The Advanced Concrete Repair, Rehabilitation and Structural Strengthening Techniques Training Course provides advanced knowledge and practical skills for professionals involved in Concrete Repair, rehabilitation, maintenance, and structural restoration. The course covers systematic assessment of concrete deterioration, damage diagnosis, repair material selection, crack repair methods, and modern strengthening techniques for improving structural safety, durability, and service life.
as part of its Construction and Civil Engineering Training Courses, this programme explores advanced approaches to structural rehabilitation and engineering maintenance and operation. Participants will examine FRP strengthening, concrete restoration, corrosion-related damage, repair specifications, quality control, and performance evaluation to support effective and sustainable structural rehabilitation projects.
Course Objectives
By the end of the course, participants will be able to:
Understand advanced principles and practices of Concrete Repair and structural rehabilitation.
Identify common causes and mechanisms of concrete deterioration and structural damage.
Apply systematic inspection, assessment, and damage diagnosis techniques.
Develop effective strategies for concrete crack repair and defect treatment.
Select suitable repair materials and technologies for different structural conditions.
Understand modern FRP strengthening systems and their applications.
Apply techniques for structural restoration, strengthening, and durability improvement.
Evaluate corrosion damage and appropriate repair and protection methods.
Develop effective repair specifications, method statements, and quality control procedures.
Assess the performance and long-term durability of repaired and strengthened structures.
Target Audience
Civil and structural engineers
Construction and maintenance engineers
Structural repair and rehabilitation specialists
Site engineers and project engineers
Building and infrastructure maintenance professionals
Construction managers and project managers
Consultants involved in structural assessment and rehabilitation
Quality control and quality assurance engineers
Engineers responsible for concrete structures and asset management
Professionals seeking advanced expertise in structural restoration and strengthening
Course Outline
Module 1: Advanced Concrete Deterioration and Structural Assessment
Causes and mechanisms of concrete deterioration
Structural defects and failure mechanisms
Concrete condition assessment
Visual inspection and diagnostic techniques
Non-destructive and semi-destructive testing methods
Structural integrity and serviceability evaluation
Module 2: Concrete Repair Principles and Repair Strategies
Principles of effective Concrete Repair
Repair strategy development
Selection of appropriate repair methods
Repair material compatibility
Surface preparation and substrate treatment
Repair planning and execution requirements
Module 3: Crack Investigation and Crack Repair Techniques
Types and causes of concrete cracking
Structural and non-structural cracks
Crack mapping and assessment
Crack repair materials and techniques
Injection, sealing, routing, and filling methods
Prevention of recurring cracks
Module 4: Advanced Concrete Repair Materials
Cementitious repair materials
Polymer-modified repair systems
Epoxy and resin-based materials
Grouts and bonding agents
Rapid-setting and high-performance repair materials
Material selection based on structural and environmental conditions
Module 5: Reinforcement Corrosion and Concrete Rehabilitation
Mechanisms of reinforcement corrosion
Carbonation and chloride-induced deterioration
Corrosion assessment and diagnosis
Concrete removal and reinforcement treatment
Corrosion protection systems
Rehabilitation strategies for deteriorated reinforced concrete
Module 6: Structural Strengthening Techniques
Principles of structural strengthening
Load assessment and strengthening requirements
Reinforced concrete strengthening methods
Section enlargement and concrete jacketing
Steel plate and steel member strengthening
Strengthening of beams, columns, slabs, and other structural elements
Module 7: FRP Strengthening and Advanced Composite Systems
Fundamentals of FRP strengthening
Carbon, glass, and aramid fibre systems
Externally bonded FRP applications
Strengthening beams, columns, slabs, and walls
Bonding, anchorage, and installation considerations
Inspection and quality control of FRP systems
Module 8: Structural Restoration and Performance Improvement
Structural restoration principles
Restoration of ageing concrete structures
Strengthening for increased load capacity
Seismic and durability-related strengthening
Improving structural service life
Sustainable rehabilitation and life-cycle considerations
Module 9: Repair Quality Control and Project Management
Repair specifications and method statements
Quality assurance and quality control
Site supervision and workmanship requirements
Testing and acceptance criteria
Repair documentation and reporting
Monitoring repaired and strengthened structures
Module 10: Advanced Rehabilitation Case Studies
Assessment of real-world concrete deterioration
Repair and strengthening strategy development
Selection of rehabilitation technologies
Evaluation of repair performance
Lessons learned from structural restoration projects
Practical application of advanced repair and strengthening methods