Low Thermal Conductivity Silica Aerogel Heat Insulation Material

PRODUCT PARAMETERS

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Description

Overview of Low Thermal Conductivity Silica Aerogel Heat Insulation Material

Low Thermal Conductivity Silica Aerogel Heat Insulation Material is a synthetic porous ultralight material derived from a gel, in which the liquid component has been replaced with a gas. The result is a solid with extremely low density and low thermal conductivity, often nicknamed “frozen smoke.” Despite its fragile appearance, it can be engineered to be remarkably strong, holding the title of the world’s best insulating solid material.

Features of Low Thermal Conductivity Silica Aerogel Heat Insulation Material

  • World’s Lowest Thermal Conductivity: Provides unparalleled insulation performance, far superior to traditional materials.

  • Extremely Low Density: One of the lightest solid materials known to man, with a composition of up to 99.8% air.

  • High Surface Area: Possesses an incredibly large internal surface area, making it valuable for filtration and absorption applications.

  • Versatile Composition: Can be made from various materials, including silica, carbon, and metal oxides, each with unique properties.

  • Exceptional Porosity: Its nanoporous structure is responsible for its outstanding insulating capabilities.

    Aerogel coating

Low Thermal Conductivity Silica Aerogel Heat Insulation Material
Low Thermal Conductivity Silica Aerogel Heat Insulation Material

Specifications of Low Thermal Conductivity Silica Aerogel Heat Insulation Material

Low Thermal Conductivity Silica Aerogel Warmth Insulation Material

Key Specifications

This insulation product uses high-purity silica aerogel as its core. It has an extremely low thermal conductivity– normally in between 0.013 W/(m · K) and 0.018 W/ (m · K ) at area temperature. This makes it one of the most effective strong insulators available today.

The product is lightweight. Its density varies from 120 kg/m four to 200 kg/m two , depending upon the certain product grade. In spite of its lightweight, it preserves solid architectural stability under typical handling problems.

It can take care of continual operating temperature levels up to 650 ° C (1202 ° F) . Temporary exposure may reach also higher levels without significant performance loss. The material stays secure throughout a vast temperature level variety, from -200 ° C to +650 ° C

. Dampness resistance is developed right into the layout. Most versions consist of a hydrophobic treatment that wards off water and protects against absorption. This helps maintain thermal efficiency constant in moist or damp atmospheres.

The product is available in adaptable covering kind or rigid panels. Blankets are very easy to cut and twist around pipes, shutoffs, or uneven shapes. Inflexible panels fit flat surface areas like walls or tank. Requirement density options include 6 mm, 10 mm, 20 mm , and customized sizes upon request.

Fire safety is a concern. The product is non-combustible and satisfies international fire security criteria, consisting of ASTM E136 and EN 13501-1 Course A1.

Setup does not call for unique devices. Employees can use basic handwear covers and standard reducing tools. No healing time or chemical binders are needed.

With time, the material shows marginal shrinkage or settling. Its long service life decreases upkeep expenses and substitute regularity.

Note: Performance values might differ a little based upon making batch, ambient problems, and installment method. Always describe the technological data sheet for project-specific information.

Low Thermal Conductivity Silica Aerogel Heat Insulation Material
Low Thermal Conductivity Silica Aerogel Heat Insulation Material

Applications of Low Thermal Conductivity Silica Aerogel Heat Insulation Material

Applications of Reduced Thermal Conductivity Silica Aerogel Heat Insulation Material

Structure and Building and construction

Silica aerogel deals impressive thermal insulation with extremely reduced thickness. Builders utilize it in wall surfaces, roofing systems, and home windows to reduce warm loss. This maintains interior areas cozy in winter and cool in summer season. It also helps in reducing power expenses and supports eco-friendly structure goals.

Pipe and Industrial Devices

In oil, gas, and chemical plants, pipes and storage tanks have to remain at secure temperatures. Silica aerogel blankets twist around these systems to stop warmth escape or outdoors warmth from going into. The material resists dampness and stays efficient even in tight spaces where conventional insulation stops working.

Transport

Trucks, trains, and ships bring temperature-sensitive items like food or medication. Aerogel-based panels line cooled areas to keep cool problems without heavy insulation. Electric vehicles also use this product to safeguard battery packs from extreme heat or cool, improving safety and security and efficiency.

Apparel and Outdoor Equipment

Outdoor clothing and sleeping bags now consist of slim layers of silica aerogel. These layers catch body heat without adding mass. Hikers, mountain climbers, and employees in cool atmospheres stay cozy and move freely many thanks to this lightweight insulation.

Aerospace and Protection

Room objectives deal with extreme temperature level swings. Silica aerogel shields instruments and environments from intense chilly precede or heat throughout re-entry. Armed forces equipment uses it also– as an example, in protective fits and sanctuaries– where dependable, small insulation issues most.

This product works well since it blocks warm transfer better than most alternatives. It is light, sturdy, and fits into styles where space and weight are restricted. Designers and designers pick it when typical insulation can not fulfill efficiency needs.

Company Profile

We are the global leader in lightweight concrete and advanced engineered foam solutions. Known globally for its commitment to research, innovation, and applied expertise, we have been providing engineered foam solutions since the early 2012’s.

We can supply high-quality concrete admixture and foam concrete related products all over the world.

The company has a professional technical department and quality supervision department, a well-equipped laboratory, and equipped with advanced testing equipment and after-sales customer service center.

If you are interested, please feel free and contact us.

Payment

T/T, Western Union, Paypal, Credit Card etc.

Shipment

By air, by sea, by express, as customers request.

Low Thermal Conductivity Silica Aerogel Heat Insulation Material
Low Thermal Conductivity Silica Aerogel Heat Insulation Material

5 FAQs of Low Thermal Conductivity Silica Aerogel Heat Insulation Material

Frequently Asked Questions About Low Thermal Conductivity Silica Aerogel Insulation

What is silica aerogel insulation?

Silica aerogel is a lightweight solid made mostly of air. It has a sponge-like structure at the microscopic level. This material blocks heat very well. That’s why it works great as insulation in buildings, pipelines, and industrial equipment.

Why does it have such low thermal conductivity?

The secret is in its structure. Over 90% of silica aerogel is air trapped in tiny pores. These pores are so small that air molecules can’t move freely. Heat transfer slows down a lot because of this. As a result, the material keeps heat in or out very effectively.

Is it safe to handle and install?

Yes. Modern silica aerogel products come in flexible blankets or rigid panels. They do not contain harmful fibers like older insulation types. Still, wear gloves and eye protection during handling. This prevents skin irritation from fine dust particles.

How long does it last?

Silica aerogel is very stable. It resists moisture, UV light, and high temperatures. When installed correctly, it can last for decades without losing performance. It won’t settle, shrink, or degrade like some traditional insulations.

Can it be used in tight spaces?

Absolutely. One big advantage is its thin profile. Because it insulates so well, you need less thickness to get the same effect as thicker materials. This makes it perfect for places where space is limited—like walls, roofs, or pipes in crowded mechanical rooms.

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