Bracket for arrangement on an inner wall part of an air-conditioning cabinet, bracket assembly, inner wall part for an air-conditioning cabinet, holding system and air-conditioning cabinet

The holder assembly with an angled insertion and locking elements addresses the complexity and safety issues of existing climate chamber support systems, offering a simple, flexible, and secure mounting solution.

EP4726301A1Pending Publication Date: 2026-04-15BINDER GMBH
View PDF 13 Cites 0 Cited by

Patent Information

Authority / Receiving Office
EP · EP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-07-28
Publication Date
2026-04-15

AI Technical Summary

Technical Problem

Existing climate chamber support systems are complex to manufacture and assemble, and lack sufficient safety features to prevent unintentional detachment, including failures due to overload or fatigue/wear.

Method used

A holder assembly with a base section and first retaining section featuring an angled insertion element and locking elements that engage behind the inner wall, allowing for easy assembly and disassembly while securing against detachment, utilizing elastic deformation for enhanced gripping.

Benefits of technology

The solution provides a simple, flexible, and secure mounting system that prevents unintentional detachment, ensuring stability and ease of use in climate chambers.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure IMGAF001_ABST
    Figure IMGAF001_ABST
Patent Text Reader

Abstract

A mounting bracket (12) for mounting on an inner wall section (14) of a climate cabinet (16), comprising a base section (20) and a first retaining section (22) arranged on the base section (20), wherein the base section (20) has a base longitudinal direction (24) and a base transverse direction (26) arranged transversely to the base longitudinal direction (24), wherein the first retaining section (22) has an insertion element (36) for insertion into the inner wall section (14) and at least one locking element (38, 39) arranged on the insertion element (36) for securing the first retaining section (22) to the inner wall section (14), and wherein the at least one locking element (38, 39) is arranged along the base transverse direction (26) following the insertion element (36), as well as a mounting assembly (10) with a bracket (12) and a retaining rail, and an inner wall section (14) for a Climate cabinet (16), and holding system (96), and climate cabinet (16).
Need to check novelty before this filing date? Find Prior Art

Description

[0001] The invention relates to a holder for arrangement on an inner wall part of a climate cabinet, a holder assembly, an inner wall part for a climate cabinet, a holding system and a climate cabinet.

[0002] Specific climatic conditions can be set inside a climate chamber. Climate chambers are therefore used in many fields, especially in science and technology, for example to examine products or samples under predetermined climatic conditions.

[0003] To prevent objects stored in a climate chamber from being placed solely on the bottom wall of the chamber's interior, climate chambers are typically equipped with intermediate shelves, particularly slide-in shelves. To secure these intermediate shelves or other storage and mounting structures within the chamber, appropriate support systems must be provided. For example, slide-in shelves are often mounted on support rails along the interior walls.

[0004] Such holding systems are known, for example, from JP 2005 098 575 A, DE 10 2014 201 429 A1, DE 20 2008 000 887 U1, DE 20 2014 106 052 U1 or DE 10 2008 031 943 A1. These systems are designed to be flexible in various ways, allowing for several possible arrangements within the interior of a climate chamber.

[0005] However, a disadvantage of the known systems is that they are complex to manufacture and / or assemble, and / or have insufficient safety features to prevent unintentional detachment from the inner wall of the climate chamber. Such unintentional detachment also includes system failure due to overload or fatigue / wear.

[0006] The invention is therefore based on the objective of providing an object that enables a simple, safe and at the same time flexible arrangement of an object in a climate chamber.

[0007] The problem is solved according to the invention by a holder with the features of claim 1, a holder assembly with the features of claim 12, an inner wall part with the features of claim 13, a holding system with the features of claim 16 and a climate cabinet with the features of claim 17.

[0008] Advantageous embodiments and further developments of the invention are specified in the dependent claims.

[0009] A mounting according to the invention for arrangement on an inner wall part of a climate cabinet comprises a base section and a first holding section arranged on the base section, wherein the base section has a base longitudinal direction and a base transverse direction arranged transverse to the base longitudinal direction. Here and in the following, the term "base transverse direction" preferably includes both of the opposite directions of a straight line. The same applies to the term "base longitudinal direction".

