Revolving door and method for constructing a revolving door

EP4555184A1Active Publication Date: 2025-05-21DORMAKABA DEUT GMBH
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Patent Information

Application Number
EP2023733377
Authority / Receiving Office
EP · EP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2022-07-11
Filing Date
2023-06-21
Publication Date
2025-05-21
Estimated Expiration
2043-06-21

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Abstract

The invention relates to a revolving door (100) having a turnstile (10) which is arranged between opposite drum elements (11), and having a roof assembly (12) which is arranged on the upper side of the drum elements (11) and on which the turnstile (10) is rotatably mounted, wherein at least one of the drum elements (11) has an inner glass element (11a) and an outer glass element (11b), wherein the drum element (11) has a lateral offset, more particularly on both sides of the drum element (11), between the inner glass element and the outer glass element.
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Description

[0001] Revolving door and method for constructing a revolving door

[0002] The invention relates to a revolving door with a turnstile arranged between opposing drum elements, and with a ceiling assembly arranged on top of the drum elements and on which the turnstile is rotatably mounted. Furthermore, the invention relates to a method for constructing a revolving door.

[0003] STATE OF THE ART

[0004] EP 1 605 128 B1 discloses an example of a revolving door with a turnstile arranged between opposing drum elements, and with a ceiling assembly arranged on top of the drum elements, on which the turnstile is rotatably mounted. The revolving door thus has two opposing drum elements with a turnstile arranged between them, and the ceiling assembly is located on top of the turnstile and structurally merges into the drum elements.It is shown that the ceiling assembly forms a supporting structure with the drum elements, and the ceiling assembly has connecting elements which are arranged in the center of the revolving door and wherein beams extending radially therefrom are provided, wherein the turnstile is arranged within the drum walls and below the ceiling assembly, wherein the beams extending from the center to the drum walls are held under pretension in order to generate an upward force on the connecting elements.

[0005] The disadvantage is that the ceiling assembly is very high and must be supported by beams or supports arranged on the outside of the drum elements.

[0006] Another embodiment of a revolving door is known from EP 3 611 326 B1. This also shows that the construction of the ceiling assembly is complex and must be assembled on-site as a structural unit with the drum elements. In particular, the drum elements have struts on which the ceiling assembly rests.

[0007] DISCLOSURE OF THE INVENTION

[0008] The object of the invention is to improve the structure of a revolving door, in particular to improve the connection of the drum elements, preferably in conjunction with one or more support profiles. The improved structure allows support profiles, in particular for distributing static and / or dynamic loads on the revolving door, to be integrated as seamlessly as possible, so that the appearance and / or statics of the revolving door can be improved. A further object of the invention is to improve the appearance and / or functionality of the revolving door as a whole. This object is achieved by means of a revolving door according to the preamble of claim 1 and a method according to claim 13 with the respective characterizing features. Advantageous developments of the invention are specified in the dependent claims.

[0009] The invention achieves the above object in that the drum elements each have an inner and an outer glass element, wherein at least one of the drum elements has an inner glass element and an outer glass element, wherein the drum element has a lateral offset, in particular on both sides of the drum element, between the inner glass element and the outer glass element. The extent of the offset can preferably be in a range from 1 cm to 15 cm, in particular from 2 cm to 10 cm, in particular from 3 to 5 cm. In particular, the offset is present in the installed state of the revolving door.

[0010] The lateral offset allows for improved integration of support profiles into the appearance and / or structural integrity of the revolving door. In this context, the glass material can be different, particularly plastic glass or similar.

[0011] It is preferred that a support profile, in particular a post, is arranged in or on the at least one lateral offset. The support profile can be statically and / or visually recessed into the drum element, thus further improving the appearance and statics.

[0012] The support profile can be dimensioned and / or arranged so that it is flush with the drum element along its circumference and / or radial extension, either inwardly or outwardly. This allows for maximum visual and structural integration into the drum element.

[0013] It's also conceivable that the area of ​​the lateral offset could be coated and / or colored to further enhance the appearance. This could conceal any unsightly joints.

