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HK 2P 43 02 EOOA

Pompe à engr. BG2 6,00 Arbre UE 1:8 Td
Produktdetails zu

HK 2P 43 02 EOOA

VFU
6 cm³
Sens de rotation
à droite
p1maxi
260 bar
p2maxi
280 bar
p3maxi
300 bar
Vitesse de rotation min.
700 r/min
Vitesse de rotation maxi
3 500 r/min
A
90,2 mm
B
43,2 mm
Flange size suction side
LK Ø 30 mm / M 6
Raccord de bride, côté sous pression
LK Ø 30 mm / M 6
Alle Eigenschaften

Eigenschaften

Fabrication
  • Gear pump group 2. 
Raccord côté moteur
  • Hole pattern 96.2 x 71.5 – Ø 36.5. 
Arbre
  • arbre conique 1:8 
Connection suction side
  • pump flange, European standard 
Connection pressure side
  • pump flange, European standard 
Matériau
  • Boîtier : Aluminium 
  • Bride avant, couvercle final : aluminium 
Médiums
  • HL - HLP DIN 51524 partie 1/2 
Viscosité
  • 20 to 100 cSt 
Customs tariff number
  • 84136031 
Alle Eigenschaften

Product description

Hinweise
Tightening torque of the fastening nut on the shaft: 40 Nm
Bestellhinweis
Other pump versions available on request

Produktvarianten

24 Ergebnisse
Maßzeichnung anzeigen
Bezeichnung
VFU (cm³)
Direction of rotation
p1 max. (bar)
p2 max. (bar)
4.2 cm³
anti-clockwise rotating 
260 bar
280 bar
4.2 cm³
clockwise rotating 
260 bar
280 bar
6 cm³
anti-clockwise rotating 
260 bar
280 bar
6 cm³
clockwise rotating 
260 bar
280 bar
8.4 cm³
anti-clockwise rotating 
260 bar
280 bar
8.4 cm³
clockwise rotating 
260 bar
280 bar
10.8 cm³
anti-clockwise rotating 
260 bar
280 bar
10.8 cm³
clockwise rotating 
260 bar
280 bar
14.4 cm³
anti-clockwise rotating 
250 bar
270 bar
14.4 cm³
clockwise rotating 
250 bar
270 bar
VFU = conveying volume per revolution
LK = pitch circle diameter
p1 = continuous pressure
p2 = working pressure
p3 = maximum pressure

Zeigt 10 von 24 an

Spaltenauswahl

VFU (cm³)
Direction of rotation
p1 max. (bar)
p2 max. (bar)
p3 max. (bar)
Min. speed (r/min)
Max. speed (r/min)
A (mm)
B (mm)
Flange size suction side
Flange size pressure side
VFU = conveying volume per revolution
LK = pitch circle diameter
p1 = continuous pressure
p2 = working pressure
p3 = maximum pressure