Profile assembly
The profile arrangement with spaced profile connector elements and displaceable insulating webs addresses thermal insulation and warping issues, achieving enhanced thermal separation and stability.
Patent Information
- Application Number
- EP2025166305
- Authority / Receiving Office
- EP · EP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-05-06
- Filing Date
- 2025-03-26
- Publication Date
- 2025-11-12
AI Technical Summary
Existing profile arrangements do not guarantee complete thermal insulation between interior and exterior spaces, particularly at corners, due to the use of metallic profile connectors, which compromise thermal separation.
A profile arrangement with two thermally separated profile connector elements, spaced apart along a connecting line between interior and exterior spaces, and insulating elements with displaceable webs to ensure a shear-free connection, minimizing thermal conductivity and warping effects.
The solution provides improved thermal insulation while preventing thermal bridges and warping, ensuring stability and flexibility to adapt to external temperature variations, maintaining durability despite enhanced insulation.
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Figure IMGAF001_ABST
Abstract
Description
[0001] The present invention relates to a profile arrangement, in particular for a door, a window or a facade element, for separating an interior from an exterior, comprising a horizontal profile element designed as a horizontal profile with a first horizontal profile shell part arranged towards an interior, IR, and a second horizontal profile shell part arranged towards an exterior, AR, wherein the horizontal profile shell parts are thermally separated from one another via a horizontal insulating element, a vertical profile element designed as a vertical profile, comprising a first vertical profile shell part arranged towards the interior and a second vertical profile shell part arranged towards the exterior, wherein the vertical profile shell parts are thermally separated from one another and connected to one another via a vertical insulating element, and a first profile connector element.and a first fastening means to connect the horizontal profile element and the vertical profile element using the first profile connector element.
[0002] Various profile arrangements are known from the prior art. A profile arrangement according to the preamble of claim 1 is known, for example, from EP 3 914 799 B1.
[0003] EP 3 914 799 B1 relates to a profile arrangement comprising a horizontal profile element, a vertical profile element, and a U-shaped profile connector element. The profile connector element has two leg sections and a base section connecting the two leg sections at one end. The vertical profile element, designed as a vertical profile, has a U-shaped recess in cross-section for partially receiving the profile connector element. The profile connector element has at least one mounting opening in its base section, and the vertical profile element has at least one mounting opening in the base of its U-shaped recess, corresponding to a mounting channel in the horizontal profile element, for the passage of a fastener.According to the description in EP 3 914 799 B1, the profile connector element is preferably made of sheet steel and has in particular a thickness of at least 3 mm, especially preferably a thickness of 4 mm.
[0004] A disadvantage of the aforementioned profile arrangement is that it does not guarantee complete thermal insulation between the interior and exterior. In particular, the thermal separation between the interior and exterior is compromised at the corners of the profile arrangement due to the use of metallic profile connectors.
[0005] The invention is therefore based on the objective of creating a profile arrangement that ensures improved, preferably complete, thermal insulation between the interior and exterior. At the same time, it aims to counteract negative effects resulting from improved thermal insulation.
[0006] This problem is solved by a profile arrangement with the features of claim 1. Accordingly, the profile arrangement comprises a second profile connector element and a second fastening means for connecting the horizontal profile element and the vertical profile element to each other using the second profile connector element, wherein the first profile connector element is configured for connecting the first horizontal profile shell part to the first vertical profile shell part, and the second profile connector element is configured for connecting the second horizontal profile shell part to the second vertical profile shell part, wherein the first profile connector element and the second profile connector element are arranged spaced apart from each other along a connecting line between the interior and exterior spaces when the horizontal profile element and the vertical profile element are connected to each other via the first profile connector element and the second profile connector element.and wherein the horizontal insulating element and / or the vertical insulating element has a first insulating web with a first insulating web element and a second insulating web element, wherein the insulating web elements, connecting the horizontal profile element and the vertical profile element, are displaceable relative to each other in the longitudinal direction of the respective associated profile element in order to ensure a shear-free connection between the associated profile shell part arranged towards the interior and the associated profile shell part arranged towards the exterior.
[0007] The solution according to the invention creates a profile arrangement in which thermal bridges between the interior and exterior spaces can be avoided. In particular, by using two thermally separated profile connector elements, wherein one of the profile connector elements connects the inner profile elements and the other profile connector element connects the outer profile elements, a profile connection without thermal conductivity, or at least with reduced thermal conductivity, is created between the interior and exterior spaces.
