Elevator operating panel and elevator

Through the innovative design of the panel assembly and the bracket assembly, the elevator control panel is thinned and personalized using a universal mold, which solves the problems of high cost and limited thickness in the existing technology and realizes the diversified thickness processing and low-cost production of the elevator control panel.

CN223397250UActive Publication Date: 2025-09-30SHANGHAI BST ELECTRIC
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Patent Information

Application Number
CN202422957880.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-09-30
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

The production cost of existing elevator control panels is high, and the thickness of the finished product is limited by the mold process, making it impossible to achieve a thin design.

Method used

The design adopts a panel assembly and a bracket assembly. The panel assembly is only provided with one bending portion. The bracket assembly includes a U-shaped bracket and a lining plate. The processing of different thicknesses is achieved through a universal mold. The thickness of the bending portion of the bracket assembly is less than or equal to the thickness of the panel bending portion. It is fixed in the panel assembly with the U-shaped bracket inverted.

Benefits of technology

It realizes the thinness and personalized design of elevator control panels, reduces production costs, improves installation convenience and adaptability, and can process elevator control panels of various thicknesses through universal molds, and even realizes ultra-thin designs that cannot be achieved with custom molds.

✦ Generated by Eureka AI based on patent content.

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Abstract

The elevator operating panel comprises a panel assembly and a support assembly arranged on the panel assembly, and the panel assembly comprises a main body part and a panel bending part extending in the length direction of the main body part; the support assembly comprises a U-shaped support and a lining plate. The U-shaped support comprises a body part and a support bending part extending from the length direction of the body part, and the lining plate is fixed in the internal space of the U-shaped support; the U-shaped support is arranged in the panel assembly in an inverted buckling mode, and the panel assembly and the lining plate are fixedly connected so that the support assembly can be fastened to the panel assembly. According to the elevator operating panel structure, elevator operating panel structure products with different thicknesses can be obtained through machining of a universal mold, the ultrathin effect can be achieved, the individuation degree is higher, the structure is simple, and the production cost is lower.
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Description

Technical Field

[0001] The utility model relates to the technical field of elevators, in particular to an elevator control panel and an elevator. Background Art

[0002] The elevator control panel is a component used to control the operation of the elevator car. Currently, there are two main types of wall-mounted control panels commonly used in elevators.

[0003] Option 1: Please refer to Figure 1 and Figure 2 As shown, the elevator control panel includes a base plate assembly 1000 and a panel assembly 2000. The sides of the base plate assembly 1000 and the panel assembly 2000 are bent in the longitudinal direction to form a bent portion 3000. The bent portion 3000 of the panel assembly 2000 is provided with a sliding groove plate 3001 with a sliding groove 3002. The bent portion 3000 of the base plate assembly 1000 is provided with a sliding groove 3003 corresponding to the sliding groove 3002. During installation, the base plate assembly 1000 is first fixed to the car wall, and then the sliding groove 3002 on the sliding groove plate 3001 of the panel assembly 2000 is hung in the sliding groove 3003 of the base plate assembly 1000. Then, the fastening screws on the lower head plate 4000 of the elevator control panel are tightened to the bent side edges 3004 in the width direction of the base plate assembly 1000 to fasten the base plate assembly 1000 and the panel assembly 2000. The overall thickness of the elevator control panel of this solution is limited by the thickness of the sliding groove plate 3001 on the bending part 3000 of the panel assembly 2000, and a thin design cannot be achieved; the elevator control panel needs to be equipped with a base plate assembly 1000 with multiple sets of slide grooves 3003, which is relatively expensive; and during after-market maintenance, accessories with a thickness smaller than the space after the base plate assembly 1000 and the panel assembly 2000 are assembled need to be equipped, such as buttons, intercoms, etc., otherwise it will be difficult to be compatible and installed in the elevator control panel.

