摘要:
The present invention concerns a vapor retarder for indoor sealing of buildings, especially roof structures, with at least one barrier layer (1) retarding passage of moisture vapor, especially water vapor, with the vapor retarder also having an electromagnetic-field- (EMF)- shielding layer (EMF layer) (2).
摘要:
The present invention relates to a coated mineral wool product such as an acoustically transparent ceiling panel or a facade insulation board having on at least one side a layer on the basis of a siliceous material, wherein the layer contains at least one organic plastic, and a fiber mat (3) is provided between coating (2) and surface of the mineral wool product (1).
摘要:
This invention relates to a mineral wool product (2) having a mineral wool body which is preferably shaped as a rectangular parallelepiped and which contains binder and mineral wool fibres, and has a surface layer which delimits the mineral wool body and contains binder and mineral wool fibres, as well as a method and a device for producing such mineral wool products (2), the mineral wool product (2) being provided in a surface zone at least on one side of the mineral wool body surface, directly in and/or under the surface layer (22) and/or by means of imparting a structure to the surface layer (22), with a mark (20), the mark (20) being introduced into the surface zone of the mineral wool body before and/or during complete curing of the binder, so that when the mineral fibres crosslink under the influence of the binder, the mark is connected firmly with the mineral wool body.
摘要:
The present invention concerns a vapor retarder for indoor sealing of buildings, especially roof structures, with at least one barrier layer (1) retarding passage of moisture vapor, especially water vapor, with the vapor retarder also having an electromagnetic-field- (EMF)- shielding layer (EMF layer) (2).
摘要:
The invention relates to a large bale made from insulating material products, especially mineral wool products (4) in the form of slabs or rolls or similar, consisting of least two piles (1, 2) of such mineral wool products, whereby each pile is bound with a film (6), which surrounds the pile in the form of an envelope (5). Two main adjacent areas of the pile are joined by a film applied to the surfaces thereof wherein eye-shaped grip loops (8, 9) are formed and at least one grip loop is disposed respectively on one pile.
摘要:
In a transport unit (1) for rock wool products (2) arranged in a stack, the stack has on its principal surfaces receptacles (5) for handling by mechanical means of transport, such as fork-lift trucks, lifting equipment and the like.
摘要:
The present invention relates to a façade insulating board (4) for insulating exterior façades (2) of building, particularly as a component of a heat insulating composite system (1), which is made of bound mineral wool and meets a rated value of heat conductivity λ
摘要:
The present invention relates to a façade insulating board (4) for insulating exterior façades (2) of building, particularly as a component of a heat insulating composite system (1), which is made of bound mineral wool and meets a rated value of heat conductivity λ
摘要:
The invention relates to an insulating material element (1) made of mineral wool, a process for its production and use of the same for insulating surfaces, in particular for the over-rafter insulation of roofs (3), on facades, on ceilings and the like. The insulating material element (1) is designed as a one-piece panel element (10) with at least one insulating part (11) of high heat insulating capacity and at least one load-dissipating fillet (12), which likewise consist of mineral wool and has an increased compressive strength in comparison with the mineral wool material of the insulating part (11). The fillet (12) is permanently bonded to the latter for forming an integral component of the panel element (10). Consequently, the invention provides an insulating material element (1) of which the body exclusively consist of bonded mineral wool and which, in spite of an increased compressive strength in comparison with conventional heat insulating elements, has a good heat insulating capacity. At the same time, on account of the low weight, it can be easily manipulated by one person and can be produced inexpensively.