Lightweight Foam Concrete
₹5,500.0
Product Details:
Minimum Order Quantity | 10 Cubic Meter |
Color | Gray |
Packaging Type | slerry |
Grade Standard | Mobile service |
Packaging Size | customized |
Usage/Application | Construction |
APPLICATION AREAS
Sunken filling areas.
Inverted beams filling areas.
Portico slabs fillingRaise roof levels
- Loose fill insulation, loft, cavity, acoustic filling
- Light weight concrete for weathering course areas
- trench backfill
- precast blocks
- precast wall elements / panels
- cast-in-situ / cast-in-place walls
- insulating compensation laying
- insulation floor screeds
- insulation roof screeds
- trench reinstatement
- sub-base in highways
- filling of hollow blocks
- prefabricated insulation boards
- Description
- Additional information
- Reviews (0)
- Q & A
- Sustainability Remark
- More Offers
- Store Policies
- Inquiries
Color | GREY |
---|
You must be logged in to post a review.
Q & A
Renewable Material Cellular Lightweight Concrete (CLC) is a type of concrete that incorporates renewable materials and is known for its reduced density compared to traditional concrete. While I don't have information on specific advancements or developments in CLC after my knowledge cutoff in September 2021, I can provide some general insights into the sustainability aspects of renewable material CLC.
Renewable Materials: CLC can utilize renewable materials such as agricultural wastes, fly ash, and other industrial byproducts as partial replacements for conventional aggregates and cement. By using these materials, CLC reduces the reliance on non-renewable resources and promotes resource efficiency.
Energy Efficiency: The manufacturing process of CLC typically requires less energy compared to conventional concrete due to the lower density and reduced use of cement. This aspect contributes to the overall sustainability of CLC by reducing greenhouse gas emissions associated with energy consumption.
Thermal Insulation: CLC has good thermal insulation properties, which can contribute to energy savings in buildings. Improved thermal insulation helps reduce the need for excessive heating or cooling, leading to lower energy consumption and environmental impact over the lifecycle of the structure.
Reduced Carbon Footprint: CLC can potentially have a lower carbon footprint compared to traditional concrete due to the reduced use of cement, which is a significant source of carbon dioxide emissions during production. The utilization of renewable materials and the lower density of CLC further contribute to its potential environmental benefits.
However, it's important to note that the overall sustainability of CLC depends on various factors, including the specific materials used, manufacturing processes, transportation, and the end-of-life considerations. Life cycle assessments (LCAs) can provide a more detailed analysis of the environmental impacts and sustainability performance of CLC.
As advancements and research continue in the field of sustainable construction materials, it's possible that new developments and technologies have emerged since my knowledge cutoff. It's always advisable to consult the latest research and industry experts to obtain the most up-to-date and accurate information regarding the sustainability of renewable material CLC.
General Inquiries
There are no inquiries yet.
Reviews
There are no reviews yet.