Stud wall and method for creating a stud wall
The stud wall system addresses inefficiencies in existing construction methods by using a connector with a connector web and legs to quickly and reliably assemble metal studs, achieving flexible design, reduced costs, and efficient space use.
Patent Information
- Application Number
- PCT/EP2023/025541
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-12-19
- Publication Date
- 2025-06-26
AI Technical Summary
Existing stud wall construction methods are inefficient and time-consuming, lacking a reliable and quick assembly solution that also allows for flexible adaptation to local requirements and efficient use of space.
A stud wall system comprising a first and second metal stud connected by a connector with a connector web and two connector legs, allowing for quick and reliable assembly by arranging the connector web on the first metal stud and at least one connector leg on the second metal stud, with the option to arrange both legs on the second stud for enhanced stability.
The solution enables rapid and reliable assembly of stud walls with consistent high quality, flexibility in design to suit local needs, reduced material and labor costs, and efficient use of space for building installations.
Smart Images

Figure EP2023025541_26062025_PF_FP_ABST
Abstract
Description
[0001] Stud wall and method for creating a stud wall
[0002] The invention relates to a stud wall, comprising a first metal stud, a second metal stud and a connector. The invention also relates to a method for creating a stud wall.
[0003] Stud walls that are created using dry construction and which include metal studs are known in various designs. Planking can be arranged on the metal studs to form a closed wall surface. It is also known to arrange installations, such as water pipes and electrical cables, in a cavity formed by the stud wall.
[0004] DE 10 2008 051 696 A1 discloses a stud wall that is formed as a double stud wall and comprises a first metal stud and a second metal stud. Here, the metal studs are formed by metal profiles that have a metal stud web and two metal stud legs. The planking of the stud wall is arranged on the metal stud legs.
[0005] DE 20 2020 101 740 U1 proposes using fixing brackets with a sound decoupling element to connect two metal studs of a double stud wall.
[0006] For connecting metal studs of a double stud wall, it is also known in practice to provide a reinforcement, wherein two metal studs are connected with strips of plasterboard.
[0007] DE 20 2022 001526 U1 describes a ceiling hanger, comprising a web and two legs.
[0008] It is an object of the invention to further develop a stud wall and a method for creating a stud wall in such a way that the assembly can be carried out reliably and quickly.
[0009] The aforementioned object is solved by a stud wall, comprising a first metal stud, a second metal stud and a connector, wherein the connector has a connector web and two connector legs, wherein the connector connects the first and the second metal stud and is arranged with the connector web on the first metal stud and with at least one of the two connector legs on the second metal stud.
[0010] The first and second metal studs can be connected quickly and reliably with the connector. For this purpose, it is sufficient to arrange the connector web on the first metal stud and at least one connector leg on the second metal stud. If both connector legs are arranged on the second metal stud, particularly good stability is achieved. The components of the metal stud wall can be manufactured industrially and then be assembled on site. This contributes to a consistently high quality, but, at the same time, enables the flexible construction of stud walls. The dimensions and design details of these can be adapted to the respective local requirements. In particular, the claimed embodiment allows to easily adjust the distance between the first and second metal studs and thus the thickness of the stud wall. In addition, the material costs for the stud wall and the assembly effort can be kept low. It is also possible to arrange elements of the building installation in the stud wall to save space. As a result, a gain in space can be achieved. This also contributes to reduced costs of construction. In particular, the stud wall can be formed as a dry construction stud wall.
[0011] In the following, embodiments are described that further enhance the aforementioned advantages.
[0012] A preferred embodiment of the invention provides for the stud wall to be formed as a double stud wall. It can be provided that several of the first metal studs are arranged in a first row of studs and several of the second metal studs are arranged in a second row of studs. Preferably, the first and second rows of studs are arranged along straight lines parallel to each other.
[0013] Preferably, the first and second metal studs are arranged with an intermediate space between them, wherein the intermediate space is bridged by the connector. The intermediate space makes it easier to arrange elements of a building installation in the stud wall.
