Ti-6Al-4V Material Properties for Abaqus (Temperature-Dependent Excel Dataset)

$5.99

Temperature-dependent Ti-6Al-4V material properties for Abaqus — formatted, validated, and simulation-ready in one Excel file. Created and organized by FEAMASTER for direct import into FEA software.

The Ti-6Al-4V Material Properties for Abaqus dataset gives you a clean, reliable, and temperature-dependent material database designed for high-fidelity finite element simulations.
All data are carefully collected, verified, and formatted in a single Excel file, ready for direct use in Abaqus, FE-Safe, or ANSYS.

Instead of spending hours searching literature, converting units, or verifying inconsistencies, you can use this ready-to-import Ti-6Al-4V dataset to immediately start your simulations — from additive manufacturing to thermal-mechanical analysis.


🔹 Overview

Ti-6Al-4V (Grade 5) is the most widely used titanium alloy due to its excellent combination of strength, corrosion resistance, and thermal stability. However, finding reliable temperature-dependent Ti-6Al-4V material properties for Abaqus can be challenging — most sources provide incomplete or mismatched data.

This dataset solves that problem by providing a simulation-ready Excel sheet that includes all critical properties versus temperature. Each dataset has been unit-checked, interpolated, and formatted for the mm–N–s–°C system commonly used in Abaqus thermal and mechanical analyses.

All data were collected and organized by FEAMASTER, ensuring accuracy, consistency, and ease of use.


📦 Included File

📘 Ti6Al4V_Material_Properties_FEAMASTER.xlsx

A complete temperature-dependent material database for Ti-6Al-4V formatted for Abaqus.

Each column in the Excel sheet is clearly labeled, with temperatures in °C and corresponding property values. You can easily copy-paste or import the data directly into Abaqus’ material editor or use it for external scripting and subroutines.


⚙️ Properties Included

Density (ρ) — temperature-dependent mass density
Elastic Modulus (E) and Poisson’s Ratio (ν)
Thermal Conductivity (k) — converted to W/mm·°C
Specific Heat Capacity (Cp)
Coefficient of Thermal Expansion (CTE)
Yield Strength (σy) — temperature-dependent

All Ti-6Al-4V material properties for Abaqus values are smooth and consistent across the full temperature range, ensuring stable simulation performance and avoiding convergence problems.


💡 Why Choose This Dataset

– ✅ Verified and consistent — all units standardized to mm–N–s–°C
– ✅ Simulation-ready — no additional formatting required
– ✅ Based on literature and experimental data
– ✅ Ideal for Abaqus, FE-Safe, and ANSYS users
– ✅ Created and organized by FEAMASTER

This Ti-6Al-4V material properties for Abaqus Excel dataset is ideal for engineers, students, and researchers who need a trustworthy Ti-6Al-4V material property pack for modeling temperature-dependent behavior.


🧩 Applications

Additive manufacturing simulations (SLM, DED, WAAM)
High-temperature fatigue and creep studies
Thermal stress and heat transfer analyses
Residual stress prediction and phase transformation modeling
General-purpose FEA material library creation

Whether you’re simulating a single bead deposition, a Ti-6Al-4V material properties for Abaqus 3D printed part, or a thermal loading test, these properties provide the essential foundation for accurate results.


📚 Data Origin

All Ti-6Al-4V material properties for Abaqus properties have been compiled and cross-validated from reputable, peer-reviewed research sources and engineering databases.
Each dataset was numerically smoothed, converted to consistent units, and restructured for Abaqus’ tabular input format.

Source references are provided inside the Excel file for transparency and traceability.

Compiled and formatted by FEAMASTER, this dataset ensures you can trust every number you use in your simulation.


🌐 Explore More

Visit FEAMASTER.com to discover more simulation-ready material packs:
👉 https://feamaster.com/product-category/material-properties/

FEAMASTER’s Material Property Database is continuously expanding to cover alloys, steels, and advanced materials used in welding, fatigue, and additive manufacturing simulations.


🚫 Digital product. No refunds. All sales final.

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