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Motion Transformation Systems

Motion Transformation Systems. The mechanical function of relaying a motion from 1 part to another while altering the nature of the motion. 5 Systems. 1) Rack and Pinion Systems 2) Screw Gear Systems Type 1 3) Screw Gear Systems Type 2 4) Cam and Follower Systems

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Motion Transformation Systems

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  1. Motion Transformation Systems The mechanical function of relaying a motion from 1 part to another while altering the nature of the motion.

  2. 5 Systems 1) Rack and Pinion Systems 2) Screw Gear Systems Type 1 3) Screw Gear Systems Type 2 4) Cam and Follower Systems 5) Slider-Crank Mechanisms

  3. Rack and Pinion Systems Rotation to Translation or Translation to Rotation Reversible

  4. Rack and Pinion • at least 1 gear = a pinion • 1 straight bar with teeth = rack • teeth on rack and pinion must be identical • frequent lubrication • the greater the # of teeth the slower the rotation

  5. Rack and Pinion Animation http://www.youtube.com/watch?v=D3MrUngdlCQ

  6. Screw Gear Systems Type 1 • the screw is the driver • rotational is transformed into translational • e.g. jacks for lifting cars

  7. Screw Gear Type 1Scissor Car Jack http://www.youtube.com/watch?v=QeB2YxMqogI

  8. Screw Gear Systems Type 2 • the nut is the driver • rotational to translational • e.g. pipe wrenches

  9. Screw Gear Type 2Pipe Wrench http://www.youtube.com/watch?v=HYspwtCZ1yo

  10. Screw Gear Systems • type 1 (car jack) has the nut connected to the screw so that the nut cannot rotate • in both systems the threads of the screws and nuts must match • type 2 (monkey wrench) has the nut fixed so that its only possible motion is rotational

  11. Cam and Follower Systems • transform the rotational motion of a cam into the recriprocating translational motion of a follower • a back and forth movement like that of a sewing machine • cams = rotational axis is centred • eccentric cams = rotational axis is off-centre

  12. Cam and Follower • the follower must be guided in its translational motion • the shape of the cam determines how the follower will move • a device such as a return spring is usually necessary to keep the follower in continual contact with the cam

  13. Cam and follower http://www.youtube.com/watch?v=ZbdsGf_t8hs

  14. Slider-Crank Mechanisms • used in internal combustion engine • to transform the translational motion of the pistons into the rotational motion of the crank

  15. Slider - Crank Mechanisms • the connecting rod contains 2 bushings to attach it to the crank and piston • the cylinder must guide the part moving in translation • frequent lubrication

  16. Slider - Crank Mechanisms http://www.youtube.com/watch?v=KnASJHtbGB0

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