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Adept Ultrasonic Flowmeter – UFM 6730

Insertion Type

Introduction

Adept UFM 6730 wall-mount Insertion Type Ultrasonic Flow meter provides abundant capabilities for accurate liquid flow measurement.

Salient Features

Cost-effective and versatile
Non invasive, no moving parts, no pressure drop, no maintenance
Wide pipe size range (DN 15 ~ 4570mm)
Bidirectional measurement. Totaliser display for net, positive and negative flow
High accuracy 1.0% reading
Easy and economical installation, no pipe cutting
Wide measurement range 0.2 ~ 12m/s
Suitable for all commonly used pipe materials
Ideal for both clean and opaque liquid flow measurement

Applications

Chemical, petrochemical and process industries
Pharmaceutical industries
Sugar, beverage industries
Water and waste water management
Mining industries
Fertilizers industries
Food and drug industries
Paper and pulp industries
Dredging industries

Product Selection Guide

Adept Ultrasonic Flowmeter – UFM 6740

Battery Powered Water Meter

Introduction

Adept UFM 6740 inline type Flanged Battery Operated Ultrasonic Flowmeter provides abundant capabilities for accurate liquid flow measurement. It is widely used in remote location applications where Field Electric supply is not available.

Salient Features

Based on Transit Time technology
Battery powered with 5 years life
Field interchangeable electronics
Unique IP 68 rated transmitter housing
Flow tube sizes 15 mm to 600 mm
Integral or remote transmitter
GSM or GPRS AMR functionality
High long-term stability and reliability

Applications

Process industries
Dredging industries
Water and waste water management
Mining industries

Product Selection Guide

AODD Pumps – Air Operated Double Diaphragm Pumps Manufacturer

Advantages of Moniba AODD Pumps

  • easy installation
  • screwed chambers for safe operation
  • rugged, cast feed mounting holes keep your pump from vibrating
  • available as cover-mounted, pail-mounted or wall-mounted units
  • immersible in most situations
  • easy to adapt
  • a large scale of material options for fl uid versatility with extended pump life
  • air powered convenience for use in a variety of installations with no electrical hazard
  • performs on-demand in remote locations
  • extremely portable for multi-location use
  • pumps move a wide variety of coatings, solvents, viscosity sealants, adhesives, inks, acids and more
  • easy to maintain
  • seal-less, leakproof design prevents fl uid waste and mess
  • even in wet air, the stainless steel diaphragm rod air motor is designed for long life and corrosion resistance
  • easy to operate
  • pumps reduce or eliminate manual fi lling and transport
  • multiple dispense points throughout your plant can easily be served.
  • can run dry without pump damage
  • no air lubrication necessary.
This parameters depend on size of pump
Temperature Max 90oC
Solid Size Max 10 MM
Solid % Max 50%
Viscosity 15000 CP
Self Priming 6mtr of Water column

Range

Model Inlet air connection in inches Inlet in inch Outlet in inch Max flow in LPM Max Solid Size in MM Material of casing
AIRON15 1/4" 1/2 1/2 33 2.5 PP,SS,PVDF,AL
AIRON25 1/4" 1 1 60 3.4 PP,SS,AL,PVDF
AIRON40 1/2" 1.5 1.5 140 5.0 PP,SS,AL
AIRON50 3/4" 2 2 300 6.5 PP,SS,AL
AIRON80 1" 3 3 440 10.0 ALUMINUM

Air Operated Double Diaphragm Pumps Manufacturer

Moniba Pumps is known to be one of the finest Air Operated Double Diaphragm Pumps Manufacturer in India. Our Air Operated Double Diaphragm Pumps can be used for difficult-to-pump applications in Petrochemical Plants, Oil and Gas, Pharmaceutical, Food Processing, Mining, Marine and various other applications. Air Operated Double Diaphragm Pump are easy to maintain, provide reliable performance, and eliminate downtime to give you the best performance. Moniba Pumps has been a leading AODD Pumps Manufacturer in India since a long time in the industry. We supply engineered solutions across companies that operate on the basis of Pumps.

