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MatCalc Engineering GmbH matcalc v5.51
Matcalc V5.51, supplied by MatCalc Engineering GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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MatCalc Engineering GmbH gibbs free energy
Change in <t>Gibbs</t> <t>free</t> energy based on temperatures in phases for materials ( a ) 1C, ( b ) 1.4Cr, and ( c ) 1.4Mo, where ‘fcc’ is the austenite phase (red dashed line), ‘bcc’ is the ferrite phase (blue dotted line), and ‘cem’ is the cementite phase (black solid line). The spikes in ( b ) are due to the crystal structure change from fcc to bcc and are reflected in the Gibbs free energy of the cementite phase, which becomes more stable below this temperature. The spikes are present but significantly less visible in the other two alloys.
Gibbs Free Energy, supplied by MatCalc Engineering GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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gibbs free energy - by Bioz Stars, 2026-10
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Change in Gibbs free energy based on temperatures in phases for materials ( a ) 1C, ( b ) 1.4Cr, and ( c ) 1.4Mo, where ‘fcc’ is the austenite phase (red dashed line), ‘bcc’ is the ferrite phase (blue dotted line), and ‘cem’ is the cementite phase (black solid line). The spikes in ( b ) are due to the crystal structure change from fcc to bcc and are reflected in the Gibbs free energy of the cementite phase, which becomes more stable below this temperature. The spikes are present but significantly less visible in the other two alloys.

Journal: Materials

Article Title: Analyzing the Effects of Cr and Mo on the Pearlite Formation in Hypereutectoid Steel Using Experiments and Phase Field Numerical Simulations

doi: 10.3390/ma17143538

Figure Lengend Snippet: Change in Gibbs free energy based on temperatures in phases for materials ( a ) 1C, ( b ) 1.4Cr, and ( c ) 1.4Mo, where ‘fcc’ is the austenite phase (red dashed line), ‘bcc’ is the ferrite phase (blue dotted line), and ‘cem’ is the cementite phase (black solid line). The spikes in ( b ) are due to the crystal structure change from fcc to bcc and are reflected in the Gibbs free energy of the cementite phase, which becomes more stable below this temperature. The spikes are present but significantly less visible in the other two alloys.

Article Snippet: Due to the fact that different heat treatment conditions are predicted in this study and the Gibbs free energy and the mobilities between phases are strongly dependent on temperature, these two values are considered as a function of temperature. shows the change in Gibbs free energy as a function of temperature in each phase of the three materials, which were calculated using MatCalc v5.51 software.

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