NTN, ID 90 mm ID Cylindrisk, UT 190 mm UT, Genomhärdat stål Sfäriskt rullager, 668 kN, C4, 3000rpm, 22318EF800, 652 kN,

Antal (1 enhet)*

7 521,47 kr

(exkl. moms)

9 401,84 kr

(inkl. moms)

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RS-artikelnummer:
454-824
Tillv. art.nr:
22318EF800
Tillverkare / varumärke:
NTN
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Varumärke

NTN

Produkttyp

Sfäriskt rullager

Invändig diameter

90 mm

Loppbredd

64mm

Borrtyp

Cylindrisk

Dynamisk belastningsklass

668kN

Utvändig diameter

190 mm

Hastighetsbegränsning

3500rpm

Internt godkännande

C4

Maximal hastighet - fett

3000rpm

Maximal hastighet - olja

3500rpm

Lagermaterial

Genomhärdat stål

Statisk belastning

652kN

Serie

22318EF800

Standarder/godkännanden

RoHS Certificate of Compliance

Typ av lopp

Sfäriskt

COO (ursprungsland):
IT
The NTN Spherical Roller Bearing has been expertly designed for robust vibratory applications, providing exceptional performance through its one-piece machined cage and thoughtfully engineered lubrication holes. With a focus on reliability, this component is an ideal choice for demanding conditions, structure and machinery where consistent load support is crucial. The innovative design features a special C4 class clearance, allowing for superior operational efficiency. Its capacity to withstand harsh environments is underscored by an extensive operational temperature range, making it a versatile solution for various industrial uses. This bearing is supported by NTN’s legacy of engineering excellence and quality, significantly enhancing the longevity and functionality of machinery.

Constructed with a precision-engineered one-piece cage to ensure durability

Equipped with multiple lubrication holes for reduced friction and improved performance

Designed for high load increments with extensive radial clearance

Capable of operating efficiently within a wide temperature spectrum

Features specific design dimensions to optimise compatibility and installation ease

Manufactured with a focus on eliminating premature wear

Delivers outstanding reliability for applications subjected to constant vibration

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