Roofing Waterproofing Features
1. Wide temperature fluctuations, with high temperatures during the day and low temperatures at night, causing thermal expansion and contraction cycles that can lead to structural cracking.
2. Reinforced concrete structures may crack and leak due to uneven settlement of the foundation caused by compaction under additional stress, leading to structural cracking in the floor.
3. Alkali-aggregate reaction, reinforcement corrosion, chloride ion effects, and harmful侵蚀 are all processes that occur under water conditions. The formation and progression of leakage cracks can adversely affect the load-bearing capacity and durability of the building structure.
Principles for Waterproof Reinforcement Construction Plan Design
1. Utilizing an inverted waterproof design, we ensure the effectiveness of waterproofing. Our choice of reactive adhesive membranes that react with concrete for sealing layers guarantees a sealed and leak-proof waterproofing solution, significantly enhancing safety and reliability.
2. The combination of flexibility and rigidity; the waterproofing layer must match the base layer's characteristics.
3. Outsourced waterproofing achieves a flexible, sealed "effect": protecting the safety of concrete structures from water damage侵蚀.
4. Flexibility: Dual creep resistance to cracking, preventing rigid "cracking" leakage.
5. Sealing: Effective sealing treatments have been applied to roof junctions such as cracks, wall corner roots, drainage pipes, etc., using matching junction waterproofing sealant; preventing "water leakage" from causing the entire system to fail.
Floor waterproofing and heat insulation construction drawing


The floor slab structure cracks and leaks due to uneven settlement caused by compaction of the foundation under additional stress. The cracks are reinforced with non-curing rubber waterproofing, which offers excellent flexibility, suitable for substrate deformation. It combats cracks with flexibility and complements the substrate through physical adsorption to form a flexible waterproof layer that bonds firmly. This eliminates stress caused by substrate changes, ensuring the flexible waterproof layer has sufficient tensile crack resistance, effectively resisting external stress damage.