[0014] Preferably, the inner glass element has a smaller horizontal length or width, particularly in the installed state of the revolving door, than the outer glass element, or the outer glass element has a smaller horizontal length or width, particularly in the installed state of the revolving door, than the inner glass element, so that a lateral offset occurs on at least one of the drum elements. This does not mean, in particular, that the inner glass element is merely shorter in width because it is arranged inside, so that both glass elements are flush laterally.

[0015] It is also conceivable for the inner glass element and the outer glass element of one drum element to have the same horizontal length, but be offset from each other. In this way, the inner glass element would protrude on one side of the drum element, and the outer glass element would protrude on an opposite side. This would create a lateral offset, which would vary depending on the side of the drum element.

[0016] It is preferred that the support profile be directly or indirectly connected to the drum element, in particular to the inner glass element and / or the outer glass element, and / or the ceiling assembly, in particular by a materially bonded and / or force-locked and / or form-locked connection. This enables an advantageous type of connection.

[0017] It is preferred that the support profile be connected to the drum element and / or the ceiling assembly indirectly via a lateral profile element, in particular by a material fit and / or a force fit and / or a form fit. The profile element, in turn, can be connected to the drum element and / or the ceiling assembly and / or the support profile by a material fit and / or a force fit and / or a form fit. The lateral profile element preferably has a first leg and a second leg that is also vertically formed, so that the profile element has, in particular, an L-shape, a T-shape, or a Z-shape.

[0018] It is preferred that the inner glass element comprises at least two sub-elements arranged next to one another, in particular in alignment, which are arranged at a distance from one another in order to form an intermediate space, wherein an intermediate support profile is arranged in the intermediate space.

[0019] Alternatively or cumulatively, it is preferred that the outer glass element comprises at least two partial elements arranged next to one another, in particular in alignment, which are arranged at a distance from one another in order to form an intermediate space, wherein an intermediate support profile is arranged in the intermediate space.

[0020] The glass element can thus be subdivided by the intermediate support profile. As already described with regard to the lateral offset, it is possible for the intermediate support profile to be connected to the sub-elements, particularly via central profile elements, in particular by a material bond and / or force-locking and / or form-fitting connection. Furthermore, it is possible for the intermediate support profile to be flush with the sub-elements. Such intermediate support profiles can further improve the statics of the revolving door, particularly while maintaining the monolithic appearance of the drum elements. The intermediate support profiles can thus also be recessed into the drum elements.

[0021] It is conceivable that the glass elements are formed from more than two sub-elements and therefore an intermediate support profile is arranged in the respective spaces.

[0022] Preferably, the extension of the intermediate space can be in a range from 1 cm to 15 cm, in particular from 2 cm to 10 cm, in particular from 3 to 5 cm.

[0023] Preferably, the ceiling assembly rests directly or indirectly on an upper end surface of the inner glass element and / or on an upper end surface of the outer glass element. In this context, the glass material can be of various types, in particular plastic glass or the like.

[0024] The drum elements are preferably constructed entirely or at least predominantly from curved glass elements, so that each drum element has an inner glass element and an outer glass element, thus resulting in an advantageous support for the ceiling assembly. The glass elements, in particular due to their curvature, can exhibit a rigidity, load-bearing capacity, and strength sufficient to support the ceiling assembly, particularly with regard to weight and other external forces.

[0025] The at least one drum element can have more than two, in particular three or four glass elements. Because the ceiling assembly rests on the upper end surface of the inner glass element and / or on an upper end surface of the outer glass element, the load of the ceiling assembly can be carried by the components of the drum elements. If the ceiling assembly rests on the upper end surface of the inner glass element, the ceiling assembly can be at least partially concealed by the outer glass element. In other words, the end surface of the inner glass element or the upper end surface of the outer glass element forms the upper edge side of the inner glass element or the outer glass element, which can, for example, have a thickness of 6 mm to 20 mm and preferably 8 mm to 16 mm.

[0026] The ceiling assembly can be placed on the upper end surface directly or indirectly, so that it is also conceivable that an intermediate element, an intermediate layer, an adhesive or a profile element is present between the ceiling assembly and the upper end surface of the inner glass element, so that even then, in the sense of the present invention, the ceiling assembly rests on the upper end surface of the inner glass element without the ceiling assembly and the glass element having to touch or directly adjoin one another.

