Built-in wiring and supporting integrated plate adaptive to outdoor unit of air conditioner

The built-in wiring and support integrated panel solves the problem of exposed air conditioning outdoor unit connection lines, realizes the built-in hidden and unified standardized treatment of air conditioning connection lines, improves the beauty of the building and air conditioning efficiency, and is suitable for renovation of old communities.

CN223121579UActive Publication Date: 2025-07-18HEILONGJIANG CONSTR DESIGN RES INST
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Patent Information

Application Number
CN202422394484.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-18
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

During the renovation of old buildings, the exposed connection lines of the outdoor units of the air-conditioning system affect the aesthetic and regularity of the building's facade, pose safety hazards, reduce air-conditioning efficiency and accelerate equipment aging, and lack effective hidden treatment measures.

Method used

The integrated panel is built-in wiring support, including inner vertical support plate, threading pipe, connecting horizontal board and disassembled cover strip. The inner vertical support plate is buried between the building exterior wall and the insulation layer. The threading pipe is equipped with strip openings and disassembled cover strips to achieve the built-in concealment of the air-conditioning connection line, and the connection horizontal board provides support, adapting to the location and length of different outdoor units of the air-conditioning.

Benefits of technology

Realize standardized and built-in wiring of air conditioning connection lines, improve the regularity of building facades, protect connection lines, reduce aging and damage, ensure connection stability and air conditioning efficiency, and is suitable for renovation of old communities.

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Abstract

The utility model discloses a built-in wiring and supporting integrated plate adaptive to an air conditioner outdoor unit. In the old building transformation process, connecting lines of an air conditioner outdoor unit are exposed and hung unevenly, the regularity of a building facade heat preservation layer is affected, the overall heat preservation performance of the building facade heat preservation layer is damaged, and exposure cannot be improved. An inner vertical supporting plate is vertically arranged between a building outer wall and a heat preservation layer, one side, facing outdoors, of the inner vertical supporting plate is connected with a threading pipe, a strip-shaped opening is machined in the pipe wall of the threading pipe, a detachable cover strip is detachably connected into the strip-shaped opening, the bottom end of the inner vertical supporting plate is integrally connected with a connecting transverse plate, and the connecting transverse plate is connected with the inner vertical supporting plate. A plurality of supporting parts are arranged on the side, facing outdoors, of the connecting transverse plate, one end of the air conditioner connecting wire penetrates through the wire penetrating opening to be connected with the air conditioner outdoor unit, and the other end of the air conditioner connecting wire sequentially penetrates through the pipe wall of the wire penetrating pipe, the inner vertical supporting plate and the building outer wall to be connected with the air conditioner indoor unit.
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Description

Technical Field

[0001] The utility model specifically relates to an integrated wiring support board for an air conditioner outdoor unit, belonging to the technical field of building heating ventilation. Background Art

[0002] At present, the problem of exposed lines of air conditioner outdoor units at different positions can be seen everywhere on the exterior walls of buildings. Each air conditioner outdoor unit is equipped with an exposed line. The reason for the existence of the exposed line is that it is necessary to cooperate with the air conditioner outdoor unit and the air conditioner indoor unit to form a connection line. The connection lines used by the air conditioner outdoor unit mainly include a power line, an operating line (or called a compressor line), a control line, and a protection line. Operators usually wind each line into a thick integrated line and hang it on the exterior wall of the building. However, due to the different installation times of air conditioners, the line interface positions of air conditioner outdoor units, the installation processes, and the drilling positions selected by the operating workers, the lengths and indoor heights of the exposed lines corresponding to different types and installation conditions of air conditioner outdoor units are different. For the renovation work of old residential areas, even if the exterior of the building is renovated neatly, it will be affected by the exposed lines of air conditioner outdoor units at different positions, affecting the aesthetic neatness of the building exterior. In some areas, classical buildings will cancel the installation of air conditioners due to the influence of air conditioner outdoor units and their exposed lines, affecting the indoor living comfort. The exposed layout of the air conditioner outdoor unit lines will also bring a series of problems, including potential safety hazards, reduced air conditioner efficiency, and accelerated equipment aging.

[0003] First of all, the exposed lines of the air conditioner outdoor unit pose potential safety hazards. The exposed lines are easily affected by the external environment, such as high temperature, humidity, salt spray, etc., which may accelerate the aging and damage of the lines. Especially in a humid or salt spray environment, the oxidation and corrosion of the lines will intensify, which may cause short circuits or electrical failures, thus posing potential safety hazards.

