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DESDE 1996

Bv José Javier Díaz 429
(X5016BHE) Córdoba
Argentina

Telefax (+54) (351)
461 7007(rot)
info@tecnoedu.com


Actividades extra para el ST260 - Mecanismos Industriales
  Además de los 10 prácticos que se incluyen en el manual en Castellano de este equipo, está disponible un Software Educativo en Inglés con instrucciones, gráficos y animaciones que permiten profundizar la temática abordada:
  • Learn how to measure the rotary speed of motorized gears
  • Build simple gear trains and measure the speed changes that occurred when powered
  • Learn how to predict the changes in speed gear trains produce
  • Build a type of gear train called a compound gear train
  • Convert the rotary speed of a spinning gear wheel into the linear speed of a moving vehicle
  • Examine the use of pulley and belt systems used to transmit rotary motion over large distances
  • Build timing belt systems and compare them with the gear systems and pulley belt systems
  • Build power transmission systems that use combine different mechanisms to transfer rotary motion
  • Investigate the use of pulleys to lift objects
  • Build pulley systems that reduce the effort needed to lift loads
  • Calculate the energy inputs and outputs of different pulley systems to find out how pulleys affect the energy needed to lift objects
  • Calculate the theoretical mechanical advantage of pulley systems and compare this with the measured mechanical advantage to observe the efficiency
  • Build a motorized winch system and measure the electrical power input and the mechanical power output
  • Build a winch system that uses a more complex pulley system to provide a large mechanical advantage and discover what effect this has on efficiency
  • Design a motorized winch system that will raise a load at a specific speed
  • Use bevel gears to connect the motor to an axle that is in a different direction from the axle of the motor
  • Build a mechanical system that uses crank and slider mechanisms to convert rotary motion into straight-line motion
  • Use cams to convert rotary motion into linear motion and examine how the shape of the cam affects the motion produced
  • Compare mechanical systems with pneumatic, hydraulic and electrical power systems
  • Examine the use of levers that change the direction of a force
  • Build and test levers used to magnify force
  • Build and test levers used to magnify distance
  • Investigate special mechanisms used to provide and transmit power and operate as safety devices
  • Discover how inclined planes can be used to provide mechanical advantage
  • Explore the effect of inclined planes on energy
  • Describe the application of inclined planes in screw threads
  • Design gearboxes to provide specific changes in force and speed
  • Design an energy efficient winding mechanism for a powered elevator
  • Design a mechanical system for raising a boat from the water and into a boathouse
  • Develop the boat winch design to allow for cost
  • Build a model of a boat winch design and test it using the Mechanisms Trainer
 
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