
Polyols
In rigid foam systems, polyether polyols, which are used in block and sheet foam production, and saturated polyester polyols, which are widely utilized in applications such as foam, footwear…
What are Polyols
In rigid foam systems, polyether polyols, which are used in block and sheet foam production, and saturated polyester polyols, which are widely utilized in applications such as foam, footwear, and elastomers, are classified based on their linear or different molecular structures.
These polyols vary in structural properties, viscosity levels, hydroxyl (OH) values, and functionality, making them suitable for various industrial applications. Selecting the right polyol ensures higher efficiency, durability, and improved product performance in manufacturing processes.
Data sheet and sample
The technical data sheet and safety data sheet for this system are shared on request.
These polyols vary in structural properties, viscosity levels, hydroxyl (OH) values, and functionality, making them suitable for various industrial applications. Selecting the right polyol ensures higher efficiency, durability, and improved product performance in manufacturing processes.
What it delivers
Diverse chemical structures
Available in different formulations to meet specific application needs.
Viscosity variability
Different viscosity levels provide ease of processing and application.
Varied OH values
Hydroxyl values can be customized to optimize performance.
Sorbitol
Provides high thermal resistance, making it ideal for insulation applications.
Amine
High chemical stability and reactivity make it suitable for specialized foam systems.
Mannich
Preferred for applications requiring high hardness and mechanical strength.
Glycerol
A multifunctional structure that is utilized in various polyurethane systems.
Different structural properties
Custom formulations for diverse application needs.
Polyester Polyols
Saturated polyester polyols are widely used in foam, footwear, elastomers, and various industrial applications. Depending on their molecular structure, they can be classified as linear or branched polyols. These polyols contribute significantly to product durability, flexibility, and resilience, making them an essential component in high-performance applications.
Saturated polyester polyols are particularly preferred in industries requiring high strength and elasticity, such as footwear soles, elastomers, and foam production.
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Diverse chemical structures
Available in different formulations to meet specific application needs.
Viscosity variability
Different viscosity levels provide ease of processing and application.
Varied OH values
Hydroxyl values can be customized to optimize performance.
Polyether Polyols
Polyether polyols are widely used in applications such as floor coatings, OCF (One-Component Foam), rigid foam systems, and block and sheet foam production. These polyols are categorized based on their initiators, each providing unique benefits in different industrial applications.
Polyether polyols are known for their high strength, flexibility, and long-lasting performance, making them essential components in a wide range of industrial and commercial applications.
Sorbitol
Provides high thermal resistance, making it ideal for insulation applications.
Amine
High chemical stability and reactivity make it suitable for specialized foam systems.
Mannich
Preferred for applications requiring high hardness and mechanical strength.
Glycerol
A multifunctional structure that is utilized in various polyurethane systems.
Different structural properties
Custom formulations for diverse application needs.
Varied OH values
Hydroxyl values tailored to meet specific application requirements.
Where it is used
Different functionality levels
Offer tailored solutions for various industrial applications.
Sucrose
Used in rigid foam production due to its carbohydrate-based structure.
Bromine
Enhances flame retardancy, making it ideal for fire-resistant foam production.
Soy-Based
A plant-based alternative, used in eco-friendly polyurethane systems.
Viscosity variability
Flow properties adapted to different production processes.





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