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PQ940F Electric Eccentric Semi-ball Valve

PQ940F Electric Eccentric Semi-ball Valve

  • Model:PQ940F-6Q/PQ940F-10Q/PQ940F-16Q/PQ940F-10C/PQ940F-16C/PQ940F-10P/PQ940F-16P
  • Specification:DN50-DN2000
  • Temperature:≤425℃
  • Medium:Water and water-like media
  • Pressure:PN6~PN16
  • Connection method:flange
  • Driving method:Electric
  • Material:Ductile Iron, Cast Steel, Stainless Steel
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PQ940F Electric Eccentric Semi-ball ValveOverview

The PQ940F electric eccentric Segment Ball valve utilizes motor-driven operation, with precision actuation achieved through a speed reduction mechanism. This innovative design combines the automation benefits of electric actuators with the wear-resistant sealing properties of eccentric Segment Ball valves, delivering remote control capabilities, rapid response, and high sealing reliability. It is particularly suitable for pipeline systems requiring frequent regulation or remote automation in power generation, petrochemical processing, and water treatment applications, especially in harsh environments with high wear and solid particle-containing media.

Product Image:PQ940F Electric Eccentric Semi-ball Valve

PQ940F Electric Eccentric Semi-ball ValveCharacteristic

1. Electric drive intelligent control: Featuring integrated multi-axis electric actuators, it supports remote, local, and program-controlled operation. The system receives switch signals or 4-20mA analog signals for precise regulation, delivering high automation.

2. Zero-friction seal with eccentric structure: The eccentric valve stem engages with the Segment Ball valve disc, ensuring frictionless disengagement and compression during operation. This design significantly reduces wear and maintains long-term reliable sealing.

3. The wear-resistant and hard sealing valve has strong adaptability: the valve disc and seat are made of hard alloy or surface strengthened, which is resistant to erosion and corrosion, suitable for high temperature, high pressure and harsh media containing particles and slurry.

4. Excellent flow performance: When fully open, the flow channel is nearly identical to the pipe's inner diameter, resulting in minimal flow resistance and low diameter loss, making it resistant to clogging. This makes it particularly suitable for slurry, powder, and other easily sedimented media.

5. Compact structure with easy maintenance: The integrated actuator-valve design minimizes installation space requirements. Some configurations support top-mounted maintenance, allowing replacement of internal seals without valve disassembly, thereby reducing maintenance costs.

PQ940F Electric Eccentric Semi-ball Valvestructure principle

Structural Drawing:PQ940F Electric Eccentric Semi-ball Valve


List of Component Names and Materials

Component NameMaterial
Valve Body, Valve BonnetWCB, QT450, 304(CF8), 316(CF8M)
Ball2Cr13+Nitriding, 304, 316
Valve Stem2Cr13, 304, 316
Valve Seat Sealing RingPTFE, Carbon Fiber+PTFE, PPL (Polyparaphenylene), Metal Seal
Sealing PackingV-type PTFE Packing, PTFE Impregnated Asbestos Packing, Asbestos Textile Packing, Graphite Packing


PQ940F Electric Eccentric Semi-ball Valvetechnology parameter

Performance Specification Sheet


Performance Specification Sheet
Nominal Pressure0.61.01.6MPa
Strength test pressure0.91.52.4
Sealing test pressure0.661.11.76
Applicable Temperature≤425