[0014] According to the invention, it can be provided that the stud wall accommodates a device of the building installation which is arranged in the intermediate space between the first and the second metal stud. An element of the building installation can advantageously be one or more elements selected from the group, consisting of a water pipe, a wastewater pipe, an electrical line and a data cable. According to the invention, it is preferred that the first and second metal studs are elongated and have a main longitudinal direction, wherein the metal studs are arranged with their main longitudinal direction being vertical. This also contributes to easy assembly.
[0015] A preferred embodiment provides that the first and second metal studs are arranged parallel to each other.
[0016] A particularly preferred embodiment provides that the first metal stud and / or the second metal stud (each) comprise a metal profile which has a metal stud web and two metal stud legs. Preferably, the metal stud legs are arranged at right angles to the metal stud web. Deviations of a few degrees from an exactly right-angled shape do not play a significant role for the invention.
[0017] A preferred embodiment is that the metal profile is formed as a C-profile or a U-profile. Here, it can be provided for the metal stud legs to be arranged perpendicular to the metal stud web. According to the invention, it is particularly preferred if the metal profile is formed as a C- profile. The C-profile can have an inwardly bent edge at the free end of each metal stud leg. The bent edge stiffens the metal stud leg and makes the assembly of the connector easier.
[0018] Preferably, the metal profile has at least one stiffening bead in the metal stud leg and / or in the metal stud web.
[0019] According to the invention, it is preferred that the first and second metal studs are arranged, so that the metal stud legs of the first and second metal studs point in opposite directions. Preferably, the metal stud legs of the first metal stud point towards the second metal stud and the metal stud legs of the second metal stud point towards the first metal stud. Furthermore, it is preferred if the metal stud legs of the first and second metal studs are arranged in parallel (particularly preferably coplanar).
[0020] A preferred embodiment provides that the metal stud webs of the first and second metal studs are arranged parallel to each other.
[0021] A particularly stable and quick-to-install connection can be achieved by providing a first connection means that connects the connector web to the first metal stud. Preferably, the first connection means is inserted into one of the metal stud legs. It is preferred that the first connection means is inserted into one of the metal stud legs through the connector web. It is preferred for the connector to have a connection lug on the connector web, wherein the first connection means is inserted into the first metal stud through the connection lug. The connection lug can be formed by a cutout in the connector leg. Preferably, the connector web has a connection lug on both sides.
[0022] A preferred embodiment provides that the connection lug has a free end and is arranged at an angle (preferably at right angles) to a main plane of the connector web. The connection lug can be a bent-over section of the connector web.
[0023] Preferably, the connection lug and connector legs point in opposite directions.
[0024] A further improvement provides that the connection lug has a prepared opening for the first connection means. The prepared opening can be punched out or cut out in particular.
[0025] According to the invention, it is preferred that the connector web has two longitudinal sides and two transverse sides, wherein the connection lug is arranged on one of the transverse sides. Preferably, one connection lug is arranged on each of the two transverse sides.
[0026] Preferably, a first plastically bendable connection region is provided between the connector web and the connection lug. This makes it easier to bend the connection lug.
[0027] A preferred embodiment provides that the connection lug rests against one of the metal stud legs. Preferably, the connection lug rests against an outer side of the metal stud leg.
[0028] A particularly advantageous embodiment provides for the connector web to rest against the first metal stud and for the connector legs to rest against the second metal stud. Preferably, the connector web rests against both metal stud legs of the first metal stud. It is also preferred that the connector legs each rest against one of the metal stud legs of the second metal stud.
[0029] Preferably, the connector web of the connector is arranged parallel to the metal stud web of the first and / or second metal stud.
[0030] A preferred embodiment provides that a second connection means is provided which connects one of the connector legs to the second metal stud. Preferably, the second connection means is inserted into the metal stud leg of the second metal stud through the connector leg. It is preferred if both connector legs are each connected to the second metal stud by a second connection means.
