Stainless steel Hydrant Valve
2,850 Per Piece
50 Piece(s) (MOQ)
Being a reliable name, we are focused towards delivering exceptional quality range, along with this, we follow strict guidelines and conduct regular quality examinations to ensure quality. We have a strong security system that helps us to make online transactions possible without getting worried about the security. You need to share your details with us and we make sure that the details are kept confidential. Features : Sturdy metal Precision made Dimensional accuracy
Deluge Valve
1 - 1 Per piece
1 Piece (MOQ)
Best Deals from Fire Hydrant Valve
Hydrant Valve
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In order to attain complete client credibility, we let the clients' to choose either online mode or offline mode for making payment. And, we guarantee for authenticity and confidentiality. We keep a stern check while the product is being developed to make sure that we deliver an only flawless range. Hydrant Valve has a shiny finish on the surface with high precision and is available in a quality packaging.
STRAIGHT TYPE DELUGE VALVE
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FLOW TEK DELUGE VALVE are intended to deliver large quantities of water over a large area in a relatively short period of time. The flow tek Deluge Valve is UL approved to 250 psi G. (17.5 bar) in sizes 2", 2½", 3", 4", 6", 8", 10", (50,65,80, 100, 150,200 & 250 MM ). The FLOW AGE deluge Valve is compact, lightweight, and is provided with a preassembled trim - all of which minimize the installation time and make it simple and easy. The FLOW AGE Valve opens fast, yet smoothly, preventing water hammer. The FLOW AGE Valve design prevents false tripping and it can be reset by a thumb-activated knob. STRAIGHT TYPE DELUGE VALVE DETAIL -UL Listed Local Resetting - Once the deluge valve operates, it is latched in an open position Remote Resetting - The FLOW TEK Deluge Valve can be remotely reset. The FLOW TEK Deluge Valve is designed to allow for a variety of detection and release systems: Hydraulic Actuation ( WET PILOT TRIM) Wet pipe systems are the most common fire sprinkler system. A wet pipe system is one in which water is constantly maintained within the sprinkler piping. When a sprinkler activates this water is immediately discharged onto the fire. Advantages to using a wet pipe fire sprinkler system include: System simplicity and reliability - Wet pipe sprinkler systems have the least number of components and therefore, the lowest number of items to malfunction. This produces unexcelled reliability which is important since sprinklers may be asked to sit in waiting for many years before they are needed. This simplicity aspect also becomes important in facilities where system maintenance may not be performed with the desired frequency. Relative low installation and maintenance expense - Due to their overall simplicity, wet pipe sprinklers require the least amount of installation time and capital. Maintenance cost savings are also realized since less service time is generally required compared to other system types. These savings become important when maintenance budgets are shrinking. Ease of modification - Wet pipe fire sprinkler systems are advantageous since modifications involve shutting down the water supply, draining pipes and making alterations. Following the work, the system is pressure tested and restored. Additional work for detection and special control equipment is avoided which again saves time and expense. Short term down time following a fire - Wet pipe sprinkler systems require the least amount of effort to restore. In most instances, sprinkler protection is reinstated by replacing the fused sprinklers and turning the water supply back on. Pre-action and dry-pipe systems may require additional effort to reset control equipment. Disadvantages to using a wet pipe fire sprinkler system include: Wet pipe systems are not suited for sub-freezing environments. There may also be a concern where piping is subject to severe impact damage and could consequently leak. Pneumatic Actuation (DRY PILOT TRIM) A dry pipe sprinkler system is one in which pipes are filled with pressurized air or nitrogen, rather than water. This air holds a remote valve, known as a dry pipe valve, in a closed position. Located in a heated space, the dry-pipe valve prevents water from entering the pipe until a fire causes one or more sprinklers to operate. Once this happens, the air escapes and the dry pipe valve releases. Water then enters the pipe, flowing through open sprinklers onto the fire. Advantages of using dry pipe fire sprinkler systems include: Dry pipe sprinkler systems provide automatic protection in spaces where freezing is possible. Typical dry pipe installations include unheated warehouses and attics, outside exposed loading docks and within commercial freezers. Many people view dry pipe sprinklers as advantageous for protection of collections and other water sensitive areas. This perceived benefit is due to a fear that a physically damaged wet pipe system will leak while dry pipe systems will not. In these situations, however, dry pipe systems will generally not offer any advantage over wet pipe systems. Should impact damage happen, there will only be a mild discharge delay, i.e. 1 minute, while air in the piping is released before water flow. Disadvantages of using dry pipe fire sprinkler systems include: Increased complexity - Dry pipe systems require additional control equipment and air pressure supply components which increases system complexity. Without proper maintenance this equipment may be less reliable than a comparable wet pipe system. Higher installation and maintenance costs - The added complexity impacts the overall dry-pipe installation cost. This complexity also increases maintenance expenditure, primarily due to added service labor costs Lower design flexibility - There are strict requirements regarding the maximum permitted size (typically 750 gallons) of individual dry-pipe systems. These limitations may impact the ability of an owner to make system additions. Increased fire response time - Up to 60 seconds may pass from the time a sprinkler opens until water is discharged onto the fire. This will delay fire extinguishing actions, which may produce increased content damage. Increased corrosion potential - Following operation, dry-pipe sprinkler systems must be completely drained and dried. Otherwise remaining water may cause pipe corrosion and premature failure. This is not a problem with wet pipe systems where water is constantly maintained in piping. With the exception of unheated building spaces and freezer rooms, dry pipe systems do not offer any significant advantages over wet pipe systems. Electric Actuation VALVE WILL BE OPERATED BY SOLENOID VALVE, WHICH WILL BE OPERATED BY ANY POWER SUPPLY 220 V , 230 V , 24 V DC, ETC..
