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Topological interlocking of protective tiles for the space shuttle
Authors:Y Estrin  A V Dyskin  E Pasternak  H C Khor  A J Kanel-Belov
Institution:1. Institut für Werkstoffkunde und Werkstofftechnik Technische , Universit?t Clausthal , Clasthal-Zellerfeld, D-38678, Germany;2. School of Civil and Resource Engineering , The University of Western Australia , 35 Stirling Highway, Crawley, Western Australia, 6009, Australia;3. School of Engineering and Science , International University of Bremen , PO Box 750, Bremen, 561 28725, Germany
Abstract:

We propose a new concept of design of heat- and impact-resistant tile covering for space shuttles based upon topological interlocking of tiles. The key features of this type of tiling are as follows: firstly, the tiles are kept in place by virtue of the geometry of their contacting surfaces alone, so that no binding agent needs to be used; secondly, failure of an individual element does not compromise the structural integrity of the tile assembly and, moreover, a failed tile will be kept in place by its neighbours, thus maintaining its thermal protection function; thirdly, topological interlocking removes the need for connectors or other stress concentrators deleterious in extreme conditions of space flight and re-entry. Topological interlocking is scale and material independent, which permits combining tiles made from different materials in any proportion.
Keywords:twinning  metallic glasses  nanocrystallization  powder metallurgy  rapidly solidified materials
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