Published March 1997 | Version v1
Journal article

Surface composites: A new class of engineered materials

  • 1. Department of Materials Science and Engineering, University of Florida, Gainesville, Florida 32611 (United States)

Description

To integrate irreconcilable material properties into a single component, a new class of engineered materials termed open-quotes surface compositesclose quotes has been developed. In this engineered material, the second phase is spatially distributed in the near surface regions, such that the phase composition is linearly graded as a function of distance from the surface. Surface composites are different from existing engineered materials such as open-quotes bulk compositesclose quotes and open-quotes functionally graded materialsclose quotes (FGM). Unlike bulk composites, the surface phase in surface composites is present only at the near surface regions. In contrast to FGM, the graded properties of surface composites are achieved by unique morphological surface modification of the bulk phase. To fabricate surface composites, the initial surface of the bulk material is transformed using a novel multiple pulse irradiation technique into truncated cone-like structures. The laser induced micro-rough structures (LIMS) possess surface areas which are up to an order of magnitude higher than the original surface. The second phase is deposited on the surface using thin or thick film deposition methods. A key characteristic of surface composites is the formation of a three dimensional, compositionally and thermally graded interface, which gives rise to improved adhesion of the surface phase. Examples of various types of surface composites such as W/Mo, silica/SiC and diamond/steel, etc. are presented in this paper. The unique properties of surface composites make them ideal engineered materials for applications involving adherent thick film coatings of thermally mismatched materials, compositional surface modification for controlled catalytic activity, and creating adherent metal-ceramic and ceramic-polymeric joints. copyright 1997 Materials Research Society

Additional details

Publishing Information

Journal Title
Journal of Materials Research
Journal Volume
12
Journal Issue
3
Journal Page Range
p. 769-773.
ISSN
0884-2914
CODEN
JMREEE