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Bore (Cylinder Diameter): 254 mm Stroke (Extension Length): 975 mm
The Parker hydraulic cylinder is designed for industrial applications requiring high force and reliable operation. With a bore of 254mm and a stroke of 975mm, it is a robust component, ideal for heavy machinery and applications requiring long stroke and high precision.
Maximum Working Pressure : 210 bar
Thrust Force : F=A×PF = A \times P Where:
Area calculation: A=π×(D2)2A = \pi \times \left(\frac{D}{2}\right)^2 For a 254 mm bore : A=π×(0.2542)2≈0.0508 m2A = \pi \times \left(\frac{0.254}{2}\right)^2 \approx 0.0508 \, m^2
Force calculation: If a working pressure of 210 bar (21 MPa) is assumed: F=0.0508 m2×21000000 Pa=1,067,000 NF = 0.0508 \, m^2 \times 21000000 \, Pa = 1,067,000 \, N )
Extension/Retraction Speed : Depends on the fluid flow rate and the cylinder configuration.
Parker Hannifin Corporation is a global leader in fluid control solutions and motion technologies. Founded in 1917, Parker is known for its industrial innovation and quality. The company offers a wide range of hydraulic, pneumatic and control products for different applications, with a strong commitment to the reliability and durability of its solutions.
The power required for the cylinder to operate can be estimated using the formula: P=F×vP = F \times v where:
Assuming an extension velocity of 0.1 m/s: P=1,067,000 N×0.1 m/s=106,700 WP = 1,067,000 \, N \times 0.1 \, m/s = 106,700 \, W kW)
The Parker hydraulic cylinder with 254 mm bore and 975 mm stroke is a robust and reliable component, ideal for industrial applications requiring high forces and precision. The high-quality construction and high specification make it suitable for demanding environments. Purchasing it ready for delivery from stock offers significant advantages in terms of availability and costs, improving operational efficiency and reducing downtime.
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