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Manifold Mounted Hydraulic Ball Valve Fluid Power

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Product Type: Hydraulic Ball Valve
Model: KHP/ YQ11N/ Q14PEEK
Nominal Diameter: NPS 1/2" - NPS 4" (DN15 - DN100)
Operating Pressure: 10.0 - 31.5MPa
Body Material: A105, F304, F316, F316L
Trim Material: 304, 316, 316L
Seat Seal Material: N/ PEEK
Connecting End: Flange/ Thread
Design Standard: GB/T 12237, ASME B16.34, JIS B2071, DIN 3357
Face to Face: GB/T 12221, ASME B16.10, JIS B2002, DIN 3202
End Connection: GB/T 9113, ASME B16.5, JIS B2212, DIN 2542
Inspection and Test: GB/T 26480, API 598, JIS B2003, DIN 3230
Operation Device: Handle, Worm Gear

 

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Description

Manifold mounted hydraulic ball valves are essential components designed to reliably cut off or connect media flow in hydraulic systems. These compact, high-performance valves feature a manifold mounting design that eliminates the need for additional piping, reducing installation space and minimizing potential leak points. Our KHP, YQ11N, and Q14PEEK series manifold hydraulic ball valves are engineered to operate under extreme pressure conditions ranging from 10.0 to 31.5MPa, making them ideal for demanding industrial applications. With a robust construction and precision engineering, these valves deliver consistent performance, long service life, and easy maintenance. Available in both flange and threaded connection options, they can be seamlessly integrated into various hydraulic system configurations.

Manifold Mounted Hydraulic Ball Valve Fluid Power

Key Specifications

Parameter

Details

Product Type

Hydraulic Ball Valve

Model

KHP/ YQ11N/ Q14PEEK

Nominal Diameter

NPS 1/2" - NPS 4" (DN15 - DN100)

Operating Pressure

10.0 - 31.5MPa

Body Material

A105, F304, F316, F316L

Trim Material

304, 316, 316L

Seat Seal Material

N/ PEEK

Connecting End

Flange/ Thread

Design Standard

GB/T 12237, ASME B16.34, JIS B2071, DIN 3357

Face to Face

GB/T 12221, ASME B16.10, JIS B2002, DIN 3202

End Connection

GB/T 9113, ASME B16.5, JIS B2212, DIN 2542

Inspection and Test

GB/T 26480, API 598, JIS B2003, DIN 3230

Operation Device

Handle, Worm Gear

Working Principle

The manifold mounted hydraulic ball valve operates on a simple yet effective quarter-turn mechanism. The valve features a spherical ball with a central bore that aligns with the flow path when the valve is open, allowing unobstructed media flow. When the handle or worm gear actuator is rotated 90 degrees, the ball turns perpendicular to the flow path, completely blocking the media passage. This quick operation ensures rapid shutoff, which is critical in emergency situations. The manifold mounting design integrates the valve directly into the hydraulic manifold block, creating a compact and leak-free connection that eliminates the need for separate fittings and piping.

Advantages & Features

Superior Sealing Performance

Our hydraulic ball valves are equipped with high-quality NBR or PEEK seat seals that provide excellent sealing capabilities even under high pressure and temperature conditions. PEEK seals offer exceptional chemical resistance and wear resistance, extending the valve's service life and reducing maintenance requirements. The precision-machined ball ensures a tight seal every time, preventing leaks that can lead to system inefficiencies and safety hazards.

Robust Construction for High Pressure

Constructed from premium materials including A105 carbon steel and F304/F316 stainless steel, these valves are built to withstand the rigors of high-pressure hydraulic systems. The solid one-piece body design eliminates potential leak paths and provides maximum structural integrity. All internal components are precision machined to tight tolerances, ensuring smooth operation and reliable performance over thousands of cycles.

Easy Installation & Maintenance

The manifold mounting design simplifies installation by allowing the valve to be directly attached to the hydraulic manifold block, reducing installation time and labor costs. The valve's modular construction makes maintenance quick and easy, with all internal components accessible without removing the entire valve from the system. This minimizes downtime and ensures that your hydraulic system remains operational.

Applications

Manifold mounted hydraulic ball valves are widely used in various industrial sectors where reliable fluid control is essential. Common applications include hydraulic power units, construction machinery, agricultural equipment, mining machinery, marine systems, oil and gas processing, and industrial automation. These valves are particularly suitable for applications that require compact design, high pressure resistance, and frequent operation.

Why Choose Us

As a leading industrial valve manufacturer with over 15 years of experience, we are committed to delivering high-quality products that meet the most demanding industry standards. Our manifold mounted hydraulic ball valves are manufactured in state-of-the-art facilities using advanced production techniques and rigorous quality control processes. We offer comprehensive customization options to meet your specific application requirements, including special materials, connection types, and actuation options. With a global customer base and dedicated technical support team, we provide fast delivery and responsive after-sales service to ensure your complete satisfaction.

FAQ

What is a manifold mounted hydraulic ball valve?

A manifold mounted hydraulic ball valve is a type of quarter-turn valve designed to be directly mounted onto a hydraulic manifold block, eliminating the need for additional piping and reducing potential leak points.

What pressure can these valves handle?

Our manifold mounted hydraulic ball valves are designed to operate at pressures ranging from 10.0 to 31.5MPa, making them suitable for most high-pressure hydraulic applications.

What materials are available for the valve body?

We offer valve bodies in A105 carbon steel, F304 stainless steel, F316 stainless steel, and F316L stainless steel to meet different application requirements.

What standards do these valves comply with?

Our valves comply with international standards including GB/T 12237, ASME B16.34, JIS B2071, DIN 3357, and API 598, ensuring consistent quality and performance worldwide.

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