Y-Strainers

Y-Strainers remove solids and particulates from process fluids to protect downstream equipment such as pumps and valves from damage. The filtration element consists of a stainless steel mesh screen designed for high durability and precise particle retention. Mesh size selection is critical to balance contaminant capture with acceptable flow characteristics. Effective filtration reduces equipment wear, erosion, and operational failures, ensuring system reliability. 

Valve Type

Y-Strainers use a mesh filter to remove debris, protecting downstream equipment.

Flow Regulation Method

Flow is regulated by strainer mesh size and installation orientation, not adjustable valves.

Differential Pressure Range

Suitable for low to moderate differential pressures to ensure effective debris filtration.

Hydraulic Authority Recommendation

Recommended hydraulic authority ensures optimal flow and filtration performance.

Valve Characteristic Curve

Exhibits linear flow characteristics with minimal impact on pressure drop across strainer.

Product Description

Pressure loss across the strainer affects overall system performance and energy efficiency. Internal flow paths are optimized to reduce turbulence and maintain fluid velocity while minimizing differential pressure. The screen’s open area and aperture size are engineered to allow maximum flow with minimal resistance. Lower pressure drops reduce pump load and help maintain stable process conditions. 

Test Point Configuration

Equipped with test points to monitor pressure differential across the mesh filter.

Maximum Allowable Flow Velocity

Maximum velocity prevents erosion, maintaining strainer integrity and system efficiency.

Leakage Class (per EN 12266-1)

Designed to meet low leakage standards ensuring minimal fluid loss and high reliability.

Body Material Options

Common materials include stainless steel, cast iron, bronze, and carbon steel variants.

Design Pressure Class

Rated for pressures up to 40 bar depending on material and construction specifications.

Thermal Expansion Compatibility

Accommodates thermal expansion without compromising sealing or structural integrity.

Installation Sensitivity

Can be installed horizontally or vertically; flow direction must align with strainer design.

Control Accuracy

Provides consistent filtration accuracy based on mesh size and strainer maintenance.

Position Repeatability

Maintains stable filtration performance regardless of flow variations or installation position.

Technical Advantages

Rapid maintenance reduces system downtime and operational costs in critical processes. Y-Strainers feature blow-off valves and accessible covers that allow flushing or screen replacement without full disassembly. Covers are designed with secure gaskets and bolting per industry standards to ensure safe and quick servicing. This facilitates frequent inspection and cleaning, preserving strainer performance and fluid quality. 

Strainer materials are chosen based on fluid compatibility, temperature, and pressure demands to prevent corrosion and mechanical failure. Common materials include stainless steel grades 304L and 316L, or coated carbon steel, selected for chemical resistance and structural integrity. Manufacturing processes ensure weld quality and minimize residual stresses to resist cracking and deformation. Thermal and mechanical properties are matched to operational environments to maintain long-term durability. 

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Industry Applications

Chemical Processing

Removes solid contaminants from corrosive liquids, protecting pumps and valves in high-temperature, high-pressure chemical reactors and pipelines.

Oil and Gas

Filters particulate matter from crude oil and natural gas streams to prevent erosion and clogging in downstream equipment.

Power Generation

Ensures clean steam and cooling water by trapping debris, protecting turbines, heat exchangers, and condensers from damage.

Water Treatment

Removes suspended solids from raw and treated water to safeguard pumps, membranes, and filtration units in treatment plants.

HVAC Systems

Protects chillers and boilers by filtering dirt and scale particles, maintaining efficient heat exchange and fluid circulation.

Food and Beverage

Strains process fluids to prevent contamination and mechanical wear in pumps and filling machinery under sanitary conditions.

Customization for Application Specifics

Y-Strainers are available in a range of mesh sizes, pressure classes, and connection types to suit diverse industrial requirements. Pressure ratings conform to ANSI/ASME standards, supporting integration into various piping systems. Connection options include flanged, threaded, socket weld, and butt weld ends tailored to installation needs. 

Flow capacity is a critical parameter influencing strainer selection to ensure the system meets process demands without bottlenecks. Y-Strainers are engineered with an optimal basket design that maximizes open area while maintaining structural rigidity to handle high flow rates. Computational fluid dynamics (CFD) analysis is often used to refine internal geometry, minimizing pressure losses and flow separation.

Y-Strainers

Having Doubts? Our FAQ

Check all our Frequently Asked Question

How does Frigate ensure the precision and durability of Y-Strainer mesh screens?

Frigate employs advanced manufacturing techniques including laser cutting and precision weaving to produce mesh screens with consistent aperture sizes. High-grade stainless steel alloys are selected to resist corrosion and mechanical fatigue. Quality control involves microscopic inspections to verify mesh integrity and uniformity. This process ensures long-lasting filtration performance under harsh industrial conditions.

What testing protocols does Frigate use to verify the pressure rating of Y-Strainers?

Pressure testing follows ASME and API standards to simulate operating conditions and detect leaks or weaknesses. Hydrostatic tests are conducted at pressures exceeding design limits to confirm structural integrity. Non-destructive testing methods like ultrasonic or radiographic inspection verify weld quality. These rigorous checks guarantee that strainers meet specified pressure classes reliably.

How does Frigate customize Y-Strainers for systems with fluctuating flow rates?

Strainers are designed with variable mesh sizes and extended baskets to handle changes in debris load and flow velocity. Computational flow modeling helps optimize internal geometry for smooth transitions, minimizing turbulence. Modular design options allow quick modification or upgrade of filtration capacity. This flexibility ensures consistent performance across variable operating conditions.

What considerations does Frigate apply for thermal compatibility in high-temperature applications?

Material selection focuses on alloys with high creep resistance and matched coefficients of thermal expansion to prevent deformation. Seals and gaskets are chosen to maintain integrity at elevated temperatures without chemical degradation. Engineering tolerances account for thermal expansion to preserve pressure boundary seals. This approach prevents leaks and mechanical failures during thermal cycling.

How does Frigate address clogging and pressure drop issues in fine mesh Y-Strainers?

Optimizing open area ratio and screen weave pattern reduces clogging potential while maintaining fine filtration. Blow-off valves and back-flush ports are integrated to enable partial cleaning without shutdown. Differential pressure sensors provide early detection of clogging to schedule maintenance proactively. These design elements extend service intervals and maintain stable system pressure.

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LOCATIONS

Global Sales Office

818, Preakness lane, Coppell, Texas, USA – 75019

Registered Office

10-A, First Floor, V.V Complex, Prakash Nagar, Thiruverumbur, Trichy-620013, Tamil Nadu, India.

Operations Office

9/1, Poonthottam Nagar, Ramanandha Nagar, Saravanampatti, Coimbatore-641035, Tamil Nadu, India. ㅤ

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Y-Strainers

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