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 Pet Blowing Air Compressor in Ahmedabad, Pet Blowing Air Compressor in Gujarat, Pet Blowing Air Compressor in India Aluminium Pipe Line For Compressed Air
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 Non Lubricated Air Compressor in Ahmedabad, Non Lubricated Air Compressor in Gujarat, Non Lubricated Air Compressor in India” title=
 
 
 
Aluminium Pipe Line For Compressed Air
 
 
 Non Lubricated Air Compressor in Ahmedabad, Non Lubricated Air Compressor in Gujarat, Non Lubricated Air Compressor in India
 
 Non Lubricated Air Compressor in Ahmedabad, Non Lubricated Air Compressor in Gujarat, Non Lubricated Air Compressor in India
 
Features
 Non Lubricated Air Compressor in Ahmedabad, Non Lubricated Air Compressor in Gujarat, Non Lubricated Air Compressor in India” title= Safe, Secure, leak-proof, Lightweight and easy to handle
   
 Non Lubricated Air Compressor in Ahmedabad, Non Lubricated Air Compressor in Gujarat, Non Lubricated Air Compressor in India” title= No corrosion, reduced maintenance, Easy to alter or extend a system
   
 Non Lubricated Air Compressor in Ahmedabad, Non Lubricated Air Compressor in Gujarat, Non Lubricated Air Compressor in India” title= Fast installation time without the need for tools, Truly demountable without damage to pipe or fittings

-  Fast, easy, reliable, non-corrosive materials only, eliminates risk of pollution, delivers constant quality air from point of generation to point of use, maintains the required system pressure, reduces network maintenances -  Protects downstream manufacturing processes, smooth inner aluminium surface has no resistance of air circulation, minimal Network maintenance so no energy waste, possible to connect with any existing equipment or network without doing major changes -  Allows for future network extensions, lightweight yet robust and easy to cut, aluminium pipes can be installed safely by just one person without any training, leak-free service with air-tight O-ring fitting design, rugged, industrial strength protection against the elements and corrosion with powder coated extruded aluminium pipe and engineered polymer fittings -  Save energy, reduce pressure drops an maximize efficiency with smooth internal bore, quick and easy configuration and assembly with over many different types of fittings, pipe diameters and valves to fit any application

-   Compressed Air Line
-   Air Line in pneumatically operated automated plants
-   Reserve osmosis plants
-   Construction Industry for internal and external water pipelines network
-   For Industrial Gasses which not process with aluminium
-   Medical Oxygen in Hospital
-   Solar water heating system
-   Cooling Water
-   Pipe rehabilitation in both plant and out of plant piping
-   Dredge Piping
-   Pit dewatering

Aluminium piping offers many advantages for compressed air installation including reduced costs and increased longevity. Engineers have specified a variety of piping materials for compressed air systems, including black iron, galvanized steel, copper, stainless steel, and even plastic. More recently, aluminium piping has become an option considered by many contractors, architects and engineering firms. Aluminium piping makes sense for compressed air systems in many different applications.

Black iron and galvanized steel pipe are two common types of pipe used for compressed air systems. More than 60% to 70% of all compressed air systems installed today use black iron or galvanized pipe, due to a variety of factors:

   - Contractors are familiar with these materials.
   - Material costs are low.
   - The pipe and compressed air system fittings are readily available.
   - Steel pipe is rated for high pressure.

There are, however, some key reasons why aluminium piping is a superior material to use for most compressed air installations today, each of which addresses a key disadvantage to traditional pipe systems.

Lowering Installation Costs

Time is needed to install a compressed air system when using steel pipe compared to installing a system using other materials.One factor behind this is that steel pipe must be threaded in order to join pipes and install the proper fittings. To properly thread steel pipe, you need special threading equipment and skilled workers to operate it. These workers cost more than unskilled workers, and that also drives up installation costs.

Also remember that threading pipes is dirty work. You need cutting fluids to get a good thread, and that must be cleaned from the pipe before you can start using the system. Threading also creates a lot of debris.

Modifying and maintaining a compressed air system made with steel pipe is more difficult than modifying and maintaining systems built from other materials. One reason for this is that steel pipe is much heavier than other materials.

Because steel pipe is so heavy, it requires more labour to handle the piping while making modifications than it would to make modifications to a system made with other piping materials.

Minimizing System Leaks

Another issue with threaded connections is that they will inevitably leak. It's been estimated that eight to 10% of the compressed air in a system will leak through threaded connections. This causes compressors to run harder and longer, driving up utility costs.

Aluminium Piping Doesn't Corrode

A common problem with using steel pipe is that moisture inside the system will cause pipes to rust from the inside out. Even if your compressed air system has a moisture trap, there will be some moisture in the system and corrosion will occur. Even galvanized steel pipe will corrode, as not all pipes are galvanized both inside and out.

Corrosion causes several problems, beginning with air flow restricted by a rough inner surface caked with deposits caused by corrosion build up. Additionally, loose scale deposits collect over time and create pressure drops. This makes the air compressor work harder to maintain the pressure of the system. In extreme cases, loose scale can completely clog a line or damage equipment connected to a line. Of course, corrosion and loose scale affects air quality and makes it unsuitable for applications that require clean air.

Aluminium outperforms the copper alternative

Copper piping is another solution for compressed air systems and is attractive because it doesn't corrode as much as steel pipe. While it can corrode, it doesn't have pipe scaling like steel pipe. This means that a copper system will have fewer air flow problems and air cleanliness problems than steel pipe, but it can still experience flow restriction over time.

