Hydraulic spares
Our parent comanpy is a leading manufacturer of hydraulic spares like pipes & fittings, valves, pipe clamps, hoses, flanges, oil seals , o rings, nut bolts, & other tailor made spares we make, we also entertain custom made items as per desired by our customers.
- Nu Seal : An Economical, Natural Look, Easy to Use, Nano technology sealer that
penetrates and resists water and stains increasing the Grace & Gloss the the floor.
Rod seals are used in hydraulic cylinders for fluid sealing. They are external to the cylinder head and seal against the cylinderâ??s rod, preventing leakage of fluid from within the cylinder to the outside.
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Seal Materials (PTFE Grades): BR40, BR40M5, BR55M5, GL5M5, GL15M5.
Temperature Range: -50�°C + 200�°C (Depend upon O ring material)
Operating Pressure: Up to 800 bar (80Mpa)
O Ring material: Nitrile Rubber, Viton.
Seal Profile
Size Range:
We manufacture ROD (Step) Seals for the following range of Piston ROD diameter -
Expert Engineering Enhanced Air
Finned Cooler is unique in design. In which the Process Liquid flows from the
pot (as the direction shown in the fig. Expert Engineering Air Cooler) and the
cooling Finned Tubes and inserted in the pot, which cools the Process Liquid when it comes in contact with Tube
Cooling Finned Tubes.
The tubes are consists of sealed Stainless Steel tubes with Copper/Aluminium fins around it. It is filled with a liquid (the thermal transfer medium) appropriate to temperature of application.
Working Principle of Finned
Tubes It is filled with a liquid (the thermal transfer medium) appropriate to
temperature of application. The working fluid evaporates extracting
heat from the process liquid Vapor moves towards fin side of the tube
wherein it dissipates heat to the ambient and condenses.
The condensed liquid comes back to the bottom portion.
The cycle repeats,
BENEFITS OF AIR COOLER
Reliability:
Direct saving
Cost of Water: With Air Fin Coolers no water is required hence cost of water is saved.
To get desired amount of cooling normally for water-cooled heat exchangers 40 to 50
lpm water is required. @ Rs 5 per cubic meter approximate saving will be about Rs.
110000/- per year.
Cost of circulation of water: The energy spent in water circulation in is saved. On an average about 0.5kW of power is required for recirculation of water in each cooling circuit. @ Rs 4.5 per kw the power cost would be Rs.19710/-
Preventive Maintenance: Water causes scaling problem, and due to scaling, temperature to the seal goes up, the pump needs to be taken for removal of scale. Cost of removal of scale and loss of production is saved with Air Fin Coolers. Cost of each shut down is between Rs. 50,000/- to Rs. 1, 50,000/- (depends on criticality and cost of the product.)
Shut down Maintenance: If seal fails because of poor cooling in addition to the
production and maintenance loss, cost of replacement seal components add to the loss.
The cost incurred varies between Rs. 75,000/- to Rs. 5, 00,000/- depending on the seal size and spares consumed.
Indirect saving
Fouling: In absence of water, no scaling can take place. Because of scaling heat transfer gets reduced, hence either water consumption goes up or temperature in seal area goes up which reduces the seal life.
Better circulation of flushing fluid: In absence of coil, friction loss reduces hence there is better circulation of flushing liquid. The seal will be more comfortable with increased amount of flushing liquid, as there is no friction
Average Power -0 0.5kw
Cooler Type - Chillers, Desert, Evaporator, Tower
Temperature - 40 Degree C
Expert Engineering Air Finned Cooler is unique in design. In which the Process liquid flows from the pot (as the direction shown in the fig. Expert engineering air cooler) and the cooling finned tubes and inserted in the pot, which cools the process liquid when it comes in contact with tube.
Cooling Finned Tubes:
* The tubes are consists of sealed stainless steel tubes with copper/aluminium fins around it
* It is filled with a liquid (the thermal transfer medium) appropriate to temperature of applications
Working Principle of Finned Tubes:
* It is filled with a liquid (the thermal transfer medium) appropriate to temperature of applications
* The working fluid evaporates extracting heat from the process liquid
Vapor moves towards fin side of the tube wherein it dissipates heat to the
ambient and condenses
* The condensed liquid comes back to the bottom condenses
* The cycle repeats
Reliability:
* Any equipment which depends on the reliability of other equipment is not reliable or less reliable
* Expert engineering's air finned cooler cools the product with natural draft
It does not have any moving parts, needs no external power source
Expert Engineering's air finned cooler does not depend on the cooling water there for risk of shut down due to poor quality/quantity of water is eliminated
Direct saving:
* Cost of Water: With Air Fin Coolers no water is required hence cost of water is saved.
* To get de sired amount of cooling normally for water-cooled heat exchange rs 40 to 50 lpm water is required. @ Rs 5 per cubic meter approxi mate saving will be about Rs. 110000/- pe r year.
* Cost of circulation of water: The energy spent in water circulation in is saved
On an average about 0.5kw of power is required for recirculation of water in each cooling circuit. @ Rs 4.5 per kw the power cost would be Rs 19710/-
* Preventive Miantenance: Water causes scaling problem, and due to scaling, temperature to the seal goes up, the pump needs to be taken for romoval of scale
* Cost of removal of scale and loss of production is saved with air fin coolers
Cost of each shut down is between Rs. 50000/- to Rs 150000/-(depends of criticality and cost of the product)
* Shut Down Maintenance: If seal fails because of poor cooling in addition to the Production and maintenance loss, cost fo replacement seal components add to the loss
* The cost incurred varies between Rs. 75000/- to Rs. 500000/- depending on the seal size and spares consumed
Applications : Pulp and paper, Petrochemical and Regfinery, Heat transfer fluids
Shaft Diameter : 1.0 inch - 4.0 inch
Presure : 20 bar (max)
Temperature : -50dig C - +350dig C
Velocity : 20 m/sec
Face Materials Silicon Carbide, Tungstem carbide
Matal Parts : SS316, SS304, Hast-C, Carpenter 42
Material - Alloy-C-276
Application - Refinery Applictions for low as well high Temperature, Oil and Gas Industry, Petrochemical industry
Shaft Diameter - 20.0-110.0
Presure - Upto 2MPa/20 bar (g) Max
Speed - Upto 9800fpm/50 m/s
Elastomers : Flexible Graphite
Temperature : -40 dig C - +400 dig C
Applications - Water And Waste Water, Food And Beverages Industry, 0 Oil Applications, General Chemicals
Face Materials Silicon Carbide,Tungsten Carbide,Carbon, Ceramic
Metal Parts - SS 316, SS 304, Hast-C, Monet, Alloy-20
Secondary Seals - NBR, Viton, PTFE, EPDM, Neoprene
Velocity - V 20 m/sec.
Pressure - P 35 bar(max)
Temperature : -60 Degree C to +200 Degree C
Efficient name in the industry involved in offering the optimum quality of Multi Spring Seals Balanced.
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