[0004] Secondly, the exposed lines will affect the efficiency of the air conditioner. The exposed lines may accumulate dust and dirt, which will hinder the normal heat dissipation of the air conditioner, thus affecting the cooling or heating effect. In addition, the aging and damage of the lines may also cause unstable current, increase the power consumption, and reduce the operating efficiency of the air conditioner.

[0005] Furthermore, the exposed lines not only affect the overall image of the building, but may also appear untidy due to the accumulation of dust and dirt, affecting the aesthetic appearance of the building.

[0006] In short, during the renovation process of old buildings, the exposed hanging of the connection lines of the air conditioner outdoor units is inconsistent, affecting the regularity of the shape of the building exterior wall insulation layer and damaging the overall insulation performance of the building exterior wall insulation layer. At present, there are no relevant treatment measures to improve the degree of exposure of the air conditioner outdoor unit lines. Content of the Utility Model

[0007] In order to overcome the defects of the prior art, a built-in wiring support integrated plate adapted for an air-conditioning outdoor unit is now provided to solve the above problems.

[0008] A built-in wiring support integrated plate adapted for an air-conditioning outdoor unit, comprising an inner vertical support plate, a wire threading tube, a connecting horizontal plate, a detachable cover strip and an air-conditioning connecting wire, wherein the inner vertical support plate is a long strip plate body, the inner vertical support plate is vertically arranged between the building outer wall and the insulation layer, the inner vertical support plate is integrally connected with the wire threading tube on one side facing the outdoors, the length direction of the wire threading tube is in the same direction as the length direction of the inner vertical support plate, the inner cavity of the wire threading tube is a wire threading cavity for matching the air-conditioning connecting wire, a strip-shaped notch is processed on the tube wall of the wire threading tube, the length direction of the strip-shaped notch is in the same direction as the length direction of the wire threading tube, a detachable cover strip is detachably connected in the strip-shaped notch, the detachable cover strip is an elastic strip body, and a detachable cover strip is arranged on one side outer wall of the detachable cover strip There are several first cutting indentations. When the elastic strip is divided into two component strips by the first cutting indentations, each component strip is detachably connected to the strip notch. The ends of the two component strips are enclosed with the two sides of the strip notch to form a threading opening. The threading opening is connected to the threading cavity. The bottom end of the inner vertical support plate is integrally connected with a connecting horizontal plate. The side of the connecting horizontal plate facing the outdoors is provided with multiple support parts that cooperate with the air-conditioning outdoor unit. The air-conditioning connecting wire is arranged in the threading cavity along the length direction of the threading pipe. One end of the air-conditioning connecting wire passes through the threading opening and is connected to the air-conditioning outdoor unit. The other end of the air-conditioning connecting wire passes through the wall of the threading pipe, the inner vertical support plate and the outer wall of the building in turn and is connected to the air-conditioning indoor unit.

[0009] The beneficial effects of the utility model are:

[0010] The built-in wiring support integrated board adapted for the air-conditioning outdoor unit in the utility model is a concealed processing method for dealing with exposed lines of different positions and lengths on the facade of a building, which can not only ensure the basic and stable connection relationship and usage performance between the air-conditioning outdoor unit, the connecting lines and the indoor unit of the space, but also can uniformly wire and build-in the outdoor lines of different types of air-conditioning outdoor units. It is particularly suitable for implementation in the process of thermal insulation renovation of the facades of old residential areas, so that the facades of the renovated buildings only have air-conditioning outdoor units at regular positions, and the corresponding lines can be mostly or completely hidden. It is suitable for promotion and use in the secondary renovation of buildings or the renovation of old residential areas.

[0011] In the utility model, the internal vertical support plate, the threading tube, the connecting horizontal plate and the detachable cover strip cooperate with the air conditioner connecting wire to form an installation mode of the internal circuit, which mainly achieves the advantages of taking into account three aspects, specifically:

[0012] First: It can form a standardized built-in wiring process for air conditioner connection wires;

[0013] Second: It can protect and insulate the connecting wires for air conditioners relying on the protection of the insulation layer, reduce the degree of aging and damage of the connecting wires for air conditioners, avoid being in a humid or salt spray environment, and improve the durable use performance of the connecting wires for outdoor air conditioners.

[0014] Third: While standardizing the layout position of the connecting wires for outdoor air conditioners, it can also support the outdoor unit of the air conditioner through the cooperation of the inner vertical plate and the connecting cross plate, realizing internal wiring and uniformly standardizing the installation position of the outdoor unit of the air conditioner.

