External Thermal Insulation Composite System (ETICS) with mineral wool

Kontaktní zateplení lze účinně využít jak u novostaveb, tak u rekonstrukcí. Doplněním kvalitní tepelné izolace z minerální vlny či EPS ke stávající stěně je dosáhnuto mimořádně účinné konstrukce se souvislou tepelnou izolací. Kontaktní zateplení lze provést z vnější i vnitřní strany stěny, avšak zateplení z vnitřní strany je technicky náročnější a vyžaduje důkladnou projektovou přípravu.

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9 results

ISOVER TF

Lambda λD = 0,038 (W·m-1·K-1)

Insulating slabs made of ISOVER mineral wool with longitudinal fibres. The production is based on defibring method of the minerals composition melt and additional additives and ingredients. The mineral fibres produced are processed into the final slab shape on the production line. The entire fibre surface is hydrophobic. The slabs in the construction have to be protected suitably (layers of the contact wall insulation system).

ISOVER Twinner - rohové desky

Lambda λ = 0,032

Twinner is a sandwich thermal and noise insulation board made of ISOVER EPS Greywall graphite insulation core with enhanced insulating effect and a 30 mmthick ISOVER TF Profi cover layer. Bonding is achieved using an industrial polyurethane adhesive that ensures high tensile and shear strength and enables efficient production of 100–300 mm-thick insulation boards for energy-efficient buildings. Isover Twinner insulation boards are manufactured using the latest CFC-/HCFC (also known as Freon) -free technologies. The EPS insulating component has a self-extinguishing design with improved fire safety.

ISOVER Twinner - zakládací desky

Lambda λD = 0,032 (W·m-1·K-1)

Twinner is a sandwich thermal and noise insulation board made of ISOVER EPS Greywall graphite insulation core with enhanced insulating effect and a 30 mmthick ISOVER TF Profi cover layer. Bonding is achieved using an industrial polyurethane adhesive that ensures high tensile and shear strength and enables efficient production of 100–300 mm-thick insulation boards for energy-efficient buildings. Isover Twinner insulation boards are manufactured using the latest CFC-/HCFC (also known as Freon) -free technologies. The EPS insulating component has a self-extinguishing design with improved fire safety.

ISOVER Twinner - základní desky

Lambda λD = 0,032 (W·m-1·K-1)

TWINNER is a sandwich thermal and noise insulation board made of Isover EPS GreyWall graphite insulation core with enhanced insulating effect and a 30 mmthick ISOVER TF Profi cover layer. Bonding is achieved using an industrial polyurethane adhesive that ensures high tensile and shear strength and enables efficient production of 100–300 mm-thick insulation boards for energy-efficient buildings. ISOVER TWINNER insulation boards are manufactured using the latest CFC-/HCFC (also known as Freon) -free technologies. The EPS insulating component has a self-extinguishing design with improved fire safety.

ISOVER NF 333

Lambda λD = 0,041 (W·m-1·K-1)

Insulating slabs made of ISOVER mineral wool with perpendicular fibres. The production is based on defibring method of the minerals composition melt and additional additives and ingredients. The mineral fibres produced are processed into the final slab shape on the production line. The entire fibre surface is hydrophobic and the fibres are perpendicular to the wall plane. The slabs in the construction have to be protected suitably (layers of the contact wall insulation system).

ISOVER TF Thermo

Lambda λD = 0,035 (W·m-1·K-1)

Insulating slabs made of ISOVER mineral wool with longitudinal fibres. The production is based on defibring method of the minerals composition melt and additional additives and ingredients. The mineral fibres produced are processed into the final slab shape on the production line. The entire fibre surface is hydrophobic and have longitudinal orientation. The slabs in the construction have to be protected suitably (layers of the contact wall insulation system).

ISOVER Top V

Lambda λD = 0,040 (W·m-1·K-1)

Insulating slabs with bevelled edges are made of ISOVER mineral wool with perpendicular fibres. The production is based on defibring method of the minerals composition melt and additional additives and ingredients. The mineral fibres produced are processed into the final slab shape on the production line and the edges are then trimmed by bevelling of 15 mm at a 45° angle. The entire fibre surface is hydrophobic and the fibres are perpendicular to the wall plane.