RBC® HexLube® S56LW S-LW Needle Roller Cylindrical Cam Follower, 1-3/4 in Dia x 1 in W Roller, 3/4 in Dia x 1-3/4 in L Stud, Chrome Steel Roller
Needle Roller Cam Followers have a heavy outer ring cross section and a full complement of needle rollers. They offer high dynamic and static load carrying capability, and anti-friction performance, in a compact design. They are used as track rollers, cam followers, and in a wide range of linear motion systems.
-
BrandRBC®
-
UPC637400008055
-
Manufacturer Part NumberS56LW
-
CountryUSA
-
Load Capacity6400 lb Dynamic/12400 lb Static
-
Temperature Rating250 deg F
-
FinishBlack Oxide
-
Thread Length7/8 in
-
Thread Size3/4-16 UNF-2A
-
Maximum Speed2600 rpm
-
Closure TypeSealed
-
TypeNeedle Roller
-
Roller Diameter1-3/4 in
-
Roller MaterialChrome Steel
-
Roller Width1 in
-
Head TypeHex
-
SeriesS-LW
-
Stud Diameter3/4 in
-
Stud Length1-3/4 in
-
Stud MaterialChrome Steel
-
Stud TypeStandard
- Inventory reduction of about 50%
- Allows relubrication in tight spots or when stud access is limited
- HexLube® universal cam follower can eliminate the need to stock screwdriver slots or unsealed cam followers
- Heavy stud cam followers are designed to provide additional stud strength for applications with high loading or shock loads
- Standard stud cam followers offer the mounting convenience of a threaded stud and are designed to accommodate moderate loads
- Double sealed to keep grease in and contaminants out
-
UNSPSC31171530
-
Package Description1/PK
-
Standards/ApprovalsANSI/ABMA Standard 11|ASPR|CAS|DFAR|FAR Standards
-
Warranty90 Days
-
Catalog
Recently Viewed
RBC® HexLube® S56LW S-LW Needle Roller Cylindrical Cam Follower, 1-3/4 in Dia x 1 in W Roller, 3/4 in Dia x 1-3/4 in L Stud, Chrome Steel Roller
Needle Roller Cam Followers have a heavy outer ring cross section and a full complement of needle rollers. They offer high dynamic and static load carrying capability, and anti-friction performance, in a compact design. They are used as track rollers, cam followers, and in a wide range of linear motion systems.