[0015] In the present utility model, the cooperation between the self-structure of the detachable cover strip and the strip-shaped notch of the inner vertical plate can also be correspondingly adjusted at one-to-one positions according to the outdoor units of air conditioners at different positions, adapting to the secondary unified renovation and adjustment process of the air conditioners at the existing positions in old buildings. Description of the Drawings

[0016] Figure 1 It is a front view structural schematic diagram of the connection relationship between the inner vertical plate and the connecting cross plate. In the figure, the number of the inner vertical plate and the connecting cross plate is one each.

[0017] Figure 2 It is a three-dimensional structural schematic diagram of the first type of built-in wiring support integrated board for adapting to outdoor units of air conditioners.

[0018] Figure 3 It is a three-dimensional structural schematic diagram of the second type of built-in wiring support integrated board for adapting to outdoor units of air conditioners.

[0019] Figure 4 It is a front view structural schematic diagram of the integrated connection state of multiple built-in wiring support integrated boards for adapting to outdoor units of air conditioners.

[0020] Figure 5 It is a front view structural schematic diagram of the connection relationship between the inner vertical plate and two connecting cross plates.

[0021] Figure 6 It is a three-dimensional structural schematic diagram of the third type of built-in wiring support integrated board for adapting to outdoor units of air conditioners.

[0022] Figure 7 It is a three-dimensional structural schematic diagram of a kind of detachable cover strip.

[0023] Figure 8 It is a three-dimensional structural schematic diagram of another kind of detachable cover strip.

[0024] Figure 9 It is a cross-sectional view during the laying process of the built-in wiring support integrated board for adapting to outdoor units of air conditioners in cooperation with the building insulation layer. In the figure, the cutting direction is horizontally cut along the thickness of the building exterior wall.

[0025] Figure 10This is a cross-sectional view of the present utility model in a use state in cooperation with a building insulation layer and a building exterior wall. In the figure, the outer wall of the insulation layer and the outer wall of the detachable cover strip are in the same vertical plane;

[0026] Figure 11 This is a cross-sectional view of the present utility model in another use state in cooperation with a building insulation layer and a building exterior wall. In the figure, the detachable cover strip is completely buried in the insulation layer;

[0027] Figure 12 This is a schematic layout structure diagram of a plurality of built-in wiring support integrated plates for adapting to air conditioner outdoor units in the insulation layer of a building facade.

[0028] In the figure: 1 - inner vertical support plate; 2 - wire conduit; 2-1 - wire passing cavity; 2-2 - passing hole; 3 - connecting cross plate; 3-1 - second cutting indentation; 4 - detachable cover strip; 4-1 - elastic strip; 4-1-1 - component strip; 4-2 - first cutting indentation; 4-3 - wire passing port; 5 - strip-shaped notch; 6 - air conditioner connecting wire; 7 - support part; 8 - air conditioner outdoor unit; 10 - building exterior wall; 11 - insulation layer; 12 - first connecting rivet; 13 - second connecting rivet; 15 - first elastic rib; 16 - second elastic rib. Specific embodiments

[0029] The following illustrates the implementation manners of the present utility model through specific examples. Those skilled in the art can easily understand other advantages and effects of the present utility model from the content disclosed in this specification. The present utility model can also be implemented or applied through different specific implementation manners. Various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of the present utility model.

[0030] Specific embodiment one: Combine Figure 1 、 Figure 2 、 Figure 3 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 、 Figure 9 、 Figure 10 、 Figure 11 and Figure 12Description of this embodiment: In this embodiment, the built-in wiring support integrated board for adapting to the outdoor unit of an air conditioner is used for local single-household use and is used to configure an outdoor unit 8 of an air conditioner for corresponding adaptation and transformation. The built-in wiring support integrated board for the outdoor unit of an air conditioner includes an inner vertical support plate 1, a wire conduit 2, a connecting cross plate 3, a detachable cover strip 4, and an air conditioner connecting wire 6. The inner vertical support plate 1 is the main support member and is used to be buried between the building exterior wall 10 and the insulation layer 11. The inner vertical support plate 1 is a long strip-shaped plate body and is vertically arranged between the building exterior wall 10 and the insulation layer 11. On the side of the inner vertical support plate 1 facing the outside, a wire conduit 2 is integrally connected. The length direction of the wire conduit 2 is the same as the length direction of the inner vertical support plate 1. The inner cavity of the wire conduit 2 is a wire threading cavity 2-1 for fitting the air conditioner connecting wire 6. A strip-shaped notch 5 is processed on the pipe wall of the wire conduit 2. The length direction of the strip-shaped notch 5 is the same as the length direction of the wire conduit 2. A detachable cover strip 4 is detachably connected along the length direction of the strip-shaped notch 5. The detachable cover strip 4 is used to cover the strip-shaped notch 5. After the air conditioner connecting wire 6 is arranged in the wire conduit 2 and is respectively connected to the outdoor unit 8 of the air conditioner and the indoor unit of the air conditioner, the length and position of the detachable cover strip 4 are adapted and adjusted to realize the formation process of the position of the wire outlet 4-3. The wire outlet 4-3 is used to provide a position for the air conditioner connecting wire 6 to pass through. According to different models and layout requirements, the best position for the air conditioner connecting wire 6 to penetrate into the wire conduit 2 is debugged and determined as the wire outlet 4-3, and the height of the wire outlet 4-3 is variable. The specific process is as follows:

[0031] The detachable cover strip 4 is an elastic strip body 4-1. A number of first cutting indentations 4-2 are provided on the outer wall of one side of the detachable cover strip 4. After determining the specific position of the wire outlet 4-3 and determining the distances between this position and both ends of the wire conduit 2 respectively, the first cutting indentations 4-2 are correspondingly cut, so that the elastic strip body 4-1 is divided through the first cutting indentations 4-2 to form two component strips 4-1-1, and the lengths of the two component strips 4-1-1 respectively correspond to the positions from both ends of the wire conduit 2 to the wire outlet 4-3. Each component strip 4-1-1 is detachably connected to the strip-shaped notch 5, so that the two ends of the two component strips 4-1-1 that are close to each other and the two sides of the strip-shaped notch 5 enclose to form the wire outlet 4-3. The wire outlet 4-3 is communicated with the wire threading cavity 2-1, which is convenient for providing a directional threading space for the air conditioner connecting wire 6. In addition, a through hole 2-2 is processed on the pipe wall of the wire conduit 2. The through hole 2-2 is arranged in cooperation with the indoor unit of the air conditioner and is arranged near the top of the wire conduit 2. The through hole 2-2 provides a threading position for the air conditioner connecting wire 6 to penetrate into the room, realizing the built-in and hidden threading method of the air conditioner connecting wire 6. The air conditioner connecting wire 6 is arranged in the wire threading cavity 2-1 along the length direction of the wire conduit 2. One end of the air conditioner connecting wire 6 passes through the wire outlet 4-3 and is connected to the outdoor unit 8 of the air conditioner. The other end of the air conditioner connecting wire 6 passes through the pipe wall of the wire conduit 2, the inner vertical support plate 1, and the building exterior wall 10 in sequence and is connected to the indoor unit of the air conditioner.

[0032] In the present embodiment, the bottom end of the inner vertical support plate 1 is integrally connected with a connecting transverse plate 3, and a plurality of supporting parts 7 cooperating with the air-conditioning outdoor unit 8 are arranged on the side of the connecting transverse plate 3 facing the outdoors. The supporting parts 7 are specifically steel frames, and the shapes are straight, triangular, L-shaped or other shapes, and are used to provide a supporting position for the air-conditioning outdoor unit 8. At the same time, it can also reduce the area occupied by the punching positions on the outer wall 10 of the building or the outer wall of the insulation layer 11 during the installation of the air-conditioning outdoor unit 8. By adapting to the cooperation of the built-in wiring support integrated plate for the air-conditioning outdoor unit, there is only the protruding position of the supporting part 7 on the outer wall of the insulation layer 11, and the air-conditioning connecting wire 6 used in conjunction with the air-conditioning outdoor unit 8 is built-in and hidden, thereby facilitating the improvement of the regularity of the building facade.

[0033] In this embodiment, the air-conditioning connecting line 6 mainly includes a power line, an operating line (or called a compressor line), a control line and a protection line. It is an existing line, and its working process between the air-conditioning outdoor unit 8 and the air-conditioning indoor unit is the same as the working principle between the air-conditioning outdoor unit 8, the air-conditioning indoor unit and the related connecting lines in the prior art.

