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Application of the alloy design tool Thermo-Calc to aluminum alloys.

Introducing analysis examples for aluminum alloys! The alloy design tool Thermo-Calc can be used for material development and various manufacturing processes!

This is a collection of calculation examples for aluminum alloys using the alloy design tool Thermo-Calc. Thermo-Calc allows for the optimization of alloy processes, the prediction of the effects of processes on microstructure, and the forecasting of properties. 【Thermo-Calc】 - Phase diagram of Al-Si-Mn - Temperature-equilibrium phase fractions of AA7093 - Solidification calculations for A206 alloy (formation of solidification microstructure) - Segregation of Al2Cu - Evaluation of solidification cracking susceptibility for AA3000 - Crack susceptibility coefficient model - Coefficient of thermal expansion for Al3M - Electrical resistivity of Al-Mg 【Diffusion Module DICTRA】 - Dissolution of Si particles - Dissolution of Mg2Si 【Precipitation Module TC-PRISMA】 - Average particle size and yield stress of Al3Sc phase - Precipitation of η' phase in Al-Mg-Zn alloys - Solution treatment/homogenization and aging treatment of AA6005

  • alloy
  • Non-ferrous metals
  • aluminum

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[Free] Material Design Simulation Experience Seminar

Customers who are not users of Thermo-Calc software can also participate for free, so we encourage you to join.

We will hold an online experience seminar for the alloy design tool Thermo-Calc. This seminar will allow you to experience Thermo-Calc, as well as the diffusion and precipitation calculation option modules DICTRA and TC-PRISMA all at once. If you are interested in thermodynamic equilibrium phase diagrams, diffusion analysis, or precipitation calculations, please join us. The content is designed to be understandable even for those who are new to simulation, so feel free to apply. 【Content】 - About the alloy design tool Thermo-Calc - Equilibrium calculations for multi-component alloys - Calculation of phase diagrams for multi-component alloys - Calculation of solidification processes using the Scheil model - Calculation of pseudo-binary phase diagrams - Calculation of solidus line temperatures - Precipitation calculations for carbides (volume fraction, TTT diagrams) - Diffusion calculations for dissimilar materials *Please note that the content of the seminar may change. Seminar page: https://www.engineering-eye.com/seminar/thermocalc.html

  • alloy
  • Steel
  • Non-ferrous metals

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Application examples of the alloy design tool Thermo-Calc for steel materials.

Introducing case studies on the analysis of steel materials! The alloy design tool Thermo-Calc can be used for material development and various manufacturing processes!

This is a collection of calculation examples for steel materials using the alloy design tool Thermo-Calc. Thermo-Calc can optimize alloy processes, predict the effects of processes on microstructures, and forecast properties. It is applicable to various iron alloys such as stainless steel, high-speed steel, tool steel, high-strength steel, cast iron, corrosion-resistant high-strength steel, low-density steel, and cemented carbide. 【Thermo-Calc】 - Phase diagrams for advanced high-strength steel - Phase diagrams for duplex stainless steel - Liquidus temperature - Composition in carbides - Volume (density, length change) - Viscosity - Electrical properties (electrical resistivity, electrical conductivity) - Thermal properties (thermal conductivity, thermal resistivity, thermal diffusivity) 【Diffusion Module DICTRA】 - γ-α transformation in steel - Uphill diffusion of carbon - Dissolution of cementite - Diffusion in welds of iron-nickel alloys 【Precipitation Module TC-PRISMA】 - M23C6 precipitation in 308 stainless steel 【Property Models for Steel】 - Isothermal transformation curves (TTT curves) - Continuous cooling transformation curves (CCT curves) - Transformation points (A0, A1, A2, A3, A4, Acm, Agraph, Ms)

  • Steel
  • Special Steel
  • stainless

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