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Understanding Butterfly Valves
Basic Design of Butterfly Valves
- Corpo: The main structure that houses the valve components and connects to the pipeline.
- Seal: Provides a tight closure to prevent leaks when the valve is in the closed position.
- Disc: The part that rotates to open or close the valve, positioned in the center of the pipe.
- Stem: A rod that connects the disc to the handle or actuator, allowing external control of the valve.
Operation of Butterfly Valves
Common Uses of Butterfly Valves
- HVAC Systems: Controlling the flow of air and non-corrosive gases.
- Water Treatment Plants: Regulating water flow in treatment processes.
- Power Generation Facilities: Managing the flow of cooling water and other fluids.
- Processamento de alimentos e bebidas: Handling liquids in production lines.
- Pharmaceutical Manufacturing: Controlling the flow of fluids in sterile environments.
- Chemical Processing Plants: Regulating the flow of various chemicals.
Advantages of Wafer Butterfly Valves
- Cost-Effective: Wafer butterfly valves are affordable and easy to install and maintain, which can lead to significant cost savings.
- Lightweight Design: These valves are lightweight, making them easy to handle and install. Their compact size is especially useful in tight spaces where efficient use of space is important.
- Effective Flow Control: The design of wafer butterfly valves allows for efficient control of fluid flow. The valve’s disc is positioned in the center of the pipe, enabling a quick response to changes in flow rate.
- Aplicações versáteis: Wafer butterfly valves are used in various industries, including water treatment, HVAC, chemical processing, and food production. Their versatility makes them a common choice across different fields.
- Lower Pressure Drop: Compared to other valve types, wafer butterfly valves typically create less pressure drop, which can result in energy savings and improved system performance.

Differences Between Lug Style and Wafer Style Butterfly Valves
Deep Dive into Wafer Butterfly Valves

The Anatomy of a Wafer Butterfly Valve
A wafer butterfly valve has a straightforward yet effective design. It includes three main components: a round disc, a stem, and a sealing gasket. The disc is located at the center of the pipe and is connected to the stem. When the valve is open, the disc allows the fluid to flow freely through the pipe.
How Wafer Butterfly Valves Create a Seal
When the valve is closed, the disc rotates to a position perpendicular to the flow, pressing against the rubber gasket. This action creates a seal that stops the flow of the fluid or gas in the pipe. The design of the disc allows for a tight shut-off, making wafer butterfly valves suitable for a variety of applications.
Materials Used in Wafer Butterfly Valves
- Stainless steel: Known for its high corrosion resistance, making it ideal for use in environments where the valve may be exposed to harsh chemicals or moisture.
- Carbon steel: Offers strength and durability, commonly used in applications where high pressure is a factor.
- Ductile iron: Provides flexibility and strength, making it suitable for a wide range of temperatures and pressure conditions.
- PVC: A lightweight and corrosion-resistant material, often used in applications involving low-pressure systems or corrosive media.
Working Mechanism of Wafer Butterfly Valves
Applications of Wafer Butterfly Valves
Industries That Rely on Wafer Butterfly Valves
- Chemical Processing Plants: Used to control the flow of various chemicals, often in harsh or corrosive environments.
- Water and Wastewater Treatment Facilities: Help regulate the flow of water and other fluids in purification and sewage systems.
- HVAC Systems: Control the flow of air and gases to maintain proper heating, ventilation, and air conditioning.
- Pharmaceutical and Biotech Industries: Used to manage the flow of fluids in sterile and clean environments essential for production.
- Processamento de alimentos e bebidas: Regulate the flow of liquids and gases in food production, maintaining safety and hygiene standards.
- Power Generation Plants: Control the flow of steam, water, and other fluids used in power generation processes.
Selecting the Right Valve for Your Project
- Flow Requirements: Evaluate the flow characteristics of your system to determine the appropriate type and size of the valve needed for optimal performance.
- Pressure and Temperature: Consider the operating pressure and temperature conditions to select a valve that can handle the specific demands of your application.
- Material Compatibility: Select a valve made from materials that are compatible with the fluids or substances being handled, which will help prevent corrosion and extend the valve’s lifespan.
- Actuation Method: Decide between manual or automated actuation based on your operational needs, considering factors like control precision and ease of system integration.
Step-by-Step Installation Guide for Wafer Butterfly Valves
01
Storage Conditions
02
Orientation and Material Verification
03
Pressure Rating and Flange Preparation
04
Processo de instalação
05
Bolt Tightening and Final Checks
- Regular Inspection: Periodically check the valve for any signs of wear, corrosion, or leakage. Make sure the valve operates smoothly and that it opens and closes properly.
