
Allicdata Part #: | CLE2P-ND |
Manufacturer Part#: |
CLE2P |
Price: | $ 48.51 |
Product Category: | Sensors, Transducers |
Manufacturer: | Carlo Gavazzi Inc. |
Short Description: | ELECTRODE 2000 MM EXTENDED |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | $ 44.10000 |
Series: | -- |
Part Status: | Active |
Accessory Type: | Electrodes |
For Use With/Related Products: | CLH Series |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
.CLE2P, also known as Cellular Lightweight Concrete Enhanced Epoxy Resin Precast System, is an innovative construction system that utilizes advanced material engineering technology to deliver significant improvements in building performance, durability, and environmental sustainability. With its unique combination of strength and flexibility, CLE2P has become a popular alternative to traditional masonry and concrete construction.
The chief feature of CLE2P is its cellular structure, which uses a lightweight and yet highly-durable concrete that is reinforced with epoxy-resin components. This combination creates a structural material that is lightweight but incredibly strong and, thanks to the high-strength epoxy resin, extremely resistant to both physical and chemical damage.
CLE2P is most commonly used in the construction of walls, but its uses are not limited to that purpose. It can also be used in a variety of additional applications, including decorative elements such as paneling and cladding, structural columns, floor joists, beam shapes, and more. Additionally, the material is highly resistant to UV radiation, meaning it can be used outdoors with confidence. This also makes CLE2P a viable option for both decorative and functional projects where exposure to high temperatures or harsh weather conditions is of concern.
The working principle of CLE2P is based on the premise that a stronger bond is created by the precast concrete acting together with the epoxy-resin components. This allows for an enhanced distribution of forces over the entire surface area where it is applied. The combination of lightweight and yet rigid concrete plus the epoxy resin components creates an exceptionally durable structural material, that is able to withstand dynamic loads and highly corrosive environments without degradation.
Additionally, the cellular architecture of the precast components assists in controlling the flow of the concrete. This is done by channeling the flow of the liquid concrete from the outside inwards and creating a structured and long-lasting bond between the concrete and the epoxy components. This flow control assists in creating a structure that can withstand extreme compression and tension while also providing an extra level of stability when exposed to changes in temperature and humidity.
CLE2P’s unique cellular structure also helps to provide an enhanced level of insulation for building structures. The air-filled cells within the wall assemblies help to moderate the temperature and, because of the cellular structure, provide a considerable advantage in terms of sound insulation.
Finally, the epoxy resin components used in CLE2P combine exceptional strength, good adhesion properties, and excellent resistance to chemical and environmental factors. This makes CLE2P an ideal choice for applications where a strong, durable, and protective material is needed. Additionally, the epoxy-resin components can be easily and cost-effectively manipulated to create custom coatings and finishes, making CLE2P an ideal choice for applications where aesthetics and design are a top priority.
Overall, CLE2P is a cutting-edge construction material that offers significant improvements in performance, environmental sustainability, and durability. With its unique combination of strength and flexibility it is the perfect choice for a wide range of applications, from residential and commercial buildings to public works projects. Its cellular structure provides increased insulation, enhanced durability, and superior adhesion, ensuring that it will remain an important building material well into the future.
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