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NTN HM926747/HM926710 inch series tapered roller bearing set consisting of cone HM926747 and cup HM926710. Straight bore, open enclosure, case carburized steel construction. Designed for heavy radial and axial loads in industrial gearboxes and axle housings.
MODEL HM926747/HM926710
$1,164.38 Each
Prices are subject to change
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a (Effective Load Center)
0.5300 in
B (in)
5.0000
Bore type
Round
Bore Type
Round
Cone Number
HM926747
Configuration
One
Cup Number
HM926710
D (in)
9.0000
Dynamic load rating
101000 lbf
Dynamic Load Rating
101000 lbf
e (Axial Load Factor)
0.74
Enclosure
Open
Lubrication
w/o Oil Hole
Material
Case Carburized Steel
Operating temperature range
-40 to 250 ºF
Operating Temperature Range
-40 to 250 °F
Precision rating
Class 4
Precision Rating
Class 4
r (in)
0.1300
R (in)
0.14
Static load rating
152000 lbf
Static Load Rating
152000 lbf
Style
Cone & Cup
Type
Tapered Roller Bearing
U
6.14 in
V
5.63 in
W
2.1250 in
Wi
1.9460 in
Width
2.125
Wo
1.5000 in
X
8.62 in
Y2 (Axial Load Factor)
0.81
Z
7.87 in
Technical Specifications
Type | Tapered Roller Bearing |
|---|---|
Bore Type | Round |
Material | Case Carburized Steel |
Style | Cone & Cup |
Precision Rating | Class 4 |
Cone Number | HM926747 |
Cup Number | HM926710 |
Configuration | One |
Lubrication | w/o Oil Hole |
e (Axial Load Factor) | 0.74 |
Y2 (Axial Load Factor) | 0.81 |
Static Load Rating | 152000 lbf675000 N675.00 kN |
Dynamic Load Rating | 101000 lbf450000 N450.00 kN |
Enclosure | Open |
Operating Temperature Range | -40 to 250 F-40 to 120 C |
Dimensional Specifications
| |
B | 5.0000 in127.000 mm |
|---|---|
D | 9.0000 in228.600 mm |
Wo | 1.5000 in38.100 mm |
Wi | 1.9460 in49.428 mm |
W | 2.1250 in53.975 mm |
r | 0.1300 in3.300 mm |
R | 0.14 in3.5 mm |
a (Effective Load Center) | 0.5300 in13.500 mm |
U | 6.14 in156.0 mm |
V | 5.63 in143.0 mm |
X | 8.62 in219.0 mm |
Z | 7.87 in200.0 mm |
How do I choose the right type of bearing for my application?
Start with the load and how it’s applied. You need to know if you’re dealing with radial loads, axial loads, or a mix of both. Then look at speed, operating environment, and space constraints. For example, ball bearings are great for high speed and lighter loads, while roller bearings handle heavier loads but usually at lower speeds. If there’s contamination, moisture, or heat involved, you may need sealed bearings or specific materials. In most cases, the right choice comes down to matching load type, speed, and environment to the bearing design.
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