[0034] Specific embodiment 2: This embodiment is a further limitation of specific embodiment 1. The number of support parts 7 correspondingly set is two. One structural form of the support part 7 is a horizontal support rod and an inclined rod. The length direction of the horizontal support rod is the same as the thickness direction of the building exterior wall 10. One end of the horizontal support rod is fixedly connected to the building exterior wall 10. The other end of the horizontal support rod is a suspended end, which passes through the insulation layer 11 and extends out of the insulation layer 11. The extended length is at least 40 centimeters, which is used to provide sufficient supporting position for the air-conditioning outdoor unit 8. The inclined rod is arranged below the horizontal support rod. The inclined rod is a diagonal brace, which is used to support the position of the horizontal support rod. One end of the horizontal support rod is fixedly connected to the horizontal support rod, and the other end of the horizontal support rod is fixedly connected to the building exterior wall 10.

[0035] Another structural form of the support portion 7 includes a triangular bracket and a plurality of reinforcing ribs. The triangular bracket is a right-angle bracket, one of which is fixedly connected to the building exterior wall 10, and the other right-angled side is used to support the air-conditioning outdoor unit 8. The plurality of reinforcing ribs are arranged in the triangular bracket.

[0036] Specific implementation method three: This implementation method is a further limitation of specific implementation methods one or two, combined with Figure 9 and Figure 10 As shown, in this embodiment, the inner vertical support plate 1 is connected to the building outer wall 10 through a plurality of first connecting rivets 12, thereby improving the positioning strength of the inner vertical support plate 1. The first connecting rivets 12 can also be replaced by other existing fixing connectors.

[0037] In order to improve the positioning strength of the support part 7 in this embodiment, the support part 7 can also be provided with an external connecting member, which is an L-shaped member, and its vertical section is connected to the outer wall of the insulation layer 11 through a plurality of second connecting rivets 13, and the horizontal end of the external connecting member is fixedly connected to the outer wall of the protruding part of the support part 7 extending out of the insulation layer 11, so as to improve the supporting strength of the support part 7 itself.

[0038] Specific embodiment 4: This embodiment is a further limitation of specific embodiments 1, 2 or 3, the connecting transverse plate 3 is a transverse plate body, the length direction of the connecting transverse plate 3 is in the same direction as the width direction of the inner vertical support plate 1, and multiple second cutting indentations 3-1 are processed along the width direction on the outer walls of both ends of the connecting transverse plate 3. The multiple second cutting indentations 3-1 are used to select one to be cut or not to be cut, so as to accurately limit the length of the connecting transverse plate 3.

[0039] Specific embodiment five: This embodiment is a further limitation of specific embodiments one, two, three or four. When the inner vertical support plate 1 and the connecting transverse plate 3 are arranged one by one, one side of the bottom end of the inner vertical support plate 1 and one end of the connecting transverse plate 3 are integrally connected to form an L-shaped plate body, and the plate surface of the connecting transverse plate 3 is on the same vertical plane as the plate surface of the inner vertical support plate 1.

[0040] Specific embodiment six: This embodiment is a further limitation of specific embodiments one, two, three, four or five. When the inner vertical support plate 1 is correspondingly provided with two connecting transverse plates 3, the two connecting transverse plates 3 are respectively arranged on both sides of the inner vertical support plate 1, and one end of each connecting transverse plate 3 close to the inner vertical support plate 1 is fixedly connected to the inner vertical support plate 1. The inner vertical support plate 1 and the two connecting transverse plates 3 are integrally connected to form an inverted T-shaped plate body, and the plate surface of each connecting transverse plate 3 is on the same vertical plane as the plate surface of the inner vertical support plate 1.

[0041] Specific implementation method 7: This implementation method is a further limitation of specific implementation methods 1, 2, 3, 4, 5 or 6. Figure 1 , Figure 2 , Figure 5 , Figure 6 and Figure 7 As shown, the threading tube 2 is a tube with a square outer surface and a circular inner surface. When the strip notch 5 is a wide notch, the width of the strip notch 5 is smaller than the width of the threading tube 2. The wide notch is a centrally arranged strip notch, that is, the central axis of the strip notch 5 and the central axis of the length direction of the threading tube 2 are on the same vertical plane.

[0042] Combination Figure 7As shown, in this embodiment, the detachable cover strip 4 provided with the wide notch is a wide strip body, which is a strip body made of rubber or other existing elastic materials. A first elastic convex ridge 15 is processed on both sides of the detachable cover strip 4, which is used to engage with the wide notch of the threading tube 2. One of the engaging modes is:

[0043] The inner walls on both sides of the threading cavity 2-1 in the threading tube 2 are respectively processed with strip grooves, and the detachable cover strip 4 is respectively engaged with the two strip grooves through two first elastic ridges 15. When the detachable cover strip 4 is engaged with the wide notch, the outer wall of the detachable cover strip 4 and the outer wall on the side where the wide notch is located are in the same plane, thereby facilitating the laying of the insulation layer 11.

