Mounting module
Patent Information
- Application Number
- PCT/EP2026/053685
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2025-02-27
- Filing Date
- 2026-02-11
- Publication Date
- 2026-09-03
Smart Images

Figure EP2026053685_03092026_PF_FP_ABST
Abstract
Description
[0001] ii. February 2026 SILU Verwaltung AG S178466WO
[0002] Assembly module
[0003] The invention relates to a mounting module for the installation of windows, French doors or doors in building openings.
[0004] To reduce the energy consumption of buildings, they must, among other things, be airtight. In particular, joints, transitions, and gaps between different building components, such as windows and doors, must be properly sealed, as otherwise massive energy losses are likely due to incoming or outgoing air currents.
[0005] In practice, building openings intended for windows or doors have uneven and irregular surfaces, which makes sealing difficult. Furthermore, window and door frames are made of materials different from those used in structural building elements, which, due to differing adhesion properties of sealing materials, also complicates sealing.
[0006] Sealing a window or door installed in a building opening must be done manually due to quality requirements, which is very time-consuming and therefore expensive. The tradesperson has to perform several steps using different sealing materials. There is always a risk of errors during individual steps, leaving leaks, such as so-called "work gaps."
[0007] Various sealing materials for sealing windows in building openings are known from current technology. These include compression tapes, sealants, foam materials, films, membranes, and adhesive tapes. In practice, several such sealing materials must be used in combination to properly seal a window or door, which increases the number of materials required on the construction site. Furthermore, numerous work steps are necessary for sealing. This is time-consuming and costly. Building components are subject to high demands regarding their temperature resistance, weather resistance, durability, and sealing performance.
[0008] The present invention is therefore based on the objective of creating a device with which a building opening for a window, a French door or a door can be quickly sealed to be windproof and rainproof.
[0009] Furthermore, the device should be durable and allow for the quick installation of windows, French doors and doors.
[0010] Furthermore, the device should represent a marketable and competitive development.
[0011] In particular, the device should be easy to manufacture.
[0012] The device should also be adaptable to building openings of different sizes.
[0013] Furthermore, the device should be suitable for use in the construction sector.
[0014] Furthermore, the device should be largely free of solvents and, in particular, free of harmful substances. The device should be easily dismantled and separable into its individual material components. Additionally, the device should exhibit expansion behavior suitable for construction applications under temperature changes.
[0015] The device should continue to take into account the latest developments and requirements in the construction sector.
[0016] This problem is solved by an assembly module, the use of an assembly module, a set for an assembly module, or an assembly comprising the features specified in claim 1, claim 12, claim 13, and claim 16, respectively. Advantageous embodiments of the invention are specified in further claims. The multi-part assembly module is suitable for installing windows, French doors, and doors in building openings. The assembly module comprises a first L-shaped corner element and a second L-shaped corner element, which can be connected to the first L-shaped corner element via connecting means and forms an upwardly open U-shaped sub-module with the first L-shaped corner element for receiving a window or door frame.The multi-part assembly module also includes an upper module, which can be connected to the lower module via connecting elements and which forms an at least approximately rectangular continuous frame with the lower module.
[0017] The term "L-shaped" is used here to describe a component that resembles the capital letter "L". A component is considered "L-shaped" in particular if it comprises two elements, each at least partially planar and aligned at approximately right angles to each other, which are joined at their lateral ends (not in the middle). The length of the two elements, or their ratio to each other, is arbitrary. The two elements can have the same or different lengths. A planar element with an overhang at one edge is also considered "L-shaped" in this context.