[0008] At the same time, potential disadvantages resulting from the improved thermal insulation, particularly warping of the profile arrangement, are effectively counteracted by ensuring shear freedom. Door leaves, etc., generally deform when the temperature outside differs significantly from that inside, such as in strong sunlight or freezing conditions. Consequently, the door jams or becomes difficult to open and close. The sliding or shear-free connection of the inner profile shell sections relative to the outer profile shell sections allows the profile arrangement to adapt flexibly to external conditions, thus effectively minimizing warping of doors and similar items due to temperature-related influences with the profile arrangement according to the invention.
[0009] Nevertheless, a firm connection between the profile elements is ensured via the profile connectors. Accordingly, the profile arrangement according to the invention is characterized by its stability, resistance to external thermal influences, and thermal insulation.
[0010] The transitions between shear-stiff, shear-flexible, and shear-low profile arrangements or connections of profile shell components are fluid. Fundamentally, these terms can be defined by the deflection (in mm) of the insulating elements resulting from a temperature difference between the interior and exterior, depending on the shear stiffness of the profile arrangement.
[0011] In a shear-free profile arrangement, the deflection of the insulating element remains relatively low, at nearly 0 mm (below 2 mm, preferably below 1.5 mm), essentially independent of the shear spring stiffness (measured in N / mm²). In contrast, in a shear-resistant profile arrangement, the deflection is relatively high and essentially constant (over 10 mm), independent of the shear spring stiffness. A shear-flexible profile arrangement is characterized by a comparatively high increase in deflection with increasing shear spring stiffness. A shear-flexible profile arrangement can be said to exist when the deflection of the insulating element is between 1 mm and 9 mm, preferably between 1.5 mm and 7 mm. This is preferably the case with a shear spring stiffness between 0.3 and 20 N / mm², preferably between 1 and 10 N / mm². Accordingly, a shear-free profile arrangement is said to exist with a shear spring stiffness up to approximately...0.1 N / mm^2, preferably up to 0.3 N / mm^2.
[0012] The stated values and value ranges assume a temperature difference of 60 K between the interior and exterior, and that the insulating element is approximately 30 mm wide with a span (distance between supports during deflection measurement) of approximately 2 m. The width of the insulating element can also be considered the distance between the inner and outer profile shell sections in the assembled state, which is bridged by the insulating element.
[0013] Advantageous further developments of the invention result from the dependent claims, the description and the figures.
[0014] Preferably, the first profile connector element has at least two first projections on one of its sides and the second profile connector element has at least two second projections on one of its sides, wherein the horizontal profile element has at least two first guide channels extending in the longitudinal direction of the horizontal profile in its first horizontal profile shell part for receiving the first projections of the first profile connector element and has a first fastening channel in its first horizontal profile shell part for force-fit or force-form-fit receiving of the first fastening means.and wherein the horizontal profile element has in its second horizontal profile shell part at least two second guide channels extending in the longitudinal direction of the horizontal profile for receiving the second projections of the second profile connector element and has in its second horizontal profile shell part a second fastening channel for the force-fit or force-fit receiving of the second fastening means, wherein the first profile connector element has a through-hole corresponding to the first fastening channel for the passage of the first fastening means and wherein the second profile connector element has a through-hole corresponding to the second fastening channel for the passage of the second fastening means,wherein the vertical profile element has in its first vertical profile shell part a mounting opening corresponding to the first mounting channel of the horizontal profile element for the passage of the first fastening element, and the vertical profile element has in its second vertical profile shell part a mounting opening corresponding to the second mounting channel of the horizontal profile element for the passage of the second fastening element.
[0015] The advantage of this design is that the horizontal and vertical profile elements can be precisely joined. This applies particularly to the connection between the first horizontal shell section and the first vertical shell section, and between the second horizontal and vertical profile shell sections. By providing at least two guide channels for the projections of the profile connector element, an optimal fit of the profile connector element within the horizontal profile shell section can be ensured. In particular, this design prevents the profile connector element from twisting relative to the horizontal profile shell section, a possibility that would arise with only one guide channel and one projection. The secure fit of the profile connector element within the horizontal profile shell section also allows for the precise connection of the corresponding vertical profile shell section.
