







Rehabilitation of old structures involves restoring and upgrading aging buildings to ensure safety and functionality. This process includes repairing damaged elements, improving structural integrity, and modernizing systems while preserving historical or architectural value. By reinforcing foundations, upgrading utilities, and addressing wear and tear, rehabilitation extends the lifespan of buildings and adapts them for contemporary use.
Pressure grouting involves injecting grout under controlled pressure into soil or voids in structures to strengthen foundations, fill gaps, or reduce water infiltration, improving stability and structural integrity.
Micro-concreting is a technique using fine aggregate concrete for precision repairs or strengthening of structures. It’s ideal for areas with limited access, providing high strength and durability in thin sections.
Fiber wrapping involves applying fiber-reinforced polymer (FRP) sheets around structures like columns or beams to enhance strength, prevent cracks, and improve load-bearing capacity, offering a lightweight yet durable reinforcement solution.
Core cutting is a precise method of drilling through concrete, masonry, or other materials to create clean, circular openings for utility installations, structural tests, or repairs, using diamond-tipped tools for accuracy.
Corrosion protection involves applying methods and materials to prevent or reduce metal deterioration caused by environmental factors like moisture, chemicals, or salt. Techniques include coatings, cathodic protection, and corrosion inhibitors, which safeguard structural integrity and extend the lifespan of metal components in buildings, pipelines, and machinery. Effective corrosion protection minimizes maintenance costs and prevents structural failures.