[0004] Option 2: Please refer to Figures 3 to 5As shown, the elevator control panel includes a panel assembly 5000, which includes a flat portion 5001, a first bent portion 5002 bent from the side of the flat portion 5001 in the longitudinal direction, and a second bent portion 5003 bent from the first bent portion 5002 and flush with the flat portion 5001. The second bent portion 5003 is provided with a calabash hole 5004. During installation, a calabash nail and a fixing bracket 6001 are first installed on the elevator car wall 6000. Then, the calabash hole 5004 on the elevator control panel is hooked onto the calabash nail and the fastening screw 7001 on the lower head plate 7000 of the elevator control panel is tightened to the fixing bracket 6001 to secure the elevator control panel to the elevator car wall 6000. This elevator control panel omits the base plate assembly in Solution 1, but the second bend 5003 on the panel assembly 5000 must have a certain width to set the gourd hole 5004. Due to the processing technology of the general mold, the thickness of the first bend 5002 must be greater than the width of the second bend 5003. Usually, the width of the second bend 5003 is at least 23 mm. Therefore, using a general mold to process the panel assembly 5000 cannot make the thickness of the elevator control panel less than 23 mm, and thinning cannot be achieved. If a customized mold is used to process this panel assembly 5000, the thickness of the first bend 5002 can be made smaller than the width of the second bend 5003. However, it is still restricted by the customized mold processing technology, and the thickness of the first bend 5002 cannot be less than 16 mm. It still cannot meet the customer's personalized thinness requirements. Moreover, different thicknesses greater than 16 mm require separate customized molds, which in turn increases the unit price of the finished product. Moreover, this product requires that a fixing frame 6001 be installed on the car wall 6000 in advance, and the installation accuracy of the fixing frame 6001 is relatively high, otherwise it will affect the subsequent fastening of the fastening screws 7001 on the lower head plate 7000 of the elevator control panel.

[0005] The products of the above two solutions are relatively expensive, and the overall thickness is very limited to a certain extent. It is impossible to produce and process elevator control panels of various thicknesses with only one set of universal molds, and it is even more impossible to achieve a thin design of the elevator control panel.

[0006] Therefore, there is a need for an elevator control panel and an elevator to solve the above-mentioned technical problems. Utility Model Content

[0007] The main purpose of the utility model is to provide an elevator control panel and an elevator, aiming to solve the technical problems of high production cost of elevator control panels and thickness of finished products limited by mold technology in existing technical solutions.

[0008] To achieve the above-mentioned purpose, the utility model provides an elevator control panel, comprising a panel assembly and a bracket assembly arranged on the panel assembly;

[0009] The panel assembly includes a main body and a panel bending portion extending from the main body in a length direction;

[0010] The bracket assembly includes a U-shaped bracket and a liner;

[0011] The U-shaped bracket includes a main body and a bracket bending portion extending from the main body in the length direction, and the lining plate is fixed in the internal space of the U-shaped bracket;

[0012] The U-shaped bracket is inverted and arranged in the panel assembly, and the panel assembly and the lining plate are fixedly connected to fasten the bracket assembly to the panel assembly.

[0013] In an embodiment of the present invention, the thickness of the bent portion of the bracket is less than or equal to the thickness of the bent portion of the panel.

[0014] In one embodiment of the present invention, the bracket assembly is provided as a pair, which are respectively provided on both sides of the width direction of the panel assembly. The U-shaped bracket of each bracket assembly is provided as an integral molding or is formed by splicing multiple sections of U-shaped brackets in the length direction.

[0015] In one embodiment of the present invention, the lining plate is an integrated long strip structure arranged in the U-shaped bracket, or the lining plate is a split sheet structure arranged in the U-shaped bracket.

[0016] In one embodiment of the present invention, a pressure riveted stud is provided on the main body of the U-shaped bracket, and the lining plate is suspended on the pressure riveted stud and fastened to the pressure riveted stud by lining plate screws so that the lining plate is fixed in the U-shaped bracket;

[0017] or,

[0018] The main body of the U-shaped bracket is welded to the lining plate so that the lining plate is fixed in the U-shaped bracket.

[0019] In one embodiment of the present invention, panel screws are arranged at intervals on both sides of the panel assembly in the width direction, and corresponding through holes are provided on the lining plate and the main body of the U-shaped bracket. The panel screws pass through the through holes on the lining plate, and the nuts are locked to the panel screws passing through the surface of the lining plate facing away from the panel assembly through the through holes on the main body, so that the bracket assembly is fastened to the panel assembly, and the nuts do not protrude from the through holes on the main body of the U-shaped bracket.

[0020] In one embodiment of the present invention, the elevator control panel further includes a pair of head plates and a pair of seals, wherein the pair of head plates are arranged on both sides of the panel assembly in the length direction, and the seals are sealed between the head plates and the panel assembly.

[0021] In one embodiment of the present invention, the bracket assembly and the head plate are arranged around the panel assembly to form a hollow space, and the elevator control panel also includes a floor display module and an elevator floor selection button, and the floor display module and the elevator floor selection button are accommodated in the hollow space.

[0022] In one embodiment of the present invention, a mounting hole is provided on the main body of the U-shaped bracket, and the mounting hole is hung on a mounting nail on the elevator car wall so that the elevator control panel is set on the elevator car wall.