[0027] It is particularly advantageous for the inner glass element to have a smaller vertical length or height, particularly when the revolving door is installed, than the outer glass element, so that the outer glass element at least partially or completely encloses the ceiling assembly on the outside, particularly with regard to the height and / or the circumference of the ceiling assembly, preferably when the revolving door is installed, particularly when the ceiling assembly rests on the upper end surface of the inner glass element and / or on an upper end surface of the outer glass element. In this way, an upper offset can result between the inner and outer glass elements, so that the ceiling brewing group can be immersed between the drum elements. The information regarding the height relates in particular to the installed state of the revolving door.

[0028] For example, the vertical length of the inner glass element can be at least 20% to 100%, preferably at least 50% to 100%, and particularly preferably at least 80% to 100%, in particular 60% or 70%, of the height of the ceiling assembly less than the vertical length of the outer glass element. In other words, the outer glass element does not have to extend over the entire height of the ceiling assembly on the outside and cover it; for example, the ceiling assembly can also be covered on the outside with the outer glass element only over a partial height. The lateral covering of the ceiling assembly also only occurs in the area of ​​the drum elements, which, in a manner known per se, do not enclose the revolving door completely, but only over a partial circumference, so that the revolving door has entrance and exit sides for people to pass through.

[0029] Preferably, at least one of the drum elements has an upper offset between the inner glass element and the outer glass element. Preferably, the upper end surface of the outer glass element is higher than the upper end surface of the inner glass element. This means that the ceiling brewing group can be immersed between the drum elements. The upper offset relates in particular to the installed state of the revolving door. The offset can arise, for example, from the glass elements having different heights or being arranged offset in height from one another. The ceiling assembly can be of modular design and have a sandwich construction, such that at least one filler is provided as core material, and the filler has a cover plate on at least one cover surface or on both cover surfaces.In this respect, only one top cover plate, only one bottom cover plate, or both top and bottom cover plates can be provided, which preferably run parallel to each other and between which the filler is located. It is also conceivable to have additional cover plates that penetrate the filler and, for example, form an intermediate cover plate level.

[0030] An intermediate level may be necessary, for example, to increase the rigidity of the ceiling assembly and to accommodate components within the ceiling assembly, to hold them together, or to stiffen them together in their overall structure. The basic idea, however, is a sandwich construction that enables a modular, manageable ceiling assembly that can be connected as a whole to the drum elements on site, in particular, can be placed on top of the drum elements, preferably with the turnstile mounted rotatably between the drum elements.

[0031] The modular ceiling assembly thus results in a separately manageable assembly that can be attached to the drum elements and / or the turnstile and, in particular, can be reversibly detached from the drum elements and / or the turnstile. For example, the ceiling assembly can be prefabricated at the factory so that the ceiling assembly only needs to be connected to the drum elements and the turnstile at the destination, without the basic components of the ceiling assembly having to be assembled or assembled on site. This results in considerably shorter assembly times and simplifies the general construction of the ceiling assembly. According to the concept of the invention, the ceiling assembly is designed as a module that can be attached to the other components of the revolving door, arranged on the drum walls and the turnstile, and removed again from this position.

[0032] According to a further embodiment, the basic structure of the ceiling assembly provides that structural elements and / or functional elements are accommodated at least partially on or above the underside cover plate and / or on or above the upper side cover plate and in particular in the area of ​​the filler. Of course, structural elements and / or functional elements can also protrude laterally, in particular radially protruding or from the top or bottom of the cover plates. In particular, the structural elements and / or functional elements can be surrounded by the filler or they can be embedded in the filler. For example, a disk motor for the rotatable drive of the turnstile can be arranged on the underside of the ceiling assembly in such a way that it is, for example, partially integrated within the ceiling assembly and partially protrudes from it.Such motors are also known as torque or disc motors and are typically connected to the turnstile without a gear. The same applies, for example, to connecting elements for connecting the ceiling assembly to the drum elements or to the upper structural elements of a building facade, which may also protrude from the basic structure of the ceiling assembly in sections.

