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        <title>MatCalc Documentation examples:precipitation</title>
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       <dc:date>2026-08-09T14:24:36+00:00</dc:date>
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        <title>MatCalc Documentation</title>
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    <item rdf:about="https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p1&amp;rev=1488537055&amp;do=diff">
        <dc:format>text/html</dc:format>
        <dc:date>2017-03-03T11:30:55+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Example P1: Precipitation of cementite in Fe-0.1%C</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p1&amp;rev=1488537055&amp;do=diff</link>
        <description>Example P1: Precipitation of cementite in Fe-0.1%C

This example shows the basic setup of how to simulate a precipitation kinetic simulation using MatCalc. All basic features and options will be explained in the first part, while the second part focuses on improving the quality of the results of part one. The obtained results will be compared to the LSW-Theory.</description>
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        <dc:format>text/html</dc:format>
        <dc:date>2017-03-03T11:43:12+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Precipitation sequence in Al-Cu</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p2&amp;rev=1488537792&amp;do=diff</link>
        <description>Precipitation sequence in Al-Cu

This example shows the precipitation, growth and evolution of precipitates found in a technical Al-4.3Cu alloy. The influence of the quenching rate on the evolution of vacancies will be elaborated in part 2. In a final part a DSC curve will be simulated.</description>
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        <dc:format>text/html</dc:format>
        <dc:date>2017-03-03T11:48:37+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Example P5: Concurrent growth of precipitates in Fe-12%Cr-0.1%C</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p5&amp;rev=1488538117&amp;do=diff</link>
        <description>Example P5: Concurrent growth of precipitates in Fe-12%Cr-0.1%C

Evaluation of concurrent growth of M3C, M7C3 and M23C6. Evolution of precipitate Cr-content. This analysis mimics a DICTRA simulation performed in a cited paper. The influence of the inner particle diffusion ratio will be elaborated in part 2.</description>
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        <dc:date>2017-03-03T12:01:56+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Example P10: AlN precipitation in steel</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p10&amp;rev=1488538916&amp;do=diff</link>
        <description>Example P10: AlN precipitation in steel

This example provides a set of MatCalc scripts for simulation of AlN precipitation in steel. This study was published in ref. The main feature of these examples is the simultaneous precipitation of AlN on dislocations and grain boundaries. The simulations make use of volumetric misfit data for AlN in the nucleation stage as well as the special diffusion geometry for grain boundary precipitation developed in ref.</description>
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        <dc:date>2017-03-03T12:10:28+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Example P12: NbC precipitation in steel</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p12&amp;rev=1488539428&amp;do=diff</link>
        <description>Example P12: NbC precipitation in steel

Compatibility

MatCalc version: 5.60 

Database: mc_fe.tdb, mc_x_FeAlCCrMnNSiV.tdb, mc_sample_fe.ddb

Author: Walter Mayer

Created: 2012-06-07 

Revisions: Heinrich Buken 2014-03-18  


Objectives

This example deals with the precipitation of NbC in a low alloyed steel. The location of nucleation is considered in dislocations as well as on grain- boundaries.</description>
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        <dc:date>2019-06-28T16:52:49+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Example P13: NbC and AlN precipitation in the deformed steel</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p13&amp;rev=1561733569&amp;do=diff</link>
        <description>Example P13: NbC and AlN precipitation in the deformed steel

Compatibility

MatCalc version: 5.51.0019 

Database: mc_fe.tdb (alternatively mc_x_FeAlCNNbTi.tdb or mc_sample_fe.tdb) mc_sample_fe.ddb

Author: Walter Mayer

Created: 2012-12-10 

Revisions:</description>
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        <dc:date>2015-02-16T15:50:31+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Precipitation simulation during continuous casting of micro-alloyed Fe-Al-C-N-Nb-Ti steel (MatCalc versions elder than 5.61.1000)</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p20_old&amp;rev=1424098231&amp;do=diff</link>
        <description>Precipitation simulation during continuous casting of micro-alloyed Fe-Al-C-N-Nb-Ti steel (MatCalc versions elder than 5.61.1000)

	*  P20 - Precipitation kinetics simulation during continuous casting of micro-alloyed Fe-Al-C-N-Nb-Ti steel. This analysis demonstrates the treatment of primary precipitates as well as simulations in segregated primary solidification microstructures. This example continues the equilibrium treatment of example E20.</description>
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        <dc:date>2015-02-16T16:39:08+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Precipitation simulation during continuous casting of micro-alloyed Fe-Al-C-N-Nb-Ti steel</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p20&amp;rev=1424101148&amp;do=diff</link>
        <description>Precipitation simulation during continuous casting of micro-alloyed Fe-Al-C-N-Nb-Ti steel

	*  P20 - Precipitation kinetics simulation during continuous casting of micro-alloyed Fe-Al-C-N-Nb-Ti steel. This analysis demonstrates the treatment of primary precipitates as well as simulations in segregated primary solidification microstructures. This example continues the equilibrium treatment of example E20.</description>
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        <dc:date>2019-06-27T17:03:24+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Example P21: Precipitation simulation during continuous casting of micro-alloyed Fe-Al-C-Cu-Mn-N-Nb-S-Si-Ti steel</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p21&amp;rev=1561647804&amp;do=diff</link>
        <description>Example P21: Precipitation simulation during continuous casting of micro-alloyed Fe-Al-C-Cu-Mn-N-Nb-S-Si-Ti steel

Compatibility

MatCalc version: 5.44.0026 

Database: mc_fe.tdb, mc_x_FeAlCCuMnNNbSSiTi.tdb, 

mc_sample_fe.ddb 

Author: G. Stechauner</description>
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        <dc:date>2012-11-20T14:06:55+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Example P30: Precipitation simulation in austenitic 316L steel</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p30&amp;rev=1353416815&amp;do=diff</link>
        <description>Example P30: Precipitation simulation in austenitic 316L steel

Evaluation of concurrent growth of Sigma, Chi and Laves precipitates and evolution of phase fraction and size. Part 2 calculates a TTP diagram for the same steel. Results will be compared to experimental, published data.</description>
    </item>
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        <dc:date>2013-09-08T10:34:03+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Example P80: Precipitation of coherent Cu in Fe-Cu</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:p80&amp;rev=1378629243&amp;do=diff</link>
        <description>Example P80: Precipitation of coherent Cu in Fe-Cu

Advanced simulation of copper precipitation in Fe-Cu binary system. Part 1 of this example will elaborate on the models, which are required for a predictive simulation of the problem. Part 2 will demonstrate the precipitation simulation on the basis of the experimental values from Goodman et al., Metall. Trans. 4 (1973) 2363-2369.</description>
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        <dc:date>2019-07-31T21:27:09+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>Example PX: Artificial aging of Al-Mg-Si alloy</title>
        <link>https://www.matcalc.at/wiki/doku.php?id=examples:precipitation:px&amp;rev=1564601229&amp;do=diff</link>
        <description>Example PX: Artificial aging of Al-Mg-Si alloy

Compatibility

MatCalc version: 6.02.1003 

Database: mc_al.tdb, mc_al.ddb

Author: P. Warczok 

Created: 2019-04-26 

Revisions: 


Objectives

This example describes a precipitation kinetics simulation of the artificial aging process for Al-Mg-Si alloy (corresponding to 6xxx wrought alloy series). It starts with the typical system setup: Definition of composition phases, precipitation domain, precipitate phases and thermomechanical treatment. Due…</description>
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