[0031] Assembly is further simplified by the connector having a field, comprising several through- openings, in at least one of the connector legs, wherein the second connection means is inserted into the second metal stud through one of the through-openings. Preferably, the through-openings in the field are arranged in several rows. This contributes to easy installation.
[0032] Preferably, the second connection means is inserted in one of the metal stud legs through one of the through-holes.
[0033] According to the invention, it is preferred that the connector legs are arranged at right angles to the connector web. Preferably, the connector web and the connector legs have a U-shape. This contributes to a reliable connection between the first and second metal studs.
[0034] Preferably, the connector legs are elongated and have a longitudinal direction, wherein the longitudinal direction of the connector legs is arranged horizontally in the stud wall.
[0035] A preferred embodiment provides that a planking is provided which is arranged on the first and / or the second metal stud.
[0036] The planking can comprise planking panels that are arranged on the first metal stud or the second metal stud. Preferably, the planking panels are gypsum boards, gypsum fiber boards, fiber cement boards, wood boards and / or wood fiber boards. Gypsum boards are particularly preferred according to the invention. The panels can be wall panels in particular.
[0037] According to the invention, it can be provided that the planking is formed on one or both sides. In case of single-sided planking, the planking panels are only arranged on the first or the second metal stud. In the preferred two-sided planking according to the invention, planking panels can be arranged on both, the first and the second metal stud.
[0038] Preferably, the planking panels are arranged on the metal stud web of the first metal stud. Furthermore, it can be provided that planking panels are arranged on the metal stud web of the second metal stud. In particular, the planking can be formed as single or double planking. In case of double planking, two layers of planking panels are arranged on top of each other.
[0039] Preferably, the stud wall is a partition wall that has planking on both sides.
[0040] An advantageous embodiment provides that the planking panels are arranged on the first or second metal stud with a third connection means, wherein the third connection means is inserted into the metal stud web through the planking.
[0041] A particularly preferred embodiment of the invention provides that a length L of the metal stud legs is less than a metal stud web width B. The metal stud web width B can correspond to the distance between the metal stud legs at the connection between the metal stud leg and the metal stud web. The length L of the metal stud legs can be the shortest distance between the end of the metal stud leg that is pointing away from the metal stud web and the metal stud web. Preferably, the length L is less than 50 % of the metal stud web width B. Preferably, the length L of the metal stud legs is greater than 25 % of the metal stud web width B. This contributes to a space-saving design. In particular, this allows an intermediate space to be maintained in the stud wall even with a thin wall thickness, leaving sufficient space for elements of the building installations.
[0042] According to the invention, it has been proved advantageous if the first, the second and / or the third connection means each comprise a screw.
[0043] A further improvement is achieved if the first and second metal studs have an upper and a lower end, wherein the lower end is arranged in a first U-profile and / or the upper end is arranged in a second U-profile. Preferably, the first and / or second U-profile is fixedly connected to the building.
[0044] Preferably, the metal stud legs are arranged parallel to the connector legs.
[0045] According to the invention, it can be provided that the metal stud legs have an inner side and an outer side, wherein the connector legs each rest against one of the outer sides of the metal stud legs. Preferably, a web width of the metal stud web is between 95 % and 105 % of the web width of the connector web. In particular, the web width of the metal stud web can correspond to the web width of the connector web.
[0046] Preferably, the metal stud has a sheet thickness of between 0.5 mm and 3 mm.
[0047] The connector is preferably made of metal.
[0048] According to the invention, it can be provided that the connector has a continuous metal sheet strip which forms the connector web and the two connector legs. Due to this one-piece embodiment, the connector is particularly stable and can be manufactured cost-effectively and with a high level of process reliability. Preferably, the metal sheet strip has a sheet thickness of between 0.5 mm and 3 mm.
[0049] According to the invention, it can be provided that the stud wall is an outer wall or an interior wall of a building. Preferably, the stud wall is an interior wall.
[0050] Preferably, the stud wall comprises insulation. The insulation can be arranged along the planking. In particular, the insulation can comprise a fiber-containing material. The insulation improves the sound and / or temperature insulation properties of the stud wall.
