Hydraulic Cylinders
Tie-rod, welded, telescopic and custom-stroke hydraulic rams.
Also searched as: hydraulic ramtie rod cylinderwelded cylinderhydraulic jack
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Hydraulic Tie Rod Cylinder, 2-5 inch Bore, 36 inch Stroke
Bore: 2-5 inchStroke: 36 inch
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Hydraulic Tie Rod Cylinder, 6 inch Stroke, Double Clevis Mount
Mount Type: Double ClevisPort Size: 3/4-16"Stroke Length: 6"
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ISO Tie Rod Cylinder, 40 mm Bore
Bore: 50 mm
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ISO Tie Rod Cylinder, 63 mm Bore
Bore: 63 mm
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Repairable Welded Hydraulic Cylinder, 2-1/2" Bore, 24" Stroke, 1-3/8" Rod Dia.
Bore: 2-1/2"Length: 32 inOperating Pressure: 2500 psiPort: 3/8 NPTFRod Dia.: 1-3/8"
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Repairable Welded Hydraulic Cylinder, 5" Bore, 20" Stroke, 3 Stages
Bore: 5"Operating Pressure: 3000 psiPort: SAE-10Stages: 3Stroke Length: 20"
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Single-Acting / Spring Return Hydraulic Cylinder/Ram, 10 ton Capacity, 2.125 in Stroke
Capacity: 10 tonStroke: 2.125 in
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Tie Rod Cylinder with Lock, 63 mm Bore
Bore: 63 mmStroke: up to 1500 mm
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Tie Rod Cylinder, 4 inch Bore
Bore: 4 inch
About hydraulic cylinders
Hydraulic cylinders convert hydraulic power into linear mechanical force and motion. They consist of a cylinder barrel, a piston, and a piston rod. Common types include tie-rod cylinders, which use threaded rods to hold the end caps to the barrel, and welded cylinders, where the end caps are welded directly to the barrel for a more compact design. Telescopic cylinders, featuring multiple stages, provide extended reach from a compact retracted length. Custom-stroke cylinders are available for applications requiring non-standard travel. Key selection parameters include bore size (e.g., 2.0" to 8.0"), stroke length (e.g., 4" to 120"), operating pressure (e.g., 2000 PSI to 5000 PSI), and mounting style (e.g., clevis, trunnion, flange, cross-tube). Rod diameter, port sizing (e.g., NPT, SAE O-ring), and seal materials (e.g., nitrile, Viton, polyurethane) are also critical. Materials typically include carbon steel, with chrome-plated piston rods for corrosion resistance. Specialty coatings or stainless steel construction are used for demanding environments.
How to choose
When selecting a hydraulic cylinder, first determine the required force output, which dictates bore size and operating pressure. Next, specify the necessary stroke length for the application's linear travel. Third, consider the mounting style (e.g., clevis, trunnion, flange) that best integrates with the machine's frame and load. Fourth, evaluate the operating environment for temperature, contaminants, and potential corrosion, which will influence seal material and construction (e.g., chrome-plated rod vs. stainless steel). Finally, choose between tie-rod, welded, or telescopic designs based on space constraints and required retracted-to-extended length ratio. Each choice impacts the cylinder's footprint, durability, and cost.