[0010] The base section is preferably designed to provide an interface for an object to be held. A front surface of the base is preferably provided for this interface. The base section can have a base body, preferably planar, with a base surface, preferably substantially rectangular, wherein the side edges of the base surface are preferably arranged along the longitudinal and / or transverse directions of the base. The term "substantially" describes, in particular, that deviations from the shape of an ideal rectangle are possible, such as rounded corners.

[0011] The first retaining section has an insertion element for insertion into the inner wall section and at least one locking element arranged on the insertion element for securing the first retaining section to the inner wall section. The insertion element is angled on the base section about a retaining axis parallel to the transverse direction of the base, such that the insertion element and the base's rear side are arranged at a retaining angle of less than 180° to each other about the retaining axis. The base's rear side is preferably the side of the base section opposite the base's front side. The retaining angle is preferably arranged between a side of the insertion element facing the base's rear side and the base's rear side.

[0012] The at least one locking element and the insertion element are arranged at a locking angle of less than 180° to each other, around a locking axis. The at least one locking element can thus engage behind the inner wall section and secure the holder against unintentional detachment from the inner wall section. The at least one locking element can be angled, in particular, towards or away from the rear of the base. The engagement effect can be enhanced by the force applied to the holder at the front of the base and the resulting elastic deformation of the holder. Preferably, the at least one locking element is angled towards the rear of the base.Particularly when a force acting on the front of the base is aligned parallel to the longitudinal direction of the base, such an arrangement can utilize the resulting elastic deformation of the holder especially well to reinforce the gripping action. The holder, in particular the unit comprising the base section and the insertion element, can be designed as a one-piece stamped and bent part.

[0013] According to the invention, the at least one locking element is arranged along the transverse direction of the base, following the insertion element. This allows for particularly easy assembly and disassembly, and thus high flexibility of the mounting. Preferably, the at least one locking element is arranged directly following the insertion element.

[0014] The locking axis is preferably aligned parallel to the base transverse direction. This allows for a particularly effective action of the at least one locking element.

[0015] In a preferred embodiment of the invention, the insertion element has at least one projection extending in the transverse direction of the base, wherein the at least one locking element is preferably arranged between the at least one projection and the retaining axis.

[0016] Preferably, the at least one locking element is arranged with a first locking element end on the at least one projection. The first locking element end is preferably arranged directly on the at least one projection.

[0017] Particularly preferably, the at least one locking element has a free second locking element end arranged opposite the first locking element end. The at least one locking element can thus be arranged at an angle relative to the insertion element such that the second locking element end projects away from the insertion element.

[0018] A gap for the placement of a section of the inner wall part can be arranged between the at least one locking element and the base section. Preferably, the gap is arranged between the free end of the second locking element and the base section.

[0019] The mounting angle can be less than or equal to 105° and greater than or equal to 75°, preferably less than or equal to 95° and greater than or equal to 85°, and particularly preferably equal to 90°. Such a 90° angle allows for particularly good mounting and dismounting of the bracket on the inner wall section.

[0020] The locking angle can be greater than or equal to 135°, preferably greater than or equal to 155°, and particularly preferably greater than or equal to 165° and less than or equal to 175°. Such a locking angle design ensures, on the one hand, good ease of mounting and dismounting the bracket from the inner wall section. On the other hand, within this angle range, secure engagement of the inner wall section by the at least one locking element, in particular by the second locking element end, can be achieved.

[0021] In a further development of the invention, a first locking element of the at least one locking element is arranged opposite a second locking element of the at least one locking element in the base transverse direction. The insertion element can be arranged between the first locking element and the second locking element. The insertion element can be T-shaped with a longitudinal section and a transverse section. The longitudinal section is preferably arranged at the base section with an end facing away from the transverse section. The at least one projection can form one end of the transverse section. The first locking element and the second locking element can each be arranged on the transverse section, preferably each on a side of the transverse section facing the base section.

[0022] In a preferred embodiment of the invention, the holder has a second holding section, wherein the second holding section is arranged opposite the first holding section in the longitudinal direction of the base section. The second holding section is preferably provided for arrangement on the inner wall part.

