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Polyurethane systems

Polyurethane systems are complex reaction systems in which the controlled reaction of isocyanates with polyols leads to the formation of materials with precisely designed structures and properties. The appropriate selection of raw materials and reaction additives allows the reaction process, polymer architecture and physicochemical properties of the resulting materials to be controlled. These systems enable the repeatable production of foams, elastomers and CASE materials with strictly controlled parameters.

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Ekoprodur® 4540W Polyurethane system Ready to use EKOPRODUR 4540W is an aqueous, two-component system for producing polyurethane foams intended for thermal insulation of boilers, water heaters and tanks on periodic...
Composition
Mixtures
Ekoprodur® 4540W Polyurethane system
Ekoprodur®OP2/S Polyurethane system Ready to use EKOPRODUR OP2 / S is a two-component polyurethane system (PUR) consisting of a polyol mixture (component A) and an isocyanate part (component B). Each component...
Composition
Mixtures
Ekoprodur®OP2/S Polyurethane system
Ekoprodur®3050 W B2 Polyurethane system Ready to use EKOPRODUR 3050 W B2 is a two-compound system for production of polyurethane foam on a periodic line (discontinuous). This system is intended for the production of...
Composition
Polyether polyols, Other
Ekoprodur®3050 W B2 Polyurethane system
Ekoprodur®FC H004 Polyurethane system Ready to use EKOPRODUR FC H004 is a two-component polyurethane casting system used to produce rigid foam to be used on continuous lines. EKOPRODUR FC H004 is designed for the...
Composition
Other, Polyether polyols
Ekoprodur®FC H004 Polyurethane system
Ekoprodur®FC H004-S Polyurethane system Ready to use EKOPRODUR FC H004-S is a two-component polyurethane casting system used to produce rigid foam to be used on continuous lines. EKOPRODUR FC H004-S is designed for...
Composition
Other, Polyether polyols
Ekoprodur®FC H004-S Polyurethane system
Ekoprodur®S0542 Polyurethane system Ready to use EKOPRODUR S0540 D is a polyurethane system that consists of a polyol part (POLY component) and an isocyanate part (ISO component). The polyol mixture is an oily...
Composition
Polyester polyols, Polyether polyols
Ekoprodur®S0542 Polyurethane system
Ekoprodur® WH4005 BLACK Ready to use Ekoprodur® WH4005 BLACK is a two-component polyurethane system designed to produce rigid closed-cell foam. According to DIN EN 13501-1 reaction to fire classification...
Composition
Polyether polyols, Other
Ekoprodur® WH4005 BLACK
Ekoproflex A15-46 Ready to use Ekoproflex A15-46 it is a two-component (A+B) system for producing polyurethane foams of a high resilience (HR). They are mainly used in the automotive industry...
Composition
Polyether polyols, Mixtures, Other
Ekoproflex A15-46
Ekoproflex W-25 Ready to use EKOPROFLEX W-25 is a two-component polyurethane (PU, PUR) system used for production of viscoelastic foam, it can 'memorize' shapes. It is designed mainly for the...
Composition
Mixtures
Ekoproflex W-25
Ekoproflex A15-46 CR5 Ready to use Ekoproflex A15-46 CR5 is a two-component polyurethane system designed for production of non-flammable high-resilience (HR) foams. They are mainly used in the furniture...
Composition
Mixtures, Polyether polyols, Other
Ekoproflex A15-46 CR5
EUROPIR® STANDARD thermal insulation board for ceilings, foundations and roofs Ready to use EUROPIR® panels are dedicated to insulating floors and ceilings as well as attics and flat roofs, and are available in 3 basic sizes: 1000 x 500 mm; 1000 x 1000...
Composition
Polyether polyols, Other
EUROPIR® STANDARD thermal insulation board for ceilings, foundations and roofs
EUROPIR®DUAL thermal insulation board Ready to use EUROPIR® DUAL – a panel made of rigid PIR foam without cladding, intended for insulating façades finished with clinker tiles. A plate with dimensions of 900 x 578...
Composition
Polyether polyols, Other
EUROPIR®DUAL thermal insulation board
EUROPIR®ETICS thermal insulation board Ready to use EUROPIR® ETICS – a panel made of rigid PIR foam without cladding, intended for insulating the walls of residential buildings and public utility buildings. The panel...
Composition
Polyether polyols, Other
EUROPIR®ETICS thermal insulation board
EUROPIR®SL slope thermal insulation board Ready to use EUROPIR® SL are gradient panels for insulation of terraces and balconies as well as flat roofs. They are available as modular PIR panels without cladding, with a...
Composition
Polyether polyols, Other
EUROPIR®SL slope thermal insulation board
Promopur Un Ready to use PROMOPUR Un is a product from the group of two-component polyurethane adhesive intended for use in the underground excavations, mining and construction. The 'Un'...
Composition
Mixtures
Promopur Un
RokaPur PR2K 100 (Polyurethane adhesive) Ready to use RokaPur PR2K 100 is a mixture of polyether polyols with additives, developed as the polyol component (component A) in two-component polyurethane systems. It is characterized...
Composition
Prepolymers, 2K Adhesives
RokaPur PR2K 100 (Polyurethane adhesive)
Sil-Pur 80 Ready to use SIL-PUR 80 is a highly specialized two-component organic-mineral adhesive, which is designed for use in underground mines with and without methane presence. It may...
Composition
Mixtures
Sil-Pur 80
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Chemistry of polyurethane systems

From a chemical point of view, a polyurethane system is a set of compatible components in which the reaction of isocyanates with polyols leads to the formation of a cross-linked or linear polyurethane structure. The composition and proportions of the individual raw materials determine the kinetics of the reaction, the degree of cross-linking and the morphology of the final material.

The isocyanates used in polyurethane systems include both aromatic ones, e.g. TDI, MDI, which promote greater thermal and mechanical strength of materials, as well as aliphatic and cycloaliphatic ones, which affect elasticity and other parameters of the final properties.

Structure of Polyurethane Systems

Chemically, polyurethane systems consist of at least two basic components: an isocyanate part (component A) and a polyol part (component B), which are mixed in strictly defined stoichiometric proportions. Component A contains compounds with active isocyanate groups (–NCO), while component B is a mixture of polyether or polyester polyols and additives that regulate the reaction and the structure of the resulting polymer.

Formation of polyurethane systems

The key stage is the addition reaction of nucleophilic hydroxyl groups
(–OH) of the polyol to the isocyanate groups, leading to the formation of urethane bonds (–NH–CO–O–). This reaction is exothermic and can occur in parallel with other processes, such as the reaction of isocyanates with water, resulting in the release of carbon dioxide and the formation of the cellular structure of polyurethane foams.

The effect of component B on polyurethane systems

The polyol component of the system may additionally contain:

  • amine or organometallic catalysts, which affect the rate of gelation and foaming,
  • silicone surfactants stabilising the cell structure,
  • physical or chemical foaming agents,
  • additives modifying the mechanical, thermal and chemical properties of the final material.

The selection of these components allows control of the density, hardness, elasticity, chemical resistance and thermal stability of the resulting polyurethane.

Expected effect

Depending on the chemical composition and functionality of the raw materials used, polyurethane systems can lead to the formation of foamed, open- or closed-cell materials or solid structures such as elastomers, coatings, adhesives and sealants classified as CASE. Thus, polyurethane systems are a universal tool in materials engineering, enabling the design of a wide range of materials through controlled chemical synthesis.