Fire Safe Ball Valves
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Our exceptional finish Fire Safe Ball Valves are branded as FLOEC. They have Anti-static aspect so as to prevent formation of static electricity, which is generated when the ball of the valve rubs against the non-metallic seats. Thus it is very safe for regulating the flow of highly inflammable fluids.
Fire Protection Pressure Reducing Valve
257 Per Piece
1 Piece (MOQ)
4 Way Inlet Breeching
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Product description: Our domain expertise has enabled us to come up with an excellent collection of 4 way Inlet Breeching Valve. Our offered coupling is highly appreciated by the clients due to its easy installation and fine finish. As per set industry standards, this coupling is manufactured by our adroit professionals using quality assured raw material and innovative technology. Moreover, clients can avail this coupling from us at reasonable prices. Features: Superior finish Anti corrosive Easy to fit Body :Gunmetal or Aluminium alloy or Coast iron Inlet : four male instantaneous with NRV Outlet : 7” NB flanged Working Pressure :160 PSI Testing Pressure :340 PSI Product Code No Description 1 These product can four way inlet breeching made in gunmetal 2 These product can four way inlet breeching made in Aluminium alloy 3 These product can four way inlet breeching made in Cast Iron
Breeching Inlet Valve
3,900 Per Piece
10 Piece (MOQ)
Fire Safe Ball Valves
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J D Controls manufacturing Fire Safe Ball Valve as per API 607 standard in Full / Reduced Port with Antistatic Device, Blowout Proof Stem with various choice of operation. Floating / Trunnion MountedJ D Controls mfg. both Floating & Trunnion Mounted Fires Safe Ball Valves. In the floating ball design, where sealing takes place by allowing the Ball under pressure to move towards the downstream seat to effect tight seal. For higher sizes and pressure ratings Trunnion mounted ball valves are preferred by industry. Valve OperationJ D Fire Sate Ball Valves are generally supplied with manual Hand Lever or Gear Operated, depending on valve size. J D also offering Ball Valves with either Pneumatic (Double Acting / Single Acting – Spring Return) or Electrical actuator operated for automation. Wide Range of Body Seat, Seal & PackingJ D Fire Safe Ball Valves are also available with different type of Seat, Seal & Packing material such as P.T.F.E. (Virgin) / Glass Filled P.T.F.E. / Carbon Filled P.T.F.E. / Graphite (Grafoil) / PEEK to suit special requirement of client. SALIENT FEATURES: Blowout Proof Stem Anti Static Device Fire Safe Seat Design Double Body Sealing Ensures Positive Body Joint Sealing Against Pipeline Stresses Multiple Stem Sealing Live loaded Stem Design Meets Stringent Fugitive Norms Specially designed seats and seals in a variety of materials to suit specific applications Fire Safe Design Confirms to API 607, Valves are tested and Fire Safe certified by Bureau Veritas. Design standard API 6D, BS EN ISO 17292 and ANSI B16.34 Multiport Fire Safe Ball Valves, Valves with Extended Stems, Valves for Underground Applications etc. also available on request. DESIGN & TESTING INTERNATIONAL STANDARD: Valve Design : BS EN ISO 17292 (BS 5351) / API 6D / ASME B 16.34 / BE EN ISO 12516Pressure Testing : API 598 / API 6D / BS EN 12266 IFire Testing : API 607 / BS EN ISO 1266 IIFace To Face : As Per ANSI B 16.10Flange Drilling : ANSI B 16.5, Raised Face, Class 150 / 300 / 600Screwed End : ANSI B 1.20.1 (BSP/NPT)Socket Weld End : ANSI B 16.11Butt Weld End : ANSI B 16.25Quality Assurance : ISO 9001 MATERIAL OF CONSTRUCTION: Body / End Connector Piece: Cast Carbon Steel to ASTM A 216 GR. WCBStainless Steel to ASTM A 351 GR. CF 8 / 8M / 3 / 3MHast Alloy B / CASTM A 351 GR. CN 7M (Alloy 20) Ball:Stainless Steel to ASTM A 351 GR. CF 8 / 8M / 3 / 3MHast Alloy B / CASTM A 351 GR. CN 7M (Alloy 20) Stem: AISI 304 (S.S. 304)AISI 316 (S.S. 316)AISI 304L (S.S. 304L)AISI 316L (S.S. 316L)Hast Alloy B / CAlloy 20 Ball Seat / Gland Seal / Stem Seal:P.T.F.E. VirginP.T.F.E. Glass FilledP.T.F.E. Carbon FilledGrafoil / Graphite Ring WIDE RANGE OF FIRE SAFE DESIGN BALL VALVE Cast Carbon Steel Fire Safe Ball Valve Stainless Steel Fire Safe Ball Valve Forged Steel Fire Safe Ball Valve Single Piece Design Fire Safe Ball Valve Two Piece Design Fire Safe Ball Valve Three Piece Design Fire Safe Ball Valve Two Way Fire Safe Ball Valve Three Way Fire Safe Design Ball Valve Four Way Fire Safe Ball Valve High Performance Fire Safe Design Ball Valve Gear operated Fire Safe Ball Valve Pneumatic Operated Fire Safe Design Ball Valve I.C. Fire Safe Ball Valve Investment Casting Ball Valve Multiport Fire Safe Design Ball Valve Mixing & Diverting Type Fire Safe Design Ball Valve Zero Leakage Fire Safe Ball Valve API 607 Fire Safe Design Ball Valve Fire Sate Tested Valve Fire Proof Ball Valve
Hydrant Valve
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Hydrant Valve
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Hydrant Valve, Fire Protection Equipment, Hose Coupling