Examples of 'ceramic particles' in a sentence
Meaning of "ceramic particles"
Ceramic particles refer to small solid particles made from ceramic materials. Ceramics are non-metallic, inorganic materials known for their hardness, heat resistance, and electrical insulation properties. These particles can be used in various applications, such as manufacturing ceramics, coatings, composites, or as additives in materials like concrete or plastics to enhance their properties
How to use "ceramic particles" in a sentence
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ceramic particles
Cermets are ceramic particles containing some metals.
No other phase was detected between the ceramic particles.
The ceramic particles are embedded in the polymer.
The disruptor particles are ceramic particles.
Microscopically small ceramic particles provide a layer of protection.
Ceramic particles and their preparation.
The glass layer may include ceramic particles.
The dispersed ceramic particles can be any shape.
The sinterable particles may be metallic or ceramic particles.
Preferred ceramic particles are silicon carbide.
Process for producing ceramic particles.
The ceramic particles may be inert.
No porosity was detected within the large ceramic particles produced.
The type of ceramic particles has been previously described.
An alloy according to any preceding claim free of ceramic particles.
See also
Ceramic particles also may be used in particular applications.
In a particular embodiment the ceramic particles are zirconia ceramic particles.
The ceramic particles may have been bonded by a process of concentration.
Composition comprising fine ceramic particles and an organic dispersant.
The ceramic particles in the cermet impart erosion resistance.
The piezoelectric substrate may include dispersed piezoelectric ceramic particles.
The boride ceramic particles comprise titanium diboride.
The element may comprise a polymer with dispersed piezoelectric ceramic particles.
Cermets are ceramic particles dispersed in a metal oxide or carbide matrix.
A third exemplary catalyst is a combination of ceramic particles having metal deposited thereon.
These ceramic particles are smaller than the metallic particles.
The paste may further include ceramic particles or the like as filler.
The ceramic particles used in this invention must be piezoelectric.
A third preferred catalyst is a combination of ceramic particles having metal deposited thereon.
The ceramic particles may also be in the form of a slurry.
The substantially monodispersed controlled release ceramic particles may be functionalised or derivatised.
The ceramic particles limit flow of the glass by acting as a physical barrier.
The granules may comprise a polymer with dispersed piezoelectric ceramic particles.
The controlled release ceramic particles may be functionalised or derivatised.
Each particle is fixed with a predetermined interval from adjacent ceramic particles.
A variety of shapes of ceramic particles have been incorporated in various piezoelectric composite.
Removing surfactant from said formed and aged controlled release ceramic particles.
The plurality of aggregate ceramic particles optionally include bauxite particles.
This can be achieved by selecting a high volume percent loading of piezoelectric ceramic particles.
The use of biocompatible ceramic particles as a primary matrix is advantageous in a number of respects.
The presence of carbon powders also facilitates the poling process of ceramic particles.
Some of the ceramic particles will break into several minor fragments.
The composition contains a hydrophilic polymer having antibiotic ceramic particles dispersed therein.
Lack of plasticity in ceramic particles results in increased hardness of the green body.
These consist of some form of thermally conductive material with lots of little ceramic particles.
Certain types of alkali aluminosilicate ceramic particles can appearwhite to the unaided eye.
This name refers to materials formed by combining a synthetic polymer with inorganic ceramic particles.
Suitable composites include ceramic particles or fibers contained in a metal matrix continuous phase.
This arrangement allows the fine powder to bond the ceramic particles to each other.
Typically the ceramic particles are placed into the product bowl of a fluidized bed.
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