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The Thermal Overload Relay: A Bimetal That Heats Like the Motor
Youblob (generated from this blueprint's notebook) · CC0
Volt

Creado por

Volt

27. septiembre 2026SE
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The Thermal Overload Relay: A Bimetal That Heats Like the Motor

A motor can be overloaded in two very different ways: a short circuit, which a fuse or breaker must clear at once, and a steady overload or a stalled rotor, which cooks the windings over seconds or minutes. The second cannot be left to a fuse, because every start draws several times the running current. The thermal overload relay heats a bimetal strip with the motor's own current, so it warms the way the winding does. A mild overload bends it slowly; a stall bends it in seconds; a normal start does not bend it far enough. When it trips, it opens the contactor's coil circuit and the motor stops — and with three-wire control, stays stopped. This rung models the trip time against current, shows why it rides through a start, and builds a bimetal trip heated by a nichrome coil.
Intermedio
About 3 hours

Instrucciones

1

Trip time against current

Cargando el cuaderno de Jupyter…
2

How a bimetal bends

The overload relay's element is a bimetallic strip. The embedded blueprint shows why two metals bonded together curl as they warm.
3

Build a bimetal trip

Clamp one end of a bimetallic strip to a plywood base, with the higher-expansion side facing the direction you want it to bend. Wind 30 cm of nichrome wire in a close coil round a strip of mica or a folded layer of aluminium foil tape over the bimetal, insulated from it, and connect the coil to the adjustable power supply with a multimeter in series to read the current. Set a machine-screw contact against the strip's free end, wired through a buzzer, so the circuit opens when the strip bends away. Adjust the screw until the strip just touches it cold.

Materiales para este paso:

Lámina bimetálicaLámina bimetálica1 pieza
Hilo de nicromHilo de nicrom1 pieza
Tablero contrachapadoTablero contrachapado1 pieza
Tornillos de máquinaTornillos de máquina3 piezas
Zumbador piezoeléctricoZumbador piezoeléctrico1 pieza
Cables de puenteCables de puente1 pieza
Relé térmico de sobrecargaRelé térmico de sobrecarga1 pieza

Herramientas necesarias:

Fuente de alimentación de corriente continuaFuente de alimentación de corriente continua
MultímetroMultímetro
CronómetroCronómetro
Tornillo de bancoTornillo de banco
Termómetro de cocinaTermómetro de cocina
4

Measure its trip curve

Starting cold each time, set a current and time how long until the buzzer stops. Begin low and step up. Below some current it never trips — that is your relay's ultimate trip current. Above it the time falls, steeply at first. Let the strip cool fully between runs; a warm strip trips sooner, as a hot motor should. Plot time against current on log scales and fit the notebook's model by choosing $\tau$ and $I_u$ to match your points. Then make a short burst at three times the trip current for two seconds — like a motor start — and confirm it does not trip.

Materiales para este paso:

Papel milimetradoPapel milimetrado1 pieza

Herramientas necesarias:

CronómetroCronómetro
MultímetroMultímetro
Fuente de alimentación de corriente continuaFuente de alimentación de corriente continua
5

An overload relay that trips, or should have

Motor overload faults.

Flow

Loading...
6

Context and honest limits

Bimetallic overload relays are set to the motor's full-load current and classed by how fast they trip at 600 % of their setting — Class 10 within 10 seconds, with slower and faster classes for hard-starting and sensitive motors. Electronic overload relays now measure the current and compute the same heating curve. **Honest limits.** The notebook's first-order model captures the shape, not a real relay's curve; use the maker's published trip curves for settings. Nichrome gets hot enough to burn: keep currents modest and do not touch the coil while it runs.

Materiales

8

Herramientas requeridas

5

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