[0016] Preferably, the projections of the profile connector element relative to the guide channels are dimensioned such that a press fit can be formed between the profile connector element and the horizontal profile shell section. However, a force-fit connection is not strictly necessary. The projections of the profile connector element relative to the guide channels can, for example, also be dimensioned to create a positive fit.
[0017] In a preferred further education program, at least one of the first advantages and / or at least one of the second advantages is rejuvenated externally.
[0018] Such a tapered design makes it particularly easy to insert the projections into the designated guide channels.
[0019] Preferably, one of the first guide channels and the first fastening channel form a common circumferentially closed channel in the first horizontal profile shell part and / or wherein one of the second guide channels and the second fastening channel form a common circumferentially closed channel in the second horizontal profile shell part.
[0020] This allows pressure to be applied directly to the profile connector element via the fastener in the mounting channel, so that it can be attached even more firmly to the horizontal profile element.
[0021] Preferably, the first insulating web element is fixedly and immovably connected to the first associated profile shell section, and the second insulating web element is fixedly and immovably connected to the second associated profile shell section. In other words, the first insulating web element of the horizontal insulating element is fixedly and immovably connected to the first horizontal profile shell section, while the second insulating web element of the horizontal insulating element is fixedly and immovably connected (in the longitudinal direction of the first associated profile element) to the second horizontal profile shell section. The same applies to the vertical profile element.
[0022] Therefore, in this case, the shear-free connection between the inner and outer profile shell parts is established (only) via the respective insulating element itself. Such a shear-free connection is proven and therefore advantageous.
[0023] The first insulating spacer element preferably has a rolling head which, after a rolling process, is firmly and immovably connected to the first associated profile shell part by a corresponding hammer (often also called a rolling hammer or pressure bar). The same preferably applies to the second insulating spacer element.
[0024] Preferably, the first insulating web element and the second associated profile shell part (with an existing connection between the horizontal profile element and the vertical profile element) are arranged without contact with each other, and the second insulating web element and the first associated profile shell part are arranged without contact with each other.
[0025] This further enhances the relative displacement between the profile shell sections located towards the interior and those located towards the exterior. In particular, this arrangement prevents any undesirable frictional effects.
[0026] In a preferred embodiment of the profile arrangement, the first insulating web element has a first groove for receiving a corresponding first lug of the second insulating web element. Particularly preferably, the second insulating web element further has a second groove for receiving a corresponding second lug of the first insulating web element.
[0027] Consequently, the first and second insulating bar elements interlock like a puzzle. This ensures that the first insulating bar element can only move relative to the second insulating bar element (or vice versa) in the longitudinal direction of the corresponding profile element. In other words, the groove in one insulating bar element creates a guide rail along which the nose of the other insulating bar element can move securely.
[0028] In a further preferred embodiment of the profile arrangement, the horizontal insulating element and / or the vertical insulating element has a second insulating web with a third insulating web element and a fourth insulating web element, wherein the third insulating web element and the fourth insulating web element are displaceable relative to each other in the longitudinal direction of the respective associated profile element by connecting the horizontal profile element with the vertical profile element, in order to ensure a shear-free connection between the associated profile shell part arranged towards the interior and the associated profile shell part arranged towards the exterior, in particular wherein the second insulating web is spaced apart from the first insulating web, in particular in a direction perpendicular to the connecting line between the interior and exterior.
[0029] In a particularly preferred embodiment of the profile arrangement, the first profile connector element has three first projections on one side and the second profile connector element has three second projections on one side, wherein the horizontal profile element has three first guide channels extending in the longitudinal direction of the horizontal profile in its first horizontal profile shell part for receiving the first projections of the first profile connector element, and wherein the horizontal profile element has three second guide channels extending in the longitudinal direction of the horizontal profile in its second horizontal profile shell part for receiving the second projections of the second profile connector element.
[0030] The problem underlying the invention is also solved by a door, window or facade element with a profile arrangement according to the invention.
[0031] As previously indicated, such a door, window, or facade element has the advantage that the inside and outside of the element have improved thermal insulation, and despite the improved insulation, the durability is not affected by warping effects.
