Difference between revisions of "Crystolecule assembly robotics"

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In this zone of advanced [[nanofactory|nanofactories]] [[crystolecule]]s are put together to bigger [[microcomponent]]s.
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Unlike in the [[Mechanosynthesis core]]s this happens under programmable control.
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Crystolecule assembly cores are thus general purpose and can assemble many different kinds of [[microcomponents]].
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Consequently the next routing layer ([[microcomponent routing]]) has much lower importance than the preceding one [[crystolecule routing]].
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The [[connection method|means for connection]] in this size regime are usually passive and may or may not be reversible.
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* [[seamless covalent welding]] to bigger monolithic crystolecules (irreversible)
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* "weak" [[Vand der Waals force]] sticking (reversible)
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* [[shape locking|interocking shapes]] (reversible)
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== Some possible kinds of crystolecules that can be assembled here ==
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* [[Crystolecule]]s in general
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* [[Structural elements for nanofactories]]
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* [[Static rebar profile force circuit]]
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* [[Tensioning mechanism design]]
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== Related ==
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* [[Sequence of zones]]
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* preceeding: [[crystolecule routing]] and [[mechanosynthesis core]]
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* next: [[microcomponent routing]], [[vacuum lockout]] and assembly of product fragments
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== External links ==
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* [http://reprap.org/wiki/RepRec_Pick_%26_Place_Robots RepRec Pick & Place Robots]
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* [http://reprap.org/wiki/ReChain_Frame_System ReChain Frame System]
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[[Category:Nanofactory]]
 
[[Category:Nanofactory]]
 
[[Category:Site specific definitions]]
 
[[Category:Site specific definitions]]

Latest revision as of 17:21, 12 March 2023

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

This article defines a novel term (that is hopefully sensibly chosen). The term is introduced to make a concept more concrete and understand its interrelationship with other topics related to atomically precise manufacturing. For details go to the page: Neologism.

In this zone of advanced nanofactories crystolecules are put together to bigger microcomponents. Unlike in the Mechanosynthesis cores this happens under programmable control. Crystolecule assembly cores are thus general purpose and can assemble many different kinds of microcomponents. Consequently the next routing layer (microcomponent routing) has much lower importance than the preceding one crystolecule routing.

The means for connection in this size regime are usually passive and may or may not be reversible.

Some possible kinds of crystolecules that can be assembled here

Related


External links