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AES Fiber Module 1200°C | Heat Treatment Furnace Lining Insulation Project | Norway | CCEWOOL
Project Overview
Cooperation Years: 2 years
Destination: Norway
Order Volume: 1 × 40HC Container
Product Details
Product 1:
1200°C AES Fiber Module | CCEWOOL
Size: 175 × 300 × 300 mm
Density: 190 kg/m3
Packaging: Carton Box
Product 2:
1200°C AES Fiber Blanket | CCEWOOL
Size: 25 × 1220 × 7320 mm
Density: 128 kg/m3
Packaging: Carton Box
Recently, CCEWOOL successfully shipped 1 × 40HC container of 1200°C AES fiber module to a customer in Norway with whom we have cooperated for 2 years. In addition to this batch of AES fiber module, the customer also purchased 1200°C AES fiber blanket for supporting insulation applications in high-temperature systems.
In this purchase, the AES fiber module is mainly used for the main insulation layer of the furnace lining, while the AES fiber blanket is better suited for backup layers, transition layers, and localized reinforcement areas.
Project Challenges: Not Only Insulation, but Also Structural Adaptability and Regulatory Management
Industrial furnace lining and high-temperature insulation system projects of this kind usually involve more than a single issue. Instead, several practical requirements often exist at the same time:
Different furnace types and installation areas vary significantly in structure, and standard module dimensions cannot always be applied directly
Furnace corners, connection zones, and localized irregular areas require better module arrangement and joint compression performance
The project requires not only basic temperature resistance, but also products better aligned with health, safety, and long-term product management requirements
Modules and backup materials need to form a more complete system solution, rather than being used as isolated single products
For this reason, what the customer truly needs is not an ordinary insulation module, but a high-temperature insulation solution capable of solving installation adaptability, product compliance, and system integration at the same time.

Fabrication-Customized Specifications Better Match Practical Engineering Structures
For many industrial furnace and high-temperature equipment projects, standard module dimensions cannot always fully match all installation areas. Especially in furnace corners, connection zones, localized irregular structures, or areas with specific layout requirements, whether module dimensions can be adjusted according to project needs often directly affects installation efficiency, layout performance, and overall sealing quality.
CCEWOOL AES fiber module can provide Fabrication-customized specification support according to customer requirements, allowing the product to better match specific engineering structures and downstream installation needs. The module dimensions shipped to this Norwegian customer were selected on the basis of actual project application requirements.
This customization capability mainly helps customers solve several practical issues:
Better suitability for the installation requirements of different furnace and equipment structures
Reduced on-site secondary adjustment and cutting work
Improved module arrangement efficiency and joint compression performance
Better support for maintaining overall lining sealing performance and installation consistency
For this reason, the AES fiber module supplied by CCEWOOL is not merely a standardized insulation module, but an engineering-oriented product that can be matched to actual application requirements through Fabrication support.

AES Raw Material System Better Aligned with European Health Regulations and Product Management Requirements
In European industrial insulation projects, customers are no longer focused only on the temperature resistance of module products. Increasingly, they also pay attention to whether the product is better aligned with local requirements for health, safety, environmental protection, and long-term product management. For this reason, CCEWOOL AES fiber module continues to receive strong attention in industrial furnace lining and high-temperature insulation systems.
CCEWOOL AES fiber module is made from an alkaline earth silicate (AES) raw material system and belongs to the category of low biopersistent fiber module products. The product complies with the relevant requirements of the Globally Harmonized System of Classification and Labelling of Chemicals (GHS) and does not require a carcinogenic warning label. At the same time, its solubility and safety have been certified by the Fraunhofer Institute in Germany, and the International Agency for Research on Cancer (IARC) has also classified it as non-carcinogenic.
For markets such as Norway, where project management standards, equipment reliability, and material application compatibility are given greater importance, CCEWOOL AES fiber module is not only a soluble fiber module product, but also a high-temperature insulation solution better aligned with the application trends of modern European industrial projects.

Long-Term Cooperation Built on Product Adaptability and Stable Supply Support
Over the past 2 years of cooperation with this Norwegian customer, CCEWOOL has continuously supplied stable high-temperature insulation products. The customer commented:
"The AES fiber module supplied by CCEWOOL has remained stable in our project applications. The module specifications match our installation requirements better, and they can also form a complete package together with AES fiber blanket, which makes our project execution more efficient. For us, stable product quality, good specification adaptability, and reliable supply support are the most important foundations for continued cooperation."
In industrial furnace lining and high-temperature insulation system projects in Norway like this, the customer's challenge is never limited to selecting a single product. Instead, it involves the combined requirements of structural adaptability, regulatory compliance, system integration, and long-term supply stability.
CCEWOOL 1200°C AES fiber module not only supports customized specification solutions that are better aligned with actual structures, but also adopts an AES raw material system that is more in line with modern project application trends, while forming a complete package together with AES fiber blanket. For customers who need to balance structural adaptability, regulatory requirements, and long-term supply stability, this kind of low biopersistent fiber module clearly offers stronger practical value.
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