[0018] The term "U-shaped" is used here to describe a component that resembles the capital letter "U". A component is considered "U-shaped" in particular if it comprises two at least partially planar elements aligned at least approximately parallel to each other, which are connected by an at least partially planar or elongated element and together form an at least approximately right-angled "U". The planar elements forming the "U" are connected in pairs at their lateral ends (not in the middle). The length of the elements or their ratio to each other is arbitrary. The elements can have the same or different lengths. A planar element with projections at both edges directed into the same half-space relative to the elongated or planar element is also considered "U-shaped" in this context.Fasteners are known from the prior art, including form-fit or force-fit fasteners such as keys, fitted screws, pins, bolts, rivets, press fits, friction fits, clamping connections, screw connections, or connecting rods. Bonded fasteners such as adhesives are also suitable. The fasteners can be integrally formed or detachably connected to the respective elements. Fasteners can also include intermediate pieces, intermediate elements, and extension elements.
[0019] In a particularly preferred embodiment, the connecting elements are designed as double-sided adhesive elements. The adhesive elements have a planar shape with two flat surfaces. Both flat surfaces are covered with an adhesive layer over a large area. Preferably, the shape of the adhesive elements is adapted to the cross-section of the elements to be bonded.
[0020] In a further preferred embodiment of the invention, the connecting means are designed as a strapping band. The strapping band encircles the frame-shaped assembly module and holds the individual elements together by means of a mechanical pretension towards the center of the frame. The strapping band is preferably made of nylon. A strapping band can be applied around the assembly module using a wrapping tool.
[0021] The connecting elements are preferably rod-shaped. These rod-shaped connecting elements are preferably pressable into groove-shaped recesses, with a portion of the connecting element projecting towards the mating part and being pressable into a corresponding groove-shaped recess on the mating part. The connecting elements are preferably easily adaptable to the specific application at the installation site, for example, by cutting them to size.
[0022] A window with a frame can be easily installed in the mounting module. In particular, the window can be installed easily and with reduced effort, ensuring an airtight, windproof, and rainproof seal. The mounting module serves as a uniform and large, flat mounting platform for the window. This results in more consistent gaps and interfaces between components compared to installation directly on the building structure, simplifying the sealing process. Thanks to its modular design, the mounting module can be easily adapted to different sizes of building openings. Furthermore, it eliminates the need for additional work areas. The mounting module is adjustable within the building opening, allowing for inward, outward, or centered installation of the window.
[0023] Preferably, the upper module has an at least approximately planar upper surface. In this context, the upper surface refers to the upward-facing side surface of the upper module when the mounting module is installed in the building. Components used in conjunction with windows, such as roller shutter boxes or fall protection devices, can be easily mounted on this planar upper surface.
[0024] The L-shaped corner elements and the resulting U-shaped sub-module ensure watertightness without the need for additional sealants. The interface between the L-shaped corner elements is designed to prevent water penetration. This can be achieved through bonding or sealing with a strip of adhesive tape. The L- and U-shape prevent the ingress of standing water, such as that which can occur during heavy rain, into the building envelope, which could lead to damage.
[0025] The upper module is preferably formed from several elements that can be connected or joined together. The elements are preferably at least partially cuttable so that they can be cut to the required size directly at the installation site from a longer element. The elements of the upper module are preferably connected to each other by connecting elements similar to those of the lower module.
[0026] A connecting piece is preferably arranged between the first L-shaped corner element and the second L-shaped corner element, wherein the first L-shaped corner element, the connecting piece, and the second L-shaped corner element form the upwardly open U-shaped lower module. The first L-shaped corner element and the connecting piece are particularly preferably connectable by means of fasteners, and the second L-shaped corner element and the connecting piece are also connectable by means of fasteners. The connecting piece is particularly preferably easily cut to size, preferably with a saw commonly used in construction or a utility knife. The connecting piece and further elements of the lower or upper module are particularly preferably made from identical and cuttable strip-shaped elements.
[0027] In a particularly preferred embodiment of the invention, the first L-shaped corner element is formed from a first section and a second section formed at a right angle to it. Preferably, the second L-shaped corner element is formed from a first section and a second section formed at a right angle to it. In the installed state, the first section of the first L-shaped corner element and the first section of the second L-shaped corner element are oriented at least approximately horizontally. Particularly preferably, at least a portion of the surface of the first section is inclined to the horizontal so that rainwater is drained away. More preferably, the inclination is at least 5°. 0 opposite the horizontal.