[0023] The second retaining section can have a proximal section and a distal section relative to the base section, with the distal section preferably arranged parallel and offset from the base section. The proximal section is preferably adjacent to the base section on one side and to the distal section on the other. The proximal section thus preferably serves as a connecting element between the base section and the distal section. The distal section can be offset from the base section in the direction of the rear of the base. Furthermore, the distal section is preferably arranged offset from the base section along the longitudinal direction of the base without overlap. The insertion element and the distal section are preferably arranged on the same side of the base section.The parallel offset arrangement of the distal section can be achieved, in particular, by arranging the second retaining section in an S-shape relative to the base section. The second retaining section can be part of the holder unit, which is designed as a one-piece stamped and bent component. The second retaining section, especially the distal section, is intended for insertion into the inner wall section.

[0024] A mounting assembly according to the invention comprises a previously described mounting and a retaining rail, wherein the retaining rail is arranged on a base front of the base section of the mounting opposite the base rear of the base section. Preferably, the mounting assembly comprises at least two, and more preferably at least three, mountings. Preferably, each of the mountings has the features of the previously described mounting.

[0025] An inner wall section according to the invention for a climate cabinet comprises a longitudinal wall direction and a transverse wall direction arranged perpendicular to the longitudinal wall direction. In accordance with the meaning of the terms "base longitudinal direction" and "base transverse direction", the terms "longitudinal wall direction" and "transverse wall direction" here and in the following preferably each encompass both of the opposite directions of a straight line.

[0026] The inner wall section further comprises at least one slotted strip oriented along the longitudinal direction of the wall, with a plurality of slots for receiving a holder, particularly as described above, and a wall section adjoining the at least one slotted strip in the transverse direction. The slots can be configured to receive the holder such that each slot is suitable for receiving the first holding section. Preferably, each slot is also suitable for receiving the second holding section. The suitability for receiving the first holding section or the second holding section can be achieved, in particular, by appropriate dimensions of the slots.

[0027] The slots in the at least one slot strip are aligned parallel to the transverse direction of the wall and arranged consecutively along the longitudinal direction of the wall. This allows for flexibility in the arrangement of the bracket, particularly in the longitudinal direction of the wall. The inner wall section can have several of the at least one slot strip.

[0028] According to the invention, the at least one slotted strip has a reinforcement such that the strip wall thickness is greater than the wall wall thickness of the wall section. This allows, in particular, a secure arrangement of the holder on the inner wall section.

[0029] In a preferred embodiment of the invention, the inner wall section comprises a wall plate with a front wall section and a rear wall section, wherein the rear wall section is formed by bending at least one side section of the wall plate onto the rear side of the front wall section, and the reinforcement is formed by arranging an end section of the at least one side section abutting the rear side of the at least one slotted strip. The inner wall section can be formed as a one-piece stamped and bent part. The at least one side section, in particular the end section, can be arranged parallel to the longitudinal direction of the wall. Thus, the at least one side section, and in particular the end section, is preferably arranged parallel to the at least one slotted strip.

[0030] In a further development of the invention, a profile section of the at least one side section is arranged at a distance from the front wall section. The profile section can thus be designed as a rear rib of the inner wall section. By means of the profile section, stiffening of the inner wall section can be achieved. The profile section is preferably arranged parallel to the longitudinal direction of the wall. Furthermore, the profile section can be U-shaped. The profile section is preferably arranged adjacent to the end section and the front wall section.

[0031] A holding system according to the invention comprises a previously described holder or a previously described holder assembly and a previously described inner wall part. The holder with the first holding section is arranged in at least one of the slots, such that the inner wall part is arranged between the base section and the at least one locking element.

[0032] A climate cabinet according to the invention comprises a previously described inner wall part or a previously described holding system.

[0033] Various embodiments of the invention are explained with reference to the following figures. They show: Figure 1 shows a first perspective view of an embodiment of a mounting assembly, Figure 2 shows a second perspective view of the assembly shown in Figure 1. Fig. 1 The exemplary embodiment shown, Figure 3, is a side view of the [description of the embodiment]. Fig. 1 of the exemplary embodiment shown, Figure 4 shows a section of a front view of the in Fig. 1 of the embodiment shown, Figure 5 a perspective front view of an embodiment of an inner wall part, Figure 6 a perspective rear view of the in Fig. 5 The exemplary embodiment shown, Figure 7 a view of an exemplary embodiment of an application of a climate chamber with details A and B marked, Figure 8 an enlarged view of the in Fig. 7 Marked details A, Figure 9, an enlarged view of the in Fig. 7 Marked details B, Figure 10, a perspective view of the in Fig. 7 Marked details B, Figure 11, a perspective view of the in Fig. 7 Marked details A, Figure 12, a perspective view of an exemplary embodiment of a climate cabinet.

