Hydraulic & Pneumatic Seals
Rod, piston, wiper, backup rings and U-cups.
Also searched as: u cuprod sealpiston sealwiper sealbackup ring
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Rod Seal Kit, 1 in Rod Dia., 0.156 in Groove Wd
Groove Width: 0.156 inRod Diameter: 1 in
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Rod Seal Kit, 3/4 in Rod Dia., 0.156 in Groove Wd
Groove Width: 0.156 inRod Diameter: 3/4 in
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Rod Seal, 1 1/2 in Rod Dia., 3/8 in Ht
Height: 3/8 inRod Diameter: 1 1/2 in
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Rod Wiper
Groove Diameter: 1.622 inRod Diameter: 1 1/4 in
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Rod Wiper
Groove Diameter: 8.747 inRod Diameter: 8 in
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Rod Wiper
Groove Diameter: 3.747 inRod Diameter: 3 1/4 in
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Rod Wiper
Duty: Light-dutyGroove Diameter: 1.397 inRod Diameter: 1 1/8 inStyle: AN (Army Navy)-style
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Rod Wiper
Maximum Operating Pressure: 8035.32 WCOutside Diameter: 0.275 inSeal Thickness: 0.125 in
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Rod Wiper Seal
Seal Thickness: 0.21875 in
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Rod Wiper Seal
Seal Thickness: 0.203125 in
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Rod Wiper Seal
Seal Thickness: 0.21875 in
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Rod Wiper Seal
Seal Thickness: 0.28125 in
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Rod Wiper Seal
Inner Diameter Range: 6 mm to 115 mm
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Rod Wiper Seal (J) 2.00 in x 2.50 in x 0.312 in
Height: 0.312 inInner Diameter: 2.00 inOuter Diameter: 2.50 in
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Rod Wiper Seal for 1 3/4" Inner Rod
Height: 1/4"Inner Rod Diameter: 1 3/4"Outer Diameter: 2 1/4"
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SMC/SC PDU/PDR Cylinder Seals
ID: 20-70 mm
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Selo U-Cup para Garfo Hidráulico 2 TON
Outside Diameter: 1.64 in
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Skeleton Oil Seal BS Double Lip Seal, Piston Rod Seal
Type: BS Double Lip
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Split Nylon Backup Ring
Length: 2-1/2"Temperature Range: -40°F to 250°FThickness: 1/8"Width: 2"
from $23.75eBay $23.75 -
Spring Energized Rod Seal, 1-1/4" ID
Internal Diameter: 1.25 in
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Spring Energized Rod Seal, 1/2" ID
Internal Diameter: 0.5 inOperating Temperature: -120 to 450 °F
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Spring Energized Rod Seal, 11/16" ID
Internal Diameter: 0.6875 inOperating Temperature: -100 to 450 °F
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Spring Energized Rod Seal, 2-1/4" ID
Internal Diameter: 2.25 inOperating Temperature: -100 to 450 °F
About hydraulic & pneumatic seals
Hydraulic and pneumatic seals are critical components for preventing fluid or gas leakage in dynamic and static applications. This category encompasses a range of seal types, including rod seals, piston seals, wiper seals, backup rings, and U-cups. Rod seals and piston seals are designed to contain pressure and prevent leakage past the rod or piston, respectively, often featuring single-acting or double-acting configurations. Wiper seals, also known as scrapers, prevent contaminants from entering the system. Backup rings are employed to prevent extrusion of primary seals under high pressure. U-cups, a common seal profile, are versatile and can function as both rod and piston seals. Selection is primarily driven by operating parameters such as system pressure (e.g., PSI, bar), temperature range (e.g., °C, °F), dynamic or static application, and fluid compatibility. Key dimensions include bore diameter, rod diameter, and groove dimensions (width, depth). Common materials include NBR (nitrile butadiene rubber), FKM (fluoroelastomer), PTFE (polytetrafluoroethylene), polyurethane, and EPDM, each offering specific resistance to chemicals, temperature, and abrasion. Surface finishes of mating components are also crucial for optimal seal performance and longevity.
How to choose
How to Choose Hydraulic & Pneumatic Seals
1. Application Type (Dynamic vs. Static) & Component: Is it a rod, piston, or a static closure? This immediately narrows seal profiles. For dynamic applications, consider whether it's single or double-acting. 2. Operating Conditions: What are the maximum system pressure (PSI/bar) and temperature range (°C/°F)? These dictate material and design, especially for backup ring necessity to prevent extrusion. 3. Fluid Compatibility: What fluid or gas will the seal be exposed to? This is critical for selecting the appropriate material (e.g., NBR for petroleum-based fluids, FKM for high temperatures/aggressive chemicals, EPDM for brake fluid). 4. Dimensions: What are the bore and rod diameters, and available groove dimensions? These define the precise seal size required. 5. Contamination Risk: Is a wiper seal necessary to prevent ingress of external contaminants into the system?