[0028] The corner elements are specifically molded as single pieces. This means that the corner elements are not composed of two or more parts. This single-piece design eliminates joint surfaces where water could spread.
[0029] In a further preferred embodiment of the invention, a support strip for supporting a window frame is integrally formed on the first L-shaped corner element. Preferably, a support strip for supporting a window frame is also integrally formed on the second L-shaped corner element. Particularly preferably, a support section for supporting a window frame is integrally formed on the intermediate piece. In the assembled state, the support strips on the L-shaped corner elements and the support section on the intermediate piece form a continuous and uniform strip for supporting a window frame.
[0030] Preferably, the support strip has a groove for receiving a window sill connection profile and / or a strip and / or a sealant and / or a sealing compound.
[0031] In a preferred embodiment, a stop strip for a window frame is integrally formed on the first L-shaped corner element. Preferably, a stop strip for a window frame is integrally formed on the second L-shaped corner element. Particularly preferably, stop strips and / or stop sections are integrally formed on at least some elements of the upper module. More preferably, the stop strips and stop sections form a continuous and uniform strip extending over several inner surfaces of the mounting module for a window frame.
[0032] In particularly preferred embodiments according to the invention, the stop strip is designed in a stepped manner and comprises at least one sealing material section and one stop section.
[0033] In a preferred embodiment, the first L-shaped corner element and the second L-shaped corner element are designed to be at least approximately mirror-symmetric.
[0034] In a preferred embodiment, the mounting module is pre-assembled with sealants and / or sealing compounds and / or adhesive tapes for sealing. The pre-assembled sealants are preferably applied to the sealing section of the stop strip so that they act and seal between the hinged window frame and the mounting module. Preferably, a pre-perforated tube containing a sealant is arranged in the groove in the support strip. When pressure is applied by the supported window, the tube bursts, allowing the sealant to act between the window frame and the mounting module and seal the interface.
[0035] The assembly module and its individual components are manufactured from materials commonly used in the construction industry. Preferably, the assembly module is made primarily or entirely of a lightweight material, preferably a plastic material, and more preferably of a thermosetting or thermoplastic plastic material, particularly polystyrene, polyester, polyvinyl chloride, or mixtures thereof, especially polystyrene. Particularly preferably, the assembly module is made of weldable plastic materials. In further preferred embodiments, the assembly module is made at least partially of cork, a lightweight metal, or foamed polymer materials. The materials used are preferably recyclable, fire-resistant, water-resistant, airtight, waterproof, thermally insulating, and mechanically stable. The materials used preferably have a low CO2 footprint; more preferably, they are CO2-neutral.The materials are preferably screw-resistant. Screws can preferably be screwed into the materials without the need for pre-drilling or threading.
[0036] In a further embodiment according to the invention, the L-shaped corner element is at least partially made of a foamed material, preferably a foamed insulating material. Particularly preferably, the foamed material is at least partially encased by a hard, thin layer, preferably an aluminum layer or a hard plastic layer.
[0037] The L-shaped corner elements are preferably designed to be watertight, so that no water can diffuse through the L-shaped corner element or move along manufacturing surfaces on the L-shaped corner element by capillary action.
[0038] In a particularly preferred embodiment, the L-shaped corner elements have a bore through which a sealant can be injected into the area between the mounting module and the building structure. Preferably, the bore has a mark indicating the level to which backflowing sealant must be injected to ensure that sufficient sealant has been injected at the interface between the mounting module and the building structure to guarantee a proper seal.
[0039] The L-shaped corner elements are preferably designed to be load-bearing. This means that they can absorb the load of the window resting on them and transfer it to other parts of the building without sustaining damage.