[0033] The structural elements can, for example, pass diametrically through the ceiling assembly and / or the structural elements can connect the top and bottom cover plates or be connected to a single cover plate. While the filler is placed between the cover plates in such a way that it surrounds the structural elements and / or the functional elements, the structural elements and / or the functional elements can also divide the filler into several sub-elements if the elements, for example, completely pass through the ceiling assembly. Conceivable structural elements include a framework-like structure, a star-shaped structure, or, for example, a rectangular or hexagonal structure to stiffen the ceiling assembly accordingly.

[0034] Furthermore, the lower cover plate, and if necessary also the upper cover plate, has openings so that functional elements can be arranged in conjunction with the openings. The optional openings in the upper and / or lower area of ​​the ceiling assembly, but also in the lateral peripheral area if necessary, enable the on-site integration of functional elements, for example, a drive, a control system, a sensor device, a lighting device, a loudspeaker device, a power supply, a locking device, a ventilation device, a heating element, and / or the like, which can be inserted into the openings or into other recesses or intermediate areas in the filler.

[0035] The inner glass element and the outer glass element can be particularly advantageously bonded to one another. In particular, the inner and outer glass elements can jointly form laminated safety glass (LSG), which gives the drum walls particular strength and allows them to be designed to be shatter-proof. For example, it is advantageous for the inner glass element and the outer glass element to be bonded to one another by means of at least one plastic film. During the production of this glass composite, the inner glass element can be provided with a correspondingly lower vertical height and bonded to the outer glass element.

[0036] Further advantageously, at least one profile element is provided, which rests on the upper end surface of the inner glass element and / or on an upper end surface of the outer glass element, wherein the ceiling assembly is accommodated in or on the profile element. The profile element is preferably glued to the inner glass element and / or to the outer glass element, for example, via the upper end surface of the inner glass element and via the inner surface of the outer glass element. Alternatively or additionally, the profile element can also be glued to the ceiling assembly or detachably attached using fasteners.

[0037] The profile element preferably has a first leg and a second leg that is also formed vertically, so that the profile element has, in particular, an L-shape, a T-shape, or a Z-shape, in particular with the first leg resting on the end surface of the inner glass element and / or with the second leg bordering the inside of the outer glass element. The profile element can, in particular, have the same curvature as the curvature of the glass elements, so that the profile element can be inserted into the inside of the glass elements accordingly. In the Z-shape, one or both parallel legs can run at a right angle to the transverse leg.

[0038] An area of ​​the lateral offset and / or at least an area of ​​the outer glass element that projects higher than the inner glass element can particularly advantageously be coated, tinted, or formed from opaque glass. This ensures that any unsightly joints are invisible. It is conceivable that the coating has exposed areas, for example, if sensors are arranged that can detect through the exposed areas.

[0039] At least one support profile can also be installed on the drum elements, particularly on the outside or inside, which preferably has a load-bearing connection to the ceiling assembly. For example, it is conceivable for the support profile to extend vertically on the outside of the drum elements and have a height that is flush with the height of the outer glass element or slightly exceeds it. If the ceiling assembly has structural elements, these can be connected to the support profile, whereby the support profile can also serve as a connection profile for a facade or wall in or on which the revolving door is arranged or installed.

[0040] It is also conceivable for at least one of the drum elements and / or one of the wing elements to have a display, in particular an LCD, for displaying information. This can further improve the appearance and / or functionality of the revolving door. In particular, the display can be arranged on, in, or behind the inner glass element.

[0041] It is further conceivable that the display is designed for interaction with a person, in particular by means of touch input, preferably wherein the interaction enables stopping and / or changing the rotation speed of the turnstile. In particular, an emergency stop of the rotation can thus be carried out by a pedestrian, a person inside the revolving door. This is particularly an improvement over conventional systems in which an emergency stop function is only possible from outside the revolving door. The safety of the pedestrians can thus be increased even in unforeseeable situations. The object of the invention is further achieved by a method for constructing a revolving door, which is designed in particular according to the features listed above, wherein the method comprises at least the following steps:

[0042] Connecting an inner, in particular curved, glass element to an outer, in particular curved, glass element while forming at least one lateral offset.

