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High Efficiency Air Driven Double Diaphragm Pump Oil Free Positive Displacement

Categories Air Driven Double Diaphragm Pump
Brand Name: BSK
Model Number: BSKA25AL-P99-A
Place of Origin: China
MOQ: 10 Unit(s)
Price: Negotiable
Payment Terms: FOB T/T
Supply Ability: 1000 Unit(s) Per Month
Guarantee:: one year
Name: Air Driven Double Diaphragm Pump
Power: Air
Pressure: High Pressure
Application: age,universal
Theory: Air powered double diaphragm pump
Material: stainless steel
Feature: High Efficiency
Type: Diaphram Air Pump
Company Info.
BOGEN PUMPS
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    High Efficiency Air Driven Double Diaphragm Pump Oil Free Positive Displacement

    High Efficiency Air Driven Double Diaphragm Pump Oil Free Positive Displacement


    Air diaphragm pump(also know as a Membrane pump, air operated double diaphragm pump(AOOD) or pneumatic diaphragm pump)that uses a combination of the reciprocating action of a rubber,thermoplastic or diaphragm and suitable valves either side of the diaphragm (check valve,butterfly valves,flap valves,or any other form of shut-off valves) to pump a fluid.

    • Brand Name:BSK
    • Model Number: BSKA25AL-P99-A
    • Min. Order Quantity: 10 Unit(s)
    • Price Term: FOB
    • Port: Guangzhou/Shenzhen
    • Price: Negotiable
    • Payment Terms:T/T
    • Production Capacity: 1000 Unit(s) Per Month
    • Guarantee: one year

    Air Driven Double Diaphragm Pump​ Description:


    Air Inlet

    1/4-18NPTF-1

    Fluid Outlet

    1-11-1/2NPTF-1,Rp1-11BSP

    Fluid Inlet

    1-11-1/2NPTF-1,Rp1-11BSP

    Max. Flow

    135L/Min

    Max. Head

    70M

    Max. Self-priming Lift (dry)

    4m

    Max. Air Pressure

    8.3bar

    Max. Particle Diameter

    3mm

    Max. Installation Dimension

    249.5×360.5×245mm

    Weight

    9.5kg

    Noise

    <80db


    Packaging & Delivery


    Packaging Detail:

    plywood case/carton per diaphragm pump

    Delivery Detail:

    5 days from receiving payment (according to your order quantity)


    Air Driven Diaphragm Pump Specifications


    Air Diaphragm Pump
    1. Non leakage
    2. Good self priming performance
    3. Convey all kinds of medium
    4. Material:Cast steel,Alu,SS,PP


    A 2 5 X X - X X X - X (model selection)


    Form of pipe mouth:A-BSP B-NPT(F) C-Flange

    Diaphragm material:9 – Santoprene H – Hytrel T - PTFE/Santoprene

    Ball material:9 -Santoprene H – Hytre T – PTFE A - Acetal

    Ball seat material:P/K –Polypropylene/Kynoar SS –Stainless Steel

    Pump material: SS –Stainless Steel AL –Aluminum Alloy CI- Carbon Steel P/K –Polypropylene/Kynoar


    Main Performance Parameters


    No. Parameter Names Units Reference Values

    1 Max. Working Air Pressure Mpa 0.83

    2 Max. Flow l/min 135

    3 Max. Head m 70

    4 Max. Fluid Output Pressure Mpa 0.83

    5 Max. Particle Through Diameter mm 3

    6 Weight kg 9.5/12.5 ( PP/KV ) /9.5 (AL)/ 14.5(SS/CI)

    7 Noise Level db <85


    Maximum Applied Temperature Limits (diaphragm / ball / seal material)


    Acetal ···············································40°- 150°F (4.4- 65.5°C)

    Santoprene························································································-40°- 225°F (-40°- 107.2°C) ··································································································40°- 220°F (4.4°- 104°C) Nitrile···································································································10°- 180°F (-12°- 82°C) Viton································································································-40°- 350°F (-40°-176.6°C) Hytrel···································································································-20°-150°F (-12°- 93°C) Kynar································································································10°-200°F (-28.9°- 65.5°C) Polypropylene····························································································32°- 175°F (0-79.4°C)


    1” Flow diagram

    air operated diaphragm pump performance curve



    Installation operation and maintenance:


    READ, UNDERSTAND, AND FOLLOW THIS INFORMATION TO AVOID INJURY AND PROPERTY DAMAGE


    Do not exceed the maximum inlet air pressure as stated on the pump model plate.

