The Reinforced Concrete Ironworker Development Program provides participants with comprehensive knowledge on the installation of reinforcement bars for reinforced concrete structures, safe work practices, and modern construction techniques. This program aims to enhance quality craftsmanship and safety in the construction industry.
The training is for professional development purposes, and the certificate obtained does not replace the MYK authorization certificate in trainings where the MYK authorization certificate is mandatory.
1. Reinforced Concrete Structures and Fundamentals
- Basic concepts of reinforced concrete systems: The function of concrete and reinforcement, durability, and safety features.
- Design principles of reinforced concrete structures: Load-bearing capacity, interaction between concrete and steel.
- Key components of reinforced concrete projects and their applications: Residential buildings, commercial spaces, bridges, and infrastructure projects.
2. Properties and Selection of Reinforcement Steel
- Types of reinforcement steel: Low-carbon, high-carbon, and alloyed steel.
- Classification of reinforcement bars: Selection based on diameter, length, and strength class.
- Choosing the right steel based on the concrete properties: Durability and elasticity factors.
3. Preparation and Installation of Reinforcement Steel
- Measuring, cutting, and bending reinforcement steel: Modern machinery and manual techniques.
- Installation techniques for reinforcement steel: Correct placement of bars, tying methods, tools, and equipment used in installation.
- Impact of proper steel placement on structural durability.
4. Safe Working Principles
- Safety measures on construction sites: Personal protective equipment, work safety procedures.
- Hazards and safety measures when working with reinforced concrete structures.
- Risk analysis and emergency procedures.
5. Concrete and Steel Relationship and Application Techniques
- Pouring concrete and integration of reinforcement steel: Compatibility and quality of concrete with steel.
- Techniques to increase the durability of reinforced concrete: Proper mixing and processing of concrete.
- Maintenance and repair of reinforced concrete structures.
6. Modern Construction Methods and Technologies
- Use of advanced construction machines and technologies.
- Digitalization and its impact on the construction industry: 3D printers, automated assembly systems, and robotic technologies.
- Energy efficiency in reinforced concrete structures: Thermal insulation, use of eco-friendly materials.
7. Sustainable Construction and Reinforced Concrete
- Use of eco-friendly materials: Recycled materials, low carbon emission concrete.
- Sustainable construction methods and reinforced concrete.
- Green building certifications and sustainable construction practices.
The training is open to corporate collaborations, and individual applications are not accepted. The training content can be re-planned based on the corporate participant profile and your specific needs. Following mutual discussions, the scope and method of the training (In-person, Online) will be determined, and the related processes will be completed. If an agreement is reached, the suitable dates and times for your institution's participants and our instructors, as well as the location of the training, will be determined.