Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking -...

35

Transcript of Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking -...

Page 1: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite
Page 2: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite
Page 3: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite
Page 4: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite
Page 5: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite
Page 6: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

“Es el sistema encargado de disminuir la velocidad o detener por completo el vehículo.”

La energía cinética se convierte en calor debido a la fricción

Page 7: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Transferencia de masas producto de la InerciaDIVE

Page 8: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Transferencia de masas producto de la Inercia

Page 9: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Transferencia de masas producto de la Inercia

Page 10: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Transferencia de masas producto de la Inercia

Page 11: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Transferencia de masas producto de la Inercia

Segun fabricantes el coeficiente maximo es 1,6 pero esto varia en

function de cada neumatico

Page 12: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Transferencia de masas producto de la Inercia

Page 13: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Transferencia de masas producto de la Inercia

Page 14: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Configuraciones de Sistemas de Frenos

Page 15: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Tipos de Frenos

Page 16: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Frenos de Banda

Page 17: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Frenos de Zapata

Page 18: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Frenos de Disco

Page 19: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Frenos de Disco

Page 20: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Frenos de Disco

Page 21: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Pedales

Page 22: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Bomba de Frenos

Page 23: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Bomba de Frenos

Page 24: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Bomba de Frenos

Page 25: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Canales o conductos de liquido de Frenos

Page 26: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Pinza de Freno o Caliper

Page 27: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

“Pastillas” o Brake Pads

Page 28: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

“Pastillas” o Brake Pads

Page 29: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Neumáticos

Page 30: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Desaceleración resultante

Page 31: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Distancia de Frenado estimada

Page 32: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Arbol de Fallas (p147 – p152)

Page 33: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Tipo de Accionamiento en frenos

Neumático

Page 34: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Tipo de Accionamiento en frenos

Hidráulico

Page 35: Presentación de PowerPoint...Stator = red Rotor = blue Power flows out of motor Magnetic braking - stator's rotating magnetic field lags rotor's magnetic poles Magnetic forces opposite

Tipo de Accionamiento en frenos

Manual