[0040] The mounting module is preferably designed to achieve good sound insulation for residential and commercial buildings. Furthermore, the materials used for the mounting module are selected to ensure optimal insulation and thermal performance. The mounting module is preferably fire-resistant and / or fire-retardant. The mounting module preferably achieves at least fire protection class E (according to EN 13501-1), more preferably at least fire protection class D (according to EN 13501-1), and most preferably at least fire protection class C (according to EN 13501-1).
[0041] The assembly module preferably has a reduced ecological footprint during production. Recyclable materials are reused and do not need to be disposed of.
[0042] If needed, for example during dismantling, the assembly module can be removed from the component and recycled. The assembly module is therefore suitable for the circular economy.
[0043] The mounting module is preferably free of harmful substances, in particular free of harmful substances according to Emicode®. Ideally, the mounting module achieves class EC1+ according to Emicode®. Therefore, the mounting module poses no health risk, even if used as a building component in residential areas for many years.
[0044] The production of an assembly module according to the invention, or of its components, is preferably carried out by methods known from the prior art, such as extrusion, injection molding, cutting or milling from a solid, 3D printing, or CNC-based techniques. The corner pieces are particularly well manufactured in one piece.
[0045] Preferably, the mounting module or its components are manufactured on a construction site using 3D printing based on an at least partially automated process. Building openings are preferably measured automatically, for example, by a laser-based scanning system. The measurement data is then processed, preferably by a central processing unit and / or an AI-supported computer program, into mounting modules or their components that fit the dimensions of the respective building openings and are subsequently 3D printed. This allows for optimization of the mounting modules' fit within the building openings.
[0046] The use of a mounting module according to the invention for use in the construction sector is also the subject of this invention. In particular, the use of a mounting module according to the invention for the installation of I / O is also the subject of this invention.
[0047] Windows, French doors and doors, and for sealing window openings are the subject of this invention.
[0048] A set for an assembly module according to the invention is also part of this invention. The set comprises at least a first L-shaped corner element, a second L-shaped corner element, and one or more elements such as upper corner elements, intermediate pieces, and side pieces for forming an upper module.
[0049] Preferably, the set comprises one or more adhesive tapes. More preferably, the set additionally comprises one or more sealants. Particularly preferably, the set additionally comprises one or more connecting elements and / or spacers.
[0050] The set preferably includes a tool for cutting parts of the assembly module.
[0051] A component assembly comprising a mounting module according to the invention and a window, French door, or door inserted therein is also part of this invention. The component assembly can be assembled either on a construction site or in a spatially separate prefabrication facility. The component assembly can then be inserted into a building opening, preferably using a crane or lifting device. This further reduces the assembly effort.
[0052] The invention is explained in more detail below with reference to the drawings. These show:
[0053] Fig. aa a first L-shaped corner element 1A and a second L-shaped corner element 1B;
[0054] Fig. ib shows the first L-shaped corner element 1A and the second L-shaped corner element 1B from Fig. ala joined together to form a submodule 1;
[0055] Fig. ic shows a first embodiment of the assembly module 9 according to the invention;
[0056] Fig. 2a a sub-module 1 in a second embodiment; Fig. 2b a second embodiment of an assembly module 9 according to the invention with the sub-module 1 from Fig. 2a;
[0057] Fig. 3a shows a third embodiment of an assembly module 9 according to the invention;
[0058] Fig. 3b shows a fourth embodiment of an assembly module 9 according to the invention;
[0059] Fig. 4 shows the assembly module 9 from Fig. 3b with a window 8 inserted therein;
[0060] Fig. 5a shows a first L-shaped corner element 1A in a further embodiment;
[0061] Fig. 5b shows the first L-shaped corner element 1A from Fig. 5a in another view.
[0062] The figures are not drawn to scale.
[0063] Fig. 1a shows a first L-shaped corner element 1A and a second L-shaped corner element 1B. The first L-shaped corner element 1A comprises a first section 11 and a second section 12, which is oriented perpendicular to the first section 11. Connecting elements 19 are integrally formed at the end of the first section 11 facing the second L-shaped corner element 1B. The first L-shaped corner element 1A and the second L-shaped element 1B can be connected to each other by means of the connecting elements 19. Except for the connecting elements 19, the second L-shaped corner element 1B is designed to be at least approximately mirror-symmetrical to the first L-shaped corner element 1A. The second L-shaped corner element 1B comprises a first section 11B and a second section 12B, which is oriented perpendicular to the first section 11B.
