Three Row Cylindrical Roller Slewing Bearing with Outer Tooth 6397/1460

US$1.00-100,000.00 1 Set (MOQ)
Port:
Shanghai, China
Production Capacity:
10000 Sets/Year
Payment Terms:
L/C, T/T

Last Login Date:

Mar 07, 2025

Business Type:

Manufacturer/Factory

Main Products:

Slewing Bearing, Gear Ring, Slewing Ring, Cross Cylindrical Roller Slewing Bearing, Double Row Ball Slewing Bearings Without Tooth, Double Row Ball Slewing Bearings, Three Row Cylindrical Roller Slewing Bearing, High Precision Slewing Bearing, Slewing Bearing for Welding Machine, Slewing Bearing for Port-Machinery

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Product Description

Company Info

Basic Info.

Model NO.
6397/1460
Standard or Nonstandard
Nonstandard
Feature
Corrosion-Resistant
Sealing Gland
Sealed On Both Sides
Rolling-Element Number
Multiple-Column
Roller Type
Crowned Raceway
Material
Bearing Steel
Trademark
LTZC
Transport Package
Plywood Case
Specification
1460x1733x110mm
Origin
HS Code
8483900090

Product Description

Product Introduction

Axial load and radial load for this design are loaded by different rollers, in which the axial load and tilting moment are loaded by two groups of horizontal placed rollers, the radial load is loaded by one group of vertical placed rollers.
 

Product Model

Dimension

Bearing Type

Weight

d

D

T

 

 

mm

 

Kg≈

1460

1733

110

6397/1460

594

 

FAQ

Contact Stress

Point contact bearings (ball bearing) have the advantage of low running resistance, and demand a high degree of accuracy in manufacturing, installation clearances are closely defined, and provide for small amounts of deformation within the bearing frame etc. They maintain a small influence on the contact between balls and raceway within the bearing under the same load conditions. Point contact stresses are larger than the line contact stress', consequently the load capacity of point contact is accordingly lower than that of line contact.

 

Contact stress within the line contact is lower compared to that of point contact; its load capacity is larger than that of the point contact. However, the friction resistance generated by the line contact movement is larger than that of the point contact, there are higher requirements in manufacturing accuracy within the bearings frame for these types of bearing. Other important factors are installation accuracy and rigidity; otherwise any deviation from these procedures could result in the generation of high contact stresses, resulting in reduced load capacity, in addition to the potential for premature failure. If the application does not allow for rigidity within the bearing frame then the line contact bearing should not be considered. 

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