[0023] In one embodiment of the present invention, the elevator control panel also includes a saddle fixed to the panel assembly, and the saddle is provided with a tightening screw, which is used to tighten into the wall hole of the elevator car wall to stabilize the elevator control panel on the elevator car wall.

[0024] To achieve the above object, the utility model also provides an elevator, which includes a car and the elevator control panel as described above, and the elevator control panel is installed on the car wall of the car.

[0025] The technical solution of the present utility model proposes an elevator control panel and an elevator, comprising a panel assembly and a bracket assembly arranged on the panel assembly; the panel assembly comprises a main body and a panel bending portion extending from the main body in a length direction; the bracket assembly comprises a U-shaped bracket and a lining plate; the U-shaped bracket comprises a main body and a bracket bending portion extending from the main body in a length direction, and the lining plate is fixed in the internal space of the U-shaped bracket; the U-shaped bracket is inverted and arranged in the panel assembly, and the panel assembly and the lining plate are fixedly connected to fasten the bracket assembly to the panel assembly. The panel assembly of the present application is only provided with one bend to form the panel bending portion, which is not restricted by special processes, and the bending processing of panel bending portions of different thicknesses can be achieved by a universal mold. In addition, it is installed and fixed in conjunction with the bracket assembly. The U-shaped bracket of the bracket assembly is also only provided with one bend to form the bracket bending portion. Therefore, the bending of the U-shaped bracket is also not restricted by special processes, and the bending processing of bracket bending portions of different thicknesses can be achieved by a universal mold. Therefore, the elevator control panel of the present application can be processed and formed into various thicknesses using only universal molds according to the personalized needs of customers, and can achieve a thinning effect that requires customized molds. Even ultra-thin elevator control panels below 16 mm that cannot be achieved with customized molds can also be processed using universal molds after using the structure of the present invention, with better personalized effects and lower processing and production costs. In addition, the panel assembly and the bracket assembly have simple structures and are easy to install. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0027] Figure 1 This is a schematic diagram of the structure of an elevator control panel according to Solution 1 in the prior art;

[0028] Figure 2 This is a structural diagram of the sliding groove plate of the elevator control panel according to Solution 1 in the prior art;

[0029] Figure 3 This is a schematic diagram of the elevator control panel structure of Solution 2 in the prior art;

[0030] Figure 4 This is a schematic diagram of an elevator control panel installed on the car wall in Solution 2 of the prior art;

[0031] Figure 5 for Figure 4 A magnified view of the structure at point A;

[0032] Figure 6 This is a schematic diagram of the structure of the elevator control panel of the utility model;

[0033] Figure 7 This is an exploded view of the structure of the elevator control panel of the utility model;

[0034] Figure 8 This is an exploded view of the structure of the bracket assembly of the elevator control panel of the present invention;

[0035] Figure 9 This is a structural diagram of the bracket assembly of the elevator control panel of the utility model from one perspective;

[0036] Figure 10 This is a structural diagram of the bracket assembly of the elevator control panel of the utility model from another perspective;

[0037] Figure 11 This is a schematic diagram of the utility model elevator control panel installed on the car wall;

[0038] Figure 12 for Figure 11 A magnified view of the structure at B in the middle;

[0039] Figure 13 This is a schematic diagram of the car wall structure in one scenario.

[0040] Description of Figure Numbers:

[0041] name Label name Label Base plate assembly 1000 Panel components 2000、5000、1 Bending section 3000 Slide board 3001 Slideway 3002 chute 3003 Side 3004 Head plate 4000、7000、3 Flat panel 5001 First bending part 5002 Second bending part 5003 Gourd hole 5004 Car wall 6000、7 Fixed bracket 6001 Fastening screws 7001 Main body 11 Panel bending section 12 Panel screws 13 Nut 14 Make way hole 15 Bracket assembly 2 U-shaped bracket 21 Body part 211 Bracket bending part 212 Mounting holes 213 Self-clinching studs 214 Liner screws 215 lining 22 through-hole 23 Head plate 3 seals 4 Floor display module 5 Elevator floor selection buttons 6 Mounting nails 71 Car wall space 72 Horse 8 Tighten the screws 81

[0042] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0043] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0044] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will also change accordingly.

[0045] At the same time, the meaning of "and / or" or "and / or" appearing in the full text includes three options. Taking "A and / or B" as an example, it includes option A, or option B, or an option in which both A and B are satisfied.

[0046] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features specified as "first" or "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the fact that ordinary technicians in this field can implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0047] The utility model provides an elevator control panel and an elevator, aiming to solve the technical problems in the prior art that the production cost of the elevator control panel is high and the thickness of the finished product is limited by the mold process.

