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HK EIPH 2 004 RK03

Innenzahnradpumpe SAEA2 4,2 Welle Ø20 R
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Product details for

HK EIPH 2 004 RK03

Priključek sprednjega pokrova
vzorec lukenj 106,4 – Ø 82,5
VFU
4,2 cm³
p1 maks.
330 bar
p3 maks.
350 bar
A
71 mm
B
105 mm
C
109 mm
K
17,5 mm
L
38,1 mm
M
M 10
Ø H
14 mm
Število bratov min.
400 r/min
Število obratov maks.
3.600 r/min
All characteristics

Characteristics

Izvedba
  • notranja zobniška črpalka z aksialno in radialno kompenzacijo reže 
Gred
  • cilindrična gred Ø 20 x 36 
Priključek na sesalni strani
  • SAE-prirobnica J 518C / ISO 6162 
Priključek na tlačni strani
  • SAE-prirobnica J 518C / ISO 6162 
Mediji
  • HL - HLP DIN 51524 del 1/2 
Smer vrtenja
  • zasuk v desno 
Temperatura medija
  • -20 °C to +80 °C 
Viskoznost
  • 10 do 300 cSt 
Raven hrupa
  • 53 - 63 db(A) 
Material
  • ohišje: litina 
Tesnila
  • Viton 
Številka carinske tarife
  • 84136031 
All characteristics

Product description

Description
Low-noise internal gear pump with low pressure pulsation for industrial applications.
Pump flange SAE-A-2 or SAE-B-2, shaft cylindrical Ø 20 with PTO.

Product variants

11 Results
Show dimensional drawing
Identifier
Connection drive side
VFU (cm³)
p1 max. (bar)
p3 max. (bar)
Price / items
Hole pattern 106.4 - Ø 82.5. 
4.2 cm³
330 bar
350 bar
Hole pattern 106.4 - Ø 82.5. 
5.4 cm³
330 bar
350 bar
Hole pattern 106.4 - Ø 82.5. 
6.4 cm³
330 bar
350 bar
Hole pattern 106.4 - Ø 82.5. 
7.9 cm³
330 bar
350 bar
Hole pattern 106.4 - Ø 82.5. 
10.9 cm³
330 bar
350 bar
Hole pattern 146 - Ø 101.6. 
10.9 cm³
330 bar
350 bar
Hole pattern 106.4 - Ø 82.5. 
13.3 cm³
330 bar
350 bar
Hole pattern 146 - Ø 101.6. 
13.3 cm³
330 bar
350 bar
Hole pattern 106.4 - Ø 82.5. 
15.8 cm³
330 bar
350 bar
Hole pattern 146 - Ø 101.6. 
15.8 cm³
330 bar
350 bar
VFU = conveying volume per revolution
p1 = continuous pressure
p3 = maximum pressure

Shows 10 of 11

Column selection

Connection drive side
VFU (cm³)
p1 max. (bar)
p3 max. (bar)
A (mm)
B (mm)
C (mm)
K (mm)
L (mm)
M
Max. speed (r/min)
Min. speed (r/min)
Ø H (mm)
VFU = conveying volume per revolution
p1 = continuous pressure
p3 = maximum pressure