One of the latest constructive commercial uses of explosive pressure the manufacture of polycrystalline synthetic diamond is described.
High pressure explosive processing of ceramics.
In situ processing of tib 2 tic ceramic composites by thermal explosion under pressure.
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Such powders are unusually responsive to sintering and explosive shocking may be a unique way of cold working ceramics.
Thermal explosion under pressure te and reactive hot pressing rhp.
This book presents information in this materials area.
High pressure explosive processing of ceramics materials science surveys.
Experimental study and modeling.
The hip process subjects a component to both elevated temperature and isostatic gas pressure in a high pressure containment vessel.
Shocked powders gave higher tapped densities higher green densities after pressing and were unusually responsive to sintering.
Because of their inherent brittleness ceramics cannot be formed by rolling extrusion drawing etc their high melting temperatures also add restrictions on the use of casting techniques.
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Explosive shocking may be a unique way of cold working ceramics and may permit subsequent control of their microstructure through primary recrystallization.
Two different schemes of pressure assisted te were employed.
The synthesis of ceramic matrix composites was accomplished via two different processing routes.
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This improves the material s mechanical properties and workability.
The high hardness and the elastic modulus of ti based ceramics borides carbides etc coupled with good thermal and electric conductivity make them attractive for many high performance applications.
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Hot isostatic pressing hip is a manufacturing process used to reduce the porosity of metals and increase the density of many ceramic materials.
Ceramic processing the higher performance of ceramics is the result of strict contr ol of purity composition microstructure and processing.
Article osti 5649947 title high pressure explosive processing of ceramics author graham r a and sawaoka a b abstractnote the use of high pressure explosive loading to consolidate and modify ceramic materials is newly emerging as a significant prospective materials processing technique.