| name | hydraulic-circuit-design |
| description | Hydraulic circuit design — pressure/flow/power analysis, actuator sizing, pump selection, valve types, accumulator design, ISO circuit symbols, safety, efficiency. |
| metadata | {"priority":7,"promptSignals":{"phrases":["hydraulic circuit","hydraulic system design","hydraulic pump","hydraulic actuator","hydraulic pressure","hydraulic flow"],"minScore":3}} |
Hydraulic Circuit Design — Complete Skill
Fundamental Equations
Flow rate: Q = A × v [L/min or m³/s]
A = piston area [m²]; v = velocity [m/s]
1 L/min = 1.667 × 10⁻⁵ m³/s
Pressure: P = F / A [Pa = N/m²; bar = 100,000 Pa]
Power: P_hyd = Q × ΔP [W; Q in m³/s, ΔP in Pa]
P_hyd [kW] = Q [L/min] × ΔP [bar] / 600
Continuity: Q₁A₁ = Q₂A₂ (incompressible flow)
Hydraulic Cylinder Sizing
Extension force:
F_ext = P × A_piston = P × π D²/4
Retraction force (rod side):
F_ret = P × A_annulus = P × π(D² - d²)/4 (d = rod diameter)
Speed:
v_ext = Q / A_piston; v_ret = Q / A_annulus
Cylinder buckling (long stroke):
F_cr = π²EI / (L_eff)² (check rod as column for long strokes)
Rod diameter: d_rod ≥ 0.2–0.35 × D_bore (for stroke/bore ratio check)
Hydraulic Motor
Torque: T = ΔP × D_m / (2π) [N·m; D_m = displacement per rev in m³/rev]
Speed: n = Q / D_m [rev/s]
Overall efficiency: η_total = η_vol × η_mech (typically 0.85–0.92)
Pump Selection
Required displacement: D_p = Q / n_pump [m³/rev or mL/rev]
Drive power: P_shaft = Q × P_sys / η_pump [W]
Fixed displacement: simple, low cost; flow proportional to speed
Variable displacement (axial piston): pressure-compensated; load sensing; energy efficient
Pump types:
| Type | Max pressure | Max speed | Notes |
|---|
| Gear pump | 250 bar | 3000 rpm | Low cost, moderate cleanliness |
| Vane pump | 170 bar | 3000 rpm | Low noise |
| Axial piston | 420 bar | 3000+ rpm | Highest efficiency, load sensing |
| Radial piston | 700+ bar | 1500 rpm | High pressure specialty |
Directional Control Valves
4/3 valve: 4 ports, 3 positions (standard D03, D05, D07, SAE mounting)
3-position center conditions:
- Closed center: all ports blocked at rest → load holds; pump unloaded separately
- Open center: pump bypasses to tank; simple but wastes energy
- Tandem center: pump unloads to tank; A&B to tank; load drops
Solenoid-operated: direct or pilot-operated (for high flows)
Response time: 20–50 ms (direct); 50–150 ms (pilot)
Pressure Relief Valve (PRV)
Set to maximum system pressure; direct-acting or pilot-operated
Cracking pressure: onset of opening
Full-flow pressure: typically 10–15% above cracking
PRV must handle full pump flow at maximum pressure for safety
Pressure Drop in Lines
Laminar flow (Re < 2300): ΔP = 128 μLQ / (πd⁴)
Turbulent: ΔP = f_D × (L/d) × ρv²/2 (Darcy-Weisbach)
f_D = 0.316 / Re^0.25 (Blasius, turbulent)
Recommended velocity: pressure lines 3–5 m/s; return lines 1–3 m/s; suction lines 0.5–1.5 m/s
Accumulator Design
Hydraulic accumulator stores energy (nitrogen gas pre-charged)
Sizing for cycle peak flow:
V_gas = (P₁/P₂)^(1/n) × V_acc (n = 1.4 adiabatic for fast cycle; n=1 isothermal for slow)
Effective fluid volume ΔV = V_acc [1/(P_2/P_0)^(1/n) - 1/(P_1/P_0)^(1/n)]
P₀ = pre-charge pressure (80% of minimum system pressure)
P₁ = minimum working pressure; P₂ = maximum pressure
Types: bladder, piston, diaphragm
Safety: ISO 4413, pressure vessel codes (ASME VIII or PED)
Fluid Selection
Mineral oil: ISO VG 32–100 (32=cold, 68=standard, 100=high temp)
Fire-resistant: phosphate ester (HFD), water glycol (HFC), water-oil emulsion
Temperature range: mineral oil –25°C to +80°C continuous; 100°C peak
Filtration: Actuate at β₁₀ ≥ 75 ratio; target ISO 16/14/11 for servo valves
Filter location: pressure line (10 μm), return line (25 μm), offline (10 μm)
Circuit Efficiency
Open-circuit efficiency: pump power / mechanical power
Energy losses: flow over PRV (throttle loss), heat in lines, cylinder cushion
Load sensing (LS) circuit: pump pressure = load pressure + ΔP_margin (15–25 bar) → minimal losses
Safety Requirements (ISO 4413)
Maximum pressure must be limited by PRV set below system component ratings
Emergency stop: must apply brakes / lower loads safely
Circuit must fail-safe: cylinders clamp (not extend) on power loss where appropriate
Output
Provide: cylinder bore × rod diameter [mm], system pressure [bar], flow rate Q [L/min], pump displacement [mL/rev], pump power [kW], PRV setting [bar], line sizes [mm], accumulator volume [L] and pre-charge pressure [bar].