Superior holding power over set-screw type collars
Exclusively stocked by Stafford, these collars fit on standard square shafts. They can be modified (drilled, tapped, welded, etc.) to act as mounts for other components.
2-Piece Clamp-Type Shaft Collars can be completely disassembled and placed anywhere on a shaft. They are precision machined, non-marring, easy to adjust, with high clamping power.
Mount square shafts or structural tubing to components
Can be placed anywhere on shaft
Supplied with mounting screw
Square Bore Shaft Mounting Collars are designed for use on standard square shafts or structural tubing. They can be completely disassembled and placed anywhere on a shaft. They are precision machined, non-marring, easy to adjust, with high clamping power.
These collars feature a two-piece construction with flats on outside surfaces which are drilled and tapped for attachment to each other or to other components. Also included is a countersunk hole for mounting to any surface. These collars are stackable, secure and easy to open and adjust.
The regular Stackable version has flats on two surfaces for stacking. The Stackable (Cap) version has a single flat to leave a finished outside surface when no further stacking is required.
Mount square shafts or structural tubing to components
Can be placed anywhere on shaft
Supplied with mounting screw
Square Bore Shaft Mounting Collars are designed for use on standard square shafts or structural tubing. They can be completely disassembled and placed anywhere on a shaft. They are precision machined, non-marring, easy to adjust, with high clamping power.
These collars feature a two-piece construction with flats on outside surfaces which are drilled and tapped for attachment to each other or to other components. Also included is a countersunk hole for mounting to any surface. These collars are stackable, secure and easy to open and adjust.
The regular Stackable version has flats on two surfaces for stacking. The Stackable (Cap) version has a single flat to leave a finished outside surface when no further stacking is required.