- Lubrication: Apply the appropriate lubricant to keep the valve’s components moving smoothly. Regularly lubricate the shaft and bearings to reduce friction and extend the valve’s lifespan.
- Seal Replacement: If the valve seals show signs of wear or deterioration, replace them to prevent leaks. Make sure the new seals are suitable for the valve’s specific operating conditions.
- Cleanliness and Protection: Keep the valve and its surroundings clean to avoid the buildup of dirt and debris. Protect the valve from environmental factors that could cause corrosion or damage.
- Leakage: Identify where the leakage is coming from and inspect the seals and gaskets for any damage or misalignment. Adjust or replace the seals to stop the leakage and restore proper sealing.
- Operational Stiffness: If the valve is stiff when operating, check for obstructions or misalignment that might cause resistance. Lubricate the valve components to help them move smoothly without any sticking.
- Corrosion and Wear: Look for signs of corrosion or wear, especially in areas under high stress. Take steps to prevent further corrosion, and replace worn components if necessary.
Dimensões
Wafer Ends Butterfly Valve
- Type: Cast Steel Butterfly Valve
- Connection: Wafer Ends
- Seating: Metal Seating
- Padrão de projeto: ASME B16.34



DIMENSÕES DA CLASSE 150 | |||||||||||||||
DIMENSÃO DO FLANGE | BASE DE MONTAGEM | W.T | |||||||||||||
TAMANHO | L | C | h | a | h1 | H | H1 | H2 | D2 | L1 | TYPE | C1 | n | h2 | |
3 | 48 | 152.4 | – | – | 19.1 | 282 | 258 | 142 | 200 | 165 | F07 | 70 | 4 | 9 | 21 |
4 | 54 | 190.5 | – | – | 19.1 | 294 | 270 | 162 | 200 | 165 | F07 | 70 | 4 | 9 | 27 |
5 | 57 | 215.9 | – | – | 22.2 | 319 | 295 | 170 | 200 | 165 | F07 | 70 | 4 | 9 | 32 |
6 | 57 | 241.3 | – | – | 22.2 | 340 | 316 | 179 | 200 | 165 | F07 | 70 | 4 | 9 | 35 |
8 | 64 | 298.4 | – | – | 22.2 | 384 | 344 | 208 | 300 | 270 | F10 | 102 | 4 | 11 | 53 |
10 | 71 | 361.9 | – | – | 25.4 | 434 | 394 | 241 | 300 | 270 | F10 | 102 | 4 | 11 | 74 |
12 | 81 | 431.8 | – | – | 25.4 | 520 | 470 | 267 | 400 | 335 | F14 | 140 | 4 | 18 | 95 |
14 | 92 | 476.3 | – | – | 28.6 | 544 | 494 | 316 | 400 | 335 | F14 | 140 | 4 | 18 | 131 |
16 | 102 | 539.7 | – | – | 28.6 | 643 | 578 | 349 | 500 | 375 | F16 | 165 | 4 | 22 | 165 |
18 | 114 | 577.8 | – | – | 31.8 | 660 | 595 | 381 | 500 | 375 | F16 | 165 | 4 | 22 | 230 |
20 | 127 | 635 | 1-1/8-8 | 28.6 | – | 695 | 630 | 412 | 500 | 375 | F16 | 165 | 4 | 22 | 280 |
24 | 154 | 749.3 | 1-1/4-8 | 31.8 | – | 813 | 743 | 473 | 600 | 485 | F25 | 254 | 8 | 18 | 450 |
DIMENSÕES DA CLASSE 300 | |||||||||||||||
DIMENSÃO DO FLANGE | BASE DE MONTAGEM | W.T | |||||||||||||
TAMANHO | L | C | h | a | h1 | H | H1 | H2 | D2 | L1 | TYPE | C1 | n | h2 | |
3 | 48 | 168.2 | – | – | 22.2 | 282 | 258 | 142 | 200 | 165 | F07 | 70 | 4 | 9 | 21 |
4 | 54 | 200 | – | – | 22.2 | 294 | 270 | 162 | 200 | 165 | F07 | 70 | 4 | 9 | 27 |
5 | 59 | 234.9 | – | – | 22.2 | 319 | 295 | 170 | 300 | 270 | F10 | 102 | 4 | 11 | 38 |
6 | 59 | 169.8 | – | – | 22.2 | 375 | 336 | 199 | 300 | 270 | F10 | 102 | 4 | 11 | 45 |
8 | 73 | 330.2 | – | – | 25.4 | 450 | 400 | 227 | 400 | 335 | F14 | 140 | 4 | 18 | 72 |
10 | 83 | 387.3 | 1-8 | 25.4 | – | 499 | 449 | 265 | 400 | 335 | F14 | 140 | 4 | 18 | 135 |
12 | 92 | 450.8 | 1-1/8-8 | 28.6 | – | 562 | 497 | 302 | 500 | 375 | F16 | 165 | 4 | 22 | 148 |
14 | 117 | 514.3 | 1-1/8-8 | 28.6 | – | 616 | 551 | 328 | 500 | 375 | F16 | 165 | 4 | 22 | 208 |
