SteelTemp

Overview

Predicting high-temperature strength of steels using machine learning.

SteelTemp is an advanced predictive tool that estimates the mechanical performance of high-strength steels exposed to elevated temperatures. By integrating cutting-edge machine learning techniques with experimental and literature-based data, SteelTemp enables engineers to obtain accurate stress reduction predictions instantly — without the need for physical testing or finite element simulations.

This software was developed based on a peer-reviewed scientific model published in Results in Engineering (Elsevier), ensuring both scientific rigor and practical reliability.

Academic Publication:
C. Yazici, F.J. Domínguez-Gutiérrez (2025). Machine learning techniques for estimating high–temperature mechanical behavior of high strength steels. Results in Engineering, 25, 104242. https://doi.org/10.1016/j.rineng.2025.104242

Core Features
  • Ultimate Strength Estimation: Predicts tensile strength (MPa) of steel at any given temperature and thickness.
  • Reduction Factor (χ) Calculation: Provides fire-design compliant degradation factors for Eurocode & AISC integration.
  • Multi-material Model: Trained on 455+ data points across 20+ steel types (S235, G550, HSA800, etc.).
  • Instant Results: No testing or simulation required. Results in under 0.2 seconds.
  • Accuracy Validated: Gradient Boosting model with R² > 0.98, RMSE: 0.05, MAE: 0.04.
  • User-friendly Interface: Enter temperature (°C) and material thickness (mm) — get real-time results and charts.
Inputs
Parameter Description
Temperature (°C) Fire or exposure temperature
Thickness (mm) Steel sample thickness
Material Type Optional (e.g., S235, HSA800)
Outputs
  • Ultimate stress (MPa)
  • Reduction factor (χ)
  • Stress-temperature charts (PNG)
  • Downloadable result table (CSV, PDF)
Use Cases
  • Fire safety assessment of structural elements
  • In-fire residual strength evaluation
  • Early-stage design validation
  • Parametric analysis for performance-based design
  • Educational tool in structural engineering curriculum
Target Users
  • Structural engineers
  • Fire safety consultants
  • Researchers and PhD students
  • Steel structure designers
  • Building code specialists
Screenshots
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License & Support

$500

1 Year License

  • 12 months of full access
  • All feature updates during the subscription period
  • Priority email-based technical support
  • Academic discount is not available
Support
  • yazicicasim@gmail.com
  • 24/7 Support
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