[0044] Specific implementation method eight: This implementation method is a further limitation of specific implementation methods one, two, three, four, five, six or seven. Figure 3 and Figure 8 As shown, the threading tube 2 is a tube with an outer square and an inner circle. When the strip notch 5 is a narrow offset notch, the width of the strip notch 5 is less than half of the width of the threading tube 2. The central axis of the strip notch 5 and the central axis of the length direction of the threading tube 2 are on the same inclined plane, that is, the strip notch 5 is set obliquely and not centered, realizing the wiring process in a narrow form, which is more conducive to reducing the opening area of the strip notch 5, reducing the difficulty of sealing, and reducing the location and probability of warping and deformation in the later stage.

[0045] Combination Figure 8 As shown, in this embodiment, the detachable cover strip 4 provided with the narrow offset notch is a narrow strip body, which is a strip body that takes both softness and hardness into consideration. The detachable cover strip 4 includes a hard cover plate and a second elastic ridge 16. The bottom side of the hard cover plate is provided with a second elastic ridge 16. The second elastic ridge 16 is a ridge body made of rubber or other existing elastic materials, and the other side is a straight side, which is used to engage with the wide notch of the threading tube 2. One of the engaging modes is:

[0046] The inner wall of one side of the threading cavity 2-1 in the threading tube 2 is processed with a strip ridge, and the side of the strip ridge facing outdoors cooperates with the inner wall of the threading cavity 2-1 to provide a position for the hard cover plate, and the side of the strip ridge facing indoors cooperates with the inner wall of the threading cavity 2-1 to provide a clamping position for the second elastic ridge 16. When the detachable cover strip 4 is clamped in the narrow offset notch, the outer wall of the detachable cover strip 4 and the outer wall on the side where the narrow offset notch is located are in the same plane, thereby facilitating the laying of the thermal insulation layer 11.

[0047] The process of cooperating with the construction of the built-in wiring support integrated board for the outdoor unit of the air conditioner during the thermal insulation operation of the exterior wall of the old residential area is as follows:

[0048] For the installed air-conditioning equipment in old residential areas, corresponding renovations are carried out during the laying process of the thermal insulation layer 11. Now, after one end of the connecting wire 6 for the air conditioner is detached from the outdoor unit 8 of the air conditioner, the outdoor unit 8 of the air conditioner is removed. Before pasting the thermal insulation layer 11 on the building exterior wall 10, the cement mortar base layer is treated. After the base layer is cleaned by removing loose materials, dirt, dust, etc., it is ensured that the surface of the exterior wall base layer is firm and flat. At the same time, the connecting wire 6 for the air conditioner is passed through the through-hole 2-2 of the wire conduit 2 on the inner vertical support plate 1 and placed in the wire threading cavity 2-1. After the inner vertical support plate 1 with the wire conduit 2 and the connecting cross plate 3 is vertically and fixedly connected to the building exterior wall 10, an adhesive is applied to the surface of the base layer. The outer walls on both sides of the inner vertical support plate 1, the outer walls on both sides of the wire conduit 2, and the outer wall of the connecting cross plate 3 all need to be coated. Then, the thermal insulation layer 11 is laid correspondingly. When it is laid to the strip-shaped notch 5, the precise layout position of the outdoor unit 8 of the air conditioner is estimated according to the position of the support part. After the other end of the connecting wire 6 for the air conditioner is connected to the outdoor unit 8 of the air conditioner, after determining the corresponding position where the other end of the connecting wire 6 for the air conditioner extends out of the strip-shaped notch 5, two detachable cover strips 4 with corresponding lengths are cut and buckled at the strip-shaped notch 5 to form a wire threading opening 4-3. Then, after disconnecting the connecting wire 6 for the air conditioner and the outdoor unit 8 of the air conditioner, the complete laying process of the thermal insulation layer 11 is carried out. The laying process of the thermal insulation layer 11 is the same as that of the existing building exterior wall thermal insulation layer. The outer wall of the thermal insulation layer 11 can be in the same vertical plane as the outer wall of the detachable cover strip 4, or the detachable cover strip 4 can be completely buried in the thermal insulation layer 11, which can be carried out according to specific laying requirements. When the thermal insulation layer 11 is laid, finally, the end of the connecting wire 6 for the air conditioner extending out of the wire threading opening 4-3 is connected to the outdoor unit 8 of the air conditioner again.