[0032] The invention is described below by way of example with reference to the figures. Elements with the same function and mode of operation are each provided with the same reference numerals in the figures. They show (schematically): Fig. 1 shows an embodiment of the profile arrangement according to the invention in a perspective view, Fig. 2 shows an embodiment of the door element according to the invention in a perspective view, Fig. 3 shows a partial view of the embodiment of the profile arrangement according to Fig. 1 in another, enlarged perspective view in partial exploded view, Fig. 4 a partial view of the in Fig. 3 The illustrated profile arrangement in the connected (assembled) state, Fig. 5A; an embodiment of the profile connector element of the profile arrangement according to the invention in side view, Fig. 5B; the embodiment of the profile connector element according to Fig. 5A in a perspective view, Fig. 5C the design of the profile connector element according to Fig. 5A In another perspective view, Fig. 6 shows a partial view of the design of the profile arrangement according to Fig. 1 In another, enlarged, perspective view, Fig. 7 shows an embodiment of the insulating web of the profile arrangement according to the invention in a perspective view.
[0033] Fig. 1 Figure 1 shows a perspective view of an embodiment of the profile arrangement 1 according to the invention. The profile arrangement 1 is shown here in its assembled state and comprises a horizontal profile element 2 designed as a horizontal profile and a vertical profile element 4 designed as a vertical profile. The horizontal profile element 2 includes a first horizontal profile shell part 2a, arranged towards an interior space (IR), and a second horizontal profile shell part 2b, arranged towards an exterior space (AR). A horizontal insulating element is located between the two horizontal profile shell parts 2a and 2b. Fig. 1 However, it is not shown or is concealed. The vertical profile element is constructed in an analogous manner and comprises a first vertical profile shell part 4a, oriented towards the interior, and a second vertical profile shell part 4b, oriented towards the exterior. A vertical insulating element 4c is located between the two vertical profile shell parts 4a and 4b. Although the vertical insulating element 4c physically connects the two vertical profile shell parts 4a and 4b, it thermally separates the two parts from each other, i.e., insulates them from one another.
[0034] The profile arrangement 1 further comprises a first profile connector element 5a, a second profile connector element 5b, and a first fastener 6a and a second fastener 6b. The first fastener 6a is configured to connect the horizontal profile element 2 and the vertical profile element 4 together, using the first profile connector element 5a. The same applies to the second fastener 6b. More precisely, the first fastener 6a is configured, using the first profile connector element 5a, to connect the first horizontal profile shell section 2a to the first vertical profile shell section 4a, and the second fastener 6b is configured, using the second profile connector element 5b, to connect the second horizontal profile shell section 2b to the second vertical profile shell section 4b.
[0035] The first profile connector element 5a and the second profile connector element 5b are spaced apart from each other along a connecting line (not shown) between the interior and exterior.
[0036] Fig. 2 Figure 1 shows an embodiment of the window element 10 according to the invention in a perspective view. The window element 10 has a profile arrangement 1 according to the invention with a horizontal profile element 2 and a vertical profile element 4. Fig. 2 The vertical insulating element 4c is clearly visible. The first profile connector element 5a of the profile arrangement 1 is also visible. The window glass of the window element is marked with the reference number 7.
[0037] Fig. 3 shows a partial view of the design of profile arrangement 1 according to Fig. 1 in another, enlarged perspective view in partial exploded view. In particular, the components first horizontal profile shell part 2a, first profile connector element 5a, first vertical profile shell parts 4a and first fastener 6a are shown.
[0038] The first horizontal profile shell section 2a has three first guide channels 22a, 24a, and 26a. Furthermore, the first horizontal profile shell section 2a has a first fastening channel. The first guide channels 22a and 26a are not closed (in the circumferential direction) and are designed as "troughs." The first guide channel 24a, together with the fastening channel 28a, forms a channel that is closed (in the circumferential direction).
[0039] The first profile connector element 5a has three first projections 52a, 54a, and 56a on one of its sides. These are designed to be guided into the first guide channels 22a, 24a, and 26a, with the first projection 52a being designed to be guided into the first guide channel 22a, the first projection 54a into the first guide channel 24a, and the first projection 56a into the first guide channel 26a. In particular, the first projection 54a is designed to be essentially positively engaged in the first guide channel 54a. The other two first projections 52a and 56a are designed to bear against their respective first guide channels, at least partially. This ensures a secure (rotationally) fixed fit of the first profile connector element 5a in the first horizontal profile shell section 2a.
[0040] However, a secure fit of the profile connector element 5a in the first horizontal profile shell section 2a and the connection of the first vertical profile shell section 4a are only ensured by the addition of the first fastener 6a. In the illustrated embodiment, the first fastener 6a is a screw. Other fasteners are also conceivable.