[0048] Please refer to Figures 6 to 10 As shown, in an embodiment of the present utility model, an elevator control panel is provided, comprising a panel assembly 1 and a bracket assembly 2 disposed on the panel assembly 1;

[0049] The panel assembly 1 includes a main body 11 and a panel bending portion 12 extending from the main body 11 in a longitudinal direction;

[0050] The bracket assembly 2 includes a U-shaped bracket 21 and a lining plate 22;

[0051] The U-shaped bracket 21 includes a main body 211 and a bracket bending portion 212 extending from the main body 211 in the longitudinal direction. The lining plate 22 is fixed in the internal space of the U-shaped bracket 21.

[0052] The U-shaped bracket 21 is invertedly arranged in the panel assembly 1 , and the panel assembly 1 and the lining plate 22 are fixedly connected to fasten the bracket assembly 2 to the panel assembly 1 .

[0053] Please refer to Figures 6 to 10 As shown, the present application proposes an elevator control panel, which includes a panel assembly 1 and a bracket assembly 2 arranged on the panel assembly 1 for mounting the elevator control panel to the car wall 7. The elevator control panel is used for passengers in the car to view floor information display and target floor button selection.

[0054] The panel assembly 1 includes a main body 11 and a panel bending portion 12 extending in the length direction of the main body 11. Therefore, a storage space for accommodating various installation devices of the elevator control panel and the bracket assembly 2 is formed inside the panel assembly 1. The installation device can be an elevator floor display module 5 or an elevator floor selection button 6. The main body 11 of the panel assembly 1 is provided with mounting holes for installing the elevator floor display module 5 and the elevator floor selection button 6. The elevator floor display module 5 and the elevator floor selection button 6 are exposed in the mounting holes for passengers to view and use when taking the elevator. Since only one bending portion, namely the panel bending portion 12, is provided on both sides of the panel assembly 1 of the present application, the bending is not restricted by special processes, and the bending processing of the panel bending portion 12 of different thicknesses can be achieved through a universal mold. For customers with higher requirements for personalization, only one set of universal molds is required to achieve the processing of panel assemblies 1 of different thicknesses, thereby achieving thinning processing of the panel assembly 1.

[0055] The bracket assembly 2 includes a U-shaped bracket 21 and a lining plate 22. The U-shaped bracket 21 includes a main body 211 and a bracket bending portion 212 extending in the length direction of the main body 211. Therefore, an internal space for accommodating the lining plate 22 is formed inside the U-shaped bracket 21, and the lining plate 22 is fixed in the internal space of the U-shaped bracket 21. Since only one bending portion, namely the bracket bending portion 212, is provided on both sides of the U-shaped bracket 21 of the present application, the bending is not restricted by special processes, and the bending processing of the bracket bending portion 212 of different thicknesses can be achieved by a universal mold. For customers with high requirements for personalization, only one set of universal molds is required to achieve the processing of bracket assemblies 2 of different thicknesses, thereby achieving thinning processing of the bracket assembly 2.

[0056] A pair of U-shaped brackets 21 are provided, and each U-shaped bracket 21 is buckled on both sides of the width direction of the accommodation space of the panel assembly 1. The bottom of the bracket bending portion 212 of the U-shaped bracket 21 is in contact with the main body 11 of the panel assembly 1, and the main body 211 of the U-shaped bracket 21 is away from the main body 11. The U-shaped bracket 21 is provided close to the panel bending portion 12 and the bracket bending portion 212 on the same side is close to the panel bending portion 12 so that the side edge in the length direction of the elevator control panel has better hardness and is not easy to deform. Since the lining plate 22 is fixedly installed in the internal space of the U-shaped bracket 21, the bracket assembly 2 can be fastened to the panel assembly 1 by fixing the panel assembly 1 and the lining plate 22. The fixed connection method between the panel assembly 1 and the lining plate 22 can be bonding or screw and nut fixing.

