Publish Time: 2026-09-03 Origin: Site
Flame-retardant fiber materials are increasingly important in mattress, bedding, furniture and upholstery manufacturing. Manufacturers need materials that can provide suitable flame-retardant performance while maintaining a soft, flexible and stable structure.
Our CFR1633 flame retardant viscose fiber thermal bonded padding is developed for industrial applications where flame-retardant fiber padding is required. The material is manufactured using thermal bonded technology and can be customized according to different customer requirements.
CFR1633 flame retardant viscose padding is a nonwoven fiber material designed for applications where flame resistance is an important consideration.
The material uses flame-retardant viscose fiber together with other suitable fibers to create a soft and flexible padding structure.
Through thermal bonding, the fibers are consolidated into a stable nonwoven material that can be produced in different specifications for various industrial applications.
Thermal bonding is a process that uses controlled heat to bond suitable fibers together.
Compared with ordinary loose fiber filling, thermal bonded padding provides a more stable sheet structure and can be customized for different production requirements.
Key specifications can be adjusted according to the customer's application, including:
✔ Thickness
✔ Width
✔ Density
✔ Fiber composition
✔ Roll length
✔ Sheet size
This makes thermal bonded padding a flexible material solution for manufacturers.
Mattress manufacturers often require specialized flame-retardant materials as part of their overall product construction.
Our flame retardant viscose fiber padding can be used as a functional fiber layer in:
Mattresses
Mattress toppers
Bedding products
Upholstered bedding
Other customized sleep products
The material can be supplied in rolls or sheets according to the customer's manufacturing process.
In addition to mattresses, flame-retardant fiber padding can also be used in furniture and upholstery applications.
Typical applications include:
️ Sofas
Upholstered furniture
☁️ Cushions
Automotive upholstery
Home textile products
Its soft and flexible structure makes it suitable for products that require both padding and specific flame-retardant material characteristics.
Viscose fiber provides a soft and lightweight fiber structure and can be incorporated into customized flame-retardant nonwoven materials.
Combined with thermal bonding technology, the material can offer a useful balance of:
Flame-retardant performance
☁️ Soft and flexible structure
⚙️ Stable nonwoven construction
Customizable specifications
Suitable for industrial production
Different manufacturers have different requirements.
We support customized production based on your product design, application and manufacturing process.
Customization can include:
Custom thickness
Custom width
Custom density
Fiber composition
Roll or sheet format
Packaging requirements
OEM specifications
If you already have a sample or technical specification, you can send it to our team for evaluation.
We are a professional fiber products manufacturer providing customized nonwoven and fiber material solutions for B2B customers.
Our factory supports:
✅ OEM / ODM
✅ Customized specifications
✅ Bulk production
✅ Sample development
✅ Long-term supply
✅ Factory-direct pricing
We work with mattress manufacturers, furniture manufacturers, bedding suppliers, upholstery companies and other industrial buyers.
If you are looking for CFR1633 flame retardant viscose fiber thermal bonded padding, we can develop a suitable solution based on your application and technical requirements.
Send us your required size, thickness, application and estimated quantity.
Our team will evaluate your requirements and provide a customized recommendation and quotation.
Note: CFR1633 compliance depends on the complete finished-product construction and applicable testing requirements. The final product should be tested according to the relevant requirements.
Home Products About Us Workshop Application Service News Contact Us Privacy Policy