[0041] The fastener 6a is designed to be inserted through a mounting opening 48a in the first vertical profile shell section, then into a through hole 58a of the first profile connector element 5a, and subsequently into the first mounting channel 28a of the first horizontal profile shell section 2a. The fastener 6a, or the screw, is self-tapping. This means that when the screw is tightened or when the profile assembly 1 is assembled, it is designed to cut a (matching) thread into the through hole 58a and / or the mounting channel 28a (and optionally the mounting opening 48a). However, it is also conceivable that the through hole 58a and / or the first mounting channel 28a (and optionally the mounting opening 48a) could have an internal thread that corresponds to the thread of the screw.In this case, the diameter of the screw is only slightly smaller than the diameter of the mounting opening 48a, the through hole 58a and the fastening channel 28a.
[0042] Fig. 4 shows a partial view of the in Fig. 3 The profile arrangement 1 shown is in its connected (assembled) state.
[0043] Fig. 5A Figure 1 shows a side view of an embodiment of the profile connector element 5a of the profile arrangement 1 according to the invention. Fig. 5A It is clearly evident that the profile connector element in this configuration has three first projections 5as, 54a, and 56a. The middle of the three first projections is significantly larger than the two outer first projections 52a and 56a. Furthermore, the middle first projection 54a extends further outwards from the side on which the three first projections are located than the other two projections. During assembly, this means that the middle first projection 54a would be the first to be inserted into a corresponding guide channel of a corresponding profile shell section.
[0044] Fig. 5B shows the design of the profile connector element 5a according to Fig. 5A in a perspective view. The through holes 57a and 59a serve to save material and are optional.
[0045] Fig. 5C shows the design of the profile connector element 5a according to Fig. 5A in a different perspective view. From Fig. 5C It is clearly evident that the first projections (52a, 54a and 56a) taper outwards. This is achieved by chamfered outer edges of the projections. This facilitates insertion into the corresponding guide channels in the profile shell sections.
[0046] Fig. 6 shows a partial view of the design of profile arrangement 1 according to Fig. 1 in another, enlarged, perspective view. In particular, the first horizontal profile shell section 2a and the second horizontal profile shell section 2b are shown. Also shown is the horizontal insulating element 2c, which extends in the longitudinal direction L2 of the horizontal profile element 2 (or of the first horizontal profile shell section 2a and the second horizontal profile shell section 2b). The horizontal insulating element 2c thermally insulates the two horizontal profile shell sections from each other. In the present embodiment, the horizontal insulating element 2c has a first insulating web 22c with a first insulating web element 222c and a second insulating web element 224c, as well as a second insulating web 24c with a third insulating web element 226c and a fourth insulating web element 228c. The first insulating web 22c and the second insulating web 24c are spaced apart from each other in a direction perpendicular to the longitudinal direction L2.
[0047] The insulating spacer elements 222c and 224c are slidable relative to each other in the longitudinal direction L2 to ensure a shear-free connection between the first profile shell section 2a and the second profile shell section 2b. The same applies to the insulating spacer elements 226c and 228c. The first insulating spacer element 222c is rigidly connected to the first horizontal profile shell section 2a. There is no rigid connection to the second horizontal profile shell section 2b. In fact, there is no contact between these two parts. The second insulating spacer element 224c is rigidly connected to the second horizontal profile shell section 2b. There is no rigid connection to the first horizontal profile shell section 2a. In fact, there is no contact between these two parts. The third insulating spacer element 226c is rigidly connected to the first horizontal profile shell section 2a. There is no rigid connection to the second horizontal profile shell section 2b.In fact, there is no contact between these two parts. The fourth insulating web element 228c is firmly connected to the second horizontal profile shell part 2b. There is no firm connection to the first horizontal profile shell part 2a. In fact, there is no contact between these two parts.
[0048] Fig. 7 Figure 1 shows an embodiment of the insulating web 22c of the profile arrangement according to the invention in a perspective view. In particular, it shows Fig. 7 the insulating bridge 22c of the in Fig. 6 The illustrated configuration of the profile arrangement 1. The further insulating webs 24c, 42c, and 44c of this configuration can be designed analogously.