[0043] It is also conceivable that the following steps are carried out:

[0044] Positioning the drum elements in a facing arrangement, preferably: directly or indirectly placing a ceiling assembly on an upper end surface of the inner glass element and / or on an upper end surface of the outer glass element. The information regarding the height refers in particular to the installed state of the revolving door.

[0045] To form the drum elements, the inner glass elements can be bonded to the outer glass elements or connected to one another by means of at least one film, in particular to form laminated safety glass (VSG).

[0046] Furthermore, a support profile and / or the ceiling assembly can be connected and / or glued to the drum elements, in particular by arranging a lateral profile element and / or a profile element on the inner glass element and / or the outer glass element. In addition, a profile element can be provided which is placed on the upper end surface of the inner glass element and on which the ceiling assembly is received. This achieves improved load transfer from the ceiling assembly to the inner and partly also the outer glass element. With particular advantage, the support profile and / or the ceiling assembly can be detachably glued, detachably screwed or clamped to the drum elements and in particular to the profile element after the profile element has been glued to the inner and / or outer glass element and / or to the ceiling assembly.

[0047] It should be explicitly mentioned that features of the method can be transferred to the revolving door according to the invention and vice versa as inventive.

[0048] PREFERRED EMBODIMENT OF THE INVENTION

[0049] Further measures improving the invention are described in more detail below, together with the description of a preferred embodiment of the invention, with reference to the figures. It shows:

[0050] Figure 1 is an overall view of the revolving door with a structure according to the invention,

[0051] Figure 2 is a flying view of the components of the revolving door,

[0052] Figure 3 is a plan view of a first drum element,

[0053] Figure 4 is a plan view of a second drum element,

[0054] Figure 5 shows a detailed view of the transition of the ceiling assembly into a drum element,

[0055] Figure 6 is a perspective view of the upper arrangement of the ceiling assembly on the drum elements, Figure 7 is a further detailed view of the arrangement of the ceiling assembly on a drum element.

[0056] Figure 1 shows the revolving door 100 with a turnstile 10 that is rotatably mounted between two drum elements 11. Located on top of the turnstile 10 is the ceiling assembly 12, which is constructed in a modular fashion and mounted as an assembly on the drum elements 11. The turnstile 10 is rotatably mounted on the floor and underside of the ceiling assembly 12.

[0057] Figure 2 shows a flying view of the components of the revolving door 100 with the drum elements 11, which are designed to accommodate the ceiling assembly 12 on top. For this purpose, the drum elements 11 have an inner glass element 11a and an outer glass element 11b, wherein the inner glass element 11a has a shorter vertical length than the outer glass element 11b, so that the outer glass element 11b projects beyond the inner glass element 11a and at least partially or completely encloses the ceiling assembly 12 on the outside when the ceiling assembly 12 rests at least indirectly on the upper end surface 13 of the inner glass element 11a. The view shows that the outer glass element 11b projects beyond the inner glass element 11a by approximately the structural height of the ceiling assembly 12. If the ceiling assembly 12 is arranged on the drum elements 11, the upper edge of the outer glass element 11 b is approximately flush with the top of the ceiling assembly 12.

[0058] Figures 3 and 4 each show a schematic, not-to-scale, plan view of a drum element according to the invention. A lateral offset between the inner and outer glass elements 11a, 11b is visible, in which a support profile 25 is arranged. According to Figure 4, a lateral profile element 24 is also arranged on the right side between the support profile 25 and the drum element, which simplifies the connection. The individual support profiles 25 can:

[0059] - protrude radially from the drum element - indicated on the left in Figure 3 and / or

[0060] - protrude from the drum element in the circumferential direction - indicated in Figures 3 and 4 on the right and / or

[0061] - flush with the drum element in the radial direction - indicated in Figure 4 on the right and / or

[0062] - flush with the drum element along its circumference - indicated on the left in Figure 4.

[0063] In Figure 3, the inner glass element 11a is further divided into two sub-elements by an intermediate support profile 25a. In Figure 4, the outer glass element 11b is divided into two sub-elements by an intermediate support profile 25b. The intermediate support profile 25a, 25b, designed as a support post, provides further support for the overall structure. The intermediate support profile 25a, 25b can be flush with the sub-elements (not shown) and thus be integrated almost seamlessly into the drum element.