[0057] The technical solution of the present utility model proposes an elevator control panel, including a panel assembly 1 and a bracket assembly 2 arranged on the panel assembly 1; the panel assembly 1 includes a main body 11 and a panel bending portion 12 extending from the main body 11 in the length direction; the bracket assembly 2 includes a U-shaped bracket 21 and a lining plate 22; the U-shaped bracket 21 includes a main body 211 and a bracket bending portion 212 extending from the main body 211 in the length direction, and the lining plate 22 is fixed in the internal space of the U-shaped bracket 21; the U-shaped bracket 21 is upside down and arranged in the panel assembly 1, and the panel assembly 1 and the lining plate 22 are fixedly connected so that the bracket assembly 2 is fastened to the panel assembly 1. The panel assembly 1 of the present application is provided with only one bend to form the panel bending portion 12, which is not restricted by special processes, and the bending processing of the panel bending portion 12 of different thicknesses can be achieved through a universal mold. In addition, it is installed and fixed with the bracket assembly 2. The U-shaped bracket 21 of the bracket assembly 2 is also provided with only one bend to form the bracket bending portion 212. Therefore, the bending of the U-shaped bracket 21 is also not restricted by special processes, and the bending processing of the bracket bending portion 212 of different thicknesses can be achieved through a universal mold. Therefore, the elevator control panel of the present application can be processed and formed into various thicknesses using only a universal mold according to the personalized needs of the customer, and can achieve a thinning effect that can only be achieved with a customized mold. Even ultra-thin elevator control panels below 16 mm that cannot be achieved with a customized mold can be processed by a universal mold after using the structure of the present invention, with better personalized effects and lower processing and production costs. In addition, the panel assembly 1 and the bracket assembly 2 have simple structures and are easy to install.

[0058] Furthermore, the thickness of the bracket bent portion 212 is less than or equal to the thickness of the panel bent portion 12 .

[0059] Understandable, please refer to Figure 6 and Figure 7As shown, the U-shaped bracket 21 is invertedly arranged in the accommodation space of the panel assembly 1. When the elevator control panel is installed on the elevator car wall 7, it is necessary to achieve that the panel bending portions 12 on both sides of the panel assembly 1 are completely in contact with the elevator car wall 7. Therefore, the thickness of the bracket bending portion 212 is set to be less than or equal to the thickness of the panel bending portion 12. Preferably, the thickness of the bracket bending portion 212 is less than the thickness of the panel bending portion 12 by about 0.2 mm, so that the panel bending portions 12 on both sides of the panel assembly 1 can be perfectly in contact with the elevator car wall 7.

[0060] Furthermore, the bracket assembly 2 is provided as a pair, which is provided on both sides of the width direction of the panel assembly 1. The U-shaped bracket 21 of each bracket assembly 2 is provided as an integral molding or is formed by splicing multiple sections of U-shaped brackets in the length direction.

[0061] Understandable, please refer to Figure 7 and Figure 8 As shown, the elevator control panel includes a pair of bracket assemblies 2, which are disposed on either side of the panel assembly 1 in the width direction and near the panel bend 12. Each bracket assembly 2 includes a U-shaped bracket 21. The U-shaped bracket 21 can be integrally formed or can be formed by splicing at least two short U-shaped brackets 21 in the longitudinal direction. Preferably, the use of an integrally formed U-shaped bracket 2 can provide greater rigidity and less deformation on both sides of the elevator control panel in the longitudinal direction.

[0062] Furthermore, the lining plate 22 is an integrated long strip structure disposed in the U-shaped bracket 21 or the lining plate 22 is a split sheet structure disposed in the U-shaped bracket 21 .

[0063] It can be understood that each bracket assembly 2 includes a lining plate 22, which can be an integrated long strip plate structure, and the lining plate 22 of the long strip plate structure is arranged in the internal space of the U-shaped bracket 21, or the lining plate 22 can be a split sheet structure, at least two pieces of split sheet structure lining plates 22 are spliced ​​and arranged in the internal space of the U-shaped bracket 21 or are arranged in the internal space of the U-shaped bracket 21 at intervals or are partially spliced ​​and partially spaced at intervals. Preferably, please refer to Figure 8 and Figure 9 As shown, the lining plate 22 in a U-shaped bracket 21 is configured as two sheet structures of different lengths. The two sheet structures are spaced apart in the internal space extending in the length direction of the U-shaped bracket 21, which can further reduce the cost of the elevator control panel.

[0064] Furthermore, a rivet stud 214 is provided on the main body 211 of the U-shaped bracket 21, and the liner 22 is suspended on the rivet stud 214 and fastened to the rivet stud 214 by a liner screw 215 so that the liner 22 is fixed in the U-shaped bracket 21;

[0065] or,

[0066] The main body 211 of the U-shaped bracket 21 and the lining plate 22 are welded together so that the lining plate 22 is fixed in the U-shaped bracket 21 .

[0067] Understandable, please refer to Figure 8 and Figure 9 As shown, the main body 211 of the U-shaped bracket 21 is provided with a self-clinching stud 214 extending in the same direction as the bending direction of the bracket bending portion 212. The lining plate 22 is placed on the self-clinching stud 214 and suspended from the self-clinching stud 214 so that a certain isolation space is formed between the lining plate 22 and the main body 211. The isolation space is the length of the self-clinching stud 214. The lining plate 22 has screw holes formed at positions corresponding to the self-clinching stud 214. The lining plate screws 215 pass through the screw holes on the lining plate 22 and are fastened to the self-clinching stud 214, so that the lining plate 22 is installed and fixed in the internal space of the U-shaped bracket 21.

