Difference between revisions of "List of machine elements"

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= Related =
 
= Related =
  
 +
* '''[[Suitable mechanisms]]'''
 
* [[Examples of diamondoid molecular machine elements]]
 
* [[Examples of diamondoid molecular machine elements]]
  
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* [https://en.wikipedia.org/wiki/Panic_snap Panic snap]
 
* [https://en.wikipedia.org/wiki/Panic_snap Panic snap]
  
----
+
'''Gears, bearings, gearbearings:'''
 
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'''Gears, bearings, Gearbearings:'''
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* [https://en.wikipedia.org/wiki/Tapered_roller_bearing Tapered roller bearing]
 
* [https://en.wikipedia.org/wiki/Tapered_roller_bearing Tapered roller bearing]
 
* [https://en.wikipedia.org/wiki/Gear_bearing Gear bearing]
 
* [https://en.wikipedia.org/wiki/Gear_bearing Gear bearing]
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* [https://en.wikipedia.org/wiki/Trunnion Trunnion]
  
=== Rotating shaft couplings ===
+
'''Misc:'''
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* [https://en.wikipedia.org/wiki/Collet Collet mechanisms]
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* [https://en.wikipedia.org/wiki/Chuck_(engineering) Chuck mechanisms]
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* [https://en.wikipedia.org/wiki/Machine_taper#Morse Machine taper] ... rather not applicable at nanoscale as it exploits friction self holding
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* goniometers in [[assembly line orienting stage]]
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== Rotating shaft couplings ==
  
 
Wikipedia: [https://en.wikipedia.org/wiki/Category:Rotating_shaft_couplings Category:Rotating_shaft_couplings]
 
Wikipedia: [https://en.wikipedia.org/wiki/Category:Rotating_shaft_couplings Category:Rotating_shaft_couplings]
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In general: CV joints [https://en.wikipedia.org/wiki/Constant-velocity_joint]
 
In general: CV joints [https://en.wikipedia.org/wiki/Constant-velocity_joint]
 
* double Cardan joint does (2 universal joints)
 
* double Cardan joint does (2 universal joints)
* tripod joint
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* tripod joint – Video: [https://youtu.be/U5TV5NC5YOg 2014-04-04 – thang010146 – Tripod joint 1]
 
* Tracta joint
 
* Tracta joint
 
* Rzeppa joint (depends on balls)
 
* Rzeppa joint (depends on balls)
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* [https://en.wikipedia.org/wiki/Rigid_chain_actuator Rigid chain actuator]
 
* [https://en.wikipedia.org/wiki/Rigid_chain_actuator Rigid chain actuator]
 
* [https://en.wikipedia.org/wiki/Rigid_belt_actuator Rigid belt actuator]
 
* [https://en.wikipedia.org/wiki/Rigid_belt_actuator Rigid belt actuator]
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'''Gentle bending high degree of motion flextures:'''
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* [https://en.wikipedia.org/wiki/Scrollerwheel Scrollerwheel]
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* [https://en.wikipedia.org/wiki/Rolamite Rolamite], expireed US patent: [https://patents.google.com/patent/US3730007A/en]<br> Video: [https://youtu.be/Avl9t7jh7R4 2020-11-15 – thang010146 – Rolamite 1]
 +
* compliant rolling-contact joints – Video: [https://youtu.be/uvPSsUkLypY 2021-07-02 by "The FACTs of Mechanical Design"]
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 +
== Larger system design principles ==
 +
 +
Cartesian:
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* H-Bot – Video: [https://youtu.be/IkM2K7CsiHo 2016-10-10 – thang010146 – Controlling two linear motions of an object 1a]
 +
* [https://en.wikipedia.org/wiki/CoreXY CoreXY (wikipedia)] [https://reprap.org/wiki/CoreXY CoreXY & H-Bot (reprap.org)]
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* https://reprap.org/wiki/Mechanical_arrangement
 +
 +
Parallel SCARA designs:
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* RepRap Morgan – by Quentin Harley
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* RepRap Walle – by Nicholas Seward
 +
 +
Serial SCARA designs:
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* RepRap Helios & RepRap Wheelios – by Nicholas Seward
 +
 +
== Related ==
 +
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* [[Machine element]]
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* '''[[Suitable mechanisms]]'''
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* Not to confuse with: [[Component (gem-gum factory)]]
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* '''[[Terminology for parts]]'''
 +
----
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* [[ReChain positive locking mechanism]]

Latest revision as of 08:21, 12 August 2024

This article is a stub. It needs to be expanded.

Related

External links

Positive locking devices

Self centering & form closure mechanisms:

Clutches (mechanical analogon to electrical transistors)

  • Wrap-spring clutch
  • ...

Spring based (energetic) locking mechanisms:

Gears, bearings, gearbearings:

Misc:

Rotating shaft couplings

Wikipedia: Category:Rotating_shaft_couplings

Axle across angle mechanisms:

  • universal joint (does not preserve constant rotation speed) - double Cardan joint does

In general: CV joints [1]

Off center axle continuation mechanismss:

  • Oldham coupling
  • Schmidt coupling

Chains:

Rigid chain mechanisms:

Gentle bending high degree of motion flextures:

Larger system design principles

Cartesian:

Parallel SCARA designs:

  • RepRap Morgan – by Quentin Harley
  • RepRap Walle – by Nicholas Seward

Serial SCARA designs:

  • RepRap Helios & RepRap Wheelios – by Nicholas Seward

Related