How the Pump Works

LEFT STROKE

The air valve directs pressurized air to the back side of diaphragm A. The compressed air is applied directly to the liquid column separated by elastomeric diaphragms. The diaphragm acts as a separation membrane between the compressed air and liquid, balancing the load and removing mechanical stress from the diaphragm. The compressed air moves the diaphragm away from the center block of the pump. The opposite diaphragm is pulled in by the shaft connected to the pressurized diaphragm. Diaphragm B is on its suction stroke; air behind the diaphragm has been forced out to the atmosphere through the exhaust port of the pump. The movement of diaphragm B toward the center block of the pump creates a vacuum within chamber B. Atmospheric pressure forces fluid into the inlet manifold forcing the inlet valve ball off its seat. Liquid is free to move past the inlet valve ball and fill the liquid chamber (see shaded area).

Air Operated Double Diaphragm Pumps Manufacturer

Mid stroke

When the pressurised diaphragm, diaphragm A, reaches the limit of its discharge stroke, the air valve redirects pressurised air to the back side of diaphragm B. The pressurised air forces diaphragm B away from the center block while pulling diaphragm A to the center block. Diaphragm B is now on its discharge stroke. Diaphragm B forces the inlet valve ball onto its seat due to the hydraulic forces developed in the liquid chamber and manifold of the pump. These same hydraulic forces lift the discharge valve ball off its seat, while the opposite discharge valve ball is forced onto its seat, forcing fluid to flow through the pump discharge. The movement of diaphragm A toward the center block of the pump creates a vacuum within liquid chamber A. Atmospheric pressure forces fluid into the inlet manifold of the pump. The inlet valve ball is forced off its seat allowing the fluid being pumped to fill the liquid chamber.

Air Operated Double Diaphragm Pumps Manufacturer

Right stroke

At completion of the stroke, the air valve again redirects air to the back side of diaphragm A, which starts diaphragm B on its exhaust stroke. As the pump reaches its original starting point, each diaphragm has gone through one exhaust and one discharge stroke. This constitutes one complete pumping cycle. The pump may take several cycles to completely prime depending on the conditions of the application.

Moniba Pumps, being the Air Operated Double Diaphragm Pumps Manufacturer in India, procure every step of processing in the most efficient manner and thus, we maintain our processing standards with the best in class techniques and operations that result in flawless and rust-free end products with long industrial life.

We are also a Air Operated Double Diaphragm Pumps Exporter in India in India. We manufacture superior quality of AODD Pumps, adhering to specific qualified standards of manufacturing guided by the governing bodies and export the same overseas.

Air Operated Double Diaphragm Pumps Manufacturer
Air Operated Double Diaphragm Pumps Manufacturer

Industries & Application

Among the lot of the most appreciated Air Operated Double Diaphragm Pumps Manufacturer in India in the industry, we have achieved great heights in this field. Some of the Industrial uses of pumps produced by the best AODD Pumps Manufacturer in India are as follows-