[0068] Of course, in other embodiments, the lining plate 22 can be welded to the main body 211 so that the lining plate 22 is fixed in the internal space of the U-shaped bracket 21. Specifically, a spacer can be provided, with one end of the spacer welded to the main body 211 and the other end welded to the lining plate 22, so that an isolation space is formed between the lining plate 22 and the main body 211. Of course, the spacer can also be omitted and the lining plate 22 can be directly welded to the main body 211 of the panel assembly 1.

[0069] Furthermore, panel screws 13 are arranged at intervals on both sides of the panel assembly 1 in the width direction, and through holes 23 are correspondingly provided on the lining plate 22 and the main body 211 of the U-shaped bracket 21. The panel screws 13 pass through the through holes 23 on the lining plate 22, and the nuts 14 are locked to the panel screws 13 passing through the surface of the lining plate 22 facing away from the panel assembly 1 through the through holes 23 on the main body 211, so that the bracket assembly 2 is fastened to the panel assembly 1, and the nuts 14 do not protrude from the through holes 23 on the main body 211 of the U-shaped bracket 21.

[0070] Understandable, please refer to Figure 6 、 Figure 7 and Figure 8As shown, to ensure secure installation of the bracket assembly 2 on the panel assembly 1, multiple panel screws 13 are provided on both sides of the panel assembly 1 in the width direction, and are spaced apart along the length of the panel assembly 1. Through holes 23 are provided in the backing plate 22 and the main body 211 of the U-shaped bracket 21 at locations corresponding to the panel screws 13. When the bracket assembly 2 is installed on the panel assembly 1, the panel screws 13 pass through the through holes 23 in the backing plate 22. The nuts 14, utilizing the space provided by the through holes 23 in the main body 211, are locked to the surface of the backing plate 22 facing away from the panel assembly 1 and locked with the screws 13, ensuring that the bracket assembly 2 is stably fixed to the panel assembly 1. Since the main body 211 of the U-shaped bracket 21 is in contact with the elevator car wall 7 when the elevator control panel is installed on the elevator car wall 7, the nut 14 locked to the surface of the lining plate 22 facing away from the panel assembly 1 does not protrude from the surface of the through hole 23 on the main body 211 to avoid scratching the elevator car wall 7, that is, the nut 14 is arranged in the isolation space formed by the rivet stud 214 between the lining plate 22 and the main body 211.

[0071] Furthermore, the elevator control panel also includes a pair of head plates 3 and a pair of seals 4. The pair of head plates 3 are arranged on both sides of the panel assembly 1 in the length direction, and the seals 4 are sealed between the head plates 3 and the panel assembly 1.

[0072] Understandable, please refer to Figure 6 and Figure 7 As shown, the elevator control panel also includes a pair of head plates 3, which are arranged on both sides of the panel assembly 1 in the length direction to block the upper and lower ends of the elevator control panel, and the two head ends of the pair of bracket assemblies 2 in the length direction respectively abut against the pair of head plates 3 at the upper and lower ends, so that the elevator control panel installed on the elevator car wall 7 is sealed on all sides. The elevator control panel also includes a pair of seals 4, which are respectively arranged between the head plates 3 at the upper and lower ends of the elevator control panel and the panel assembly 1, so that after the elevator control panel is installed on the car wall 7, the pair of head plates 3 respectively fit well with the panel assembly 1 without gaps, achieving a dustproof and waterproof effect. Preferably, the seal 4 is CR foam, the thickness of the CR foam can be selected according to the thickness of the elevator control panel, and the CR foam is pasted between the head plate 3 and the panel assembly 1. Panel screws 13 are also spaced apart on both sides of the panel assembly 1 in the longitudinal direction, and corresponding through-holes 23 are also provided on the head plate 3 and the seal 4. During installation, the seal 4 and the head plate 3 are placed sequentially at both ends of the panel assembly 1 in the longitudinal direction, and the panel screws 1 are passed through the through-holes 23 of the seal 4 and the head plate 3 in turn. The nuts 14 are locked to the panel screws 13 by means of the space in the through-holes 23 on the head plate 3 to secure the seal 4 and the head plate 3. Since the head plate 3 is in contact with the elevator car wall 7 when the elevator control panel is installed on the elevator car wall 7, the nuts 14 locked to the panel screws 1 do not protrude from the surface of the through-holes 23 of the head plate 3 to avoid scratching the elevator car wall 7.

