several internal
temperature sensors to protect itself. In case
that the temperature measured by one of them
is too high, measures are automatically taken to
stop this. For example, the heater might lower
the power or stop. In any case, the user must
monitor the process since too fast temperature
increases might not be detected on time.
•
Over current protection.
The heater has a built-in fuse.
•
Too hot surface warning.
A “hot” message in the screen will be shown
when the temperature of the surface of
the top plate will be above 60 °C
(140 °F)
approximately.
•
Faulty temperature probe detection.
In
Temperature Mode
, the heater will give an
error and stop if no temperature increase is
detected.
N O T E :
To increase the time to error E05 by a 50%, press
the
“Mode”
and the
“-“
buttons simultaneously.
“t1.5” will be shown on the display briely when this
is activated and “t1.0” when deactivated again.
This setting has to be chosen for every individual
heating job.
Summary of Contents for TWIM 15
Page 2: ......
Page 90: ...88 RU 1 TWIM 15 TWIM 15 TWIM 15 3 400 TMBA G11 Schuko TWIM 15 230V 2 TWIM 15 90 C 20 C 110 C...
Page 91: ...89 RU 2 1 TWIM 15 1 2 2...
Page 93: ...91 RU 4 TWIM 15 230V 230 50 TWIM 15 110V 110 60 5 TWIM 15 Temperature Mode...
Page 95: ...93 RU START STOP TWIM 15 200 C Time Mode 6 2 1 MODE START STOP 06 6 2 2 C F MODE...
Page 98: ...96 RU 8 E00 E01 E02 E03 E04 E05 MODE...
Page 99: ...97 RU E06 Time Mode E07 E08 10 E10 0 40 C E11 E12...
Page 100: ...98 RU 9 30 1...
Page 101: ...99 RU 10 TWIM 15 3 400 11 0 95 0 50 C SKF...
Page 104: ...102 ZH 1 TWIM 15 TWIM 15 K 400 mm TWIM 15 3 TMBA G11 F TWIM 15 230V 2 TWIM 15 90 C 20 C 110 C...
Page 105: ...103 ZH 2 1 TWIM 15 1 2 2 LED...
Page 107: ...105 ZH 4 TWIM 15 230 V 230 V 50 Hz TWIM 15 110 V 110 V 60 Hz 5 TWIM 15 LED...
Page 108: ...106 ZH 6 6 1 2 LED LED LED LED LED LED 6 2 LED C F 110 C 1 110 C LED 4 10 TWIM 15 200 C...
Page 109: ...107 ZH 6 2 1 E06 6 2 2 C F...
Page 110: ...108 ZH 6 3 TKDT 10 C F 4 TWIM 15 TWIM 15 200 C 200 C 6 4 TWIM 15 LED SKF...
Page 111: ...109 ZH 6 5 TWIM 15 TWIM 15 C1 C2 7 TWIM 15 60 C E05 50 t1 5 t1 0...
Page 112: ...110 ZH 8 E00 E01 E02 E03 E04 E05...
Page 113: ...111 ZH E06 E07 E08 10 E10 0 40 C E11 E12...
Page 114: ...112 ZH 9 30 cm 1 ft...
Page 115: ...113 ZH 10 TWIM 15 3 K 400 mm 11 0 95 0 50 C SKF...
Page 130: ...128 DA...
Page 131: ......