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Specialized Nitrogen Generator For Application In Tire Vulcanization Process


Pressure swing Adsorption(PSA) gas separating technology , It has been applied in gas separation for several decades and has been widely used in China and even all over the world.

Place of Origin:CHINA
Brand Name:WSX
Model Number:WPZN-3~5000

TECHNICAL

Nitrogen scale:3~5000Nm3/h
Nitrogen purity:95~99.9995%
Nitrogen pressure:0.1~ 0.8Mpa (can be pressurized)
Nitrogen dew point:-40~-70℃

APPLICATIONS

Using nitrogen vulcanization process instead of traditional steam vulcanization process, the molecular structure of natural rubber chains is changed to a mesh structure, and layers of belt layers are tightly combined to form patterns on the tire surface. This type of vulcanized tire using a new process has higher performance indicators (such as mileage, durability) than traditional superheated water vulcanization. In addition, there are many advantages as follows:

The process is simpler, not the traditional hot water vulcanization system is huge, complex, large space and other shortcomings.
can reduce equipment configuration and operating costs.
The vulcanization process is more stable, effectively reducing the phenomenon of glue, delamination and bubbles in tire vulcanation.
Nitrogen has stable performance, excellent heat insulation performance, improves the phenomenon of serious heat loss in the traditional process, and saves energy.
High purity nitrogen gas can eliminate the phenomenon of early vulcanation of the vulcanized capsule and increase the average life of the capsule by 10%.
Reduce the consumption of water and electricity, and eliminate the phenomenon of running, running, dripping and leakage, to meet the requirements of environmental protection operation.

WORKING PRINCIPLE

When the air in the pressurized through the purification and drying, Base on Aerodynamics, nitrogen and oxygen in the air in the zeolite molecular sieve (ZMS) on the Pressure swing adsorption  will performance of different diffusion rate through the adsorption of nitrogen. Oxygen in carbon molecular sieve on the surface of the diffusion rate is higher than nitrogen. When the adsorption was not in balance, oxygen was absorbed by carbon molecular sieve in large quantity, and nitrogen was concentrated and enriched in the gas phase to achieve separation of oxygen and nitrogen.

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