FAG 6344-M-C3 1 Row Deep Groove Ball Bearing - 220 mm ID, 460 mm OD

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₩18,870,420.00

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  • 2026년 11월 02일 부터 배송 준비 완료
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RS 제품 번호:
310-974
제조사 부품 번호:
6344-M-C3
제조업체:
FAG
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모두 선택

브랜드

FAG

Product Type

Deep Groove Ball Bearing

Inside Diameter

220mm

Outside Diameter

460mm

Race Width

88mm

Ball Material

Brass

Cage Material

Brass

End Type

Open

Number of Rows

1

Static Load Rating

560000N

Internal Clearance

C3

Dynamic Load Rating

440000N

Standards/Approvals

No

Bore Type

Cylindrical

Series

6344

Limiting Speed

2460rpm

Bearing Type

Deep Groove

제외

COO (Country of Origin):
IT

FAG 6344 Series Deep Groove Ball Bearing, 220mm Inside Diameter, 460mm Outside Diameter - 6344-M-C3


This deep groove ball bearing is designed to support radial and moderate axial loads in rotating equipment across automation, electrical and mechanical systems. It features an open-end configuration and a cylindrical inner bore for mounting on shafts where unobstructed access is required, delivering consistent rotational performance within typical industrial speed ranges.

Features and Benefits:


• Brass balls and cage reduce fretting and provide smooth operation • Internal C3 clearance accommodates thermal expansion during operation • Dynamic capacity 440000N enables heavy-duty load handling • Static capacity 560000N resists deformation under Peak loads • Limiting speed 2460 r/min supports medium-speed rotational applications

Applications


• Suitable for drive shafts in industrial automation systems • Ideal for motor and generator assemblies in electrical equipment • Used with gearbox input shafts requiring high load capacity • Can be used for rotating platforms in electronics manufacturing

How does the open-end design affect maintenance?


The open end allows easy inspection and re-lubrication access without removing adjacent components, simplifying routine servicing.

What mounting considerations apply given the bore type?


The cylindrical bore requires precise shaft fit and axial location components such as shoulders or retaining rings to secure axial position during operation.

How does internal clearance influence thermal performance?


The increased internal clearance provides room for expansion under elevated temperatures, reducing the risk of excessive preload when operating in warmer environments.

What operational limits should be observed to avoid damage?


Avoid sustained speeds above the limiting speed and ensure loading does not exceed static or dynamic capacity to prevent accelerated wear or permanent distortion.

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