Difference between revisions of "Gemstone based metamaterial"

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(moved here from "further improvement at technology level III" and modified accordingly)
 
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'''Diamondoid metameterials''' form the necessary basis for the ''speculative'' [[further improvement at technology level III|advanced applications]] of AP technology. These highly complex applications will only become possible through the smart combination of the set of newly available materials with novel properties.
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'''[[diamondoid|Diamondoid]] metameterials''' form the necessary basis for the ''speculative'' [[further improvement at technology level III|advanced applications]] of AP technology. These highly complex applications will only become possible through the smart combination of the set of newly available materials with novel properties.
  
 
Depending on the APM nanofactory design (vacuum handling) diamondoid metamaterials can be organized in [[microcomponents|microcomponents]] or be monolithic.
 
Depending on the APM nanofactory design (vacuum handling) diamondoid metamaterials can be organized in [[microcomponents|microcomponents]] or be monolithic.

Revision as of 15:44, 10 January 2014

Diamondoid metameterials form the necessary basis for the speculative advanced applications of AP technology. These highly complex applications will only become possible through the smart combination of the set of newly available materials with novel properties.

Depending on the APM nanofactory design (vacuum handling) diamondoid metamaterials can be organized in microcomponents or be monolithic.

List of new materials / base technologies

The set of here presented meta-materials seems less speculative and more incomplete than the list of applications on the products page. It is sorted by design/programming effort which is rather subjective and subject to debate.

low effort

  • molecular filters
  • macroscopic super-bearings (one can only see a speed gradient)
  • anisotropic material properties (e.g. scissoring mechanisms material)

medium effort

  • artificial muscles with higher power densities than todays combustion engines
  • absolutely silent super strong pumps ("pumping material" - no movable parts are visible with the naked eye) "air accelerators"?
  • cells for the direct conversion from mechanical to chemical energy and vice versa (chemomechanical converters).
  • super-fast shearing valves
  • material structuring into microcomponents for recycling and recomposition

high effort