[0049] Specific Embodiment Nine: In combination with Figures 1 to 12Description of this embodiment: In this embodiment, the built-in wiring support integrated board for adapting to the outdoor unit of the air conditioner is used for unified use by multiple households and can be used to configure multiple outdoor units 8 of the air conditioner for corresponding adaptation and transformation at the same time. The built-in wiring support integrated board for the outdoor unit of the air conditioner includes an inner vertical support plate 1, a wire pipe 2, a detachable cover strip 4, a plurality of connecting cross plates 3 and a plurality of air conditioner connecting wires 6. The inner vertical support plate 1 is the main support member and is used to be buried between the building exterior wall 10 and the insulation layer 11. The inner vertical support plate 1 is a long plate body that matches the height of the building. The wire pipe 2 is also a long pipe body that matches the height of the building. The inner vertical support plate 1 is vertically arranged between the building exterior wall 10 and the insulation layer 11. One side of the inner vertical support plate 1 facing the outside is integrally connected with the wire pipe 2. The length direction of the wire pipe 2 is the same as the length direction of the inner vertical support plate 1. The inner cavity of the wire pipe 2 is a wire threading cavity 2-1 for matching the air conditioner connecting wire 6. A strip-shaped notch 5 is processed on the pipe wall of the wire pipe 2. The length direction of the strip-shaped notch 5 is the same as the length direction of the wire pipe 2. A detachable cover strip 4 is detachably connected along the length direction of the strip-shaped notch 5. The detachable cover strip 4 is used to cover the strip-shaped notch 5. After the air conditioner connecting wire 6 is arranged in the wire pipe 2 and is respectively connected to the outdoor unit 8 of the air conditioner and the indoor unit of the air conditioner, the length and position of the detachable cover strip 4 are adapted and adjusted to realize the formation process of the position of the wire threading opening 4-3. The wire threading opening 4-3 is used to provide a position for the air conditioner connecting wire 6 to pass through. According to different models and layout requirements, the best position for the air conditioner connecting wire 6 to penetrate into the wire pipe 2 is debugged and determined as the wire threading opening 4-3. The specific process is as follows:

[0050] The detachable cover strip 4 is an elastic strip body 4-1. A plurality of first cutting indentations 4-2 are arranged on one outer wall of the detachable cover strip 4. After the specific position of the wire threading opening 4-3 is determined and the distances from this position to both ends of the wire pipe 2 are determined, the first cutting indentations 4-2 are correspondingly cut, so that the elastic strip body 4-1 is divided through the first cutting indentations 4-2 to form two component strips 4-1-1. The lengths of the two component strips 4-1-1 respectively correspond to the positions from both ends of the wire pipe 2 to the wire threading opening 4-3. Each component strip 4-1-1 is detachably connected to the strip-shaped notch 5, so that the two ends of the two component strips 4-1-1 that are close to each other and the two sides of the strip-shaped notch 5 enclose to form the wire threading opening 4-3. The wire threading opening 4-3 is communicated with the wire threading cavity 2-1, which is convenient for providing a directional threading space for the air conditioner connecting wire 6. In addition, a through hole 2-2 is processed on the pipe wall of the wire pipe 2. The through hole 2-2 is arranged in cooperation with the indoor unit of the air conditioner. The through hole 2-2 is arranged near the top end of the wire pipe 2. The through hole 2-2 provides a threading position for the air conditioner connecting wire 6 to penetrate into the room, realizing the built-in and hidden threading method of the air conditioner connecting wire 6. The air conditioner connecting wire 6 is arranged in the wire threading cavity 2-1 along the length direction of the wire pipe 2. One end of the air conditioner connecting wire 6 passes through the wire threading opening 4-3 and is connected to the outdoor unit 8 of the air conditioner. The other end of the air conditioner connecting wire 6 passes through the pipe wall of the wire pipe 2, the inner vertical support plate 1 and the building exterior wall 10 in sequence and is connected to the indoor unit of the air conditioner.

[0051] In this embodiment, a plurality of connecting transverse plates 3 are arranged on both sides or one side of the inner vertical support plate 1 , and the inner vertical support plate 1 and the plurality of connecting transverse plates 3 are connected in a fixed connection or a detachable connection.