[0034] The Figuren 1 bis 12 These figures show different views of various embodiments. For clarity, not all reference numerals are used in every figure. The same reference numerals are used for identical and functionally equivalent parts.

[0035] Fig. 1 Figures 2 and 2 show perspective views of an embodiment of a mounting assembly 10. The mounting assembly 10 preferably comprises several brackets 12 for arrangement on an inner wall section 14 of a climate cabinet 16, as well as a mounting rail 18. Embodiments of the inner wall section 14 and the climate cabinet 16 are shown in the Fig. 5 , 6 shown in u. 12.

[0036] The characteristics of each of the 12 brackets can be seen in particular from the information in the Fig. 3 The illustrations shown in Figure 4 explain the following. Each of the supports 12 comprises a base section 20 and a first retaining section 22 arranged on the base section 20, wherein the base section 20 has a longitudinal base direction 24 and a transverse base direction 26 arranged perpendicular to the longitudinal base direction 24. The base section 20 is preferably provided for the arrangement of the retaining rail 18. The base section 20 can have a planar base body 28 with a substantially rectangular base surface, wherein side edges 30 of the base surface are preferably arranged along the longitudinal base direction 24 and the transverse base direction 26.

[0037] The base section 20 can have a base front 32 and a base rear 34 arranged opposite the base front 32, wherein preferably one of the flat sides of the base section 20 is arranged on the base front 32 and one of the flat sides of the base section 20 is arranged on the base rear 34. The retaining rail is arranged on the base front 32 of the base section 20 of the respective holder 12.

[0038] The first retaining section 22 has an insertion element 36 for insertion into the inner wall part 14 and preferably a first locking element 38 and a second locking element 39 arranged on the insertion element 36 for securing the first retaining section 22 to the inner wall part 14. The insertion element 36 is arranged on the base section 20 at an angle to the rear side 34 of the base section 20 about a retaining axis 40 oriented parallel to the transverse direction 26 such that the insertion element 36 and the rear side 34 of the base section 20 are arranged at a retaining angle 42 of preferably 90° to each other about the retaining axis 40. The retaining angle 42 is preferably arranged between a side of the insertion element 36 facing the rear side 34 of the base section 34 and the rear side 34 of the base section 20. The retaining axis 40 is perpendicular to the axis 40 oriented parallel to the transverse direction 26 of the base. Fig. 3 The selected display plane is arranged and accordingly represented as a point there.

[0039] The two locking elements 38, 39 and the insertion element 36 are each arranged at a locking angle 46 to one another around a locking axis 44, which is preferably greater than or equal to 165° and less than or equal to 175°. The locking axis 44 is preferably aligned parallel to the base transverse direction 26. As shown in the illustration of the retaining axis 40, the locking axis 44 is, due to its arrangement and the in Fig. 3 selected view in Fig. 3 represented as a point. In the representation of the Fig. 4 The locking axis 44 is concealed by the retaining axis 40. As shown in the illustration in Fig. 3 As shown, both locking elements 38, 39 are preferably arranged at an angle towards the rear of the base 34. Embodiments are also conceivable in which both locking elements 38, 39 are angled away from the rear of the base 34, or one of the locking elements 38, 39 is angled towards the rear of the base 34 and the other of the locking elements 38, 39 is angled away from the rear of the base 34. As shown in particular Fig. 4 As shown, each of the securing elements 38 can be arranged along the base transverse direction 26 immediately following the insertion element 38.

[0040] As besides the depiction of Fig. 3 in particular the presentation of Fig. 11 As shown, the insertion element can have two projections 48, which are preferably formed in opposite directions along the base transverse direction 26. The insertion element 36 can be T-shaped with a longitudinal section 50 and a transverse section 52. The two ends of the transverse section 52 are preferably formed by the two projections 48. The longitudinal section 50 is preferably arranged with one end facing away from the transverse section 52 on the base section 20.

