0066. Design of Steel-Concrete Composite Beam using TechEditor. Interactive automated report

An interactive design template for TechEditor designed to automate the engineering of composite steel-concrete beams. Leveraging a built-in mathematical engine, the system automatically generates geometry, determines sectional load-bearing capacity, and performs Finite Element Analysis (FEA). All design parameters and calculations are formatted into a professional, submission-ready technical report.

This engineering document provides a structured calculation report for a composite steel-concrete beam, focusing on the interaction between the structural steel section and the reinforced concrete slab. The report covers all critical design stages, from defining the physical and mechanical properties to the construction of the analytical structural model. It details the calculation of composite sectional properties, the determination of stress-strain state parameters, and the final limit state design checks.

Features & Document Logic

The calculation algorithm is implemented by automating the following stages:

Input Parameterization: The report integrates the physical and mechanical properties of the steel section and the concrete slab to model their composite action within a single structural element.

Sectional Property Calculation: The cross-sectional area, moments of inertia, and the location of the neutral axis for the composite section are computed programmatically based on the input data.

Structural Model Generation: TechEditor generates a finite element model (FEM) of the beam using scripted commands (node creation, support assignment, load application, etc.). This model can be modified by the user to suit specific project requirements.
Static Analysis: The integrated FEM engine automatically calculates internal forces (moments, shear forces) and beam deflections across the spans.

Capacity Verification: The system compares actual internal forces against design limits and determines the final demand-to-capacity (utilization) ratio.

Important: You can adapt the document to your specific needs — edit formulas, add schemes, or change units of measurement. TechEditor automatically handles unit conversion and dimension control, correctly calculating expressions with mixed units.

Practical Application

Матеріали даного цифрового документа мають високу практичну цінність для будівельної галузі:

  • Проєктування цивільних об'єктів: Методика дозволяє оптимізувати перекриття великих прогонів у житлових будинках, торговельних центрах, офісних будівлях, паркінгах тощо.

  • Навчальний та методичний матеріал: Документ є зручною базою для навчання фахівців, в тому числі по роботі з сучасними розрахунковими комплексами та у питаннях автоматизації інженерних задач.

  • Контроль та експертиза: Алгоритм дозволяє швидко перевірити наявні проєктні рішення або провести експертну оцінку тримальної здатності балок під час реконструкції або збільшенні навантажень на будівлю.

  • Оптимізація витрат: Завдяки точному аналізу та параметричним зв'язкам звіт відкриває шлях до зменшення витрат матеріалів (сталі, бетону) зі збереженням необхідного рівня надійності.

Technical Specifications & Standards

Методологічна основа: Сучасні підходи до проєктування композитних конструкцій, що враховують спільну роботу сталі та бетону.

Алгоритми / методи: Аналітичні та числові, зокрема скінченно-елементний аналіз (FEM).

Стандарти (не включені в документ): ДБН В.2.6-160:2010. Конструкції будинків і споруд. Сталезалізобетонні конструкції. Основні положення; ДСТУ-Н Б EN 1994-1-1:2010. Єврокод 4. Проектування сталезалізобетонних конструкцій.

Формат файлу: .tec (TechEditor Project).

Мова документу: Українська (технічна).

Вивід результатів: Перегляд на екрані, друк звіту, експорт у PDF, RTF, DOCX або зображення.

How to Use This Solution

  1. Download and install TechEditor on your computer (you must be registered in the Dystlab Store).
  2. Download this digital solution (.tec file).
  3. Open the file on your computer.
  4. Modify the input data. Ensure all calculations in the document update automatically (if auto-calculation is off, press F5 for a manual recalculation).


Download

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14.05.2026 ver. 1
- first release;
- tested in TechEditor 5.7.2;

System requirements for TechEditor environment

Operating system:

  • Windows (recommended 11 or higher);
  • macOS (12.0 or higher) — through the Parallels Desktop emulator;

Monitor, memory, processor:

  • screen resolution: recommended 1920x1080 pixels and higher; minimum 1366x768 pixels;
  • RAM: 8 GB and above is recommended; minimum 1 GB;
  • Hard drive (HDD/SSD): 500 MB and above recommended; minimum 100 MB;
  • processor frequency (CPU): 3.0 GHz and higher is recommended; minimum 1.0 GHz.

Browser and Internet access:

Internet access is required and is used for user web authorization, web content downloads, communication with LLM, and other functions.

Dystlab Open Collaborative License

These digital solutions are provided “as is”, without any warranties of any kind, express or implied, including but not limited to warranties of accuracy, completeness, fitness for a particular purpose, or compliance with any standards or regulations. The developers, authors, and participating organizations shall not be liable for any direct, indirect, incidental, consequential, or other damages arising from the use or inability to use these solutions.

Permission is hereby granted to use, copy, reproduce, distribute, modify, adapt, and create derivative works of these digital solutions without restriction.

It is prohibited to sell, license, rent, lease, or otherwise commercially distribute these digital solutions as a standalone product, whether in their original or modified form, in exchange for monetary compensation.
At the same time, the use of these solutions as part of commercial projects, engineering works, research activities, or services is expressly permitted, provided that the solutions themselves are not the primary object of sale, licensing, or rental.

This license is intended to support open science, engineering practice, and the free exchange of knowledge, while preventing unauthorized commercial exploitation of the digital solutions as independent products.

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We develop digital solutions for engineering companies and design businesses. We advise, research, and help with the automation of calculations, design, and systematization of technical documentation.

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