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  • PZ573H Bevel Gear Operated Knife Gate Valve

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PZ573H Bevel Gear Operated Knife Gate Valve

PZ573H Bevel Gear Operated Knife Gate Valve

  • Model:PZ573H-6C/PZ573H-10C/PZ573H-16C/PZ573H-6P/PZ573H-10P//PZ573H-16P
  • Specification:DN50-1200
  • Temperature:-29℃ ~ 425℃
  • Medium:Pulp slurry, etc.
  • Pressure:PN6-PN16
  • Connection method:Wafer
  • Driving method:Manual, Gear Drive, Electric
  • Material:Cast steel, stainless steel
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PZ573H Bevel Gear Operated Knife Gate ValveOverview

Overview

The PZ573H Bevel Gear Operated Knife Gate Valve is a shut-off valve utilizing bevel gear transmission, specifically designed for handling slurries, fibrous materials, and solid particulate media. Its core component is a sharp gate plate (blade) that effectively cuts and scrapes fibrous materials and deposits within pipelines using its razor-sharp edge, preventing blockages. The incorporation of a bevel gear mechanism converts the relatively small input force from the operating handle into substantial output torque, enabling effortless and efficient opening/closing of large-diameter valves. This makes it particularly suitable for high-pressure differential applications or scenarios requiring robust shut-off capability. Widely used in papermaking, wastewater treatment, mining, metallurgy, coal, and chemical industries, this product serves as the ideal shut-off equipment for pipelines handling pulp, tailings, coal-water mixtures, sewage, slurry, and other media containing solid particles and fibrous materials. Its robust cutting and anti-clogging capabilities make it a critical piece of equipment for ensuring uninterrupted flow in demanding process segments.          

           

PZ573H Bevel Gear Operated Knife Gate Valve Product Drawing

PZ573H Bevel Gear Operated Knife Gate ValveCharacteristic

Features:

1. Bevel Gear Drive: Utilizes a bevel gear angular transmission mechanism, delivering significant torque amplification for effortless operation of large-diameter valves. The shaft can be extended as needed to enable remote operation.

2. Knife-Edge Gate Disc: The disc bottom features a sharp cutting edge design that effortlessly severs pulp, wood chips, fibers, and other entangled materials within the pipeline during closure, ensuring a tight seal without jamming.

3. Compact Length: The valve body boasts a compact structure with a short overall length and relatively light weight, facilitating installation in confined spaces and effectively reducing pipeline layout costs.

4. Wear-Resistant and Corrosion-Resistant Sealing: Sealing pairs typically utilize wear-resistant alloys or stainless steel materials, supplemented by specialized surface treatments. The valve seat can also be designed as adjustable or replaceable, significantly extending the valve's service life under harsh operating conditions.

5. Multiple Drive Options: Based on the bevel gear operating mechanism, it can be easily adapted to electric, pneumatic, or hydraulic actuators, effortlessly enabling automated valve control and remote centralized operation.

PZ573H Bevel Gear Operated Knife Gate Valvestructure principle

PZ573H Bevel Gear Operated Knife Gate Valve Structural Drawing

零部件名称材料 Part Name Material

体、盖 Body、Bonnet闸板Disc阀杆Siem密封面 Sealing
不锈钢、碳钢、灰铸铁 S.S、C.S、C.I碳钢、不锈钢 C.S、S.S不锈钢 S.S橡胶、四氟、不锈钢、硬质合金 Rubber 、PTFE、S.S、Carbide Alloy


PZ573H Bevel Gear Operated Knife Gate Valvetechnology parameter

Performance Specifications Table

公称压力(MPa)NominalPressure(MPa)壳体试验(MPa)ShellTest(MPa)密封试验(MPa)SealingTest(MPa)工作温度OperatingTemperature适用介质ApplicableMedium
1.0、1.61.5、2.41.1、1.8≤400℃纸浆、污水、煤浆、灰、渣水混合物Pulp, Sewage, Coal Slurry, Ash, Slag-water Mixture


PZ573H Bevel Gear Operated Knife Gate Valvestandard size

Dimensioning Standards

1. Structural length of valves shall comply with GB 13927.

2. Connecting flanges shall comply with GB/T 17241.6.

               

                                                                                                                                                     

