English

English

Get a Quote
Products

Hot Products

Company News

API 602 Forged Gate Valve: When to Use It and How to Specify the Right Design
API 602 Forged Gate Valve: When to Use It and How to Specify the Right Design
2026-07-31

An API 602 forged gate valve is used for compact, small-bore gate valve service in petroleum, natural gas, chemical, power, and industrial piping. To specify the right design, confirm size, pressure class, material, bonnet type, end connection, port type, trim, seat, testing standard, and service conditions.   What Is an API 602 Forged Gate Valve?   An API 602 forged gate valve is a compact steel gate valve manufactured to API 602 requirements. API 602 covers gate, globe, and check valves for sizes DN 100 / NPS 4 and smaller in petroleum and natural gas industry applications. Unlike large cast steel gate valves, forged gate valves are usually selected for smaller piping systems where pressure, temperature, vibration, or compact installation matters. Forged construction provides a dense material structure, which is useful for high-pressure and critical service. In simple terms, API 602 is often the better fit when the line is small but the service is demanding.   When Should You Use an API 602 Forged Gate Valve?   Use an API 602 forged gate valve when the application requires reliable isolation in a compact piping system. It is commonly used in refineries, chemical plants, power plants, oil and gas facilities, steam lines, vents, drains, and utility systems.   Typical use cases include: ● Small-bore high-pressure lines ● Steam and condensate service ● Process isolation ● Skid-mounted systems ● Drain and vent connections ● Instrument and auxiliary piping ● Oil, gas, and petrochemical service   For larger line sizes or heavy-duty cast steel applications, API 600 may be more appropriate. API 602 and API 600 should not be treated as interchangeable standards.   Key Design Choices to Specify   Do not specify an API 602 forged gate valve only by size and pressure class. The purchase requirement should define the full valve design. Important items include: Item What to Confirm Size DN / NPS size and bore requirement Pressure class Class 800, 1500, 2500, or project requirement Material A105, F304, F316, F11, F22, LF2, or other grade Bonnet type Bolted bonnet, welded bonnet, or pressure seal End connection Socket weld, threaded, butt weld, or flanged Port Full port or regular port Trim Stem, wedge, seat, and hardfacing material Operation Handwheel, gearbox, or actuator if required Testing API 598 or project-specified testing   These details affect sealing, pressure capability, maintainability, and installation.   Bonnet and End Connection Selection   Bonnet type should match pressure, temperature, and maintenance needs. Bolted bonnet designs are common and easier to service. Welded bonnet designs reduce potential leakage paths but are less convenient to disassemble. Pressure seal bonnets may be considered for higher-pressure service, depending on the design and project requirement.   End connection is equally important. Socket weld ends are common for small-bore forged valves. Threaded ends may be...

Butterfly Valve Types: How to Choose the Right Design for Industrial Applications
Butterfly Valve Types: How to Choose the Right Design for Industrial Applications
2026-07-24

The main butterfly valve types include concentric, double offset, triple offset, wafer, lug, flanged, soft-seated, metal-seated, manual, pneumatic, and electric butterfly valves. The right choice depends on pressure, temperature, media, leakage requirement, installation space, and operation frequency.   What Are the Main Butterfly Valve Types?   Butterfly valves are usually classified by disc design, body connection, seat material, and actuation method. This classification is important because two valves may both be called butterfly valves, but their service limits can be very different.   A butterfly valve uses a rotating disc to isolate or regulate flow. Because of its compact structure, light weight, and quarter-turn operation, it is widely used in water treatment, power plants, chemical processing, HVAC, marine systems, and general industrial pipelines.   For buyers, the key question is not simply “which type is cheaper?” It is “which type can handle the actual pressure, temperature, media, and sealing requirement?”   Concentric Butterfly Valve   A concentric butterfly valve has the stem located on the centerline of the valve body and disc. It is also called a centerline butterfly valve. This type is commonly used for low-pressure and general-service applications, especially with water, air, and non-aggressive fluids. It is simple, economical, and easy to maintain.   The limitation is seat wear. During opening and closing, the disc stays in contact with the soft seat for much of its movement. For higher pressure, higher temperature, or stricter shutoff requirements, double offset or triple offset designs are often more suitable.   Double Offset Butterfly Valve   A double offset butterfly valve uses two offsets to reduce friction between the disc and seat. This improves sealing performance and helps extend service life compared with a basic concentric design.   Double offset butterfly valves are often selected for medium-pressure industrial service, including oil and gas, water supply, power generation, and chemical systems. They are useful when the application needs better durability but does not require a full metal-seated triple offset design.   This type is also commonly called a high-performance butterfly valve. Before selection, buyers should confirm the pressure class, seat material, shaft sealing design, and expected operation frequency.   Triple Offset Butterfly Valve   A triple offset butterfly valve adds a third geometric offset to create a more advanced sealing structure. It is typically used for high-temperature, high-pressure, or severe-service applications. The design reduces rubbing between the sealing surfaces during operation. Many triple offset butterfly valves use metal seats, making them suitable for steam, oil and gas, chemical, and other demanding media.   For these applications, standards and testing matter. Buyers often need t...