[0064] Subcombinations of the respective possibilities for integrating the support profile 25 and the intermediate support profile 25a, 25b into / on the drum element can of course be in accordance with the invention. Such a design visually and structurally improves the integration of the support profile 25 and the intermediate support profile 25a, 25b into the revolving door. The support profile 15 described below can also be designed according to this example.

[0065] Figure 5 shows, in perspective form, a detailed view of the arrangement of the ceiling assembly 12 on a drum element 11. The ceiling assembly 12 is constructed with a lower cover plate 16 and an upper cover plate 18, between which a filler 17 is sandwiched. The drum element 11 has the inner glass element 11a and the outer glass element 11b, and the outer glass element 11b projects beyond the inner glass element 11a on the outside in its vertical direction. The height difference between the upper end surface 13 of the inner glass element 11a and the upper edge of the outer glass element 11b corresponds to a partial height of the ceiling assembly 12, so that this exemplary embodiment demonstrates that the drum element 11 does not completely enclose the ceiling assembly 12 on the outside, but at least partially.

[0066] On the inside of the drum element 11, a profile element 14 is arranged, which rests with a vertical leg on the inside against the outer glass element 11b and with a horizontal leg projects radially inwards into the revolving door so that the ceiling assembly 12 can rest on the horizontal leg. The profile element 14 sits on the end surface 13 of the inner glass element 11a and forms a simple angle profile. The profile element 14 is thus arranged between the ceiling assembly 12 and the drum element 11 and the ceiling assembly 12 is therefore only indirectly arranged on the drum element 11, which represents a variant encompassed by the invention, and the ceiling assembly 12 can also be connected directly, for example, to the underside cover plate 16 or to the filler orwith a structural element present therein or even with an outwardly projecting edge of the upper cover plate 18 resting on the drum element 11.

[0067] Figure 6 shows in a further view the arrangement of the ceiling assembly 12 on the top side of the drum elements 11, wherein the ceiling assembly 12 is shown with a structural component 21 which is connected to a support profile 15 arranged on the outside of the front drum element 11.

[0068] On the underside of the ceiling assembly 12, the revolving door 100 has a ceiling device 19, which can in particular be designed to rotate with the turnstile 10 and is arranged approximately parallel to the underside of the ceiling assembly 12. The ceiling device 19 has, for example, lighting means 20, which, however, can also only have transparent flat bodies, and the actual lighting means can be arranged in the ceiling assembly 12. Located centrally in the ceiling assembly 12 is a motor 23, which is designed, for example, as an electronically commutated plate motor and is connected to the turnstile 10 without a gear. The rotating part of the motor 23 also allows the ceiling device 19 to rotate together with the turnstile 10.

[0069] Finally, Figure 7 shows a further detailed view of the arrangement of the ceiling assembly 12 on a drum element 11, wherein the profile element 14 rests on the upper end surface 13 of the inner glass element 11a and borders on the inside of the outer glass element 11b. On the upper side of the profile element 14, a connecting means 22 is shown, which is connected to a structural component 21 of the ceiling assembly 12. The ceiling assembly 12 in turn has the underside cover plate 16, the filler 17 and the upper side cover plate 18, wherein the connecting means 22 is designed as a tab-like requirement on the support profile 15 and projects radially inward into the ceiling assembly 12. In this way, an advantageous load transfer from the ceiling assembly 12 can take place both into the drum element 11 and additionally or exclusively into the support profile 15. The turnstile 10, on which the ceiling device 19 is arranged so as to rotate, is shown on the underside.The support profile 15 can also be designed analogously to the example in Figures 4 and 5 in a view not shown.

[0070] The invention is not limited to the preferred embodiment described above. Rather, a number of

[0071] Variants are conceivable that utilize the presented solution even in fundamentally different embodiments. All features and / or advantages arising from the claims, the description, or the drawings, including structural details or spatial arrangements, may be essential to the invention both individually and in a wide variety of combinations.

