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Constant Section (CS) Bearings
Constant section (CS) bearings are a type of thin section bearing that maintains a consistent cross-section regardless of bore size, offering uniform performance across various applications. These bearings are widely used in wind turbines, medical imaging equipment, and industrial machinery.
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Total 1723 Results
Part Number
Interchangeable
System of Measurement
For Load Direction
Bore Dia
Outer Dia
Width
Static Radial Load
Static Thrust Load
Weight
price($)
SC050XP0
KAYDON
Inch
Four Point Contact
5"
5.75"
0.375"
2590 lbf
6460 lbf
0.58 lbs
225.21
SD050AR0
KAYDON
Inch
Angular Contact
5"
6"
0.5"
4340 lbf
4870 lbf
0.98 lbs
266.02
SD050CP0
KAYDON
Inch
Radial
5"
6"
0.5"
3760 lbf
1.0 lbs
231.11
SD050XP0
KAYDON
Inch
Four Point Contact
5"
6"
0.5"
3760 lbf
9410 lbf
1.0 lbs
243.13
SF050AR0
KAYDON
Inch
Angular Contact
5"
6.5"
0.75"
7570 lbf
9460 lbf
2.37 lbs
348.14
SF050CP0
KAYDON
Inch
Radial
5"
6.5"
0.75"
6490 lbf
2.3 lbs
255.7
SF050XP0
KAYDON
Inch
Four Point Contact
5"
6.5"
0.75"
6490 lbf
16220 lbf
2.3 lbs
265.41
SG050AR0
KAYDON
Inch
Angular Contact
5"
7"
1"
11370 lbf
15400 lbf
4.42 lbs
361.23
SG050CP0
KAYDON
Inch
Radial
5"
7"
1"
9850 lbf
4.3 lbs
336.34
SG050XP0
KAYDON
Inch
Four Point Contact
5"
7"
1"
9850 lbf
24620 lbf
4.3 lbs
347.1
JA050CP0
KAYDON
Inch
Radial
5"
5.5"
0.25"
1590 lbf
0.23 lbs
123.82
JA050XP0
KAYDON
Inch
Four Point Contact
5"
5.5"
0.25"
1590 lbf
3980 lbf
0.23 lbs
139.92
JB050CP0
KAYDON
Inch
Radial
5"
5.625"
0.3125"
2150 lbf
0.37 lbs
134.96
JB050XP0
KAYDON
Inch
Four Point Contact
5"
5.625"
0.3125"
2150 lbf
5380 lbf
0.37 lbs
160
Consistent Cross-Section Across Sizes
The defining characteristics of constant section (CS) bearings is their fixed radial cross-section (the dimension between the bore and the outer diameter, and the width), which remains almost constant within a variety of bore diameter ranges in a specific series.
Unlike standard bearings where the cross-section increases with bore size, this “constant bearing” characteristic ensures predictable dimensions regardless of the shaft size chosen from that series, simplifying multi-shaft system designs.
Optimized Space Utilization
The constant section (CS) bearings design excels in applications in the limited space (particularly radial space), but varying shaft sizes might be needed.
Because the cross-section doesn’t grow significantly with the bore, designers can accommodate larger shafts without increasing the housing diameter or overall machine envelope.
If you need to upgrading shaft capacity within an existing design footprint, or standardizing housing components across different models, the constant section (CS) bearing will be your ideal choice.
Simplified Design and Inventory
In constant section (CS) bearings, the “constant” of the cross-section simplifies the design process. Engineers can often utilize similar or identical housing bore dimensions for multiple shaft sizes within the same CS bearing series.
This standardisation can lead to reduced design complexity, easier manufacturing setups, and potentially lower inventory costs, because a series of products may only require a relatively small number of relevant unique components (such as casings or seals).
FREQUENTLY ASKED QUESTIONS
What's the main difference between Constant Section and standard bearings?
The key difference is how the cross-section behaves as the bore size changes within a series.
Constant section (CS) bearings maintain a nearly identical cross-section, while standard bearings have a cross-section that increases with the bore diameter.
Are Constant Section bearings always "thin"?
While many Constant Section (CS) Bearings are also thin section bearings (small cross-section relative to bore), the term "constant section" specifically emphasizes the consistency of that cross-section across different sizes, not just its absolute thinness.
What applications benefit most from Constant Section bearings?
Applications requiring compact design across multiple, similar machines with varying shaft sizes, or where standardizing housing components is advantageous. Examples include robotics, semiconductor equipment, and medical devices.
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