Automotive Industry: Grinding emulsion, oil, coolant, hydraulic fluid, sulfuric, automotive primer, soluble oil, varnish disposal, Varnish additives, degreasing baths, cutting oil, water and glycol mixture, paint Aviation: Aircraft fuelling and drainage, satellite refueling, solid rocket propellant, missile silos Beverage Industry: Yeast, diatomaceous earth slurry, hot pulp, liquid hops, sugar syrup, concentrates, Gas-liquid mixtures, wine, fruit pulp, fruit juice, corn syrup Ceramics: Slip, glaze, enamel slip, effluent, clay, clay slurry, lime slurry, kaolin slurry Chemical Industry: Acids, alkalies, solvents, suspensions, dispersions, magnesium hydroxide, varnishes, sump water, resins, Latex, adhesives, effluent sludge, stabilizers, filter press, electrolytes Construction Industry: Sump and pit drainage, cement slurry, ceramic tile adhesive, rock slurry, ceiling coating paints, texture spray Cosmetics: Lotions, creams, shampoos, emulsions, hand creams, surfactants, hair permanents, soaps Electronics Industry: Solvents, electroplating baths, ultrapure liquids, carrier fluids for ultrasonic washing, sulfuric, nitric and acid Wastes, etching acids, MEK, acetone, polishing compounds Food: Brine, chocolate, vinegar, molasses, dog food, vegetable oil, soy bean oil, honey, cat food, HCL, animal blood Furniture Industry: Adhesives, varnishes, dispersions, solvents, stains, Elmer’s Glue, white good glue, solvents, glue (5-6000 cps) epoxy, starch adhesives, spray packages Mining: Sump gallery drainage, water drainage, coal sludge and rock slurry, cement slurry, grounding mortar, oil transfer, Explosive slurry, adhesive, lube oil, foaming Paints & Coatings: Resins, solvents, acrylic, wood preservative stain, concrete paints, varnishes, titanium dioxide slurry, primers, Stains, dispersions, varnish cleaning baths, alkalyd resin Pharmaceutical Industry: Vegetables extracts, tablet pastes, ointments, alcohols, filtering aids, ultra filtration,Blood plasma, waste solvents, sump waste Plating: Anodic sludge, electroplating baths, varnishes, enamels, solvents, cleaning baths, filtering Pulp/Paper/Packaging: Latex, adhesives, paints, resins, printing inks, dispersions, TiO2 slurry, Kaolin clay, hydrogen peroxide Refineries: Tank roof drainage, oil sludge, tank cleaning, tank moat drainage, portable pumping Road Tanker Trucks: Loading and draining of tank by means of pump on vehicle, tank vehicle washing facilities, acid spraying, foaming Shipbuilding: Tank and bilge drainage, ship cleaning, stripping, oil skimming, seawater Smelters, Foundries & Dye Casting: Metal slurry, hydroxide and carbide slurry, dust scrubbing slurry, back wash for Flushing of cores, mold release Textile & Carpet: Dyeing chemical, scotch guard, starch and sizing, resins, dyes, latex Water and Sewage Treatment: Milk of lime, thin slurry, effluents, chemicals, charging of filter presses, polymer, waste water Utility: Contaminated liquids, charging of scrubbers, milk of lime, transformer oil, resins

Ceramics

Air Operated Double Diaphragm Pumps Manufacturer

The items cover in the ceramics industry include Slip and glaze, filter presses, abrasive fluids,and sanitary products

Chemical & Petrochemical

Air Operated Double Diaphragm Pumps Manufacturer

The items over in the chemical and petrochemical Industry include acids, alcohols, hydrocarbons, solvents,and organics

Coatings: PAINTS & INKS

Air Operated Double Diaphragm Pumps Manufacturer

The items cover in the coatings industry Include paints, inks, dyes, resins, and Adhesives, solvents

Food & Beverage

Air Operated Double Diaphragm Pumps Manufacturer

The items we cover in the food and beverage industry include beverages, dairy products , purees, juices, and preserves

Wastewater

Air Operated Double Diaphragm Pumps Manufacturer

The items cover in the wastewater treatment Industry includes chemical waste and general waste.

PAINTS & INK DIPENSING MACHINE

Air Operated Double Diaphragm Pumps Manufacturer
ACCESSORIES
PULSATION DAMPENERS FOR REDUCING PULSATION IN PERISTALTIC PUMPS
Working of Peristaltic Pumps

As fluid enters the head of a peristaltic pump, it becomes trapped between two rollers. This "pillow" of fluid is followed by a void, where the tubing is occluded by the rollers. Alternating pillows and voids cause fluid flow to be pulsated, rather than smooth and continuous Figure. If pulsation is undesirable, using a pump head with adjustable occlusion can lessen the pulsation by a quarter. Reducing occlusion decreases the degree of pulsation because there is less distinction between fluid pillows. Some applications, however, are more sensitive to the pulsating flow produced by a peristaltic pump. These applications may require smoothing the flow by more than 25%. In these cases, four other methods may be considered for reducing pulsation further: using pump heads with offset occlusion and multiple-roller design; mounting multiple pump heads at an offset; using a pulse dampener; and changing the configuration of the discharge tubing.

peristaltic pump Pulsation Dampeners

A pulse dampener can be inserted into the discharge line to reduce pulsation. As the pulsating flow enters the dampener vessel, the air pocket trapped above the fluid absorbs up to 90% of the pulsation. A smoother flow leaves the vessel. For all tubing sizes, a pulse dampener can easily be fabricated using a retaining vessel and appropriately sized fittings, The outlet of the dampener should be at the same height as, or lower than, the inlet in order to reduce dead volume. Both inlet and outlet should be located near the bottom of the vessel to trap air in the top of the vessel. Changing the configuration of the channel through which the tubing flows can also reduce pulsation. Extending the length of the discharge tubing several times and selecting a softer tubing material, such as silicone, can reduce pulsation by as much as 60%. Softer tubing helps absorb fluid pulsation, and a longer discharge line increases friction. The increase in friction raises back pressure, which compresses the pulses together, thereby reducing pulsation.

