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3ZB-600S (450) Triplex Plunger Pump

The 3ZB-600S (450) triplex plunger pump is a positive-displacement, reciprocating, horizontal, single-acting pump that is primarily used for intermittent well servicing operations such as cementing, water injection, and small-scale fracturing. It is mainly composed of a fluid end, a power end, and a lubricating system, characterized by high output power, high pressure, and large displacement.

Classification:

Triplex plunger pump


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Product Description

The 3ZB-600S (450) triplex plunger pump is a positive-displacement, reciprocating, horizontal, single-acting pump that is primarily used for intermittent well servicing operations such as cementing, water injection, and small-scale fracturing. It is mainly composed of a fluid end, a power end, and a lubricating system, characterized by high output power, high pressure, and large displacement.

The power end housing employs a rigid welded structure, while the fluid end offers a selection of plunger diameters, including 3", 3-1/2", 4", and 4-1/2", to satisfy the user requirements for various pressures and displacements.

Main Technical Parameters

No.

Name

Parameters

1

Model

3ZB-600S (450)

2

Maximum input power, kW (BHP)

447 (600)

3

Plunger stroke, mm

152.4

4

Maximum operating stroke frequency, times/min

450

5

Gear ratio

4.6:1

6

Overall dimensions (L×W×H), mm

1292×1366×607

7

Maximum weight, kg

2155

Operation characteristic parameter

Pump speed, RPM

50

120

200

300

450

Plunger diameter

in (mm)

Displacement

L/min

Pressure

MPa

Displacement

L/min

Pressure

MPa

Displacement

L/min

Pressure

MPa

Displacement

L/min

Pressure

MPa

Displacement

L/min

Pressure

MPa

3"

(76.2)

104

97.5

250

97.2

417

58.3

625

38.9

938

25.9

3-1/2"

(88.9)

142

71.7

341

71.2

568

42.8

851

28.6

1277

19

4"

(101.6)

185

54.9

445

54.6

741

32.8

1112

21.9

1668

14.6

4-1/2"

(114.3)

235

43.4

563

43.2

938

25.9

1407

17.3

2111

11.5

The above displacement and pressure parameters are the theoretical values calculated based on a mechanical efficiency of 90%, a pump efficiency of 90%, and a displacement coefficient of 100%.

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