Abstract:
The invention relates to a method for permanently joining an essentially flat support material to a substrate, in particular for laminating a plastic film to a metal substrate, wherein the at least essentially flat support material and/or the substrate is/are initially impinged upon by a connecting agent, preferably, an adhesive and subsequently the support material and the substrate are brought together in such a manner that the support material is permanently connected to the substrate, in particular, the plastic film is laminated on the metal substrate, and optionally, measuring and/or shaping of the thus formed composite material is carried out.
Abstract:
The invention relates to a method for permanently joining an essentially flat support material to a substrate, in particular for laminating a plastic film to a metal substrate, wherein the at least essentially flat support material and/or the substrate is/are initially impinged upon by a connecting agent, preferably, an adhesive and subsequently the support material and the substrate are brought together in such a manner that the support material is permanently connected to the substrate, in particular, the plastic film is laminated on the metal substrate, and optionally, measuring and/or shaping of the thus formed composite material is carried out.
Abstract:
The invention relates to a method for improving the firmness and/or stability of planting substrates comprising fine-particle peat by using a binder composition comprising a dispersion based adhesive. The invention further relates to a binder composition for improving the stability of planting substrates as well as to planting substrates.
Abstract:
A process for preparation of a reactive single component granulate, especially a single component coating- and/or adhesive granulate comprises: (a) preparation of a mixture containing at least one isocyanate reactive starting polymer and at least one di- and/or polyisocyanate; and (b) preparation of the granulate from the mixture. A process for preparation of a reactive single component granulate, especially a single component coating- and/or adhesive granulate by the steps: (a) preparation of a mixture containing at least one isocyanate reactive starting polymer and at least one di- and/or polyisocyanate, preferably by melting the mixture components and/or warming to a viscous state or a state where flow is possible; (b) preparation of the granulate from the mixture is new. An independent claim is also included for a reactive single component granulate, especially a single component coating and/or adhesive granulate obtained as above.
Abstract:
Adhesive system (A) based on an adhesive dispersion (B) in which nanoparticles of an inorganic filler (C) are dispersed. Independent claims are also included for the following: (1) adhesive system (A1), comprising a solvent-based adhesive dispersion (B1), preferably liquid at 25[deg]C and atmospheric pressure and especially a one-component formulation, where (A1) includes a solvent and at least one of polymer, resin and/or wax, in which (a) the solid content is at least 70wt.% and/or (b) an inorganic filler, particularly as nanoparticles, is present in a phase-stable dispersion; and (2) glued substrates, especially upholstered furniture or matresses, that contain (A) or (A1).
Abstract:
Adhesive system (I) (on the basis of a solvent-based reactive adhesive formulation), comprises at least a solvent in addition and further comprises adhesive components of isocyanate-reactive organic polymers (A1) with isocyanates (A2); and/or isocyanate (NCO) terminated polyurethane prepolymers (B1) (where the solid material amounts to 70% related to (I)).