[0051] The invention also comprises the use of a connector of the type described for connecting a first metal stud and a second metal stud of a metal stud wall.
[0052] The invention also relates to a method for creating a stud wall, comprising a first metal stud, a second metal stud and a connector having a connector web and two connector legs, wherein the connector is arranged with the connector web on the first metal stud and with at least one of the two connector legs on the second metal stud.
[0053] Further objectives, characteristics, advantages and application possibilities of this invention result from the following description of exemplary embodiments based on the drawings. All described and / or depicted characteristics, individually or in any meaningful combination, form the object of the invention, even independently of the summary in individual claims or their referrals. The figures show:
[0054] Fig. 1 : a first and a second metal stud of a stud wall with a connector;
[0055] Fig. 2: a stud wall with a first and a second metal stud and a connector;
[0056] Fig. 3a: a schematic plan view from above of the stud wall from Fig. 2;
[0057] Fig. 3b: an enlarged detail of the stud wall from Fig. 3a;
[0058] Fig. 4: an enlarged detail of the stud wall from Fig. 2;
[0059] Fig. 5: an enlarged detail of a stud wall in a modified embodiment;
[0060] Fig. 6a - 6c: depictions of a connector in perspective view with connector legs in the assembly position and in perspective view and plan view with connector legs in the storage position.
[0061] Fig. 1 shows a schematic perspective view of a first metal stud 1 and a second metal stud 2 which are connected by a connector 3. Fig. 1 shows the upper ends of the first and second metal studs 1 , 2. The outer contours of the connector 3 and of the first metal stud 1 , as far as they are hidden by the first or second metal stud 1 , 2 in Fig. 1 , is shown in dashed lines.
[0062] The first and second metal studs 1 , 2 each comprise a metal profile that has a metal stud web 4, on both sides of which a metal stud leg 5 is arranged. As depicted, the metal stud legs 5 are each arranged at right angles to the metal stud web 4. In the depicted exemplary embodiment, the metal profile is formed as a C-profile. This has an inwardly bent edge 6 at the free end of each of the metal stud legs 5.
[0063] Several beads 7 are arranged in the metal stud legs 5 for stiffening.
[0064] The first and second metal studs 1 , 2 are arranged in such a way that the metal stud legs 5 of the first and second metal studs 1 , 2 point in opposite directions. The metal stud legs 5 of the first metal stud 1 point towards the second metal stud 2 and the metal stud legs 5 of the second metal stud 2 point towards the first metal stud 1 . One metal stud leg 5 of each of the first and second metal studs 1 , 2 are arranged coplanar. The metal stud webs 4 of the first and second metal studs 1 , 2 are arranged parallel to each other.
[0065] The connector 3 has a connector web 8 and a connector leg 9 on either side of the connector web 8. The connector legs 9 are arranged at right angles to the connector web 8, resulting in a U-shape of the connector 3. The first and second metal studs 1 , 2 are elongated and have a main longitudinal direction HL, wherein the first and second metal studs are arranged vertically with their main longitudinal direction HL.
[0066] The connector legs 9 are elongated and each have a longitudinal direction, wherein the longitudinal direction of the connector legs 9 is arranged horizontally. The arrangement depicted in Fig. 1 also has a first connection means 10 which fixes the connector web 8 to the first metal stud 1 . The connector 3 has a connection lug 11 on the connector web 8. The first connection means 10 is inserted into the first metal stud 1 through the connection lug 1 1.
[0067] The connection lug 1 1 has a free end and is arranged at right angles to a main plane of the connector web 8.
[0068] In the depicted exemplary embodiment, the connector 3 has two connection lugs 1 1 that rest against the first metal stud 1 .
[0069] The first connection means 10 can in particular be formed as a screw with a thread, which is only depicted schematically simplified without a thread in Fig. 1 .
[0070] The connection lugs 1 1 each rest against one of the metal stud legs 5 of the first metal stud 1 . The connector 3 with the connector web 8 rests against the two metal stud legs 5 of the first metal stud 1 .