[0041] Preferably, each of the locking elements 38, 39 has a first locking element end 54 and a free second locking element end 56 arranged opposite the first locking element end 54. Each of the locking elements 38, 39 is preferably arranged with its respective first locking element end 54 directly on one of the projections 48. The first locking element 38 and the second locking element 39 can each be arranged on the transverse piece 52. Preferably, the locking elements 38, 39 are each arranged on a side of the transverse piece 52 facing the base section 20 such that each of the locking elements 38, 39 is arranged between the respective projection 48 and the retaining axis 40 (see Fig. 3 ).

[0042] Fig. 4 shows that the first locking element 38 can be arranged opposite the second locking element 39 in the base transverse direction 26 such that the insertion element 36 is arranged between the first locking element 38 and the second locking element 39.

[0043] How in particular Fig. 3 As shown, the second locking element end 56 can be designed as a free locking element end. A gap 58 for the placement of a section of the inner wall part 14 can be arranged between the second locking element end 56 and the base section 20 (see also Fig. 8 u. 9).

[0044] How in particular the Fig. 2-4 As shown, each of the supports 12 can have a second retaining section 60, wherein the second retaining section 60 is arranged opposite the first retaining section 22 in the longitudinal direction 24 of the base section 20. The second retaining section 60 is preferably provided for arrangement on the inner wall part 14, preferably for insertion into the inner wall part 14.

[0045] The second retaining section 60 can have a proximal section 62 and a distal section 64 relative to the base section 20, the distal section 64 preferably being arranged parallel and offset from the base section 20. The proximal section 62 is preferably arranged adjacent to the base section 20 on one side and adjacent to the distal section 64 on the other. The proximal section 62 is thus preferably designed as a connecting element between the base section 20 and the distal section 64.

[0046] The distal section 64 can have an offset 66 towards the base section 20 in the direction of the base posterior side 34 (see Fig. 3 Furthermore, the distal section 64 is preferably arranged offset from the base section 20 along the longitudinal direction 24 without overlap. The insertion element 36 and the distal section 64 are preferably arranged on the same side of the base section 20, namely the rear side 34 of the base. Such a parallel offset arrangement of the distal section 64 can be achieved in particular by arranging the second retaining section 60 in an S-shape relative to the base section 20 (see Fig. 3 ). In particular, the presentation in Fig. 3 Figure 12 also illustrates that each of the brackets 12 and the retaining rail 18 can each be designed as a one-piece stamped and bent part.

[0047] In the Fig. 5 Figure 6 shows an embodiment of an inner wall section 14 for the climate chamber 16. The inner wall section 14 comprises a longitudinal wall direction 68 and a transverse wall direction 70 arranged perpendicular to the longitudinal wall direction 68. The inner wall section can have two slotted strips 72 aligned along the longitudinal wall direction 68, each strip having a plurality of slots 74 for receiving the bracket 12. The slots 74 are aligned parallel to the transverse wall direction 70 in the respective slotted strip 72 and are arranged successively along the longitudinal wall direction 68. The inner wall section 14 also comprises a wall section 76 adjacent to the slotted strips in the transverse wall direction 70.

[0048] The slotted strips 72 each have a reinforcement such that the strip wall thickness of the respective slotted strip 72 is greater than the wall wall thickness of the wall section 76 (see illustration in Fig. 8 ).

[0049] The inner wall section 14 preferably comprises a wall plate 82 with a front wall section 84 and a rear wall section 86, the rear wall section being formed by bending a side section 88 of the wall plate 82 onto the rear side of the front wall section 84. The inner wall section 14 can be formed as a one-piece stamped and bent part. The reinforcement is preferably formed by arranging an end section 90 of the respective side section 88 against the rear side of the respective slotted strip 72. The respective side section 88, in particular the end section 90, can be arranged parallel to the longitudinal direction 68 of the wall. Thus, the side sections 88, and in particular the end sections 90, are preferably arranged parallel to the slotted strips 72.

[0050] How Fig. 6 As shown, each of the side sections 88 can have a profile section 92. The profile section 92 is preferably arranged at a distance from the front wall section 84. The profile section 92 can thus form a rear rib of the inner wall section 14 and further stiffen the inner wall section 14. The profile section 92 can be arranged parallel to the longitudinal direction 68 of the wall and is preferably arranged adjacent to the end section 90 and the front wall section 84. Furthermore, the profile section 92 can be U-shaped.

