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Actuators -perform work made of: signal amplifier and the transducer uses power source (electrical, hydraulic) converts it into mechanical work.

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Presentation on theme: "Actuators -perform work made of: signal amplifier and the transducer uses power source (electrical, hydraulic) converts it into mechanical work."— Presentation transcript:

1 Actuators -perform work made of: signal amplifier and the transducer uses power source (electrical, hydraulic) converts it into mechanical work

2 Electric Motors: AC, DC, Stepper motors Structure of a DC motor: How it works: S N + DC -- DC S N + DC -- DC S N + DC -- DC (a)(b)(c) S N rotor coil commutator (split ring) + DC -- DC field magnet (fixed on stator) axle conducting brushes

3 DC motor properties, applications Motor typeSpeed regulationStarting torqueApplications DC seriesvery high Hoists, Gates, Trams, Trains, Bridges DC shuntlowmediumPrinting press, Machine tools, Conveyors DC compoundmediumhighPunch press, Shears, Crushers Speed regulation = (no load speed – full load speed)/no load speed

4 AC motors How it works: - current passed through stator coils - current creates an alternating electromagnetic field - induces an alternating current in the rotor coils - interaction of the two electromagnetic fields  driving torque Motor typeSpeedPowerApplications 1-phase AC induction ~ constant in operational range, slightly less than synchronous speed ~ 3 KW or lessAlmost all medium power pumps, fans, blowers, machines 3-phase AC induction Nearly constant over large range of loads High, > 1.5 KWHigh power pumps, machinery Electronically controlled, position feedback AC motors Servo motors

5 Stepper motors Rotate in discrete steps (e.g. 2  for each “step”) electronic control

6 Stepper motors: micro-stepping Variable strength of magnetic field for more resolution

7 Hydraulic actuators - Use high pressure oil - high power and forces - linear or rotary motors possible Example ? Hydraulic motor drive schematic

8 Pneumatic actuators A Simple Discrete Control Example (pneumatic actuation)

9 Actuator Characteristics accuracy: [statistical]:(mean value – actual value) precision: [statistical]:standard deviation reliability: [time-dependent, statistical]:mean failure rate

10 Switches and Relays Switches Relay

11 Encoders: measuring rotational position Incremental encoder Absolute position encoder (coded pattern) Common use: position feedback for servo-control directional incremental encoder

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