[0064] Fig. ib shows the first L-shaped corner element 1A and the second L-shaped corner element 1B from Fig. 1a joined to form a sub-module 1. The connection of the two L-shaped corner elements 1A and 1B can be achieved by the connecting means 19 shown in Fig. 1a. The first section 11 of the first L-shaped corner element 1A and the first section 11B of the second L-shaped corner element 1B are flush and co-planar. Fig. ic shows an assembly module 9 according to the invention in a first embodiment. The assembly module 9 is formed by the sub-module 1 from Fig. ib and a connected upper module 2 and is designed in a frame-like manner. The upper module 2 is formed by a base section 21, a first side section 22, and a second side section 22B. The first side section 22 and the second side section 22B are each oriented perpendicular to the base section 21.The second section 12 of the first L-shaped corner element 1A and the first side section 22 of the upper module are flush and co-planar to each other. The second section 12B of the second L-shaped corner element 1B and the second side section 22B of the upper module are flush and co-planar to each other.
[0065] Fig. 2a shows a submodule 1 in a second embodiment. The first L-shaped corner element 1A and the second L-shaped corner element 1B are connected to each other via an intermediate piece 3, forming the submodule 1. The intermediate piece 3 is connected to the first L-shaped corner element 1A and the second L-shaped corner element 1B by means of connecting elements known from Fig. 1a. The first section 11 of the first L-shaped corner element 1A and the intermediate piece 3 are flush and coplanar to each other. The first section 11B of the second L-shaped corner element 1B and the intermediate piece 3 are flush and coplanar to each other.
[0066] Fig. 2b shows a second embodiment of an assembly module 9 according to the invention with the sub-module 1 from Fig. 2a. The assembly module 9 is formed by the sub-module 1 from Fig. 2b and an upper module 2 connected to it, and is designed in a frame-like manner. The upper module 2 comprises two side pieces 4A, 4B, two upper corner elements 6A, 6B, and an upper intermediate piece 5. The adjacent elements of the upper module 2 and the sub-module 1 are flush and co-planar with each other.
[0067] Fig. 3a shows a third embodiment of an assembly module 9 according to the invention. The assembly module 9 is formed by a sub-module 1 and an upper module 2. The sub-module 1 comprises a first L-shaped corner element 1A, which is connected to a second L-shaped corner element 1B via an intermediate piece 3. The first L-shaped corner element 1A, intermediate piece 3, and second L-shaped corner element together form a U-shape. The upper module 2 comprises two perpendicularly oriented side pieces 4A, 4B and an upper intermediate piece 5 that is perpendicular to and connects these. A support strip 13, 13B is integrally formed on each of the first L-shaped corner element 1A and the second L-shaped corner element 1B. The support strip 13, 13B is designed such that it terminates below the end of the respective second section 12, 12B and thus does not project beyond it.The support strips 13, 13B together with the support section 33 molded onto the intermediate piece 3 form a continuous strip for supporting a window or door frame.