[0051] The Fig. 7 Figure 1 shows an insert 94 of the climate chamber 16 with two holding systems 96, each comprising the inner wall section 14, wherein a plurality of the holding assemblies 10 are arranged on each of the inner wall sections. Sample carriers 98 can be arranged in the holding rails 18. In particular, the Fig. 8-11 The figures show that each holder 12 is arranged with the first retaining section 22 in one of the slots 74, such that the inner wall part 14 is positioned between the base section 20 and the locking elements 38, 39 of the respective holder 12. Furthermore, each holder 12 can be arranged with the second retaining section 60 in another of the slots 74, preferably such that the distal section 64 engages behind the inner wall part 14. Preferably, each of the holders 12 is arranged exclusively on one of the slot strips 72.

[0052] The Fig. 10 Figure 11 illustrates that the suitability of the slots 74 for receiving the holders 12 can be realized such that each of the slots 74 is suitable for receiving the first holding section 22 and the second holding section 60. The suitability for receiving the holding sections 22 and 60 can be achieved, in particular, by appropriate dimensions of the slots 74.

[0053] The locking elements 38 are preferably arranged at an angle towards the rear of the base 34. Fig. 8 Figure 9 illustrates that the securing elements 38, 39 engage behind the inner wall part 14 and thus secure the respective holder 12 against unintentional detachment from the inner wall part 14. This is particularly evident from the illustrations in the Fig. 8In paragraph 9, it is understandable that a force acting on the base front 32, for example on the retaining rail 18, along the longitudinal direction 24 of the base can result in an elastic deformation of the holder 12, such that the free second locking element ends 56 can be raised further in the direction of the second retaining section 60 and thus the effect of the overreach can be increased. Reference symbol list

[0054] 10 Mounting assembly 12 Mounting bracket 14 Inner wall section 16 Climate cabinet 18 Mounting rail 20 Base section 22 First mounting section 24 Base longitudinal direction 26 Base transverse direction 28 Base body 30 Side edge 32 Base front 34 Base rear 36 Insertion element 38 First locking element 39 Second locking element 40 Mounting axis 42 Mounting bracket 44 Locking axis 46 Locking bracket 48 Projection 50 Longitudinal piece 52 Transverse piece 54 First locking element end 56 Second locking element end 58 Gap 60 Second mounting section 62 Proximal section 64 Distal section 66 Offset 68 Wall longitudinal direction 70 Wall transverse direction 72 Slotted strip 74 Slot 76 Wall section 82 Wall plate 84 Front Wall section 86, rear wall section 88, side section 90, end section 92, profile section 94, insert 96, holding system 98, specimen holder

Claims

1. Mounting bracket (12) for mounting on an inner wall section (14) of a climate cabinet (16), comprising a base section (20) and a first retaining section (22) arranged on the base section (20), wherein: • the base section (20) has a base longitudinal direction (24) and a base transverse direction (26) arranged transversely to the base longitudinal direction (24), • the first retaining section (22) has an insertion element (36) for insertion into the inner wall section (14) and at least one locking element (38, 39) arranged on the insertion element (36) for securing the first retaining section (22) to the inner wall section (14), • the insertion element (36) is arranged on the base section (20) at an angle about a retaining axis (40) aligned parallel to the base transverse direction (26) towards a base rear side (34) of the base section (20),that the insertion element (36) and the base rear (34) are arranged in a holding angle (42) of less than 180° to each other around the holding axis (40), and • the at least one locking element (38, 39) and the insertion element (36) are arranged in a locking angle (46) of less than 180° to each other around a locking axis (44), , characterized by the fact that the at least one locking element (38, 39) is arranged along the base transverse direction (26) following the insertion element (36).

2. Mounting bracket according to claim 1, characterized by the fact that the safety axis (44) is aligned parallel to the base transverse direction (26).

3. Mounting bracket according to one of the preceding claims, characterized by the fact that the insertion element (36) has at least one projection (48) extending in the base transverse direction (26), wherein the at least one locking element (38, 39) is arranged between the at least one projection (48) and the retaining axis (40).