PQ940F Electric Eccentric Semi-ball Valvestandard size

Standard requirements for external dimensions

1. The structural length of the valve shall comply with the standard of GB/T12221

2. Connecting flanges according to GB/T17241.6 standard

Outline Drawing:PQ940F Electric Eccentric Semi-ball Valve


Outline dimension table

Nominal diameter DN(mm)1.0
LDD1D2bfz-φd0HwHd
501781651251001824-18270310
651901801451201824-18280320
802031951601352024-18290330
1002292201801562228-18330380
1252542502101842228-18345405
1502672852402112428-22370440
2002923402952662428-22405470
25033039535031926212-22480540
30035644540037026212-22520580
35043050546042926216-22570630
40053056551548026216-26630710
45058061556553028220-26690770
50063067062058228220-26740820
60080078072568234220-30840940
70090089584079434524-309601040
8001000101595090136524-3310801180
900110011151050100138528-3311901280
1000120012301160111238528-3613101420
1100125013401270122242528-3613901480
1200130014551380132844532-3914201530
1400150016751590153048536-4215401650
1600180019151820175052540-4816601750
1800200021152020195056544-4817901860
2000220023252230215060548-4819201990


Articles related to technology research and development
  • Wafer-type ball valve patented

       The utility model provides a wafer-type float valve, which includes a valve body and a driving mechanism. The valve body is provided with a through medium channel in the axial direction, and is tubular in shape. It also includes a butterfly plate that fits and seals with the inner wall of the medium channel. The driving mechanism comprises a valve shaft that passes through the valve body and is connected to the butterfly plate, a valve rod connected to the outer end of the valve shaft in the radial direction, and a float ball connected to the valve rod. The valve rod is provided with a limit bolt that is threadedly connected to the valve body in the swinging direction. The butterfly plate can rotate relative to the valve body. The front end of the valve body at the inlet of the medium channel is provided with a filter screen, which is hollow and hemispherical in shape. The end face of the valve body opposite the filter screen is provided with an annular groove, and the open end of the filter screen is provided with a raised edge that is embedded in the annular groove. The utility model can filter the medium, is simple to install, time-saving, labor-saving, small in size, widely applicable, and can reduce the impact force of the medium on the butterfly plate.

    1. A double-clip type float valve, comprising a valve body and a driving mechanism. The valve body is provided with a through medium channel in the axial direction. It is characterized in that the valve body is tubular and further comprises a butterfly plate that fits and seals with the inner wall of the medium channel. The driving mechanism comprises a valve shaft passing through the valve body and connected to the butterfly plate, a valve rod connected to the outer end of the valve shaft in the radial direction, and a float connected to the valve rod. The valve rod is provided with a limit bolt threadedly connected to the valve body in the swinging direction. The butterfly plate is rotatable relative to the valve body. The front end of the valve body located at the inlet of the medium channel is provided with a filter screen. The filter screen is hollow and hemispherical. The end surface of the valve body opposite the filter screen is provided with an annular groove. The open end of the filter screen is provided with a convex edge embedded in the annular groove.

    2. A wafer-type float valve according to claim 1, characterized in that the valve rod penetrates one end of the valve shaft located outside the valve body, and is threadedly engaged with the valve rod through a nut to clamp the valve shaft and achieve positioning of the valve rod.

    3. A wafer-type ball valve according to claim 2, characterized in that a step is provided at the position on the valve shaft connected to the valve body, a groove is provided at the position on the outer circumferential wall of the valve body corresponding to the step, and a gland is sleeved on the valve shaft, which is threadably connected to the groove and abuts against the step.

    4. A wafer-type ball valve according to claim 3, characterized in that a sealing groove is provided on the side of the groove facing the butterfly plate, and a sealing ring sleeved on the valve shaft is arranged in the sealing groove.

    5. A wafer-type ball valve according to claim 1, characterized in that an inner groove is provided on the side wall within the annular groove, and an elastic snap ring, which is used to press the convex edge and is compatible with the inner groove, is provided within the annular groove.

    6. A wafer-type ball valve according to claim 5, characterized in that the bottom of the convex edge is provided with a plurality of protrusions arranged around the center of the filter screen, and the annular groove is provided with a limiting groove adapted to the protrusions.

    7. A wafer-type float valve according to claim 6, characterized in that the protrusion is hemispherical. 8. A wafer-type float valve according to claim 7, characterized in that a clamping groove is provided at the junction of the protrusion and the protruding edge, and a clamping block adapted to the clamping groove is provided at the opening of the limiting groove.