[0049] In this embodiment, the insulating web 22c has two interlocking insulating web elements that are slidable relative to each other in the longitudinal direction L2, namely the first insulating web element 222c and the second insulating web element 224c. The first insulating web element 222c has a first groove 81c and a second lug 83c. The second insulating web element 224c has a second groove 84c and a first lug 82c. The first groove 81c is designed to receive the first lug 82c, and the second groove 84c is designed to receive the second lug 83c. The size and shape of the lugs and groove are such that the lugs are securely seated in the groove but can still be moved along the longitudinal direction within the groove. Bezugszeichenliste
[0050] 1 Profile arrangement 2 Horizontal profile element 2a First horizontal profile shell part 2b Second horizontal profile shell part 2c Horizontal insulating element 22a, 24a, 26a First guide channels 22b, 24b, 26b Second guide channels 22c First insulating web 222c, 422c First insulating web element 224c, 424c Second insulating web element 226c, 426c Third insulating web element 228c, 428c Fourth insulating web element 28a First mounting channel 28b Second mounting channel 4 Vertical profile element 4a First vertical profile shell part 4b Second vertical profile shell part 48a, 48b Mounting opening 5a First profile connector element 5b Second profile connector element 52a, 54a, 56a First projections 52b, 54b, 56b Second projections 57a Through hole 58a, 58b Through hole 59a Through hole 6a First fastener 6b Second fastener 7 Window glass 81c First groove 82c First lug 83c Second lug 84c Second groove 10 Door, window or facade element IR Interior AR Exterior L2, L4 Longitudinal direction
Claims
1. Profile arrangement (1), in particular for a door, a window or a facade element (10) for separating an interior space from an exterior space, comprising: - a horizontal profile element (2) designed as a horizontal profile with a first horizontal profile shell part (2a) arranged in the direction of an interior space, IR, and a second horizontal profile shell part (2b) arranged in the direction of an exterior space, AR, wherein the horizontal profile shell parts (2a, 2b) are connected to each other via a horizontal insulating element (2c), thermally separated from each other; - a vertical profile element (4) designed as a vertical profile, comprising a first vertical profile shell part (4a) arranged in the direction of the interior space and a second vertical profile shell part (4b) arranged in the direction of the exterior space, wherein the vertical profile shell parts (4a, 4b) are connected to each other via a vertical insulating element (4c), thermally separated from each other.- a first profile connector element (5a), and - a first fastener (6a) to connect the horizontal profile element (2) and the vertical profile element (4) using the first profile connector element (5a), , characterized by the fact thatthe profile arrangement (1) further comprises - a second profile connector element (5b), and - a second fastener (6b) for connecting the horizontal profile element (2) and the vertical profile element (4) to each other using the second profile connector element (5b), wherein the first profile connector element (5a) is configured for connecting the first horizontal profile shell part (2a) to the first vertical profile shell part (4a) and the second profile connector element (5b) is configured for connecting the second horizontal profile shell part (2b) to the second vertical profile shell part (4b), the first profile connector element (5a) and the second profile connector element (5b) are arranged spaced apart from each other along a connecting line between the interior and exterior space when the horizontal profile element (2) and the vertical profile element (4) are connected to each other via the first profile connector element (5a) and the second profile connector element (5b),and the horizontal insulating element (2c) and / or the vertical insulating element (4c) has a first insulating web (22c, 42c) with a first insulating web element (222c, 422c) and a second insulating web element (224c, 424c), wherein the insulating web elements (222c, 224c, 422c, 424c), by connecting the horizontal profile element (2) and the vertical profile element (4), are displaceable relative to each other in the longitudinal direction (L2, L4) of the respective associated profile element (2, 4) in order to ensure a shear-free connection between the associated profile shell part (2a, 4a) arranged in the direction of the interior and the associated profile shell part (2b, 4b) arranged in the direction of the exterior.
