Sintering Densification Curve - a Practical Approach For Its Construction From Dilatometric Shrinkage Data
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Maca, Karel
Pouchlý, Václav
Boccaccini, Aldo
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Mark
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International Institute for the Science of Sintering
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This article summarizes the usage of high-temperature dilatometry in ceramic processing and powder technology with special attention on the description of the sintering process. A practical method for transformation of dilatometric shrinkage data into densification curves (the dependence of the sample density on sintering temperature or time) is described in detail. A new automatic procedure to recalculate sintering shrinkage data allowing the plot of the densification curve has been developed, which is presented here.
This article summarizes the usage of high-temperature dilatometry in ceramic processing and powder technology with special attention on the description of the sintering process. A practical method for transformation of dilatometric shrinkage data into densification curves (the dependence of the sample density on sintering temperature or time) is described in detail. A new automatic procedure to recalculate sintering shrinkage data allowing the plot of the densification curve has been developed, which is presented here.
This article summarizes the usage of high-temperature dilatometry in ceramic processing and powder technology with special attention on the description of the sintering process. A practical method for transformation of dilatometric shrinkage data into densification curves (the dependence of the sample density on sintering temperature or time) is described in detail. A new automatic procedure to recalculate sintering shrinkage data allowing the plot of the densification curve has been developed, which is presented here.
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SCIENCE OF SINTERING. 2008, vol. 40, issue 2, p. 117-122.
http://www.iiss.sanu.ac.rs/download/vol40_2/vol40_2_02.pdf
http://www.iiss.sanu.ac.rs/download/vol40_2/vol40_2_02.pdf
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en
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Except where otherwised noted, this item's license is described as Creative Commons Attribution 4.0 International

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