[0071] The connector 3 rests with the connector legs 9 against the second metal stud 2. The connector legs 9 each rest against an outer side of the metal stud legs 5 of the second metal stud 2.
[0072] As depicted, the connector web 8 of the connector 3 is arranged parallel to the metal stud webs 4 of the first and second metal studs 1 , 2.
[0073] Fig. 1 also shows second connection means 12, each connecting one of the connector legs 9 to the second metal stud 2. The second connection means 12 are each inserted into one of the metal stud legs 5 of the second metal stud 2 through one of the connector legs 9. To facilitate the assembly, the connector 3 has a field 13, comprising several through-openings 14, in each of the connector legs 9. The second connection means 12 are each inserted into the second metal stud 2 through one of the through-openings 14. The through-openings 14 are arranged in several rows in the field 13. In the depicted exemplary embodiment, the field 13 comprises six rows, each with three through-openings 14.
[0074] The second connection means is formed as a screw, which is depicted in simplified form without a thread in Fig. 1.
[0075] Fig. 1 shows that the second connection means 12 connects one of the connector legs 9 to one of the metal stud legs 5 of the second metal stud 2.
[0076] The connector 3 has beaded areas 15 in the connector legs 9, the beaded areas 15 increasing the stability of the connector legs 9.
[0077] A cutout 16 is arranged in the connector web 8 in the depicted exemplary embodiment.
[0078] Fig. 1 shows that the first and second metal studs 1 , 2 are arranged with an intermediate space 17 between the first and second metal studs 1 , 2. Here, the connector 3 can be used to set the desired distance between the first and second metal studs 1 , 2. In this way, the depicted arrangement can easily be adapted to the respective circumstances.
[0079] Fig. 1 further shows that a length L of the metal stud legs 5 is less than a metal stud web width B. The metal stud web width B corresponds to the distance between the metal stud legs at the connection between metal stud leg 5 and metal stud web 4. The length L of the metal stud legs 5 is the shortest distance between the end of the metal stud leg 5, pointing away from the metal stud web 4, and the metal stud web 4. In the depicted exemplary embodiment, the length L is slightly less than 50 % of the metal stud web width B.
[0080] Fig. 2 shows a stud wall that is formed as a double stud wall. It comprises the first metal stud 1 , the second metal stud 2 and the connector 3, which are also depicted in Fig. 1. The first and second metal studs 1 , 2 and the connector 3 are arranged as described in connection with Fig. 1.
[0081] The stud wall 20 depicted in Fig. 2 can in particular be a partition wall inside a building.
[0082] Fig. 2 shows that a plurality of the first metal studs 1 are arranged in a first row of studs and a plurality of the second metal studs 2 are arranged in a second row of studs. The first and second rows of studs are each arranged along straight lines parallel to each other. The first and second metal studs 1 , 2 each extend over the entire height of the wall. For reasons of clarity, some of the first metal studs 1 depicted in Fig. 2 are only partially depicted.
[0083] The stud wall 20 has a planking 21 which is arranged on the outer sides of the first and second metal profile 1 , 2. The planking comprises planking panels 22 on one side of the stud wall 20, which are arranged on the metal stud webs 4 of the first metal studs 1. In addition, further planking panels 22 are provided on the other side of the stud wall 20, which are arranged on the metal stud webs 4 of the second metal stud 2. The planking panels can in particular be gypsum boards, gypsum fiber boards, fiber cement boards, wood boards and / or wood fiber boards.
[0084] The planking 21 has joint cover strips 23 at the points where the planking panels 22 are butt- jointed. Joint cover strips 23 are optional and are usually bonded to the boards before applying a finishing coat and are used, among other things, to absorb tensile stresses, such as thermal stresses, which could otherwise lead to cracks in the joint area.
[0085] In the depicted exemplary embodiment, the planking 21 is formed as single planking on both sides and has only one layer of planking panels 22 in each case. In contrast to the depicted example, the planking can also be formed as double planking with two layers of planking panels 22, for example.
