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Mechanisms Mechanisms From Simple Machines From Simple Machines

Mechanisms from simple machines

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Ideas for simple mechanisms

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Page 1: Mechanisms from simple machines

MechanismsMechanismsFrom Simple MachinesFrom Simple Machines

Page 2: Mechanisms from simple machines

UNIVERSAL JOINT

Transmits power when two shafts are not in line.

Page 3: Mechanisms from simple machines

Two spur gears reduce speed, increase torque and change the rotational direction of the shafts.

Page 4: Mechanisms from simple machines

The addition of a third gear, the middle idler gear, has no effect on speed and torque, but input and output shafts turn in the same direction.

Page 5: Mechanisms from simple machines

RACK & PINION

Rack (in red) & pinion (in black) converts rotary motion of the pinion gear to linear motion of the rack. It is a reversible, positive drive with no slipping.

Page 6: Mechanisms from simple machines

CROWN & PINION

Crown & pinion gears reduce speed and increase torque. The output shaft is at a 90-degree angle to the input shaft. The gears rotate in opposite directions.

Page 7: Mechanisms from simple machines

BEVEL GEARS

Bevel gears increase torque or speed. The output shaft is at a 90-degree angle to the input shaft. The gears rotate in opposite directions.

Page 8: Mechanisms from simple machines

WORM GEAR

The worm gear increases torque and reduces speed. The output shaft is at a 90-degree angle to the input shaft. Direction of rotation can be reversed, but the output gear cannot drive the worm gear.

Page 9: Mechanisms from simple machines

CAM

As a cam rotates the flat follower is raised and lowered, converting rotary motion to linear motion.

CAM LOBE

FOLLOWER

Page 10: Mechanisms from simple machines

CHAIN & SPROCKET

Chain and sprocket apparatus increases speed or torque and can run in reverse direction with no slipping. Input and output shafts rotate in the same direction.

Page 11: Mechanisms from simple machines

PULLEY & BELT

A pulley and belt drive can increase torque or speed and can run in reverse. Input and output shafts are parallel and rotate in the same direction. Slipping of the belt may occur.

Page 12: Mechanisms from simple machines

MOTOR DRIVEN WORM

A motor driven worm reduces speed and increases torque. The output shaft is at a 90-degree angle to the input shaft. Direction of motion is reversible, but the output gear cannot turn the worm gear.

Page 13: Mechanisms from simple machines

MOTOR DRIVEN PULLEY & BELT

A motor driven pulley and belt drive can increase torque or speed. Input and output shafts are parallel and rotate in the same direction. Slipping of the belt may occur.

Page 14: Mechanisms from simple machines

CRANK THROW & SLIDER

A crank throw and slider converts rotary motion to linear motion. Direction of rotation is reversible. Input and output shafts are at 90-degrees.

Page 15: Mechanisms from simple machines

WHEEL & SLIDER

A wheel and slider converts rotary motion of the wheel to linear motion of the slider. Direction of rotation can be reversed. Input and output shafts are at 90-degrees.

Page 16: Mechanisms from simple machines

SCREW & LEVER

A screw and lever converts rotary motion to linear motion and increases torque. Direction of rotation is reversible.