Class150 Class300 DN500 High Temperature Carbon Steel Cast Steel Manual Screw Knife Gate Valve for Sewage
Product Specifications
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DN
200*200
300*300
400*400
700*700
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Product Details
| Customization: | Available |
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| Media: | Sewage |
| Temperature: | High Temperature |
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Basic Info.
- Model NO.
- GV-2552
- Type
- Direct-acting
- Material
- Carbon Steel
- Connection Form
- Flange
- Pressure
- High Temperature
- Actuator
- Manual
- Seal Surface
- Wedge Gate Valve
- Usage
- Regulation, Safety
- Standard
- GB, JIS, ANSI
- Application
- Industrial Usage, Water Industrial Usage, Household Usage
- MOQ
- 1 Piece
- DN
- 200*200-700*700
- Transport Package
- Wooden Box
- Trademark
- Yoonad
- Origin
- China
- Production Capacity
- 50000PCS/Year
Packaging & Delivery
- Package Size
- 100.00cm * 100.00cm * 100.00cm
- Package Gross Weight
- 30.000kg
Product Description

Product Description
Our gate valve is engineered for exceptional reliability and long-lasting service in industrial fluid handling systems. Crafted from premium materials including stainless steel, carbon steel, and alloy steel, it offers excellent corrosion resistance and durability to withstand harsh operating conditions.
Designed with a precision-machined gate and seat, the valve ensures tight shut-off and minimal flow resistance, delivering efficient media control for liquids, gases, and steam. Available in a wide range of pressure ratings (from PN10 to PN400) and sizes (DN15 to DN600), it can be customized to meet specific application requirements, including flanged, threaded, or welded end connections.
Equipped with a robust operating mechanism—either manual handwheel, electric actuator, or pneumatic actuator—it enables easy and precise operation, suitable for both on-off and throttling control. Compliant with international standards such as ANSI, and DIN, our gate valve is widely used in oil and gas, petrochemical, water treatment, power generation, and other key industries, providing stable and safe fluid management solutions.

Product Advantages
1. Excellent shut-off performance: Features a tight-fitting gate and seat design, ensuring reliable leak-proof sealing for media isolation.
2. Low flow resistance: The full-port structure allows unobstructed fluid passage when fully open, minimizing pressure loss.
3. Wide application range: Compatible with various media (liquids, gases, steam) and suitable for high/low pressure, high/low temperature working conditions.
4. Durable and long-lasting: Constructed from high-quality materials like stainless steel and carbon steel, offering strong corrosion resistance and wear resistance.
5. Versatile operation options: Available with manual, electric, or pneumatic actuators to meet different control needs and automation requirements.
6. Easy maintenance: Simple structural design facilitates disassembly, inspection, and repair, reducing downtime and maintenance costs.

How does valve work?
The working principle of a knife gate valve relies on the vertical movement of its blade-shaped gate to control the on-off of fluid in the pipeline, featuring simple structure and reliable cut-off performance.
In the opening process (taking manual knife gate valve as an example), rotating the handwheel counterclockwise drives the valve stem and the connected gate to move upward. As the gate lifts away from the valve seat and sealing ring gradually, it continues to rise to the top of the valve's full bore. At this point, the flow path is fully unobstructed, allowing fluid to pass through the valve smoothly.
For the closing process, turning the handwheel clockwise causes the valve stem to descend, pushing the gate downward. The sharp-edged gate first contacts the fluid medium and then presses tightly against the valve seat and sealing ring under mechanical pressure from the valve stem. The angled design between the gate and the valve seat ensures effective squeezing and cutting of the fluid (especially viscous media like slurry), achieving a tight seal and completely shutting off the fluid flow in the pipeline.
For knife gate valves with other actuation methods (e.g., pneumatic, electric, electro-hydraulic), the core working principle of the gate's vertical movement remains consistent. The difference lies in the driving mechanism: pneumatic types use compressed air to push the cylinder piston, electric types rely on a motor to drive the valve stem, and electro-hydraulic types utilize hydraulic power—all to realize the lifting and lowering of the gate for opening or closing operations.


Product Parameters
1. Size (e.g., DN15–DN600, NPS 1/2–NPS 24)
2. Pressure rating (e.g., PN10–PN400, Class 150–Class 2500)
3. Material (valve body/bonnet: stainless steel, carbon steel, alloy steel; trim: Stellite, PTFE)
4. End connection type (flanged, threaded, welded, socket weld)
5. Gate type (wedge gate, parallel gate, flexible wedge, solid wedge)
6. Operating temperature range (e.g., -29°C to 550°C)
7. Actuation method (manual handwheel, electric actuator, pneumatic actuator, hydraulic actuator)
8. Sealing class (e.g, ISO 5208 Class VI)
9. Flow capacity (Cv value)
10. Design/standards compliance (ANSI B16.34, DIN 3352, GB/T 12224)
11. Stem type (rising stem, non-rising stem)
12. Nominal diameter (DN/NPS)
13. Body structure (cast, forged)
2. Pressure rating (e.g., PN10–PN400, Class 150–Class 2500)
3. Material (valve body/bonnet: stainless steel, carbon steel, alloy steel; trim: Stellite, PTFE)
4. End connection type (flanged, threaded, welded, socket weld)
5. Gate type (wedge gate, parallel gate, flexible wedge, solid wedge)
6. Operating temperature range (e.g., -29°C to 550°C)
7. Actuation method (manual handwheel, electric actuator, pneumatic actuator, hydraulic actuator)
8. Sealing class (e.g, ISO 5208 Class VI)
9. Flow capacity (Cv value)
10. Design/standards compliance (ANSI B16.34, DIN 3352, GB/T 12224)
11. Stem type (rising stem, non-rising stem)
12. Nominal diameter (DN/NPS)
13. Body structure (cast, forged)













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