Pressure switch,piston pump,vane pump, air cooler
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IVPV1 Series Single vane Pumps

IVPV1 Series Single vane Pumps
Product name : IVPV1 Series Single vane Pumps
Item :
Details :
IVPV1 Series Single vane Pumps

How to order:

Intravane Fixed Displacement Vane Pumps
IVP(Q/V) Series-Single Pumps Model Code
(F3-) IVP(Q/V)2 -17 H A M -F -R -86 C -10
Prefix, Fluid
Compatibility
Frame
Size
Geometric
Displacement
●Code
Pressure
★type
Port
connections
Port
connections
modifier
Mounting
Form
Shaft
Rotation
▲Shaft model Outlet Positions Design
Str.
key
HD Str.
key
Splined
key
Omit:
Using Petroleum Base oil & anti-wear hydraulic oil 

F11-
Using water glycol fluid. 

F3-
Using water-in-oil emulsions or phosphate ester fluid.
IVP (Q/V) 1 2,3,4,5,6,7,8,
10,11,12,14
        Viewed from shaft end of pump
 
1 N/A 151 Viewed from cover
end of pump

A- 
Opposite inlet port 

B- 
90° CCW from inlet 

C- 
Inline with inlet 

D- 
90° CW from inlet
 
10
IVP (Q/V) 2 10,12,14,15,
17,19,21,25
Omit – 
Standard pressure
A-
SAE 4 bolt
flange
M- 
Metric fixing threads 
F-
Flange
mounting
R- 
Right hand for clockwise
1 86 11
IVP (Q/V) 3 17,21,25,30,
32,35,38,42
H-
High pressure
  Omit -
Inch fixing threads
L-
Foot
mounting
L- 
Left hand for
counterclockwise
1 86 11
IVP (Q/V) 4 30,35,38,42,
50,60,67,75
          1 86 11

● Rated capacity in US gpm at 1200r/min and 6.9bar(100psi). 
★ IVPQ series no H high pressure type.
▲ IVPQ series no splined Shaft model.

The working principle and structure principle of vane pump
 
 
 
 
Vane pump advantages are: smooth operation, small pressure pulsation, small noise, compact structure, small size, large flow. Its disadvantages are: high requirements for oil, such as impurities in the oil, the blade is easy to get stuck; Compared with gear pump structure is more complex. It is widely used in machine tools, automatic line and other middle and low pressure hydraulic system. The pump has two types of structure: a single - acting vane pump, the other is a double - acting vane pump.
 
1. Single acting vane pump
 
 
The working principle of single-acting vane pump is shown in figure 2-10. The single-acting vane pump is composed of rotor 1, stator 2, blade 3 and end cap. Stator 2 has a cylindrical internal surface. Eccentricity e exists between stator 2 and rotor 1. Blade 3 is installed in the rotor groove and can slide in the groove. When the rotor 1 rotates, due to the effect of centrifugal force, the blade 3 is close to the inner wall of the stator. In this way, a number of sealed working Spaces are formed between stator 2, rotor 1, blade 3 and oil distribution plates on both sides. When rotor 1 rotates in a counterclockwise direction, in the right part of FIG. 2-10, blade 3 extends out gradually, and the space between the blades gradually increases to suck oil from the oil suction port, which is the oil suction chamber. In the left part of FIG. 2-10, the inner wall of the stator of blade 3 is gradually pressed into the groove, and the working space is gradually reduced, and the oil is pressed out from the oil pressure port, which is the oil pressure cavity.
 
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