Review: liquid phase sintering

Обзор: жидкофазное спекание
Seong Jin Park, Randall M. German, Pavan Suri
2008-12-10

densificationliquid phase sinteringmicrostructure evolutionpowder metallurgysintered component properties
Liquid phase sintering (LPS) is a process for forming high performance, multiple-phase components from powders. It involves sintering under conditions where solid grains coexist with a wetting liquid. Many variants of LPS are applied to a wide range of engineering materials. Example applications for this technology are found in automobile engine connecting rods and high-speed metal cutting inserts. Scientific advances in understanding LPS began in the 1950s. The resulting quantitative process models are now embedded in computer simulations to enable predictions of the sintered component dimensions, microstructure, and properties. However, there are remaining areas in need of research attention. This LPS review, based on over 2,500 publications, outlines what happens when mixed powders are heated to the LPS temperature, with a focus on the densification and microstructure evolution events.
1
Despite established process understanding and modeling capabilities, important areas of liquid phase sintering still require further research.
2
Liquid phase sintering forms high-performance, multiphase components by sintering powders while solid grains coexist with a wetting liquid.
3
Scientific advances since the 1950s have produced quantitative LPS models incorporated into simulations that predict component dimensions, microstructure, and properties.
4
The process has been applied across diverse engineering materials, including automobile engine connecting rods and high-speed metal-cutting inserts.
5
The review synthesizes over 2,500 publications, emphasizing densification and microstructure evolution as mixed powders are heated to LPS temperatures.

Liquid phase sintering of mixed powders into multiple-phase engineering components

Densification and microstructure evolution during heating to the liquid phase sintering temperature

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Publication Date
2008-12-10
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Authors
Seong Jin Park
Randall M. German
Pavan Suri
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