Title of article :
Modular overconstrained weak-link mechanism for ultraprecision motion control
Author/Authors :
Shu، نويسنده , , Deming and Toellner، نويسنده , , Thomas S. and Alp، نويسنده , , Esen E.، نويسنده ,
Pages :
4
From page :
771
To page :
774
Abstract :
We have designed and constructed a novel miniature overconstrained weak-link mechanism that will allow positioning of two crystals with better than 50 nrad angular resolution and nanometer linear driving sensitivity. The precision and stability of this structure allow the user to align or adjust an assembly of crystals to achieve the same performance as does a single channel-cut crystal, so we call it an “artificial channel-cut crystal.” Unlike the traditional kinematic linear spring mechanisms, the overconstrained weak-link mechanism provides much higher structure stiffness and stability. Using a laminar structure configured and manufactured by chemical etching and lithography techniques, we are able to design and build a planar-shape, high stiffness, high precision weak-link mechanism. In this paper, we present recent developments for the overconstrained weak-link mechanism. Applications of this new technique to synchrotron radiation instrumentation are also discussed.
Keywords :
Ultraprecision mechanism , X-ray instrumentation , motion control
Journal title :
Astroparticle Physics
Record number :
2016601
Link To Document :
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