SCHÜCO LivingSlide 82 (Lift/Slide door)

PVCu lift and slide doors (HS) are increasingly popular element on the terraces of family houses, and also offices, or cafes. They bring space savings, serve for visual interconnection of the interior and the surroundings, and provide stylish look. The HS portal will allow you to extend the interior by the garden or terrace when simply sliding a glazed leaf to the side. 

Schüco LivingSlide profile system is designed on the basis of Schüco LivIng 82 while the leaves have basic system depth of 82 mm and frame 194 mm. Excellent thermal and insulation properties make this HS-portal a perfect choice for low-energy and passive buildings. It represents an ideal combination of housing comfort and energy savings.

Brief description:

  • Excellent thermal insulation up to the level of passive buildings
  • Quiet sliding leaf, and easy and comfortable handling
  • Barrier-free passage
  • Resistance to burglary up to class RC2
  • A wide range of designs regarding dimensions and the colour solutions

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Additional information (brochures for download):

Technical Data

Properties Standard Value / class
Depth of outer frame ----- 194 mm
Depth of the sash ----- 82 mm
Minimum front width frame/sash ----- 180 mm
Minimum front width sash/sash middle ----- 106 mm
Opening ----- Lift and slide
Maximum glazing thickness ----- 52 mm
Maximum weight of the sash ----- 400 kg
Suitability for passive houses ----- No
Colour finish ----- Lamination, aluminum cladding
Resistance to wind load EN 12210 Class B3/C3
Wateproofness EN 12208 Class 8A
Air permeability EN 12207 Class 4
Sound reduction Rw,p EN ISO 140-3 up to 42 dB
Resistance to burglary EN 1627 up to RC2
Operating forces EN 13115 Class 1
Heat transfer coefficient of frame UF EN ISO 10077-2 1.31) W/m2K
Heat transfer coefficient of doors UD EN ISO 10077-1 0.812) W/m2K

1) the front width of the frame and leaf 174 mm
2) when the dimension of the door is 3000 x 2300 mm, glazing Ug = 0.6 W/m2K and plastic Swisspacer Ultimate spacer refers to (Ψ = 0.03 W/mK)