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What is a Lug Type Check Valve?
What is a Lug Type Check Valve?
2025-02-27

In industrial pipeline systems, check valves are essential components used to prevent backflow of media. Among them, the lug type check valve is favored in many applications due to its unique structure and installation method.     Structural Features The lug type check valve is a one-way valve with threaded lug connections. It typically consists of a valve body, valve disc, valve seat, and a spring (in some models). The most notable feature of this valve is the presence of multiple threaded lug holes on both sides of the valve body, allowing it to be directly bolted to the pipeline flanges without the need for additional nuts. Common materials used include carbon steel, stainless steel, and ductile iron, which are selected based on the specific operational requirements. Compared to the wafer check valve, the lug type check valve offers a more secure installation, capable of withstanding higher pipeline loads. It also supports single-end maintenance, making it suitable for applications that require frequent disassembly and maintenance.   Working Principle: Unidirectional Flow, Preventing Backflow The core function of the lug type check valve is to ensure that the fluid flows in only one direction. In the event of backflow, the valve disc quickly closes to prevent damage to equipment caused by the reverse flow of the medium.   (1) During normal flow: The fluid pressure pushes the valve disc open, allowing the medium to flow smoothly through the pipeline.   (2) When the flow decreases or backflow occurs: The valve disc automatically closes under the action of the spring or gravity, preventing the backflow of the medium and protecting the pipeline and equipment from damage. Some lug type check valves are equipped with a spring-assisted closing mechanism, which responds more quickly to fluid changes, reduces water hammer effects, and enhances system safety.   Main Application Scenarios Due to its unique structure and stable performance, the lug type check valve is widely used across various industries:   (1) Water Treatment and Supply Systems It ensures one-way water flow, preventing backflow when pumps stop, and protects the system from damage.   (2) Oil and Gas Pipelines Suitable for high-pressure and high-temperature conditions, it prevents backflow of fluids from impacting equipment.   (3) Chemical Industry In pipelines conveying corrosive media, lug type check valves made from corrosion-resistant materials ensure production safety.   (4) Power Plants and Boiler Systems Used in steam delivery pipelines to prevent pressure fluctuations from affecting equipment.   (5) Industrial Fluid Control Ideal for systems transporting various liquids, gases, or low-viscosity fluids, improving system stability.   Advantage (1) Stable Installation The threaded lug design allows the valve to be installed or removed independently without affecting the entire pipeline system, making maintenance easier. &nbs...

Overview of T Strainer
Overview of T Strainer
2025-01-22

In industrial piping systems, impurities are often a major risk that affects the stable operation of equipment. The T Strainer, as an efficient filtering device, can effectively remove solid particles and impurities from the pipeline medium, protecting critical equipment from damage and thereby enhancing the overall reliability of the system. What is a T Strainer? The T Strainer, named for its shape resembling the letter "T," is a filtering device widely used in piping systems. Its design features include a T-shaped body, a removable filter element, and flange connections, making it easy to install, clean, and maintain. The strainer is typically made of high-strength metal materials, ensuring reliable performance in high-pressure and high-temperature environments.   Working Principle of the T Strainer The working principle of the T Strainer is to introduce liquid or gas medium into the strainer body, where the internal filter element captures solid particles and impurities from the medium, while the clean fluid continues to flow downstream. When the accumulated impurities reach a certain level, the user can remove the cover of the strainer to clean the filter element, thus restoring the filtering performance.   Main Applications of the T Strainer (1) Water Treatment Industry In water treatment systems, T strainers are commonly used to remove sand, particles, and other suspended solids, protecting downstream pumps and precision equipment.  (2) Oil and Chemical Industry In the petrochemical sector, T strainers filter impurities from process media, preventing corrosive particles or deposits from damaging equipment.  (3) Power Generation Industry In thermal power plants and nuclear power stations, T strainers are used to filter particles from cooling water or steam systems, ensuring the stable operation of critical components.  (4) Gas Transmission Pipelines T strainers are also used for filtering gases such as natural gas and compressed air, effectively removing fine particles and extending equipment lifespan.   Advantages of the T Strainer (1) High Filtration Efficiency: The filter element can be selected with different mesh sizes based on requirements, making it suitable for various application scenarios.  (2) Easy Maintenance: Cleaning and replacing the filter element is very convenient, with no need to disassemble the entire strainer body.  (3) Strong Adaptability: It can withstand high-pressure and high-temperature conditions, making it suitable for a wide range of industrial fields.  (4) Cost-Effective: Compared to more complex filtering equipment, the T strainer offers high cost-effectiveness and low maintenance costs.   Precautions for Use (1) Regular Cleaning of the Filter Element: Accumulation of impurities can reduce filtration efficiency and even lead to pipeline blockage, so a cleaning schedule should be set based on the working conditions.  (2) Choose the Right Material: Select a f...

