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               <dc:title>Modeling Soft Material Adhesion for In vivo Robotic Locomotion</dc:title>
               <dc:creator>Ortega Alcaide, Joan</dc:creator>
               <dc:subject>Àrees temàtiques de la UPC::Informàtica::Robòtica</dc:subject>
               <dc:subject>Automation Industries</dc:subject>
               <dc:subject>Automatització -- Aplicacions industrials</dc:subject>
               <dc:description>In a continued effort to develop an active Robotic Capsule Endoscope (RCE), research is&#xd;
being conducted on the motion of the RCE through the small and large bowel. One of the factors&#xd;
in&#xd;
uencing the motion of the RCE is the adhesion of the RCE's micropatterned treated wheels to&#xd;
the inner lumen of bowel tissue. While adhesion is needed to generate traction, too much adhesion&#xd;
can also cause malfunctioning of the device, reduce autonomy and damage the tissue. This study&#xd;
is focused on the characterization of adhesion as a function of three critical RCE design parameters&#xd;
(Pre-load, Dwell Time and Separation Rate).&#xd;
In this work, a method for adhesion characterization is detailed and a complete model for&#xd;
the adhesion between a cylindrical probe with a smooth polydimethlysiloxane (PDMS) surface&#xd;
and synthetic tissue is presented. An explicit nondimensional model for the adhesive response is&#xd;
constructed with an R2 value of 0.9996 and a maximum relative error less than 5.6%. In addition,&#xd;
physical meaning of the proposed mathematical model is experimentally verified. Accurate models&#xd;
for the maximum stress supported by the tissue (R2 = 0:9895, maximum error = 2:04%), effective&#xd;
adhesion energy consumed in the separation (R2 = 0:9936, maximum error = 3:23%) and the&#xd;
total probe displacement from the beginning of the adhesion region to the point where complete&#xd;
separation occurs (R2 = 0:9964, maximum error = 1:47%) as a function of critical design parameters&#xd;
are obtained. Finally, a qualitative approach to the extrapolation of these models when varying&#xd;
the substrate stiffness and probe area is presented.</dc:description>
               <dc:description>Outgoing</dc:description>
               <dc:date>2013</dc:date>
               <dc:type>Master thesis (pre-Bologna period)</dc:type>
               <dc:rights>Open Access</dc:rights>
               <dc:publisher>Universitat Politècnica de Catalunya</dc:publisher>
               <dc:publisher>University of Colorado Boulder</dc:publisher>
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