Calorimetric Studies of the Silver-Titanium System
Weronika Gozdur, Wojciech Gierlotka, Władysław Gąsior, Anna Wierzbicka-Miernik, Tomasz Czeppe, Andrzej Budziak, Agata Radziwonko, Magda Pęska, Adam Dębski

TL;DR
This study experimentally investigates the thermodynamic properties of silver-titanium alloys using calorimetry and structural analysis to improve understanding of their phase behavior.
Contribution
The use of titanium hydride in synthesizing Ag-Ti alloys and reoptimization of the Ag-Ti phase diagram using new calorimetric data.
Findings
DSC determined characteristic temperatures of the Ag0.43Ti0.57 alloy.
High-temperature drop calorimetry measured mixing and formation enthalpies in the Ag-Ti system.
The Ag-Ti phase diagram was reoptimized using new experimental data.
Abstract
Alloys from the Ag-Ti system are extremely promising and offer the possibility of versatile applications owing to their attractive properties. However, due to the experimental difficulties caused, among others, by the significant difference in melting points of the components, most of the information on the thermodynamic properties available in the literature has been obtained by computer methods. Therefore, the main aim of this work is to extend the current knowledge about the experimentally determined thermodynamic properties of selected alloys from the Ag-Ti system. Within the scope of this work, calorimetric studies were carried out using Differential Scanning Calorimetry (DSC) and high-temperature drop calorimetry measurements. The first of the aforementioned methods was used to determine the characteristic temperature of the Ag0.43Ti0.57 alloy synthesized by mechanical alloying.…
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Taxonomy
Topicsnanoparticles nucleation surface interactions · Intermetallics and Advanced Alloy Properties · Thermodynamic and Structural Properties of Metals and Alloys
