Hydraulic Gear Motor or Pump 8, 16, 20, 26cc/rev 2-18gpm high speed bi-direction

$248.0
Displacement
26 cc/rev: 484 in-lbs (1.58 in3/rev) 4-17gpm 25HP
Brand
Fluidhaus
Custom Bundle
No
Model
MFEG-K0.6-2A-O12O12S-B-1
MPN
MFEG
Country/Region of Manufacture
Turkey
Modified Item
No
condition
New

Operational as a fixed displacement gear pump or motor.  The shaft can also be rotated clockwise or counterclockwise.  Proven high quality robust design successfully designed into many high volume applications.

IMPORTANT:  THE LOW PRESSURE SIDE OF THE MOTOR MUST NOT EXCEED 100 PSI OR THE SHAFT SEAL WILL LEAK.  MAKE SURE THERE ARE MINIMAL RESTRICTICTIONS TO THE TANK.

Cost effect method as a pump or motor for high power rotational motion to drive fans, conveyors, power equipment in construction, agricultural, industrial, and commercial applications.  Use with speed reducing gear boxes for winches, wheel drives or any other slower rotational motion needed.

· SAE A, 2 bolt mounting flange

· 3625 psi continuous pressure, 4060 psi peak <1min.

· Keyed shaft 5/8" diameter

· SAE -10, 7/8-14 UNF 2B, O-ring boss hydraulic port connections

· Minimum smooth rotational speed as a motor = 300 rpm

· Maximum rotational speed = 4000 rpm

· 72.5 psi maximum low-pressure side (outlet).  Exceeding this could create excessive pressure in the housing and leakage from the shaft seal.  Make sure there are minimal restrictions when connecting to the reservoir.

· This motor comes with a built-in shuttle check valve that automatically sends leakage oil to low pressure side.  No need for a separate drain line.

Helpful calculations:

Pump flow in gpm = in^3/rev x rpm ÷ 231 [example: 0.488in^3/rev x 1800rpm ÷ 231 = 3.8gpm]

Power to drive pump or motor in HP = gpm x psi ÷ 1714 ÷ .85 [example: 3.8gpm x 3000psi ÷ 1714 ÷ .85 = 7.8HP]

Motor rpm from pump input flow gpm = gpm x 231 ÷ in^3/rev [example: 3.8gpm x 231 ÷ 0.488in^3/rev = 1799 rpm]