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PQ340Y Worm Gear Operated Eccentric Semi-ball Valve

PQ340Y Worm Gear Operated Eccentric Semi-ball Valve

  • Model:PQ340Y-6Q/PQ340Y-10Q/PQ340Y-16Q/PQ340Y-10C/PQ340Y-16C/PQ340Y-10P/PQ340Y-16P
  • Specification:DN50-DN1200
  • Temperature:-29~550℃
  • Medium:Water and water-like media
  • Pressure:PN6~PN16
  • Connection method:flange
  • Driving method:turbine
  • Material:Ductile Iron, Cast Steel, Stainless Steel
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PQ340Y Worm Gear Operated Eccentric Semi-ball ValveOverview

The PQ340Y Worm Gear Operated Eccentric Semi-ball Valve features a worm gear-driven eccentric hemispherical design with a two-piece cast valve body, delivering both fluid control and high sealing reliability. Its turbine-driven mechanism ensures smooth valve disc operation, with a nominal pressure exceeding PN40. The metal hard-seal structure is specifically engineered for high-temperature, high-pressure, and particulate media applications, making it a preferred solution for demanding pipelines in power, steel, and chemical industries. This valve excels in efficient shut-off and reliable control performance.

PQ340Y Worm Gear Operated Eccentric Semi-ball Valve Product Diagram

PQ340Y Worm Gear Operated Eccentric Semi-ball ValveCharacteristic

1. The turbine drive system is stable and efficient, featuring a worm gear reduction mechanism that ensures smooth transmission, high output torque, effortless operation, and self-locking capability, enabling precise start-stop control and position retention.

2. Metal hard-sealed high-pressure and high-temperature: The valve disc and seat are welded with cemented carbide or other wear-resistant materials, forming a rigid metal sealing pair that is resistant to erosion and high temperatures, suitable for high-pressure differentials and high-temperature media.

3. Excessive wear-free operation of eccentric structure: The eccentric crankshaft design enables the valve disc to disengage from the valve seat during opening/closing, achieving frictionless motion. This significantly reduces operating torque and sealing surface wear, thereby extending service life.

4. The flow channel is straight and the diameter of the valve is almost the same as that of the pipeline, so the resistance of the medium is small and the impurities are not easy to accumulate. It is especially suitable for slurry and solid particles.

5. Robust structure with easy maintenance: The valve body features a sturdy design with either top-mounted or side-mounted configurations, allowing internal components to be serviced or replaced in-line. This minimizes downtime and lowers overall maintenance costs.

PQ340Y Worm Gear Operated Eccentric Semi-ball Valvestructure principle

PQ340Y Worm Gear Operated Eccentric Semi-ball Valve Structure Diagram


List of Component Names and Materials

序SNOComponent NameCommon materials (classified by operating conditions)
1body/cover①cast steel(WCB) ②Ductile iron (QT500-7)③ Stainless steel (304,316, CF8M)
2eccentric sphere / corona① Carbon steel (WCB + hard chrome treatment)② Stainless steel (304/316 + surface hardening)③20Cr13/25Cr2Mo1V (wear-resistant alloy)
3Shaft (main/auxiliary)①20Cr13 (martensitic stainless steel)②304/316 (Austenitic stainless steel)③45 steel (high-quality carbon steel)
4valve seat (inner/outer)①Q235+PTFE (soft seal)②304/316 (hard-sealed)③Aluminum bronze (ZCuAl10Fe3, wear-resistant)
5turbine drive mechanism① Worm gear: bronze (ZCuSn5-5-5)② Worm gear: carbon steel (45) + surface quenching
6seal (packing)① Flexible graphite (high temperature / high pressure)②PTFE (corrosion-resistant)③ Rubber (EPDM/CR, low pressure)
7Fasteners (bolts/nuts)①35CrMoA (high-strength carbon steel)②0Cr18Ni9 (stainless steel)③15Cr1Mo1V (high-temperature conditions)
8Shaft sleeve (upper / lower)①Bronze alloy(ZCuAl10Fe3) ②PTFE


PQ340Y Worm Gear Operated 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 Temperature29~ 550



PQ340Y Worm Gear Operated 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

PQ340Y Worm Gear Operated Eccentric Semi-ball Valve Outline Diagram

Outline dimension table

DN(mm)/Nominal diameter(mm)/Size
LH
50178210
65190215
80203245
100229265
125254290
150267315
200292360
250330380
300356450
350381500
400406570
450432640
500457700
600508760
700610830
800660920
9007111050
10008111185
120010151325


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.