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Composite ceramic coating

He Y, Zhang K., Li L. and Wang D. (2006), Nano-/micro-composite ceramic coatings prepared by thermal pressure filtration of sol-gel paints , Int. J. Modem Phys. B, 20,4649-54. [Pg.164]

If the rf source is applied to the analysis of conducting bulk samples its figures of merit are very similar to those of the dc source [4.208]. This is also shown by comparative depth-profile analyses of commercial coatings an steel [4.209, 4.210]. The capability of the rf source is, however, unsurpassed in the analysis of poorly or nonconducting materials, e.g. anodic alumina films [4.211], chemical vapor deposition (CVD)-coated tool steels [4.212], composite materials such as ceramic coated steel [4.213], coated glass surfaces [4.214], and polymer coatings [4.209, 4.215, 4.216]. These coatings are used for automotive body parts and consist of a number of distinct polymer layers on a metallic substrate. The total thickness of the paint layers is typically more than 100 pm. An example of a quantitative depth profile on prepainted metal-coated steel is shown as in Fig. 4.39. [Pg.230]

Details on chemicals, metals, minerals, fuels, plastics, textiles, finishes, woods, elastomers, ceramics, coatings, composites, industrial substances, and natural plant animal substances ... [Pg.602]

Composite interfaces, ceramic—matrix composites, 5 558-561 Composite liner, in landfills, 25 877 Composite material coatings, 14 105 Composite materials, 13 533 26 750-785. See also Composites advanced materials in, 1 693 classification by geometry, 26 752-755 classification by matrix material,... [Pg.205]

Abstract. Liquid phase deposition methods are a useful way to create mineral oxide films from aqueous solution under near-ambient conditions. These approaches have been applied to the creation of ceramic coatings on polymers and on polymer-matrix composites. Control has been achieved over the adherence and crystallinity of the solution-deposited thin films based on controlling the composition of both the deposition solution and the substrate surface. The challenge of depositing such films from water, while minimizing film cracking has also been addressed. Crack-free ceramic films of up to 200 nm thickness have been achieved on a variety of polymer substrates. [Pg.59]

A. Razgon and C. N. Sukenik, C. N., Ceramic Coatings for Fiber Matrix Composites Titania thin films on bismaleimide-glass fiber composites, J. Mater. Res. 20, 25440-2552 (2005). [Pg.68]

Porosity of Ceramics, Roy W. Rice Intermetallic and Ceramic Coatings, edited by Narendra B. Dahotre and T. S. Sudarshan Adhesion Promotion Techniques Technological Applications, edited by K. L. Mittal and A. Pizzi Impurities in Engineering Materials Impact, Reliability, and Control, edited by Clyde L. Briant Ferroelectric Devices, Kenji Uchino Mechanical Properties of Ceramics and Composites Grain and Particle Effects, Roy W. Rice Solid Lubrication Fundamentals and Applications, Kazuhisa Miyoshi... [Pg.722]

This book contains papers from the Fourth International Conference on Computational Methods and Experiments in Materials Characterisation which brought researchers who use computational methods, those who perform experiments, and of course those who do both, in all areas of materials characterisation, to discuss their recent results and ideas, in order to foster the multidisciplinary approach that has become necessary for the study of complex phenomena. The papers in the book cover the follow topics Advances in Composites Ceramics and Advanced Materials Alloys Cements Biomaterials Thin Films and Coatings Imaging and Image Analysis Thermal Analysis New Methods Surface Chemistry Nano Materials Damage Mechanics Fatigue and Fracture Innovative Computational Techniques Computational Models and Experiments Mechanical Characterisation and Testing. [Pg.187]

Ceramic coatings for carbon-carbon composites, Strife and Sheehan, 1988 [136]... [Pg.21]

Consider an ordinary substrate-ceramic coating combination. Such a composite system, prepared at elevated temperatures and subsequently cooled to room temperature, will be thermally stressed due to the usually large difference in thermal expansion and elastic moduli of the substrate and coating. These stresses often exceed the fracture strength of the ceramic component, particularly in regions close to free surface near the interface. This leads to either cracking of the ceramic part or to failure at the substrate-coating interface. [Pg.397]

However, both relations cannot be directly applied to thin films or coatings unless their thicknesses are several times, typically 10 times, greater than the indentation depth so that the subsurface deformation beneath the indenter is not influenced by the proximity of interfaces or free surfaces (Burnett and Rickerby, 1987). Those interfaces can be considered for a stratified coating using Buckle s proposal (Buckle, 1971) that the hardness should be expressed as a weighted sum of the hardness of the different layers. In this spirit, a ceramic coating-metal substrate system could be considered a two-layer material the composite hardness Hc of which is then... [Pg.383]


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