FLR UNIT(FILTER LUBRICATOR REGULATOR)
FRL Unit

Armstrong 4030 End Suctionbase Mounted Pumps

  • Applications — HVAC-system pumping; light industrial/ process pumping
  • Description —  The Armstrong 4030 horizontal end-suction (ES) pumps are engineered to substantially reduce cost over competitor designs across installation, operation, and lifetime maintenance. High-efficiency NEMA-premium motors ensure low energy consumption and cost.
  • Materials (MOC) — Cast iron, ductile iron, or bronze casing, Cast iron or bronze impeller
  • Configuration Inside — single spring mechanical seal.
  • Performance range — Up to 5,000 USgpm (315 L/s) flow; up to 600 ft (180 m) head
  • Temperature — 250°F (121°C)
  • Power Range — 0.33 hp to 300 hp (0.25 kW to 200 kW)
  • Size — 1" to 8” (25 mm to 200 mm)

Armstrong 4280 Motor Mounted Pumps

  • Applications-HVAC-system pumping; light industrial / process pumping.
  • Description-The Armstrong 4280 horizontal end-suction pumps are equipped with close-coupled motors to minimize footprint requirements.
  • Materials(MOC)-Cast iron, ductile iron, or bronze casing, Cast iron or bronze impeller.
  • Configuration-Inside single-spring mechanical seal
  • Performance range-Up to 2,000 USgpm (125 L/s) flow; up to 400 f  (120 m)
  • Temperature-250°F (121°C)
  • Power Range-0.33 hp to 60 hp (0.25 kW to 45 kW)
  • Size-1" to 6” (25 mm to 150 mm)

Armstrong 4300 vertical in-line pumps

  • Applications-HVAC-system pumping; light industrial/ process pumping (water or glycol based)
  • Description-The Armstrong 4300 pipe-mounted pumps are designed for space-saving installation, high operating efficiency, and long service life
  • Materials(MOC)-Cast, ductile iron or bronze casing, Cast iron or bronze impeller
  • Configuration-Outside balanced or inside single spring mechanical seal
  • Performance range-Up to 28,000 USgpm (1,800 L/s) Flow; up to 500 ft (150 m) Head
  • Temperature-300oF (150oC)
  • Power Range-1 hp to 1250 hp (0.75 kW to 900 kW)
  • Size-1.5″ to 20” (40 mm to 500 mm)

Armstrong 4380 vertical in-line pumps

  • Applications-HVAC-system pumping; light industrial/ process pumping. (water or glycol based)
  • Description-The Armstrong 4380 pipe-mounted pumps are designed for space-saving installation and long service life.
  • Materials(MOC)-Cast iron or ductile iron casing, Silicon sintered carbide mechanical seal, Cast iron or bronze impeller.
  • Configuration-Inside single-spring mechanical seal.
  • Performance range-Up to 2,500 USgpm (160 L/s) flow; up to 300 ft (90 m) head
  • Temperature-250°F (121°C)
  • Power Range-0.33 hp to 60 hp (0.25 kW to 45 kW)
  • Size-1.5″ to 8″ (40 mm to 200 mm)

Armstrong Air & Dirt Separators

  • Applications-Dirt and air removal from hydronic and HVAC systems.
  • Description-The Armstrong dirt & air separators (DAS) are designed to eliminate trapped air and suspended dirt particles associated with the start-up and maintenance of hydronic and HVAC systems.
  • Materials (MOC)-Carbon steel (shell), stainless steel (coalescing medium), styrene butadiene rubber (gasket)

