2016•Journal of the Ceramic Society of JapanOpen access

Analysis of sintering behavior of silicon nitride based on master sintering curve theory of liquid phase sintering

Junichi Tatami, Daisuke HIRATSUKA, Shigefumi OKADA, Katsutoshi Komeya, Toru Wakihara

Open full text 15 citations

Abstract

We propose a new master sintering curve (MSC) theory for liquid phase sintering in consideration of grain rearrangement and solution-precipitation in order to analyze the sintering behaviors of silicon nitride (Si 3 N 4 ) powder compacts.We found that the MSC for liquid phase sintering is theoretically the same expression as that for solid-state sintering.Very fine high-purity powders of Si 3 N 4 Y 2 O 3 , Al 2 O 3 , AlN, and TiO 2 were used as the raw materials to make powder compacts.The degree of sintering shrinkages of the powder compacts, which contained different amounts of the sintering aids, were measured directly by the laser displacement measurement method using a dilatometer.Based on the displacements and the specimen dimensions, the shrinkage ratios and rates could be calculated.The sintering shrinkage behavior depended on the sintering aid used and the heating rate.The MSCs were obtained for shrinkage ratios of 02 and 215% corresponding to grain rearrangement and the solutionprecipitation process, respectively.Finally, the apparent activation energies of sintering of Si 3 N 4 for grain rearrangement and the solution-precipitation process were found to be 251294 and 345430 kJ/mol, respectively, depending on the sintering aid used.

Open-access reader

About this research paper

What this paper is about

We propose a new master sintering curve (MSC) theory for liquid phase sintering in consideration of grain rearrangement and solution-precipitation in order to analyze the sintering behaviors of silicon nitride (Si 3 N 4 ) powder compacts.We found that the MSC for liquid phase sintering is theoretically the same expression as that for solid-state sintering.Very fine high-purity powders of Si 3 N 4 Y 2 O 3 , Al 2 O 3 , AlN, and TiO 2 were used as the raw materials to make powder compacts.The degree of sintering shrinkages of the powder compacts, which contained different amounts of the sintering aids, were measured directly by the laser displacement measurement method using a dilatometer.Based on the displacements and the specimen dimensions, the shrinkage ratios and rates could be calculated.The sintering shrinkage behavior depended on the sintering aid used and the heating rate.The MSCs were obtained for shrinkage ratios of 02 and 215% corresponding to grain rearrangement and the solutionprecipitation process, respectively.Finally, the apparent activation energies of sintering of Si 3 N 4 for grain rearrangement and the solution-precipitation process were found to be 251294 and 345430 kJ/mol, respectively, depending on the sintering aid used.

Why it matters

OpenAlex reports 15 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

We propose a new master sintering curve (MSC) theory for liquid phase sintering in consideration of grain rearrangement and solution-precipitation in order to analyze the sintering behaviors of silicon nitride (Si 3 N 4 ) powder compacts.We found that the MSC for liquid phase sintering is theoretically the same expression as that for solid-state sintering.Very fine high-purity powders of Si 3 N 4 Y 2 O 3 , Al 2 O 3 , AlN, and TiO 2 were used as the raw materials to make powder compacts.The degree of sintering shrinkages of the powder compacts, which contained different amounts of the sintering aids, were measured directly by the laser displacement measurement method using a dilatometer.Based on the displacements and the specimen dimensions, the shrinkage ratios and rates could be calculated.The sintering shrinkage behavior depended on the sintering aid used and the heating rate.The MSCs were obtained for shrinkage ratios of 02 and 215% corresponding to grain rearrangement and the solutionprecipitation process, respectively.Finally, the apparent activation energies of sintering of Si 3 N 4 for grain rearrangement and the solution-precipitation process were found to be 251294 and 345430 kJ/mol, respectively, depending on the sintering aid used.

Key concepts: Sintering, Materials science, Dilatometer, Silicon nitride, Shrinkage, Precipitation, Metallurgy, Phase (matter)

Related papers

Back to paper searchBrowse research topicsOriginal source
Analysis of sintering behavior of silicon nitride based on master sintering curve theory of liquid phase sintering — Research Paper | ScholarLens