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100L TIE ROD KIT (4 Rods / kit) 12 Bank M10x1.5 643mm long
Key Features
100L TIE ROD KIT (4 Rods / kit) 9 Bank M10x1.5 508 mm long
240L Control Valve 1 Bank Tie Rod Kit (4 Rods / kit) M12x1.75 x 237mm long
45L Double microswitch kit (8MG1/MG2 NO-NO) (G-S)
Sales Director
I began my engineering career at Stockport College in around 2005, first completing a National Diploma in Electrical Engineering, followed by a Higher National Diploma in Mechanical Engineering. I then progressed to the University of Salford, where I earned a BEng (Hons) degree in Mechanical Engineering.
After graduating, I started my professional career with Approved Hydraulics. I initially gained a combination of hands-on workshop experience and telephone-based sales experience. In later years, I moved into a full-time sales role and led the new crane and excavator attachments department that the company had recently established.
150L Control Vlalve Pressure Compensated Flow Divider Section DFG
1/2" 4 Bank 45L Monoblock Control Valve
160LGM Motor Spool
80L TIE ROD KIT (4 Rods / kit) 12 Bank M8x1.5 585 mm long
240L TIE ROD KIT (4 Rods / kit) 2 Bank M12x1.75 299mm long
90L Control Valve Spool Seal Kit (1 x Spool)
150L TIE ROD KIT (4 Rods / kit) 6 Bank M10x1.5 417mm long
Chains for TE120p Rev forestal
M+S Hydraulic Motor 80 CC/Rev, 4 bolt mount, 34.85 PTO DIN 9611 Agri Shaft
3/8" Hose Burst Valve Cartridge
24VDC Coil For Z50 valve 16.3mm Hole x 50mm Long
1/2" BSP Male x 1/2" BSP Bulkhead Adaptor with Locknut
12VDC Coil For Z80 Valve 22mm Hole x 54mm Long
24VDC Coil For Z80 Valve 22mm Hole x 54mm Long
CETOP 3 Coil -24VDC Coil (23mm Bore x 50mm long)
30mm x 30mm DU Bush
80L Control Valve Inlet Section -S
Rotary shaft seal
12VDC Proportional Coil For MOD09 Scanreco Servo Module 19mm Dia Hole x 50mm Long
Adapter Kit for 45L Hydra Part Proportional Module
Calculating force, speed, pressure, power, and efficiency in hydraulic applications.
How do you calculate actuator speed?
Actuator speed is determined by flow rate and cross-sectional area: Speed = Flow rate ÷ Area Flow rate is the volume of fluid delivered (in L/min or GPM). Area is the cross-sectional area of the actuator piston: π × (diameter ÷ 2)².
How do you calculate cylinder force?
Cylinder force can be calculated using: Force = Pressure × Area Pressure is the system pressure (in psi or bar). Area is the cross-sectional area of the cylinder bore (in square inches or square centimeters). Area = π × (bore diameter ÷ 2)².
How do you calculate pressure drop across a valve?
Pressure drop can be calculated using the valve flow coefficient (Cv): Pressure Drop (ΔP) = (Flow Rate)² ÷ (Cv² × Fluid Density) Flow Rate is the fluid flow (in GPM or L/min). Cv is the valve flow coefficient. Fluid Density is the density of the hydraulic fluid.
How do you size an accumulator?
Accumulator sizing considers required flow, pressure, and pre-charge: Accumulator Volume = Flow Rate × Time ÷ Pressure This determines how much fluid must be stored to maintain system pressure.
How to convert psi to bar?
Use the conversion factor: 1 bar = 14.5 psi. To convert psi to bar, divide psi by 14.5. Example: 200 psi ÷ 14.5 = 13.79 bar.
What is pre-charge pressure in an accumulator?
Pre-charge pressure is the initial gas pressure in the accumulator before fluid enters. It helps maintain system pressure as the accumulator discharges. Typically set to 70–80% of system operating pressure.
What is specific gravity of hydraulic fluid?
Specific gravity is the ratio of hydraulic fluid density to water. A value of 1 means equal density. Less than 1 means the fluid floats; greater than 1 means it sinks.
What is torque in a hydraulic motor?
Torque is the rotational force produced based on system pressure and motor displacement: Torque = Pressure × Displacement ÷ 2π Pressure is the operating system pressure. Displacement is the volume displaced per revolution (in cubic inches or cubic centimeters).
What unit is hydraulic power measured in?
Hydraulic power is measured in horsepower (HP) or kilowatts (kW). Hydraulic horsepower can be calculated using: HP = (Pressure (psi) × Flow rate (GPM)) ÷ 1714.
What’s the relationship between pump speed and flow?
Flow rate is directly proportional to pump speed. If pump speed doubles, flow rate doubles (assuming constant displacement). This is important when adjusting flow or selecting a pump for varying speeds.