US20260071392A1
2026-03-12
18/827,748
2024-09-07
Smart Summary: A paver pedestal system is used for creating elevated outdoor floors, like those found on rooftops and plazas. In areas with strong winds, these systems can be at risk of being blown away. To prevent this, they include special features like mechanical fasteners and interlocking pavers that keep everything securely in place. Sometimes, adhesives are also used to add extra stability. These improvements help ensure safety and durability while still being easy to install and visually appealing. π TL;DR
A paver pedestal system is a versatile solution for elevated outdoor flooring, commonly used in rooftop terraces, plazas, and green roofs. However, wind uplift poses a significant threat to the stability of such systems, especially in high-wind areas. To mitigate this risk, paver pedestal systems are designed with enhanced features, such as mechanical fasteners, perimeter restraints, and interlocking pavers. These features ensure that pavers remain securely in place during strong winds. Additionally adhesive bonding methods are sometimes employed to further stabilize the structure. By combining these design elements, modern paver pedestal systems offer effective wind uplift protection while maintaining easy installation, drainage efficiency, and aesthetic appeal. This approach not only safeguards against potential damage but also extends the lifespan of rooftop surfaces, ensuring durability and safety in varying environmental conditions.
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E01C5/001 » CPC main
Pavings made of prefabricated single units on prefabricated supporting structures or prefabricated foundation elements except coverings made of layers of similar elements
E04F15/0215 » CPC further
Flooring; Flooring or floor layers composed of a number of similar elements specially adapted for being adhesively fixed to an underlayer; Fastening means therefor; Fixing by means of plastics materials hardening after application
E01C5/00 IPC
Pavings made of prefabricated single units
E04F15/02 IPC
Flooring Flooring or floor layers composed of a number of similar elements
Paver pedestal systems are widely used in modern construction to create level surfaces on sloped rooftops, terraces, and outdoor plazas. These systems consist of adjustable pedestals that support paving slabs, allowing for easy installation and maintenance, while providing space for drainage, electrical wiring, and other utilities. Initially, paver pedestal systems were developed to address concerns about water drainage and weight distribution on rooftop surfaces, offering flexibility and a durable finish.
However, one of the major challenges faced by these systems is wind uplift, a phenomenon where strong winds create upward pressure on pavers, potentially dislodging or damaging them. This issue is particularly prevalent in high-wind areas, coastal zones, and buildings in exposed locations. In response, manufacturers have developed various solutions to mitigate wind uplift risks, including the use of mechanical fasteners, interlocking pavers, perimeter restraints, increased ballast, and adhesive bonding techniques. These innovations ensure the system's stability, even under extreme weather conditions.
Paver pedestal systems are used to create level, elevated surfaces on rooftops and terraces, offering easy installation and drainage. However, wind uplift, where strong winds can dislodge pavers, is a major concern, particularly in high-wind areas. To address this, modern paver pedestal systems are designed with features like mechanical fasteners, interlocking pavers, perimeter restraints, and additional ballast or adhesives. These measures ensure the stability and security of the pavers, protecting them from wind damage while maintaining functionality and aesthetic appeal. This approach enhances both safety and the longevity of the installation.
A paver pedestal is used to avoid uplifting of pavers due to heavy air flow, it consists of a pedestal which holds the paver at its place so it didn't uplift due to heavy air flow, a paver spacer which gives spaces between tiles so that pedestal can be adjusted there, it have plates which are placed at the top of pedestal, some adhesive material us used for adhesion of all the material.
1 of FIG. 1 shows Adjustable pedestal that holds paver/tiles on roof/floor;
2 of FIG. 1 shows Paver spacers that creates spaces between tiles/paver;
4 of FIG. 1 shows plates that is placed on top of pedestal;
2 of FIG. 2 shows Paver spacers that creates spaces between tiles/paver;
4 of FIG. 2 shows plates that is placed on top of pedestal;
1 of FIG. 3 shows Adjustable pedestal that holds paver/tiles on roof/floor;
2 of FIG. 3 shows Paver spacers that creates spaces between tiles/paver;
4 of FIG. 3 shows plates that is placed on top of pedestal;
1 of FIG. 4 shows Adjustable pedestal that holds paver/tiles on roof/floor;
2 of FIG. 4 shows Paver spacers that creates spaces eetween tiles/paver;
3 of FIG. 4 showsAdhesive on the plate that will stick to the paver/tile for wind uplift resistance;
4 of FIG. 4 shows plates that is placed on top of pedestal
1 of FIG. 5 shows Adjustable pedestal that holds paver/tiles on roof/floor;
2 of FIG. 5 shows Paver spacers that creates spaces between tiles/paver;
3 of FIG. 5 shows Adhesive on the plate that will stick to the paver/tile for wind uplift resistance
4 of FIG. 5 shows plates that is placed on top of pedestal
5 of FIG. 5 shows tile put on the adhesive material.
1. A paver pedestal consists of;
Adjustable Pedestal;
Paver Spacer;
Adhesive material and Plates.
2. Adjustable pedestal of claim 1 holds paver/tiles on roof/floor to avoid wind uplift.
3. Paver spacers of claim 1 creates spaces beetween tiles/paver.
4. Adhesive material of claim 1 will be put on the plate that will stick to the paver/tile for wind uplift resistance.
5. Plates of claim 1 are placed on top of pedestal.