What is the Difference Between API607 and API6D Ball Valve?
What is the Difference Between API607 and API6D Ball Valve?
2025-01-10

In the industrial valve sector, API 607 and API 6D are two commonly referenced and significant standards, each applicable to ball valves under different operating conditions. Understanding their differences helps engineers and procurement personnel select the right product for specific applications. Scope of Application API 607 primarily applies to fire-safe valves, including ball valves, gate valves, and plug valves. Its objective is to ensure the sealing performance of valves during a fire to prevent the fire from spreading. API 607 ball valves are typically used in high-risk conditions such as chemical, petrochemical, and oil and gas industries. API 6D, on the other hand, focuses on ball valves used in pipeline transportation systems, covering aspects such as design, manufacturing, testing, and operation. This standard is widely applied in long-distance pipelines, LNG stations, and other pipeline transportation scenarios, emphasizing valve reliability and operational performance. Depending on the specific application, fire-safe designs may or may not be required under API 6D.   Design Requirements API 607 ball valves must meet fire-safe design requirements, ensuring basic sealing functionality in high-temperature environments. Seats, seals, and other critical components are required to use fire-resistant materials to prevent media leakage even if damaged during a fire. API 6D ball valves, in contrast, emphasize structural integrity and flow control performance. They typically feature double block and bleed (DBB) functionality and a full-bore design to minimize fluid resistance. Additionally, API 6D mandates reliability under high-pressure and low-temperature conditions, with fire-safe design being optional based on the specific application requirements.   Sealing Performance API 607: Sealing performance is the most critical aspect of the API 607 standard. It requires valves to maintain a certain level of sealing capability during a fire to prevent media leakage. Fire-safe valve seals, seats, and other components must possess high-temperature resistance, typically utilizing metal seals or materials designed to withstand elevated temperatures. These valves must pass high-temperature exposure tests for a specific duration to ensure that they can endure temperature fluctuations and provide effective sealing in fire scenarios. API 6D: While API 6D emphasizes valve sealing performance, it does not impose stringent fire-sealing requirements like API 607. The inclusion of fire-safe design in API 6D valves depends on the application. The standard focuses on sealing performance under normal operating conditions, including media leakage control (e.g., gas-tightness testing). API 6D sealing requirements are primarily centered on standard pressure and temperature conditions, making the valves suitable for most pipeline transportation media.   Material Requirements API 607: To ensure fire-safe functionality, API 607 imposes stringent requirem...

WCB Handwheel Globe Valve 1500LB 2 Inch
加载中...

WCB Handwheel Globe Valve 1500LB 2 Inch

  • Payment:

    30% when order confirmed, 70% before shipment
  • Product Origin:

    China
  • Color:

    Customization
  • Shipping Port:

    Shanghai, China
  • Lead Time:

    30~60 days Ex Works after order confirmation
  • Material:

    ASTM A216 WCB +13Cr
  • Method of Operation:

    Handwheel Operation
Inquiry now
Product Detail

The 2 inch 1500LB globe valve, made of ASTM216 WCB, is designed as per BS 1873. It is operated by a handwheel and is connected with pipeline by RTJ. The body and the disc of the globe valve contain 13Cr, therefore this valve enjoys a better ability to resist corrosion.

