Kirloskar

Pioneers in the industry, we offer kirloskar rising gate valve and kirloskar sluice valve from India.

Kirloskar Rising Gate Valve

    ₹ 500/Piece Get Latest Price

    Product Brochure
    End Connection TypeFlanged
    Size2"-24inch(DN50-DN600)
    BrandKirloskar, VVT, etc.
    PressureHigh
    Rust ResistantYes
    usageWater

    Pressure valves are crucial components in various industrial and domestic applications, designed to regulate, control, or limit the pressure within a system. These valves ensure safety, efficiency, and reliability by preventing overpressure conditions that could lead to system failure or damage. Here's an overview of pressure valves, their types, functions, and applications:

    Pressure Valve Overview:

    Design and Construction:

    • Body: Typically made from robust materials such as cast iron, stainless steel, brass, or other alloys, chosen based on the application and the fluid being handled.
    • Actuator: The mechanism that controls the opening and closing of the valve. It can be manual (handwheel or lever) or automatic (pneumatic, hydraulic, or electric).
    • Seals: High-quality sealing materials like O-rings, diaphragms, or gaskets ensure leak-tight performance.
    • Spring or Pilot: Many pressure valves use springs or pilots to control the set pressure and regulate the valve's operation.

    Operation:

    • Automatic Control: Pressure valves often operate automatically, adjusting to changes in system pressure to maintain a desired set point.
    • Manual Override: Some pressure valves include manual controls for overriding automatic functions in case of maintenance or emergency situations.
    Key Types of Pressure Valves:
    1. Pressure Relief Valve (PRV):

      • Function: Automatically releases pressure from a system when it exceeds a preset level to prevent overpressure conditions.
      • Applications: Used in boilers, pressure vessels, pipelines, and other high-pressure systems.
    2. Pressure Reducing Valve (PRV):

      • Function: Reduces and regulates the pressure of the fluid downstream to a desired level.
      • Applications: Common in water distribution systems, steam systems, and gas supply lines.
    3. Pressure Sustaining/Back Pressure Valve:

      • Function: Maintains a minimum upstream pressure by opening to release excess pressure downstream.
      • Applications: Used in pump systems and pipelines to ensure consistent pressure.
    4. Safety Valve:

      • Function: Similar to pressure relief valves but typically used in steam, air, or gas systems to provide immediate release of pressure.
      • Applications: Essential in steam boilers, compressors, and air receivers.
    5. Pressure Control Valve:

      • Function: Controls the pressure within a system by adjusting the flow of the fluid.
      • Applications: Used in hydraulic and pneumatic systems, fuel systems, and process control applications.
    6.  

    Kirloskar Sluice Valve

      ₹ 500/Piece Get Latest Price

      Product Brochure
      Size2"-24 inch (DN50-DN600)
      End ConnectionANSI B16.5(Raised Flanged)
      MediaWater
      PressurePN 1.0,PN 1.6,PN 2.0
      Rust ResistantYes
      BrandKirloskar, VVT, etc.

      The Kirloskar sluice valve is a type of gate valve manufactured by Kirloskar Brothers Limited (KBL), a leading Indian industrial conglomerate specializing in fluid management solutions. Sluice valves, also known as gate valves, are primarily designed for on/off control of fluid flow in various industrial applications. Here's an overview of the Kirloskar sluice valve:

      Kirloskar Sluice Valve Overview:

      Design and Construction:

      • Body: Typically made from cast iron, ductile iron, cast steel, stainless steel, or other materials depending on the application requirements.
      • Gate: The valve's gate is a rectangular or wedge-shaped disk that moves up and down within the valve body to control the flow of fluid.
      • Rising Stem: Features a rising stem design where the stem moves up and down with the gate, indicating the position of the valve (open or closed) by its visible movement.
      • Flanged Ends: The valve typically features flanged ends for easy installation and removal from the pipeline system, secured with bolts and nuts.

      Operation:

      • On/Off Control: Gate valves like the Kirloskar sluice valve operate by raising or lowering the gate to either allow flow (open position) or stop flow (closed position).
      • Manual Operation: Generally operated manually using a handwheel or gear mechanism connected to the valve stem. Turning the handwheel raises or lowers the gate to control flow.
      • Non-Rising Stem Option: Some models may feature a non-rising stem design where the stem threads into the gate, eliminating the need for vertical space above the valve.
      Key Features:
      1. Durable Construction: Built to withstand high pressures, temperatures, and corrosive environments, ensuring long service life and reliability.
      2. Flexible Application: Suitable for a wide range of fluids, including water, steam, oil, gas, and chemicals, depending on the valve material and lining.
      3. Efficient Flow Control: Provides full bore when fully open, minimizing pressure drop and optimizing flow characteristics.
      4. Tight Shut-off: Offers tight sealing when closed, preventing leakage and ensuring system integrity.
      5. Versatility: Used in various industries such as water supply and distribution, wastewater treatment, power generation, chemical processing, and more.
      Applications:
      • Water Supply and Distribution: Used in pipelines for controlling water flow in municipal, industrial, and agricultural applications.
      • Wastewater Treatment: Regulates flow in sewage and wastewater treatment plants.
      • Power Generation: Used in cooling water systems, boiler feedwater, and other applications in power plants.
      • Oil and Gas: Handles flow control in pipeline systems for oil, gas, and petrochemical industries.
      • Chemical Processing: Suitable for handling various chemicals and corrosive fluids in industrial processing plants.
      Advantages:

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