Linear Rails & Guides
Profile rail, round rail, dovetail and cam-roller guideways.
Also searched as: linear guidehgr railmgn railprofile raillinear bearing rail
-
DEV28-1010-1034 Telescopic Rail Cold Drawn
Length: 1010 mmRail Size: 28 mmStroke: 1034 mm
-
HSR35-1640L Profile Rail
Max Length: 1640 mmRail Size: 35 mmSeries: HSR35
-
Linear Guide Round Shaft Housed Bushing - Closed, Ball Bushing, Standard Block - Single Bearing
Overall Width: 3.625 inShaft Diameter: 1.2500 in
-
Linear Guide Round Shaft Housed Bushing - Open, Ball Bushing, Standard Block - Single Bearing
Overall Width: 67 mmShaft Diameter: 25 mm
-
Linear Guide Shaft Block
Overall Height: 1.480 inOverall Width: 2.000 inSeries: ASBShaft Diameter: 0.500 in
-
NAH30ANZ-K Profile Rail Standard Block
Overall Height: 36 mmOverall Length: 91.6 mmOverall Width: 60 mmRail Size: 30 mm
-
Precision Rail Guides LWM 40200200
Maximum Length: 200 mmRail Screw Size: M6Series: LWM
-
RB15B Profile Rail Brake
Load Capacity: 90 lbs
-
SHS15-3000L(GK) Standard Ball Carriage Profile Rail
Height: 24 mmLength: 3000 mmWidth: 47 mm
-
SHS25-220L Profile Rail
Hardness: 58 to 64 HRCLoad Capacity: 36.8
-
SN28-80-330-450 Standard Ball Assembly Profile Rail Guide
Length: 80 mmRail Size: 28 mmStroke: 330 mm
-
Telescopic Rail Cold Drawn DEV28-1010-1034
Length: 1010 mmRail Size: 28 mmStroke: 1034 mm
About linear rails & guides
Linear rails and guides provide constrained linear motion for machine axes. The primary types include profile rail, round rail, dovetail slides, and cam-roller guideways. Profile rail systems, often designated HGR or MGN series, consist of a hardened steel rail with precision-ground raceways and a recirculating ball or roller bearing block. Round rail guides utilize hardened and ground cylindrical shafts with open or closed linear bearings. Dovetail slides employ mating angular surfaces for precise, high-rigidity motion, while cam-roller guides use rollers running in V-grooves or on flat surfaces, often for high-speed or contaminated environments. Key selection parameters include rail width, height, length, and mounting hole patterns (e.g., M4, M6). Performance ratings such as dynamic load capacity (C), static load capacity (C0), and moment ratings (Mx, My, Mz) are critical. Common materials are carbon steel, stainless steel, and aluminum, with surface treatments like black oxide or chrome plating available for corrosion resistance or improved wear characteristics. Precision grades (e.g., P, H, N) define running accuracy and parallelism.
How to choose
When selecting linear rails, first determine the required load capacity, considering both static and dynamic forces, and the moment loads. Second, specify the desired precision grade and stiffness, which will influence whether profile rail, round rail, or dovetail is most appropriate; profile rail generally offers higher rigidity than round rail. Third, evaluate the operating environment for factors like contamination, temperature, and corrosion, as these will dictate material (e.g., stainless steel for washdown) and sealing options. Fourth, consider space constraints and stroke length to define rail dimensions and block configurations. Finally, assess the required travel speed and acceleration, which can influence bearing type and lubrication needs.