[0086] The stud wall 20 comprises an insulation 24. The latter can be arranged along the inside of the planking 21. In the depicted exemplary embodiment, on one side of the stud wall 20, the planking 21 with the planking panels 22 and the insulation 24 are only depicted in a lower section of the stud wall 20. The planking 21 is arranged on the first or second metal stud 1 , 2, using third connection means 25 which can in particular be formed as screws. The third connection means 25 are inserted into the metal stud webs 4 through the planking 21 .
[0087] The first and second metal studs 1 , 2 each have an upper and a lower end 26, 27. Fig. 2 shows that the lower ends 27 are each arranged in a first U-profile 28. In this way, the first and second metal studs 1 , 2 can be fixed to a substrate and aligned. A corresponding U-profile can also be arranged at the upper end 26. For better depiction, the upper U- profile is not depicted in Fig. 2.
[0088] Fig. 2 also shows that the stud wall 20 accommodates an element of the building installation which is arranged in the intermediate space 17 between the first and second metal studs 1 , 2. In the exemplary embodiment depicted in Fig. 2, the element of the building installation is a pipe 29. Since the first and second metal studs 1 , 2 each face inwards only with the length L of the metal stud legs 5, a relatively large intermediate space 17 can be maintained even with small wall thicknesses. This enables space-saving and therefore cost-effective construction.
[0089] Fig. 3a shows the stud wall 20 from Fig. 2 from above. Fig. 3a shows the first and second metal studs 1 , 2 of the stud wall and the connectors 3, each connector 3 connecting one of the first metal studs 1 to the adjacent metal stud 2. Fig. 3a also shows the first and second connection means 10, 12 which connect the connector 3 to the first and second metal studs 1 , 2.
[0090] Fig. 3a further shows the intermediate space 17 in which elements of the building installation can be arranged.
[0091] Fig. 3a shows the single-layer planking 21 with the planking panels 22 on both sides. Furthermore, the insulation 24 is shown schematically along the planking 21.
[0092] Fig. 3b shows an enlarged detail of the stud wall from Fig. 3a. Here, it can be clearly seen how the connector 3 connects the first and second metal studs 1 , 2. Also depicted are the first connection means 10 which connect the connection lugs 11 to the first metal stud 1. Also shown are the second connection means 12 which connect the connector legs 9 to the second metal stud 2. In addition, the third connection means 25 are shown, which are inserted into the metal stud webs 4 through the planking 21 .
[0093] Fig. 3b shows that the web width B of the metal stud web 4 corresponds to the web width VB of the connector web 8 (see also Figs. 1 and 6c).
[0094] Fig. 4 shows an enlarged detail of the stud wall 20 from Fig. 2. The pipe 29, which is arranged in the intermediate space 17, can be clearly seen here.
[0095] Fig. 5 shows an alternative embodiment. This largely corresponds to the embodiment shown in Fig. 4. However, in Fig. 5, cables 30 are arranged in the intermediate space 17. In the depicted exemplary embodiment, the cables 30 are arranged in a cable duct 31 arranged in the intermediate space 17. Fig. 6a shows a connector 3’ that essentially corresponds to the connector 3 depicted in Fig. 1. In Fig. 6a, the connector legs 9 are longer than in the exemplary embodiment depicted in Fig. 1 . Accordingly, the field 13 comprises a larger number of rows of through-openings 14.
[0096] By shortening the connector legs 9, the connector 3’ depicted in Fig. 6a can be transformed into the connector 3 depicted in Fig. 1. Corresponding adjustments can be made during assembly.
[0097] Fig. 6a also shows the connection lugs 11 which are arranged at right angles to the connector web 8. Prepared openings 33 for the first connection means 10 are also depicted.
[0098] The connector 3 has a continuous metal sheet strip 34 which forms the connector web 8 and the two connector legs 9 from a single piece.