[0068] Fig. 3b shows a fourth embodiment of an assembly module 9 according to the invention. The assembly module 9 is formed by a sub-module 1 and an upper module 2. The sub-module 1 comprises a first L-shaped corner element 1A, which is connected to a second L-shaped corner element 1B via an intermediate piece 3. The first L-shaped corner element 1A, intermediate piece 3, and second L-shaped corner element together form a U-shape. The upper module 2 comprises two side pieces 4A, 4B, two upper corner elements 6A, 6B, and an upper intermediate piece 5. The adjacent elements of the upper module 2 and sub-module 1 are flush and co-planar to each other. A support strip 13, 13B is integrally formed on the first L-shaped corner element 1A and on the second L-shaped corner element 1B. The support strip 13, 13B is designed in such a way that it ends below the end of the respective second section 12, 12B and thus does not extend beyond it.The support strips 13, 13B, together with the support section 33 molded onto the intermediate piece 3, form a continuous strip for supporting a window or door frame. Stop strips 14, 64 are molded onto the first L-shaped corner element 1A and the upper corner element 6A, respectively. The stop strips 14, 64, together with the stop section 44 molded onto the side piece 4A, form a continuous strip for stopping a window or door frame during installation. In a preferred embodiment, the stop strip extends continuously along the entire upper module 2 and the two L-shaped corner elements 1A, 1B.
[0069] Fig. 4 shows the assembly module 9 from Fig. 3b with a window 8 inserted therein. The frame 81 of the window 8 is supported vertically on the strip formed by the support strips 13, 13B and the support section 33. In the horizontal direction, the frame 81 is hinged against the strip formed by the stop strips 14, 64 and the stop section 44. Fig. 5a shows a first L-shaped corner element 1A in a further embodiment according to the invention. The basic structure of the corner element 1A is formed by a first section n and a second section 12 arranged perpendicular to it. The surface of the first section 11 facing the outside of the building when installed is inclined to allow water to run off. Connecting element receptacles 18 are formed on the first section 11 and on the second section 12.These connecting element receptacles 18 can be fitted with connecting elements such as rods or pins in a force-fit or form-fit manner, so that the L-shaped corner element 1A can be connected to other elements of an assembly module. A support strip 13 is formed on the first section 11. A groove 131 is formed in the support strip 13. A window or door frame can be supported on the support strip 13. A sealant or sealant can be applied to the groove 131 before the window or door is installed to ensure a tight seal at the transition from the frame to the support strip or to the L-shaped corner element 1A. The support strip 13 is preferably designed so that it does not project beyond the second section 12, thus maintaining the basic L-shape of the corner element 1A. A stop strip 14 is formed on the second section 12. The stop bar 14 has a recess 16 in the area adjacent to the support bar 13 and the first section.The recess 16 allows water spreading across interfaces to drain more easily towards the plane inclined towards the outside of the building on the first section 11. A circumferential connection groove 17 is formed in the end face of the first section 11 and the second section 12. Additional components such as extension elements, strips, or window sill covers, as well as plastered facades, can be connected to the L-shaped corner element 1A via the connection groove 17.
[0070] Fig. 5b shows the first L-shaped corner element 1A from Fig. 5a in a further view. The end face of the stop strip 14 is designed in two stages with a sealing material section 141 and a stop section 142. A sealant or sealant compound can be applied to the sealing material section 141 so that the transition from the frame to the stop strip or to the L-shaped corner element 1A is watertight. Any combination of the embodiments of the assembly module described in the figures and the description is also according to the invention. In particular, individual features of the described embodiments can be combined with one another according to the invention. The assembly module according to the invention is suitable not only for construction purposes but also for other areas of application. List of reference numerals
[0071] 1 submodule
[0072] 1A first L-shaped corner element 11 first section
[0073] 12 second section
[0074] 13 Support strip
[0075] 131 Nut
[0076] 14 Stop bar
[0077] 141 Sealing material section
[0078] 142 Stop section
[0079] 16 recess
[0080] 17 Connection slot
[0081] 18 Connecting element receptacle 1B second L-shaped corner element 11B first section
[0082] 12B second section
[0083] 13B Support strip
[0084] 19 Fasteners
[0085] 2 Upper module
[0086] 21 Basic section
[0087] 22 first page section
[0088] 22B second page section
[0089] 3 Intermediate pieces
[0090] 33 Support section
[0091] 4A, 4B side piece
[0092] 44 Stop section
[0093] 5 upper intermediate piece
[0094] 6A, 6B upper corner elements
[0095] 64 Stop bar
[0096] 8 windows
[0097] 81 window frames
[0098] 9 Mounting module
Claims
ii. February 2026 SILU Verwaltung AG S178466WO Patent claims 1. Multi-part assembly module (9) for the installation of windows (8), French doors and doors in building openings, comprising a first L-shaped corner element (1A) and a second L-shaped corner element (1B) which can be connected to the first L-shaped corner element (1A) via connecting means (19) and forms an upwardly open U-shaped sub-module (1) with the first L-shaped corner element (1A) and a top module (2) which can be connected to the sub-module (2) via connecting means (19) and which forms an at least approximately rectangular continuous frame with the sub-module (2).