2. Profile arrangement (1) according to claim 1, wherein the first profile connector element (5a) has at least two first projections (52a, 54a, 56a) on one of its sides and the second profile connector element (5b) has at least two second projections (52b, 54b, 56b) on one of its sides, the horizontal profile element (2) has at least two first guide channels (22a, 24a, 26a) extending in the longitudinal direction of the horizontal profile in its first horizontal profile shell part (2a) for receiving the first projections (52a, 54a, 56a) of the first profile connector element (5a) and has a first fastening channel (28a) in its first horizontal profile shell part (20a) for the force-fit or force-fit receiving of the first fastening means (6a), the horizontal profile element (2) has at least two first guide channels (22a, 24a, 26a) extending in the longitudinal direction of the horizontal profile in its second horizontal profile shell part (2b) extending in the longitudinal direction of the horizontal profile Extending second guide channels (22b, 24b, 26b) for receiving the second projections (52b, 54b,56b) of the second profile connector element (5b) and in its second horizontal profile shell part (2b) has a second fastening channel (28b) for the force-fit or force-form-fit reception of the second fastener (6b), the first profile connector element (5a) has a through hole (58a) corresponding to the first fastening channel (28a) for the passage of the first fastener (6a), the second profile connector element (5b) has a through hole (58b) corresponding to the second fastening channel (28b) for the passage of the second fastener (6b), the vertical profile element (4) has in its first vertical profile shell part (4a) a mounting opening (48a) corresponding to the first fastening channel (28a) of the horizontal profile element (2) for the passage of the first fastener (6a),and the vertical profile element (4) has in its second vertical profile shell part (4b) a mounting opening (48b) corresponding to the second fastening channel (28b) of the horizontal profile element (2) for the passage of the second fastening means (6b).
3. Profile arrangement (1) according to claim 2, wherein at least one of the first projections (52a, 54a, 56a) and / or at least one of the second projections (52b, 54b, 56b) tapers outwards.
4. Profile arrangement (1) according to claim 2 or 3, wherein one of the first guide channels (22a, 24a, 26a) and the first fastening channel (28a) form a common circumferentially closed channel in the first horizontal profile shell part (2a) and / or wherein one of the second guide channels (22b, 24b, 26b) and the second fastening channel (28b) form a common circumferentially closed channel in the second horizontal profile shell part (2b).
5. Profile arrangement (1) according to one of the preceding claims, wherein the first insulating web element (222c, 422c) is fixedly and non-displaceably connected to the first associated profile shell part (2a, 4a) and the second insulating web element (224c, 424c) is fixedly and non-displaceably connected to the second associated profile shell part (2b, 4b).
6. Profile arrangement (1) according to one of the preceding claims, wherein the first insulating web element (222c, 422c) and the second associated profile shell part (2b, 4b) are arranged without contact with each other and wherein the second insulating web element (224c, 424c) and the first associated profile shell part (2a, 4a) are arranged without contact with each other 7. Profile arrangement (1) according to one of the preceding claims, wherein the first insulating web element (222c, 422c) has a first groove (81c) for receiving a corresponding first lug (82c) of the second insulating web element (224c, 424c), in particular wherein the second insulating web element (224c, 424c) has a second groove (84c) for receiving a corresponding second lug (83c) of the first insulating web element (222c, 242c).
8. Profile arrangement (1) according to one of the preceding claims, wherein the horizontal insulating element (2c) and / or the vertical insulating element (4c) comprises a second insulating web (24c, 44c) with a third insulating web element (226c, 426c) and a fourth insulating web element (228c, 428c), wherein the third insulating web element (226c, 426c) and the fourth insulating web element (228c, 428c), by connecting the horizontal profile element (2) with the vertical profile element (4), are displaceable relative to each other in the longitudinal direction of the respective associated profile element (2, 4) in order to ensure a shear-free connection between the associated profile shell part (2a, 4a) arranged in the direction of the interior and the associated profile shell part (2b, 4b) arranged in the direction of the exterior, in particular wherein the second insulating web (24c, 44c) is separated from the first insulating spacer (22c, 42c), in particular in a direction perpendicular to the connecting line between the interior and exterior space, is spaced apart.
9. Profile arrangement (1) according to one of the preceding claims, wherein the first profile connector element (5a) has three first projections (52a, 54a, 56a) on one side and the second profile connector element (5b) has three second projections (52b, 54b, 56b) on one side, wherein the horizontal profile element (2) has in its first horizontal profile shell part (2a) three first guide channels (22a, 24a, 26a) extending in the longitudinal direction of the horizontal profile for receiving the first projections (52a, 54a, 56a) of the first profile connector element (5a), and wherein the horizontal profile element (2) has in its second horizontal profile shell part (2b) three second guide channels (22b, 24b, 26b) extending in the longitudinal direction of the horizontal profile for receiving the second projections (52b, 54b, 56b) of the second profile connector element (5b) 10. Door, window or facade element (10) with a profile arrangement (1) according to one of the preceding claims.
Citation Information
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