    • The air inlet of the pump is connected to the air supply that has sufficient capacity and of which pressure conforms to the design requirements.
    • The clean compressed air makes for the extension of the service life of the pump.
    • If the air supply line is a hard pipe, the short hose connecting the pump and the pipe can reduce vibration and twisting. (It is recommended to reduce the pulse in the fluid with a use a surge tank or fluid buffers.)
    • The air intake pipe and the pressure-regulating filter must be supported due to their weight. If the pipe is not supported, it may damage the pump.
    • The air intake pipe of the pump must be installed with the pressure regulating valve to ensure the air supply pressure doesn’t exceed the specified range.

    The limit pressure specified in the Manual can’t be used in the operation of the pump, otherwise the personal injury, pump damage or property loss will arise out of excessive air pressure.

    • Be sure material hoses and other components are able to with -stand fluid pressures developed by this pump. Check all hoses for damage or wear. Be certain dispensing device is clean and in proper working condition.

    STATIC SPARK. Can cause explosion resulting in severe injury or death. Ground pump and pumping system.

    • Sparks can ignite flammable material and vapors.
    • Secure pump, connections and all contact points to avoid vibration and generation of contact or static spark.
    • Use proper ventilation.
    • Keep inflammables away from heat, open flames and sparks.
    • Keep containers closed when not in use.

    The discharges from the pump may contain impurities, which may cause serious injury. The discharges can be drained away through the pipe from the jobsite and around the operator.

    Even if the diaphragm ruptures, it can also discharge the material forcibly from the exhaust muffler.

    • When the hazardous or inflammable materials are pumped, the discharges can be removed to the safe remote location through the pipeline.
    • Between the pump and the muffler is used the interface of 3/8” in minimum bore.

    HAZARDOUS PRESSURE. Can result in serious injury or property damage. Do not service or clean pump, hoses or dispensing valve while the system is pressurized. Disconnect air supply line and relieve pressure from the sys -tem by opening dispensing valve or device and / or carefully and slowly loosening and removing outlet hose or piping from pump.

    HAZARDOUS MATERIALS. Can cause serious in -jury or property damage. Do not attempt to return a pump to the factory or service center that contains hazardous material. Safe handling practices must comply with local and national laws and safety code requirements.

    • Obtain Material Safety Data Sheets on all materials from the supplier for proper handling instructions.

    Explosion Hazard: Some models, together with some parts that fluid contacts, are made of aluminum, so they can’t be put into use with trichloroethane, methylene chloride or other halogenated hydrocarbon solvents, otherwise they may react and cause an explosion.

    • Prior to the use with this type of solvent, it is a must to inspect the fluid caps, manifolds and all fluid contact parts of the pump motor in order to ensure compatibility.
    • The pump should be placed close to the product as far as possible to shorten the suction pipe and reduce the number of parts to the greatest extent.
    • To extend the service life of diaphragm, we must to place the pump close to the pumped fluid as much as possible. When the inlet pressure exceeds 10 feet (3 meters) of the fluid column, it is necessary to install a set of pressure relief and regulation devices to extend the service life of diaphragm.
    • We must ensure the sealing of each adapter for the inlet and outlet pipes.
    • All the fasteners must be tightened once again prior to the use of the Product to avoid the looseness that may arise out of the creep of the seal components and effectively prevent the leakage of fluid or air.

    Verify the chemical compatibility of the pump wetted parts and the substance being pumped, flushed or re -circulated. Chemical compatibility may change with tempera -ture and concentration of the chemical(s) within the substances being pumped, flushed or circulated. For specific fluid compatibility, consult the chemical manufacturer.

    Maximum temperatures are based on mechani -cal stress only. Certain chemicals will significantly reduce maximum safe operating temperature. Consult the chemical manufacturer for chemical compatibility and temperature lim -its.

    Make sure that all the operators of this equipment have been specifically trained, grasped the safe operating practices and understood the limitations of the equipment. They know how to wear PPE if needed.

    Do not use the pump for the structural support of the piping system. Be certain the system components are properly supported to prevent stress on the pump part

    • Suction and discharge connections should be flexible connec -tions (such as hose), not rigid piped, and should be compatible with the substance being pumped.

    It is a must to prevent unnecessary damage to the pump. If it has to lie idle for a long time, please clean it thoroughly after each use.

    • The Product left in the pump will become dry or sticky on the pump, which will give rise to the diaphragm and valve problems prior to the next start. At the freezing temperature, it is must to empty the pump completely under any circumstances after use.
    • It is an effective way in reducing users’ downtime to get the appropriate assembly available at any time. The application of the authentic BSK spare parts will be conducive to the extension of product life and the play of the performance.

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