 

Quick Detail

Type

Globe Valve

Nominal Diameter

2 Inch

NominalPressure

1500LB

Construction

Bolted Bonnet

Connection

RTJ

Operation

Handwheel

Design & Manufacture

BS 1873

End to End 

ASME B16.10

Flange End Dimension

ASME B16.5

Test & Inspection 

API 598

Temperature Range

-29℃~+425℃

Body Material

ASTM A216 WCB +13Cr

Disc Material

ASTM A105 WCB +13Cr

Media

W.O.G.


Dervos Quality Checking System

In Dervos, we control quality throughout the whole manufacturing process.

 

Casting inspection:

We can find out the problem of raw material, such as shoddy casting, unqualified wall thickness, chemical composition and so on, which ensure that you will not be cheated.  

 

Machining Inspection:

On the one hand, we could ensure machining accuracy through this process. On the other hand, we could find out machining mistake as early as possible, to win more time for repairing and remaking

 

Final Inspection:

Final inspection activities include document and QC record review, visual examination, dimension check, pressure test, painting and packing check. You don’t need to come and inspect in person and all the documents could be provided as proof. 


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If you are interested in our products and want to know more details,please leave a message here,we will reply you as soon as we can.

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The 12 inch 150 LB cast steel globe valve is made of carbon steel WCB body and trim 8, with gearbox, RF flange, BB, and plug disc. Quick Detail Type Globe Valve Size 12'' Pressure Class 150 Construction Bolted Bonnet, Straight Pattern,Plug Disc, OS&Y Connection Flanged Connection Operation GearOperated Design Code BS 1873 Face to Face ASME B16.10 Flange Connection ASME B16.5 Pressure & Temp ASME B16.34 Test & Inspection API 598 Body Material A216 WCB TrimMaterial Trim 8 Temperature Range -29℃~+427℃ Application WOG Origin China Dimension Class 150 NPS in 2 2 1/2 3 4 5 6 8 10 12 DN mm 50 65 80 100 125 150 200 250 300 L-L1 (RF-BW) in 8 8-1/2 9-1/2 11-1/2 14 16 19-1/2 24-1/2 27-1/2 mm 203 216 241 292 256 406 495 622 698 L2 (RTJ) in 8-1/2 9 10 12 14-1/2 16-1/2 20 25 28 mm 216 229 254 305 368 419 508 635 711 L3 mm 102 108 121 146 178 203 248 311 349 H (OPEN) in 14-11/16 15-3/8 16-9/16 20-1/4 21-3/16 22-5/15 24-5/8 28 39 mm 373 390 421 515 538 567 626 712 990 W in 7-7/8 9-7/8 9-7/8 11-13/16 11-13/16 13-3/4 15-3/4 17-3/4 24 mm 200 250 250 300 300 350 400 450 610 WT (kg) RF 22 29 42 64 77 105 154 288 507 BW 19 25 34 49 65 82 131 249 430 Related Knowledge What is the difference between a gate valve and a globe valve? Gate valves and globe valves are two of the most common valves we know. The differences beween them are: 1.Gate valve is used only for on-off function. But the globe valve could be used for shutting off and throttling at the same time.  2.The flow resistance of a globe valve is larger than a gate valve. Likewise, globe valves have more pressure drop than gate valves. 3.The gate valve require larger installation space than a globe valve from the perspective of opening height. 4.The gate valve sealing face suffers more abrasion than a globe valve. 5.The torque value of a globe valve is larger than a gate valve. Quality Checking Quality means everything in Dervos. Quality checking team will do inspections according to standard procedure and provide reports. Our QC team will check valve quality from casting and forging, machining, pressure testing, dimension checking, painting & packing.

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Leave a message

    If you are interested in our products and want to know more details,please leave a message here,we will reply you as soon as we can.

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