Magnetic Coupling Enduring High Temperature Pressure No Leakage Stainless Couping Customize for Pump

Product Details
Customization: Available
Standard Or Nonstandard: Nonstandard
Shaft Hole: 19-32
Manufacturer/Factory & Trading Company
Gold Member Since 2024

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  • Magnetic Coupling Enduring High Temperature Pressure No Leakage Stainless Couping Customize for Pump
  • Magnetic Coupling Enduring High Temperature Pressure No Leakage Stainless Couping Customize for Pump
  • Magnetic Coupling Enduring High Temperature Pressure No Leakage Stainless Couping Customize for Pump
  • Magnetic Coupling Enduring High Temperature Pressure No Leakage Stainless Couping Customize for Pump
  • Magnetic Coupling Enduring High Temperature Pressure No Leakage Stainless Couping Customize for Pump
  • Magnetic Coupling Enduring High Temperature Pressure No Leakage Stainless Couping Customize for Pump
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Basic Info.

Model NO.
DSB
Speed
4000r/M
Structure
Flexible
Material
Stainless Steel
Type
20-110
Transport Package
Paper Box
Specification
customized
Trademark
AZEJIA
Origin
Wuxi, Jiangsu Province, China
HS Code
848360090
Production Capacity
999

Product Description

    We can produce as drawing or sample  to customization, non-standard products, please cantact our saleman
The  magnetic couplings  of the Azejia® range are permanent-magnetic couplings transmitting the torque without contact through magnetic forces between two magnetic rotors. The standard type  Azejia®-S magnetic coupling with containment shroud and magnets positioned radially ensures hermetic separation of driving and driven side in pumps and agitators.

Like with the PEEK version, the Azejia magnetic coupling with containment shroud made of ceramics is an economic, energy-efficient alternative to metallic containment shroud version. It does not generate any losses of eddy current and thus does not generate any heat so that usually expensive cooling measures can be eliminated.

 

Moreover, compared to PEEK the containment shrouds made of ceramics of this magnetic coupling are characterized by higher pressure resistance and excellent temperature resistance.



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