[0099] The connector 3’ can initially be manufactured in the flat shape shown in Figs. 6b and 6c. The manufacture can be performed in particular by punching. A cutout 35 can also be made in the connector leg 9, which forms the connection lug 11. To save space, the connector 3’ can be manufactured, transported and stored in the flat form shown in Figs. 6b and 6c. Before assembly, the connector 3’ is shaped as depicted in Fig. 6a. Here, the connector legs 9 are bent over and arranged at right angles to the connector web 8. The connection lug 11 is also brought into the position depicted in Fig. 6a by bending it over. As depicted, the connection lugs 11 and the connector legs 9 then point in opposite directions away from the connector web 8.
[0100] The connector web 8 has two longitudinal sides and two transverse sides, wherein the connection lugs 11 are each arranged on one of the transverse sides.
[0101] As depicted in Figs. 6a to 6c, the connector web 8 can have beaded areas 36 for stiffening.
Claims
Claims1. A stud wall, comprising a first metal stud (1 ), a second metal stud (2) and a connector (3, 3’), characterized in that the connector (3, 3’) has a connector web (8) and two connector legs (9), in that the connector (3, 3’) connects the first metal stud (1 ) to the second metal stud (2), wherein the connector (3, 3’) is arranged with the connector web (8) on the first metal stud (1 ) and with at least one of the two connector legs (9) on the second metal stud (2).
2. The stud wall according to claim 1 , characterized in that the stud wall is formed as a double stud wall, wherein the first and the second metal studs (1 , 2) are arranged with an intermediate space (17), wherein the intermediate space (17) is bridged by the connector (3, 3’).
3. The stud wall according to claim 2, characterized in that the stud wall accommodates an element of the building installation (29, 30) which is arranged in the intermediate space (17) between the first and the second metal stud (1 , 2).
4. The stud wall according to any of claims 1 to 3, characterized in that the first and the second metal studs (1 , 2) are elongated and have a main longitudinal direction, wherein the first and the second metal studs (1 , 2) are arranged vertically with their main longitudinal directions.
5. The stud wall according to any of claims 1 to 4, characterized in that the first metal stud (1 ) and / or the second metal stud (2) each comprise a metal profile which has a metal stud web (4) and two metal stud legs (5).
6. The stud wall according to claim 5, characterized in that a length (L) of the metal stud legs (5) is less than a metal stud web width (B).
7. The stud wall according to any of claims 1 to 6, characterized in that the first and the second metal studs (1 , 2) are arranged such that the metal stud legs (5) of the first and the second metal studs (1 , 2) point in opposite directions.
8. The stud wall according to any of claims 1 to 7, characterized in that a first connection means (10) is provided which connects the connector web (8) to the first metal stud (1 ).
9. The stud wall according to claim 8, characterized in that the connector has a connection lug (1 1 ) on the connector web, wherein the first connection means (10) is inserted into the first metal stud through the connection lug (1 1 ).
10. The stud wall according to any of claims 1 to 9, characterized in that the connector web (8) rests against the first metal stud (1 ) and that the connector legs (9) rest against the second metal stud (2).11 . The stud wall according to any of claims 1 to 10, characterized in that a second connection means (12) is provided which connects one of the connector legs (9) to the second metal stud (2).
12. The stud wall according to claim 1 1 , characterized in that the connector (3, 3’) has a field (13), comprising a plurality of through-openings (14), in at least one of the connector legs (9), wherein the second connection means (12) is introduced into the second metal stud (2) through one of the through-openings (14).
13. The stud wall according to any of claims 1 to 12, characterized in that a planking (21 ) is provided which is arranged on the outer sides of the first and second metal stud (1 , 2).
14. The stud wall according to claim 13, characterized in that the planking (21 ) is arranged with a third connection means (25) on the first or second metal stud (1 , 2), wherein the third connection means (25) is inserted into the metal stud web (4) through the planking (21 ).
15. A method for creating a stud wall, comprising a first metal stud (1), a second metal stud (2) and a connector (3, 3’) which has a connector web (8) and two connector legs (9), wherein the connector (3, 3’) is arranged with the connector web (8) on the first metal stud (1) and is arranged with at least one of the two connector legs (9) on the second metal stud (2).
Citation Information
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