16 | 133 | 571.5 | 1-1/4-8 | 31.8 | – | 676 | 606 | 367 | 600 | 485 | F25 | 254 | 8 | 18 | 298 |
18 | 149 | 628.6 | 1-1/4-8 | 31.8 | – | 711 | 641 | 402 | 600 | 485 | F25 | 254 | 8 | 18 | 382 |
20 | 159 | 685.8 | 1-1/4-8 | 31.8 | – | 798 | 721 | 432 | 700 | 520 | F30 | 298 | 8 | 22 | 450 |
24 | 181 | 812.8 | 1-1/2-8 | 38.1 | – | 914 | 837 | 530 | 700 | 515 | F30 | 298 | 8 | 22 | 680 |
DIMENSÕES DA CLASSE 600 | |||||||||||||||
DIMENSÃO DO FLANGE | BASE DE MONTAGEM | W.T | |||||||||||||
TAMANHO | L | C | h | a | h1 | H | H1 | H2 | D2 | L1 | TYPE | C1 | n | h2 | |
3 | 56 | 168.2 | – | – | 22.2 | 289 | 265 | 148 | 200 | 165 | F07 | 70 | 4 | 9 | 29 |
4 | 64 | 215.9 | – | – | 25.4 | 370 | 330 | 180 | 300 | 270 | F10 | 102 | 4 | 11 | 38 |
5 | 78 | 266.7 | – | – | 28.6 | 405 | 355 | 195 | 400 | 335 | F14 | 140 | 4 | 18 | 55 |
6 | 78 | 292.1 | 1-8 | 25.4 | – | 420 | 370 | 225 | 400 | 335 | F14 | 140 | 4 | 18 | 75 |
8 | 102 | 349.2 | 1-1/8-8 | 28.6 | – | 490 | 425 | 255 | 500 | 375 | F16 | 165 | 4 | 22 | 136 |
10 | 117 | 431.9 | 1-1/4-8 | 31.8 | – | 545 | 480 | 310 | 500 | 375 | F16 | 165 | 4 | 22 | 200 |
12 | 140 | 488.9 | 1-1/4-8 | 31.8 | – | 630 | 560 | 330 | 600 | 485 | F25 | 254 | 8 | 18 | 295 |
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Outras percepções gerais aqui
Specs of Wafer Type Butterfly Valve
Dimensões
Materiais de construção
Faixa de temperatura
Features of Wafer Type Butterfly Valve
Operação rápida
The simple quarter-turn operation of wafer-type butterfly valves allows for rapid opening and closing. This quick operation is especially beneficial in applications where immediate flow control is necessary, such as in emergency shutdown systems or critical safety processes.
Bi-Directional Flow
These NTVAL valves support bi-directional flow, meaning they can control fluid flow in both directions. This feature makes them highly adaptable to different pipeline configurations. It also simplifies the design of the piping system by reducing the need for additional valves.
Strong Seal
Wafer Type Butterfly Valves provide a strong seal, preventing any fluid leakage. The seal is crafted from high-quality materials like EPDM rubber, which maintain their effectiveness over long periods. This feature is crucial for maintaining safety and efficiency in fluid control systems.
Benefits of Wafer Type Butterfly Valve
Increased Versatility
These valves are versatile, suitable for industries like water treatment, chemical processing, and oil and gas. They handle various fluids, including corrosive and abrasive substances, making them a valuable addition to diverse industrial processes.
Enhanced Performance
These valves offer dependable performance with a tight seal that prevents leaks. Their design provides consistent operation, even under high pressure. This reliability is crucial for maintaining safety and efficiency in heavy-duty operations.
Less Environmental Impact
Constructed from high-quality materials, Wafer Type Butterfly Valves offer excellent resistance to environmental factors such as corrosion, heat, and chemicals. This resistance extends the valve's lifespan and maintains its functionality over time.
Applications of Wafer Type Butterfly Valve
Processamento de alimentos e bebidas
Treatment Plants
Sistemas HVAC
Irrigation Systems


3 Considerations When Buying Wafer Type Butterfly Valve
01
ISO 45001 Certification
02
Anti-Cavitation
03
Reliable Manufacturer
FAQS About Wafer Type Butterfly Valve
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