4. Mounting bracket according to claim 3, characterized by the fact that the at least one locking element (38, 39) with a first locking element end (54) on which at least one projection (48) is arranged.

5. Mounting bracket according to claim 4, characterized by the fact that the at least one locking element (38, 39) has a free second locking element end (56) arranged opposite the first locking element end (54).

6. Mounting bracket according to one of the preceding claims, characterized by the fact that A gap (58) for the arrangement of a section of the inner wall part (14) is arranged between the at least one securing element (38, 39) and the base section (20).

7. Mounting bracket according to one of the preceding claims, characterized by the fact that the holding angle (42) is less than or equal to 105° and greater than or equal to 75°, preferably less than or equal to 95° and greater than or equal to 85°, and particularly preferably equal to 90°.

8. Mounting bracket according to one of the preceding claims, characterized by the fact thatthe securing angle (46) is greater than or equal to 135°, preferably greater than or equal to 155°, and particularly preferably greater than or equal to 165° and less than or equal to 175°.

9. Mounting bracket according to one of the preceding claims, characterized by the fact that a first locking element (38) of the at least one locking element (38, 39) is arranged opposite a second locking element (39) of the at least one locking element (38, 39) in the base transverse direction (26).

10. Mounting bracket according to one of the preceding claims, characterized by the fact that the holder (12) has a second holding section (60), wherein the second holding section (60) is arranged opposite the first holding section (12) in the longitudinal direction (24) of the base section (20).

11. Mounting bracket according to claim 10, characterized by the fact thatthe second holding section (60) has a proximal section (62) and a distal section (64) with respect to the base section (20), wherein the distal section (64) is arranged parallel to the base section (20).

12. Mounting assembly (10) comprising a mount (12) according to one of the preceding claims and a retaining rail (18), wherein the retaining rail (18) is arranged on the mount (12) on a base front (32) of the base section (20) opposite the base rear (34) of the base section (20).

13. Inner wall section (14) for a climate cabinet (16), comprising: • a longitudinal wall direction (68) and a transverse wall direction (70) arranged transversely to the longitudinal wall direction (68), • at least one slotted strip (72) aligned along the longitudinal wall direction (68) with a plurality of slots (74) for receiving a holder (12), in particular according to one of claims 1 to 12, and • a wall section (76) adjoining the at least one slotted strip (72) in the transverse wall direction (70), wherein the slots (72) in the at least one slotted strip (74) are aligned parallel to the transverse wall direction (70) and are arranged successively along the longitudinal wall direction (68), characterized by the fact that the at least one slotted strip (72) has a reinforcement such that a strip wall thickness of the at least one slotted strip (72) is greater than a wall wall thickness of the wall section (76).

14. Inner wall part according to claim 13, characterized by the fact that the inner wall part (14) has a wall plate (82) with a front wall part (84) and a rear wall part (86), wherein the rear wall part (86) is formed by at least one side section (88) of the wall plate (82) being bent onto a rear side of the front wall part (84), wherein the reinforcement is formed by an end section (90) of the at least one side section (88) being arranged abutting the rear side of the at least one slotted strip (72).

15. Inner wall part according to claim 14, characterized by the fact that a profile section (92) of the at least one side section (88) is arranged spaced apart from the front wall part (84).

16. Holding system (96) with a holder (12) according to one of claims 1 to 11 or a holder assembly (10) according to claim 12 and an inner wall part (14) according to one of claims 13 to 15, wherein the holder (12) with the first holding section (22) is arranged in at least one of the slots (74) such that the inner wall part (14) is arranged between the base section (20) and the at least one locking element (38, 39).

17. Climate cabinet (16) with an inner wall part (14) according to one of claims 13 to 15 or a holding system (96) according to claim 16.

Citation Information

Patent Citations

  • Functional frame for baking-oven, has front and rear vertical bars and lower and upper horizontal bars fastened to side walls of baking-oven, and guide rails detachably fastenable or fastened to frame

    DE102008031943A1

  • Holding and guiding device with a rail extension device with a multi-level support grid and cooking device with such a device

    DE102014201429A1

  • mounting system

    DE202008000887U1

  • device for guiding a sliding element and kitchen equipment with such a device

    DE202014106052U1

  • Oven

    JP2005098575A