PZ573H Bevel Gear Operated Knife Gate Valve Outline Drawing

Dimension Chart

MPaDNLD1D2Hn-MMPaDNLD1D2Hn-M
0.6 MPa5048901103004-M121.0MPa50481001253004-M16
65481101303104-M1265481201453104-M16
80511251503304-M1680511351603304-M16
100511451703804-M16100511551803808-M16
125571752004408-M16125571852104408-M16
150572002255008-M16150572102405008-M20
200702552805808-M16200702652955808-M20
2507031033567012-M162507032035067012-M20
3007636239582012-M203007636840082012-M20
3507641244590012-M203507642846090016-M20
40089462495102016-M2040089482515102016-M22
45089518550115016-M2045089532565115020-M22
500114568600125016-M20500114585620125020-M22
600114670705150020-M22600114685725150020-M27
700127775810175024-M22700127800840175024-M27
800127880920200024-M27800127898950200024-M30
9001549801020230024-M2790015410051050230028-M30
100016510801120250028-M27100016511151160250028-M30
120019012951340280032-M30120019013251380280032-M30


Articles related to technology research and development
  • soft-sealed gate valve patented

       The utility model discloses a novel soft-seal gate valve, which includes a valve body, a valve cover, a valve rod, a valve chamber, and a rubber-coated gate plate. The valve rod penetrates through the valve cover and is connected to the rubber-coated gate plate. The valve chamber includes a medium channel for medium circulation and a connecting chamber that is connected to the medium channel and corresponds to the valve cover. The rubber-coated gate plate is adapted to the connecting chamber and used to cut off or connect the medium channel. The medium channel includes an inlet end and an outlet end. Guide rails are arranged on the inner wall of the connecting chamber on both sides opposite to the rubber-coated gate plate. Both sides of the rubber-coated gate plate are provided with metal sliders, and the metal sliders are provided with sliding grooves that are adapted to the guide rails. Compared to existing soft-seal gate valves, the utility model has good sealing performance, convenient disassembly and assembly, and a long service life for the rubber-coated gate plate.

    1. A novel soft-seal gate valve comprises a valve body, a valve cover, a valve rod, a valve chamber, and a rubber-coated gate plate. The valve rod penetrates through the valve cover and is connected to the rubber-coated gate plate. The valve chamber includes a medium passage for medium circulation and a connecting chamber connected to the medium passage and corresponding to the valve cover. The rubber-coated gate plate is fitted to the connecting chamber and used to cut off or connect the medium passage. The medium passage includes an inlet end and an outlet end. The utility model is characterized in that guide rails are arranged on both sides of the rubber-coated gate plate on the inner wall of the connecting chamber, metal sliding blocks are arranged on both side walls of the rubber-coated gate plate, sliding grooves adapted to the guide rails are opened on the metal sliding blocks, a sealing groove is opened on the top of the valve cover in the axial direction relative to the valve rod, a clamping block is arranged at the opening of the sealing groove, at least three clamping blocks are arranged circumferentially at intervals relative to the central axis of the sealing groove, a sealing seat fitted to and sleeved on the valve rod is arranged inside the sealing groove, a fixed block corresponding to the rotational fit of the clamping block is arranged on the outer circumferential wall at the bottom of the sealing seat, a pressing block abutting against the top surface of the valve cover is arranged on the top of the sealing seat, and a rubber sleeve is sleeved on the top of the valve cover.

    2. A novel soft-seal gate valve according to claim 1, characterized in that a limit opening is provided at the position on the pressure block corresponding to the gap between two adjacent clamping blocks, a limit groove is provided on the end face of the pressure block, a thrust stopper is provided on the sealing seat, and the thrust stopper comprises a fixed disc adapted to the limit groove and a thrust block provided on the outer circumferential wall of the fixed disc and adapted to the limit opening.

    3. A novel soft seal gate valve according to claim 2, characterized in that a limiting block is arranged on the outer circumferential wall of the sealing seat at a position between two adjacent fixing blocks, and a clamping groove adapted to the limiting block is provided on the thrust block.

    4. A novel soft seal gate valve according to claim 1, characterized in that a stepped groove is provided in the valve body at the inlet end, and a filter screen is arranged inside the stepped groove.

    5. A novel soft-seal gate valve according to claim 4, characterized in that the side of the filter screen facing the inlet end is provided with a flow dividing device, which comprises a fixing ring that fits with interference with the inner wall of the stepped groove, a connecting column located on the central axis of the fixing ring, and a flow dividing plate connected to the fixing ring and the connecting column. The side of the stepped groove located on the inlet end facing the fixing ring is provided with an inner groove, and an elastic snap ring is arranged in the inner groove.

    6. A novel soft seal gate valve according to claim 5, characterized in that the side wall of the diverter plate facing the inlet end has a triangular cross-section.

    7. A novel soft seal gate valve according to claim 5, characterized in that one end of the connecting column facing the inlet end is hemispherical