A copper solution comes with its own set of disadvantages, however; perhaps the biggest is the cost of copper material itself.

Another disadvantage is that fittings must be soldered, and this causes its own set of problems. Soldering of course requires an open flame, making this a safety issue in someenvironments. And, soldering requires some skill to accomplish, an increasing problem in an era when skilled labour is becoming harder to find. If a joint is not soldered properly, it will leak, and leaks increase energy costs.

Finally, not all types of copper piping are suitable for use with high air pressures. So, if you're planning to use copper, you have to make sure that you choose a pipe that can handle the pressure.

PVC and stainless steel present obstacles in cost and durability

While steel pipe and copper pipe are the two most widely used materials for compressed air systems, you will also sometimes find systems that use PVC pipe and stainless steel pipe. In fact, it is highlydangerous to use PVC pipe for compressed air systems. PVC becomes brittle over time and may explode when transporting air under high pressure.

Stainless steel is another option, especially when the compressed air system is to be installed in a corrosive environment. In some cases, stainless steel is considered an option depending on the fluctuating cost of copper pipe.

As with other steel pipe systems, though, stainless steel systems can be costly to install. Threaded stainless steel pipe can be difficult to seal, often requiring the use of lubricants to thread correctly. Welding stainless steel drives up installation costs and safety concerns through the need of a skilled welder, and the added risk of smoke inhalation, damage to eye sight, and fire.

The case for aluminium piping

In recent years, aluminium piping has become a solid alternative to other piping materials for compressed air systems. Compared to the materials described above, installing a compressed air system using aluminium piping offers many advantages:

Aluminium pipe systems are much easier to install and to modify than steel or copper pipe systems. Labour savings of 50% can be achieved, since aluminium pipe is supplied ready for use. No particular preparations beyond cutting, debarring, and chamfering are required, nor are special tools needed. Aluminium pipe is calibrated, meaning that its diameter is strictly controlled. This means that associated quickly connect components will fit securely, and each connection is automatically secured.Aluminium pipe is much lighter than steel pipe or copper pipe. This also reduces installation and modification costs.

Another factor that makes aluminium pipe systems easier to install and modify is that it doesn't require threading or soldering.The compressed air provided by a system built with aluminium piping is much cleaner than air delivered by a steel pipe system. Aluminium pipe systems can help meet the requirements of ISO 8573-1: 2010 air quality standards, should the application require it. Cleaner air also means lower maintenance costs.

Aluminium pipe's corrosion-resistant properties mean optimal air flow, reduced energy costs, and better air quality.The fittings used with aluminium pipe systems fit securely and leak far less than the fittings used with threaded systems. This translates directly into energy savings and improved plant productivity.

Naturally, there are some disadvantages. For example, material costs are higher for aluminium pipe systems compared to steel pipe systems. When compared to copper pipe systems, however, material costs for aluminium are about the same or even lower. And, the working pressure for aluminium is 225 PSI at 115 degrees. Overall, though, for many applications, aluminium piping is a solid alternative for compressed air systems.

Technical Specification

Indicative Specification of Aluminium Pipe for Compressed Air Distribution Network

Suitable Fluids
Aluminium Pipe Dia
Aluminium Pipe Lenth
Working Pressure
Temperature Range
Compressed Air:
Milimeter
Inch
Meter
Feet
Dry Compressed Air
20 MM
3/4"
3 Meter
10 Feet
16 Bar (-4°F to +115°F)
Max Working: -4°F to +140°F
Wet Compressed Air
25 MM
1"
Lubricated Compressed Air
32 MM
1.1/4"
Vacuum: 97% (29.6" Hg)
40 MM
1.1/2"
Inert Gases
50 MM
2"
6 Meter
20 Feet
13 Bar (-4°F to +140°F)
Storage: -40°F to 176°F
Contact us for other fluids
63 MM
2.5"
 
80 MM
3"
 
100 MM
4"

Comparative Chart

Aluminium Pipe for Compressed Air
Galvanized Pipe for Compressed Air
Smooth surface
Rough surface
Low friction factor
Friction factor is almost double of an aluminium pipe
Low initial pressure drop
High initial pressure drop
Aluminium and polymer fittings are corrosion-free
Corrosion protection depends on galvanization quality
No risk of corrosion when cutting the aluminium
When cutting the pipe, the galvanization is removed
Very low risk of leakage, which is not related to corrosion
The connection poses a high risk of corrosion at low
level points where water can stagnate, resulting
in a high risk of leakage.
Lightweight pipes: a standard Ø50 mm (2")
diameter pipe weighs less than 5 kg (11 lbs).
Heavyweight pipes: a standard Ø50 mm (2") pipe
weighs more than 25 kg (55 lbs).
Short manual cutting time
Very long manual cutting time, electrical cutter may generate some metallic dust
Fast deburring of the pipe. Pipes can be simply pushed into the fitting.
Threading the pipe requires a certain level of experience to avoid future leakage.
The fittings can be tightened by hand and
secured with a spanner.
The galvanized fittings need to be tightened using a spanner. The risk of leakage depends on the
quality of the thread.
Modifying the network is easy: the fittings and pipes can be simply disassembled and re-used.
Modifying the network is often difficult: after
disassembly, the pipes have to be cut, changed,
threaded and re-assembled.
Standard painted blue (compressed air) or
green (inert gases) for easy network identification.
Pipes need to be painted in the appropriate color,
adding to the total cost.
 
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