16
WILO SE 04/2021 DIN A4
English
PRODUCT DESCRIPTION
seal. The sealing chamber is filled with environ
-
mentally harmless medicinal white oil.
The hydraulics are not self-priming, in other
words, the fluid must flow in either automati
-
cally or with supply pressure.
3.2.3. Baseplate
All the individual components are mounted on the
baseplate. The pump is attached to the founda-
tion via the baseplate. Furthermore, the baseplate
contains the motor mount and therefore aligns
the motor shaft to the hydraulic shaft.
3.2.4. Coupling
A Flender coupling is used to connect the hydrau-
lics and the motor.
3.2.5. Monitoring devices
As an option, the sealing chamber can be moni-
tored by an external pencil electrode. This signals
if there is water ingress into the sealing chamber
through the mechanical seal on the fluid side.
3.2.6. Seal
Sealing on the fluid side is achieved by a bidirec
-
tional mechanical seal. Sealing on the coupling
side is achieved by a rotary shaft seal.
3.2.7. Materials
•
Hydraulics housing: EN-GJL-250 (ASTM A48
Class 35/40B)
•
Impeller: EN-GJL-250 (ASTM A48 Class 35/40B)
•
Bearing housing: EN-GJL-250
(ASTM A48 Class 35/40B)
•
Shaft: 1.4021 (AISI 420)
•
Static gaskets: NBR (nitrile)
•
Seal
-
On the fluid side: SiC/SiC
-
On the coupling side: NBR (nitrile)
•
Coupling guard: S235JR (ASTM A252, Grade 1)
•
Coupling: See instructions from the manufacturer
•
Motor: See instructions from the manufacturer
3.2.8. Drive
The pump is driven by IEC standard motors in “B3”
construction. For more information about the
motor and the monitoring devices present, see
the installation and operating instructions for the
motor.
3.3. Operation in an explosive atmosphere
The hydraulics must
not
be operated in an explo-
sive atmosphere!
3.4. Operation with frequency converters
Operation on a frequency converter is possible.
NOTICE
Also note all the information in the operating
and maintenance manual for the motor!
3.5. Operating modes
See the rating plate or installation and operating
instructions for the motor to see the possible
operating modes.
3.5.1.
Operating mode S1 (continuous duty)
The motor can operate continuously at the rated
load without exceeding the permissible
temperature.
3.5.2.
Operating mode S2 (short-time duty)
The maximum operating period for the motor is
specified in minutes, e.g. S2-15. The pause must
last until the machine temperature no longer
differs from the temperature of the coolant by
more than 2 K.
3.5.3.
Operating mode S3 (intermittent periodic duty)
This operating mode defines a combination of
periods of operation and standstill of the motor.
With S3 operation, the values given are always
calculated based on a period of 10 min.
Example: S3 25 %
Operating time 25 % of 10 min = 2.5 min /
standstill time 75 % of 10 min = 7.5 min
3.6. Technical data
The following technical data can be found on the
rating plate:
Max. delivery head:
H
max
Max. volume flow:
Q
max
Rated power required from
hydraulics:
P
2
Discharge connection:
X
-]
Suction connection:
[-
X
Fluid temperature:
t
Construction size standard
motor:
Type key
Standard speed:
n
Weight hydraulics:*
M
hydr
* The stated weight includes all components of
the respective version
without
the motor.
The total weight must be calculated from the
weight of the pump and the weight of the
motor (see rating plate on motor).
3.7. Type key
Example: Wilo-Rexa NORM-M50.218DAH280M6
NORM
Series
M
Impeller shape
V = vortex impeller
C = single-channel impeller
M = multi-channel
50
Size discharge connection e.g. 25 = DN 250
21
Performance indicator
8
Characteristic curve number
Содержание Wilo-Rexa NORM
Страница 2: ...Fig 2 Fig 1 A B 8 9 10 2 4 4 7 5 5 3 1 2 7 1 6 3 6...
Страница 3: ...Fig 3B Fig 3A 1...
Страница 4: ...Fig 4 8 2 4 7 5 3 1 6 Fig 5 1 Rexa NORM M15 77 2140 1400 370 790 860 370 36 29...
Страница 7: ...Fig 7 Fig 6 A A A A 2 4 4 5 5 5 5 5 5 3 1 S1 S1 X X Y Y Z Z Fz Mz My Mx Fy Fx...
Страница 8: ...Fig 9 Fig 8 2 3 1 2 4 5 3 1...
Страница 9: ...Fig 11 Fig 10 F2 F1 M1 M2...
Страница 10: ...Fig 13 Fig 12 D D L...
Страница 30: ......
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