[0072] List of reference symbols:

[0073] 100 revolving doors

[0074] 10 Turnstile

[0075] 11 Drum element

[0076] 11a inner glass element

[0077] 11 b outer glass element

[0078] 12 Ceiling assembly

[0079] 13 End surface

[0080] 14 profile element

[0081] 15 Support profile

[0082] 16 underside cover plate

[0083] 17 Filler

[0084] 18 top cover plate

[0085] 19 Ceiling installation

[0086] 20 lighting devices

[0087] 21 Structural component

[0088] 22 connecting devices

[0089] 23 Engine

[0090] 24 side profile element

[0091] 25 supporting profile

[0092] 25a-b intermediate support profile

Claims

Claims:

1. Revolving door (100) with a turnstile (10) arranged between opposing drum elements (11), and with a ceiling assembly (12) arranged on top of the drum elements (11) and on which the turnstile (10) is rotatably mounted, characterized in that at least one of the drum elements (11) has an inner glass element (11a) and an outer glass element (11b), wherein the drum element (11) has a lateral offset, in particular on both sides of the drum element (11), between the inner glass element and the outer glass element.

2. Revolving door (100) according to claim 1, characterized in that a support profile (25), in particular a post, is arranged in or on the at least one lateral offset.

3. Revolving door (100) according to claim 2, characterized in that the support profile (25) is connected directly or indirectly to the drum element (11), in particular to the inner glass element (11a) and / or the outer glass element (11b), and / or to the ceiling assembly (12), in particular is connected in a materially bonded and / or force-locking and / or form-locking manner.

4. Revolving door (100) according to claim 2 or 3, characterized in that the support profile (25) is connected to the drum element (11) and / or the ceiling assembly (12) indirectly via a lateral profile element (24), in particular connected in a materially bonded and / or force-locked and / or form-locked manner.

5. Revolving door (100) according to one of the preceding claims, characterized in that the inner glass element (11a) comprises at least two sub-elements arranged next to one another, in particular in alignment, which are arranged at a distance from one another to form an intermediate space, wherein an intermediate support profile (25a) is arranged in the intermediate space, and / or that the outer glass element (11b) comprises at least two sub-elements arranged next to one another, in particular in alignment, which are arranged at a distance from one another to form an intermediate space, wherein an intermediate support profile (25b) is arranged in the intermediate space.

6. Revolving door (100) according to one of the preceding claims, characterized in that the ceiling assembly (12) rests directly or indirectly on an upper end surface (13) of the inner glass element (11a) and / or on an upper end surface of the outer glass element (11b).

7. Revolving door (100) according to one of the preceding claims, characterized in that the inner glass element (11a) has a smaller vertical length than the outer glass element (11b), so that the outer Glass element (11b) at least partially or completely encloses the ceiling assembly (12) on the outside. Revolving door (100) according to one of the preceding claims, characterized in that the inner glass element (11a) and the outer glass element (11b) are materially connected to one another. Revolving door (100) according to one of the preceding claims, characterized in that a region of the lateral offset and / or at least a region of the outer glass element (11b) which projects above the inner glass element (11a) in height has a coating or is colored. Revolving door (100) according to one of the preceding claims, characterized in that at least one support profile (15, 25) is arranged on the drum elements (11), in particular on the outside, which support profile has a supporting connection to the ceiling assembly (12).Revolving door (100) according to one of the preceding claims, characterized in that the ceiling assembly (12) has a sandwich construction with a lower cover plate (16), a filler (17), and an upper cover plate (18). Revolving door (100) according to one of the preceding claims, characterized in that the ceiling assembly (12) forms an individually handleable assembly that is connected to the drum elements (11) and / or the. Turnstile (10) is attachable and detachable from the drum elements (11) and / or from the turnstile (10). A method for constructing a revolving door (100), in particular according to one of the preceding claims, wherein the method comprises at least the following steps: - Connecting an inner, in particular curved, glass element (11a) to an outer, in particular curved, glass element (11b) while forming at least one lateral offset. Method according to claim 13, characterized in that, to form the drum elements (11), the inner glass elements (11a) are adhesively bonded to the outer glass elements (11b) or are connected to one another with at least one film. Method according to claim 13 or 14, characterized in that the support profile (25) and / or the ceiling assembly (12) is connected and / or adhesively bonded to the drum elements (11), in particular by arranging a lateral profile element (24) and / or a profile element (14) on the inner glass element (11a) and / or on the outer glass element (11b).