What Is a Triple Offset Butterfly Valve
What Is a Triple Offset Butterfly Valve
2026-07-17

A triple offset butterfly valve is a high-performance isolation valve designed for applications where conventional resilient-seated or double offset butterfly valves cannot meet pressure, temperature, or leakage requirements. By using a three-offset sealing design, the valve achieves a metal-to-metal sealing mechanism with reduced friction between the disc and seat during operation, making it suitable for demanding services such as oil and gas, petrochemical, power generation, LNG, steam, and industrial process systems.   Triple Offset Butterfly Valve Design and Working Principle   Unlike a concentric butterfly valve, where the shaft is positioned at the centerline of the disc and seat, a triple offset butterfly valve incorporates three independent geometric offsets. The first offset moves the shaft away from the centerline of the valve body, the second offset shifts the shaft from the pipeline centerline, and the third offset introduces a conical sealing surface instead of a circular sealing profile. This geometry allows the disc to move away from the seat immediately after rotation begins, eliminating rubbing between sealing surfaces.   The main advantage of this design is that the sealing force is generated by torque rather than continuous compression of soft materials. If the application requires high-temperature service, then a metal-seated triple offset butterfly valve is often preferred because elastomer seats may degrade under elevated temperatures. If the medium contains abrasive particles or aggressive chemicals, then material selection for the disc, seat, and body becomes critical to prevent erosion, corrosion, and leakage during long-term operation.   Triple Offset Butterfly Valve Standards and Materials   A triple offset butterfly valve is commonly manufactured according to standards such as API 609, EN 593, and ISO 5752, with pressure ratings ranging from Class 150 to Class 600 and higher depending on design requirements. Typical materials include carbon steel, stainless steel, duplex stainless steel, aluminum bronze, and nickel-based alloys. For corrosive seawater applications, aluminum bronze alloys such as C95500 or C95800 may be selected, while sour service applications may require materials compliant with NACE MR0175/ISO 15156 requirements.   Triple Offset Butterfly Valve Sealing Performance and Leakage Control   The sealing performance of a triple offset butterfly valve depends on the interaction between the sealing ring, seat surface finish, operating torque, and material compatibility. Since the sealing surfaces contact only at the final closing position, mechanical wear is significantly reduced compared with traditional butterfly valve designs. If zero leakage is required for critical isolation, then the valve design, pressure class, and applicable leakage standard, such as API 598 or ISO 5208, must be considered during specification.   Triple Offset Butterfly Valve Applications and S...

Check Valve
加载中...

14 Inch Thru Conduit Check Valve Class 150

Chinese Valve manufacturer Dervos supplies Check Valve that featured with through conduit, plug type disc and replaceable seat. Expect these 14 inch 150LB check valve, other types valves of different materials, sizes are also available.

  • 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:

    WCB
  • Method of Operation:

    Bevel Gear
Inquiry now
Product Detail

Quick Detail

Type

Check Valve

Size

14 Inch

DesignPressure

CL150

Construction

Thru Type;Plug Type Disc; Replaceable Seat

Connection

RF

Design & Manufacture

BS1873

End to End

ASME B16.10

Flange Dimension

ASME B16.5

Test & Inspection 

API 598

Body Material

WCB

Trim Material

F6a

Operation

Bevel Gear

Temp.

-29~425℃

Media

W.O.G.

 

Features

--Thru Conduit

--Bolted bonnet

--Plug Type Disc

--Bevel Gear operated

--Standard Port

--Replaceable Seat

--Larger sizes available

--Higher class ratings (CL.600/900/1500/2500)

 

Technical Drawing


Dimension Check


Witness Tests


Optional Special Tests

About DVS

Xiamen Dervos Valves Industry Co.,Ltd (stock code 861601), founded in June 2008, is a one-stop industrial valves supplier integrated of R&D, manufacture, resource integration, and trade service. For 12 years, Dervos has been committed to finding solutions for industrial needs and providing professional service for both general and specialized valves.



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.