[0073] Furthermore, the bracket assembly 2 and the head plate 3 are arranged around the panel assembly 1 to form a hollow space, and the elevator control panel also includes a floor display module 5 and an elevator floor selection button 6, and the floor display module 5 and the elevator floor selection button 6 are accommodated in the hollow space.

[0074] Understandable, please refer to Figure 6 As shown, a pair of bracket assemblies 2 are arranged on both sides of the panel assembly 1 in the width direction, a pair of head plates 3 are arranged on both sides of the panel assembly 1 in the length direction, and the two head ends of the pair of bracket assemblies 2 in the length direction are respectively abutted on the pair of head plates 3 at the upper and lower ends, so that the bracket assemblies 2 and the head plates 3 are surrounded on the panel assembly 1 to form a hollow space. The elevator control panel also includes a floor display module 5 and a plurality of elevator floor selection buttons 6, and the floor display module 5 and the elevator floor selection buttons 6 are installed in the installation holes opened in the panel assembly 1 and are accommodated in the hollow space in the thickness direction. Since the elevator control panel of this application is not provided with a bottom plate assembly, the surface of the elevator control panel installed on the side of the car wall 7 is non-enclosed, that is, there is a non-enclosed hollow space for accommodating accessories such as the floor display module 5 and the elevator floor selection buttons 6. Therefore, this elevator control panel can be installed with accessories such as floor display modules 5 and elevator floor selection buttons 6 of different thickness from the elevator control panel during after-market modification. That is to say, the thickness of these accessories can be thinner than the thickness of the elevator control panel, or thicker than the thickness of the elevator control panel and protrude from the back of the elevator control panel. This flexible elevator control panel that adapts to accessories of different thicknesses is suitable for Figure 13 In the car wall 7 scenario shown, a hollow car wall space 72 is provided on part of the car wall 7, and the bracket assembly 2 of the elevator control panel can be fixed on the non-hollow car wall 7 around the hollow car wall space 72, and the spare parts protruding from the back of the elevator control panel are accommodated in the hollow car wall space 72, so that the elevator control panel of the present application can be better adapted to be installed in a variety of scenarios, with higher adaptability, and can better meet the installation requirements of various scenarios, bringing greater convenience to the elevator after-market modification, and the elevator control panel can adapt to the installation of spare parts of various thicknesses.

[0075] Furthermore, a mounting hole 213 is provided on the main body 211 of the U-shaped bracket 21 , and the mounting hole 213 is hung on the mounting nail 71 of the elevator car wall 7 so that the elevator control panel is set on the elevator car wall 7 .

[0076] Understandable, please refer to Figure 10 、 Figure 11 and Figure 12As shown, the main body 211 of the U-shaped bracket 21 of the present application is provided with a mounting hole 213, which can be a calabash hole. During installation, a mounting nail 71, which can be a calabash nail, is first installed on the elevator car wall 7. Then, the mounting hole 213 is aligned with the mounting nail 71 for hanging installation so that the elevator control panel is installed on the elevator car wall 7.

[0077] Furthermore, the elevator control panel also includes a horse seat 8 fixed on the panel assembly 1, and a tightening screw 81 is provided on the horse seat 8. The tightening screw 81 is used to tighten into the wall hole of the elevator car wall 7 to secure the elevator control panel to the elevator car wall 7.

[0078] Understandable, please refer to Figure 6 、 Figure 7 、 Figure 11 and Figure 12 As shown, the elevator control panel also includes a horse seat 8 fixed in the accommodating space of the panel assembly 1, and the horse seat 8 is in the shape of a raised middle portion. The non-raised portions at both ends are provided with mounting holes and are locked to the studs of the panel assembly 1 through gaskets and nuts to fix the horse seat 8 to the panel assembly 1. A threaded hole is provided in the raised portion in the middle of the horse seat 8, and a tightening screw 81 is screwed into the threaded hole. The tightening screw 81 can specifically be a hexagonal screw. The panel assembly 1 is provided with a clearance hole 15 at the position corresponding to the tightening screw 81. During installation, a tool can be used to pass through the clearance hole 15 to tighten the tightening screw 81 into the wall hole of the elevator car wall 7, so that the elevator control panel is firmly fixed on the elevator car wall 7. The present application installs the horse seat 8 on the elevator control panel panel assembly 1, and the solution of installing the elevator control panel by directly tightening the tightening screw 81 into the wall hole of the car wall 7 makes installation more convenient and simple, saving installation time and cost.

