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Flanged Ends to Din 2545 Pn�40
Minimum Pressure Drop Inside the Body Due to Well Contoured

Design Standard is 5312 1
Seating Design Swing Type & Renewable Seat with Premium Quality

Flanged Ends to Asme B B16.5 Class 150
Design Standard BS EN ISO 17292 (BS 5351)

Provision for Re-Packing Under Pressure & Minimum Pressure Drop Inside
Straight Pattern, Outside Screw, Yoke Type, Rising Stem

Wafer Type & S.G Iron Construction
Design Standard is 13095 / Bs En 593 (Bs 5155)

Screwed Female Ends to Bspt / Npt / Socket Welded
Body & Bonnet Are Phosphated, to Ensure Maximum Resistance from

Flanged Ends to Din 2533 Pn 16Rf
Minimum Pressure Drop Inside the Body Due to Streamlined Body

Screwed Female Ends to Bspt / Npt / Socket Welded
Bolted Bonnet, Outside Screw, Yoke Type, Rising Stem

Wafer Type, Lever Operated & S.G Iron Construction
S.G Iron Disc Which is Accurately Guided Between the Two

S.G Iron Construction & S.G Iron Disc Which is Accurately
Design Standard is 13095 / Bs En 593 (Bs 5155)

Wafer Type, Lever Operated & S.G Iron Construction
Design Standard is 13095 / Bs En 593

Renewable 13% Cr. Stainless Steel (S.S 410) Working Parts &
Provision for Re-Packing Under Pressure

Renewable 13% Cr. Stainless Steel (S.S 410) Working Parts &
Screwed Female Ends to is 554 / Bs 21 /

Provision for Re-Packing Under Pressure
Renewable 13% Cr. Stainless Steel (S.S 410) Working Parts &

Design Standard Api 602 & Bsen Iso 15761
Bolted Bonnet, Outside Screw, Yoke Type, Rising Stem

Design Standard Bs En Iso 17292 (Bs 5351)
Reduced Bore, Three Piece Design & Superb in Quality &

Flanged Ends to is 1538
Design Standard is 5312 1

Flanged Ends to is 778
Screwed in Bonnet, Meant for Horizontal Lines Only

Screwed Female Ends to Bspt
Straight Pattern, Screwed in Bonnet, Inside Screw & Rising Stem

Straight Pattern, Screwed & Bolted Cover & Screwed Female Ends
Flanged Ends to Bs 10 Table H

Full Bore, Two Piece Design
Screwed Female Ends to IS 554/BS21/ISO 7

Steam Valve Working Press 15 KG Temp 180 degree Celsius

Screwed Female Ends to Bspt
Two Piece Design, Flanged Ends to Bs 10 Table H

Flanged Ends to Asme B B16.5 Class-150
Three Piece Design & Superb in Quality & Performance

Provision for Re-Packing Under Pressure
Renewable 13% Cr. Stainless Steel (S.S 410) Working Parts &

Screwed Female Ends to is 554 / Bs 21 /
Designed Sheet Metal Handwheel for A Firm Grip & Convenient


Quarter Turn, Lever Operated
Full Bore, Two Piece Design

Screwed Female Ends to Bspt / Npt / Socket Welded
Design Standard Api 602 & Bsen Iso 15761



Flanged Ends to Din 2545 Pn�40
Bolted Cover, Straight Pattern

Wafer Type, Lever Operated & S.G Iron Construction
Design Standard is 13095 / Bs En 593

Provides a Robust Protective Layer Against Corrosion
Durability & Reliability for Water Treatment Equipment, Forged Brass, Durable



Steam Valve Working Press 15 KG Temp 180 degree Celsius

Disc Is Guided In Body
Renewable 13 Cr Stainless Steel(AISI 410)


Forged Brass, Durable Constraction
Permits Flow in One Direction & Shuts Automatically if the
Hang on, Loading More
Hydraulic valves are integral components in hydraulic systems across manufacturing, construction, aerospace, agriculture, and more industries. They control the flow, pressure, and direction of hydraulic fluid to activate cylinders, motors, and machinery.
Common hydraulic valves include hydraulic flow control valves, hydraulic check valves, hydraulic directional control valves, pressure relief valves, and hydraulic actuators like cylinders and motors. Each valve plays a specialized role, like regulating flow, preventing reverse flow, controlling direction, limiting pressure, etc.
With advanced hydraulic valve technology, systems achieve precise control, consistent output, and reliability even in demanding conditions. Understanding hydraulic valve types and applications allows the selection of optimal valves to build high-performance hydraulic circuits.
Regulate the flow rate of hydraulic fluid in a circuit. Key types include:
Allow fluid passage in one direction while preventing reverse flow. Check valves include:
Direct hydraulic oil supply into different paths to activate multiple cylinders/motors. Types include:
Protect hydraulic components against excessive pressure buildup. Pressure relief valves open to bleed off liquid when pressure exceeds the set limit.
Actuators convert hydraulic power into mechanical force and movement. Key types include
To select optimal hydraulic valves, consider these vital factors:
1. Pressure Rating: Match-rated pressure to maximum system pressure to avoid valve damage. Include safety factors.
2. Flow Rate: Select flow coefficients to cover circuit requirements. Consider both internal and external leakage.
3. Response Time: Faster response is critical for rapid cycles. Poppet valves are quicker than spools.
4. Adjustability: Adjustable valves allow flow control tuning for efficiency.
5. Fail-Safe Operation: Integration of check valves or piloted relief prevents system crashes.
6. Contamination Resistance: Robust sealing and filtration ensure reliable operation in dirty or wet environments.
7. Reputation of Valve Brand: Choose reputed brands like Astral, Supreme, Sant, and Zoloto with proven track records of performance, safety and durability.
8. Certified Standards: Confirm brand and product hydraulic valve certifications for quality assurance and compliance.
Hydraulic valves enable precise control in demanding industrial applications, from earthmovers to aerospace. Comparing valve pressure ratings, flow capacity, and response times per need allows optimal selection. Moglix provides access to quality hydraulic valves from leading brands like Astral, Supreme, Sant, and Zoloto to build reliable, high-efficiency hydraulic systems powering equipment output. With in-depth domain expertise and a curated digital marketplace, Moglix makes procuring certified hydraulic valves supporting domestic manufacturing smooth and efficient.