Related Products
Piston Flanged Check Valve
Cast Steel GS-C25 Piston Lift Check Valve PN16 RF Flange

The cast steel lift non return check valve is designed with piston type disc, bolted bonnet, and PN16 RF flange. The spring loaded check valve conforms to DIN 3356. Quick Detail Type Check Valve ( Non-return Valve) Nominal Diameter DN 150 NominalPressure PN 16 Construction Lift Type / Piston Type, Bolted Bonnet Connection Flanged Connection Design & Manufacture DIN 3356 End to End EN 558 Connection EN 1092 Test & Inspection EN 12266 Body Material Carbon Steel GS C25 Media W.O.G. Product Range Body material: CS, SS, Alloy Steel, CI, Bronze, Brass  Size Range: 2”~12” (DN50~DN300) End Type: Butt Weld, Socket Weld, Flanged, Screwed Pressure Range: 150lbs~2500lbs (PN16~PN420) Temperature Range: -46℃~ +425℃ Related Knowledge What is a piston check valve? Usually, we have swing type check valve and lift type check valve. A piston check valve and ball check valve both belong to lift type check valve. In a lot of cases, a piston check valve use spring to retain the disc in closed position. The structure of a piston check valve is very similar to the globe valve just without manual operation.  Due to its piston type disc and superior leak tight characteristic, the piston check valves are suitable for small size and high pressure conditions.

Lift Check Valve
Forged Steel Flanged Lift Check Valve 1 Inch 150LB

The forged steel lift check valve is designed with class 150 pressure and 1 inch nominal size according to standard API 602. We also call it as piston check valve. Quick Detail Type Check Valve Size 1'' DesignPressure 150LB Construction Lift Type, Piston Type Connection RF Flange Design & Manufacture API 602 End to End ASME B16.10 Connection ASME B16.5 Pressure & Temp ASME B16.34 Test & Inspection API 598 Body Material ASTM A105N Trim Material Trim 5 Temp Range -29℃~+425℃ Media W.O.G. Dimension Checking Pressure Tesing Packing

Stainless Steel Foot Valve 2'' Class150 Flanged end
Stainless Steel Foot Valve 2'' Class150 Flanged end

The 2 inch 150LB foot valve is made of stainless steel.

1 Inch SS F316 Ball Check Valve 150LB RF
1 Inch SS F316 Ball Check Valve 150LB RF

Due to its simple flow efficient and virtually maintenance-free design, thestainless steel ball checkvalve is commonly specified and used in submersible waste water lift stations.

Lift Check Valves
Carbon Steel Lift Spring Loaded Check Valve RF DN50 PN40

This spring loaded check valve, made according to DIN3840, requires no gravity or backflow pressure to work or actuate.It’s body material 1.0619 enable the valve to work under great heat and It’s spring can accommodate a wide range of temperature, too.

Lift Check Valve
DN50 PN160 Spring Loaded Lift Check Valve Cast Steel

The DN50 PN160 spring loaded lift check valve, made of Cast Steel, is powered by flow and differential pressure with assistance from spring pressure. And it requests no human intervention is required to function, easy to use.

Check Valve
4'' Class 300 Nozzle type Non Slam Check Valve WCB

The stainless steel non return valve features in non slam type disc, INCONEL X750 spring, WCB valve body. This valve owns an excellent dynamic performance and minimizes vibrations and noise.

Lift Check Valve
1" 2500LB Pressure Self Sealing Lift Check Valve FNPT F316L

1" 2500LB check valve is made according to ASME B16.34 standard. The valve body is made of F316L. It has the structural characteristics of lifting type, pressure self-sealing, conventional diameter. Its connection mode is FNPT.

Lift Check Valve
2" 600LB Lift Check Valve RF WCB BS1868 API598

2" 600LB check valve is made according to BS1868 standard. The valve body is made of A216 WCB. It has the structural characteristics of lifting type, bolt cover and body valve seat. Its connection mode is RF.

Check Valve
DN100 PN16 Lift Check Valve WCB EN12516-1 EN1092-1 B

DN100 PN16 check valve is made according to EN12516-1 standard. The valve body is made of ASTM A216 WCB+STL. It has the structural characteristics of lifting type with spring. Its connection mode is EN1092-1 B.

Lift Check Valve
A105N API602 2" 800LB Lift Check Valve SW

2" 800LB lift check valve is made according to API 602 standard. The valve body is made of ASTM A105N+STL. It has the structural characteristics of lift type. Its connection mode is SW.

Lift Check Valve
DN80 PN16 Lift Check Valve, Body WCB, EN1092-1 B Connection

DN80 PN16 lift check valve is made according to DIN 3356 and BS 1873 standard. The valve body is made of ASTM A216 WCB. It has the structural characteristics of lift type with spring. Its connection mode is EN1092-1 B.

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.

Home

Products

about

contact