Armstrong Design Envelope 4300 Pumps

  • Applications-HVAC-system pumping and control; general purpose pumping; industrial/process pumping and control. (water or glycol based)
  • Description-Pipe-mounted UL 778 pumping unit with integrated intelligent controls for space-saving installation and superior energy performance. Saves up to 75% in energy over comparable traditional constant speed or variable frequency operated pump installations. Remote services through internet to enhance reliability and sustain optimal performance over life of pumps.
  • Materials(MOC)-Ductile iron e-coated casing, Stainless steel impeller, Sintered silicon carbide mechanical seal
  • Configuration-On-board Intelligent Variable Speed controls with Sensorless control. Split-coupling design and outside balanced or inside single spring mechanical seal. Controls enclosure UL type 12 or UL type 4X for outdoor applications. 0.33-50hp range standard with DEPM motors that reduce losses by more than 20% over NEMA Premium efficiency. Network capable for remote performance management services.
  • Performance range-25 to 25,000 USgpm (1.5 to 1500 L/s) flow; 10 to 300 ft (3 to 90 m) head (composite curves available)
  • Temperature-300oF (150oC)
  • Power Range-0.33 hp to 1250 hp (0.25 kW to 900 kW)
  • Size-1″ to 20″ (25 mm to 500 mm)

Armstrong Design Envelope 4302 Dualarm Pumps

  • Applications-HVAC system pumping; general purpose pumping; industrial/process pumping (water or glycol based) Armstrong Design Envelope Pumps with integrated controllers are OSHPD pre-approved!
  • Description-Pipe-mounted 2-pump unit with integrated intelligent controls for space-saving installation, superior energy performance, and full redundancy or parallel-pumping operation. Saves up to 75% in energy over comparable traditional constant speed or variable frequency operated pump installations.
  • Materials (MOC)-Cast iron or ductile iron casing, Cast iron or bronze impeller, Sintered silicon carbide mechanical seal
  • Configuration-On-board Intelligent Variable Speed controls with Sensorless or Parallel Sensorless control. Controls enclosure UL type 12 or UL type 4X (outdoor applications). Available with NEMA premium motors. Outside balanced or inside single spring mechanical seal
  • Performance range-Up to 1250 USgpm flow and 250 ft head (80 L/s, 76 m)
  • Temperature-250°F (121°C)
  • Power Range-0.33 hp to 75 hp (0.25 kW to 55 kW)
  • Size –1″ to 8” (25 mm to 200 mm)

Armstrong Design Envelope 6800 Vertical Multistage Boosters

  • Applications-New and retrofit water boosting installations in mid to large size residential, commercial, or industrial settings (such as apartment buildings, office towers, hospitals, hotels, schools, water treatment plants, factories, etc.)
  • Description-The Armstrong Design Envelope 6800 Boosters are fully assembled, programmed, integrated and factory-tested turn-key booster systems. They are equipped with vertical multistage pumps and come in arrangements of 2 to 5 pumps. The integrated controls allow for superior performance and energy efficiency across broad operating envelopes. Most suitable for applications where energy consumption and low maintenance are critical, installation space comes at a premium, and occupant comfort is a high priority.
  • Materials (MOC)-Piping: stainless steel 304
  • Configuration-The 6800 Booster range offers enhanced features, such as improved touchscreens, more performance envelopes, an easy-to-use selection software, and onboard energy and flow readings both present and historic. For the full improved feature set please refer to the Solution Outline for this product.
  • Performance range-Up to 2000 USgpm (450 m3/hr) flow; up to 370 psi (22 bar) pressure
  • Power Range-Up to 250 hp (up to 185 kW)

Armstrong Design Envelope 9521 Integrated Plant Control System (IPC 9521)

  • Applications-Automated chiller plant control for optimizing variable primary flow water-cooled chiller plants. The 9521 IPC works in a variable primary configuration and keeps the entire plant including water-cooled chillers, cooling towers, chilled water and condenser pumps running smoothly.
  • Description-The Armstrong Integrated Water-Cooled Chiller Plant Control System (IPC) boosts energy efficiencies of new and existing chiller plant installations to leading class levels. The IPC 9521 works with all variable primary configurations, keeping the entire plant – including water-cooled chillers, cooling towers, chilled water and condenser pumps – running at optimum performance and occupant comfort.
  • Configuration-Integrates with all brands of chillers, pumps, and automation systems. Installs directly with chiller plant equipment. If preferred, the IPC connects seamlessly with any central building automation system (BAS) maintaining full control of the chilled water plant through the BAS
  • Performance range-Controls up to five chillers, five cooling towers and five pumps. No limitations in plant size and cooling capacity.
  • Power Range-No limitations in plant cooling capacity