[0079] The present invention further provides an elevator comprising a car and an elevator control panel as described above, the elevator control panel being mounted on a car wall 7. The specific structure of the elevator control panel is described with reference to the above embodiments. Since the present elevator utilizes all the technical solutions of all the above embodiments, it at least has all the beneficial effects brought about by the technical solutions of the above embodiments, and therefore, no further description is given here.

[0080] The above description is only a preferred embodiment of the present invention and does not limit the patent scope of the present invention. All equivalent structural transformations made by using the contents of the present invention specification and drawings under the inventive concept of the present invention, or direct / indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. An elevator control panel, comprising a panel assembly (1) and a bracket assembly (2) disposed on the panel assembly (1), characterized in that: The panel assembly (1) comprises a main body (11) and a panel bending portion (12) extending from the main body (11) in a longitudinal direction; The bracket assembly (2) includes a U-shaped bracket (21) and a lining plate (22); The U-shaped bracket (21) comprises a main body (211) and a bracket bending portion (212) extending from the main body (211) in a length direction, and the lining plate (22) is fixed in the internal space of the U-shaped bracket (21); The U-shaped bracket (21) is arranged upside down in the panel assembly (1), and the panel assembly (1) and the lining plate (22) are fixedly connected so that the bracket assembly (2) is fastened to the panel assembly (1).

2. The elevator operating panel according to claim 1, wherein: The thickness of the bracket bending portion (212) is less than or equal to the thickness of the panel bending portion (12).

3. The elevator operating panel according to claim 1, wherein: The bracket assembly (2) is provided as a pair, and is provided on both sides of the panel assembly (1) in the width direction. The U-shaped bracket (21) of each bracket assembly (2) is provided as an integral molding or is formed by splicing multiple U-shaped brackets in the length direction.

4. The elevator operating panel according to claim 1, wherein: The lining plate (22) is an integrated long strip structure arranged in the U-shaped bracket (21), or the lining plate (22) is a split sheet structure arranged in the U-shaped bracket (21).

5. The elevator operating panel according to claim 1, wherein: A pressure riveting stud (214) is provided on the main body (211) of the U-shaped bracket (21), and the lining plate (22) is suspended on the pressure riveting stud (214) and fastened to the pressure riveting stud (214) by a lining plate screw (215), so that the lining plate (22) is fixed in the U-shaped bracket (21); or, The main body (211) of the U-shaped bracket (21) and the lining plate (22) are welded together so that the lining plate (22) is fixed in the U-shaped bracket (21).

6. The elevator operating panel according to claim 1, wherein: Panel screws (13) are arranged at intervals on both sides of the panel assembly (1) in the width direction, and through holes (23) are correspondingly provided on the lining plate (22) and the main body (211) of the U-shaped bracket (21). The panel screws (13) pass through the through holes (23) on the lining plate (22), and the nuts (14) are locked to the panel screws (13) passing through the surface of the lining plate (22) facing away from the panel assembly (1) through the through holes (23) on the main body (211), so that the bracket assembly (2) is fastened to the panel assembly (1), and the nuts (14) do not protrude from the through holes (23) on the main body (211) of the U-shaped bracket (21).

7. The elevator operating panel according to claim 1, wherein: The elevator control panel further comprises a pair of head plates (3) and a pair of sealing members (4), wherein the pair of head plates (3) are arranged on both sides of the panel assembly (1) in a length direction, and the sealing members (4) are sealingly arranged between the head plates (3) and the panel assembly (1).

8. The elevator operating panel according to claim 7, wherein: The bracket assembly (2) and the head plate (3) are arranged around the panel assembly (1) to form a hollow space. The elevator control panel also includes a floor display module (5) and an elevator floor selection button (6). The floor display module (5) and the elevator floor selection button (6) are accommodated in the hollow space.

9. The elevator operating panel according to claim 1, wherein: A mounting hole (213) is provided on the main body (211) of the U-shaped bracket (21), and the mounting hole (213) is hung on a mounting nail (71) of an elevator car wall (7) so that the elevator control panel is arranged on the elevator car wall (7).

10. The elevator operating panel according to claim 1, wherein: The elevator control panel also includes a saddle (8) fixed on the panel assembly (1), and a tightening screw (81) is provided on the saddle (8). The tightening screw (81) is used to tighten in the wall hole of the elevator car wall (7) to stabilize the elevator control panel on the elevator car wall (7).

11. An elevator, characterized in that: The elevator comprises a car and an elevator operating panel according to any one of claims 1 to 10, wherein the elevator operating panel is mounted on a car wall (7) of the car.