2. Assembly module (9) according to claim 1, characterized in that the upper module (2) has an at least approximately planar upper plane.
3. Assembly module (9) according to claim 1 or 2, characterized in that the upper module (2) is formed from several elements (21, 22, 22B, 4A, 4B, 5, 6A, 6B) that can be connected or joined together.
4. Assembly module (9) according to claim 1, 2 or 3, characterized in that an intermediate piece (3) is arranged between the first L-shaped corner element (1A) and the second L-shaped corner element (1B), wherein the first L-shaped corner element (1A), the intermediate piece (3) and the second L-shaped corner element (1B) form the upwardly open U-shaped sub-module (2), wherein the first L-shaped corner element (1A) and the intermediate piece (3) are connectable via connecting means (19) and wherein the second L-shaped corner element (1B) and the intermediate piece (3) are connectable via connecting means (19).
5. Assembly module (9) according to one of claims 1-4, characterized in that the first L-shaped corner element (1A) is formed from a first part (11) and a second part (12) formed at a right angle to it and / or that the second L-shaped corner element (1B) is formed from a first part (11B) and a second part (12B) formed at a right angle to it.
6. Assembly module (9) according to one of claims 1-5, characterized in that a support strip (13) for supporting a window frame (81) is formed on the first L-shaped corner element (1A) and / or that a support strip (13B) for supporting a window frame (81) is formed on the second L-shaped corner element (1B) and / or that a support section (33) for supporting a window frame (81) is formed on the intermediate piece (3).
7. Mounting module (9) according to claim 6, characterized in that the support strip (13, 13B) has a groove (131) for receiving a window sill connection profile and / or a sealant and / or a sealing agent.
8. Assembly module (9) according to one of claims 1-7, characterized in that a stop strip (14) for stopping a window frame (81) is formed on the first L-shaped corner element (1A) and / or that a stop strip for stopping a window frame (81) is formed on the second L-shaped corner element (1B) and / or that at least on individual elements (21, 22, 22B, 4A, 4B, 5, 6A, 6B) of the upper module (2) stop strips (64) and / or stop sections (44) are formed.
9. Mounting module (9) according to claim 8, characterized in that the stop bar (14) is designed in a stepped manner and comprises at least one sealing material section (141) and a stop section (142).
10. Mounting module (9) according to one of claims 1-9, characterized in that the first L-shaped corner element (1A) and the second L-shaped corner element (1B) are designed to be at least approximately mirror-symmetrical. ii. Mounting module (9) according to one of claims 1-10, characterized in that the mounting module is pre-assembled with sealants and / or sealing compounds and / or adhesive tapes for sealing.
12. Use of a mounting module (9) according to one of claims 1 to 11 for sealing window penetrations in the construction sector.
13. Set for an assembly module (9) according to one of claims 1-11, comprising at least one first L-shaped corner element (1A), a second L-shaped corner element (1B) and one or more elements (21, 22, 22B, 4A, 4B, 5, 6A, 6B) for forming an upper module (2).
14. Set according to claim 13, wherein the set comprises one or more adhesive tapes and / or wherein the set additionally comprises one or more sealants.
15. Set according to claim 13 or 14, wherein the set additionally comprises a tool for cutting parts of the assembly module (9).
16. Assembly comprising a mounting module (9) according to one of claims 1-11 and a window (8), French door or door inserted therein.