[0052] Combination Figure 5 , Figure 10 , Figure 11 and Figure 12 As shown, when multiple connecting horizontal plates 3 are respectively provided on both sides of the inner vertical support plate 1, it is convenient for two rows of users to use one inner vertical support plate 1 and one wire threading tube 2 at the same time, saving wire threading space, and utilizing the standardized unified installation positions of multiple air-conditioning outdoor units 8 at the same vertical position, which is suitable for unified laying in new buildings and can also be used in the renovation of old communities. However, it is necessary to unify and standardize the positions where the air-conditioning connecting lines 6 enter the room, which involves re-drilling, thereby forming a process of using the same wire threading tube 2 to uniformly vertically return multiple air-conditioning connecting lines 6. Each connecting horizontal plate 3 is provided with an air-conditioning outdoor unit 8, and each connecting horizontal plate 3 is provided with two supporting parts 7 cooperating with the air-conditioning outdoor unit 8 on the side facing the outdoors. The supporting parts 7 are specifically steel frames, and are in the shape of a straight line, a triangle, an L shape or other shapes, and are used to provide a supporting position for the air-conditioning outdoor unit 8. At the same time, it can also reduce the area occupied by the punching position on the building's exterior wall 10 or the outer wall of the insulation layer 11 during the installation of the air-conditioning outdoor unit 8. By adapting to the cooperation of the built-in wiring support integrated plate for the air-conditioning outdoor unit, there is only the penetration position of the supporting part 7 on the outer wall of the insulation layer 11, and the air-conditioning connecting wire 6 used in conjunction with the air-conditioning outdoor unit 8 is arranged in a built-in hidden manner, thereby facilitating the improvement of the regularity of the building's facade. Other structures and connection relationships not mentioned are the same as those in the specific implementation methods one, two, three, four, five, six, seven or eight.

[0053] According to the specific renovation and design requirements of the building, multiple connecting horizontal plates 3 are arranged on one or both sides of the inner vertical support plate 1. The working process of this embodiment is as follows:

[0054] Before pasting the thermal insulation layer 11 on the building exterior wall 10, carry out the cement mortar base treatment. After cleaning the base, removing loose materials, dirt, dust and other operations, ensure that the surface of the exterior wall base is solid and flat. Vertically and fixedly connect the inner vertical support plate 1 with the wire conduit 2 and multiple connecting cross plates 3 to the building exterior wall 10. Pass each air conditioner connecting wire 6 through the through hole 2-2 of the wire conduit 2 on the inner vertical support plate 1 and place it in the wire threading cavity 2-1. Then, apply the adhesive on the surface of the exterior wall base, and it is necessary to apply it on the outer walls on both sides of the inner vertical support plate 1, the outer walls on both sides of the wire conduit 2, and the outer wall of the connecting cross plate 3. Then, lay the thermal insulation layer 11 correspondingly. When laying to the strip-shaped notch 5, estimate the accurate layout position of the air conditioner outdoor unit 8 according to the position of the support part. After connecting the other end of the air conditioner connecting wire 6 to the air conditioner outdoor unit 8, clarify the corresponding position where the other end of the air conditioner connecting wire 6 extends out of the strip-shaped notch 5, cut multiple detachable cover strips 4 with corresponding lengths and snap them along the length direction of the strip-shaped notch 5 to form multiple wire threading openings 4-3. Then, disconnect each air conditioner connecting wire 6 from its corresponding air conditioner outdoor unit 8 and perform the complete laying of the thermal insulation layer 11. When the thermal insulation layer 11 is laid, finally, connect the end of each air conditioner connecting wire 6 extending out of the wire threading opening 4-3 to the corresponding air conditioner outdoor unit 8 of this air conditioner connecting wire 6.

Claims

1. An integrated wiring support board for adapting to an outdoor unit of an air conditioner, characterized in that: It includes an inner vertical support plate (1), a wire conduit (2), a connecting cross plate (3), a detachable cover strip (4), and an air conditioner connecting wire (6). The inner vertical support plate (1) is a long strip-shaped plate body, which is vertically arranged between the building exterior wall (10) and the thermal insulation layer (11). One side of the inner vertical support plate (1) facing the outdoor is integrally connected with a wire conduit (2). The length direction of the wire conduit (2) is the same as that of the inner vertical support plate (1). The inner cavity of the wire conduit (2) is a wire threading cavity (2-1) for accommodating the air conditioner connecting wire (6). A strip-shaped notch (5) is processed on the pipe wall of the wire conduit (2). The length direction of the strip-shaped notch (5) is the same as that of the wire conduit (2). A detachable cover strip (4) is detachably connected in the strip-shaped notch (5). The detachable cover strip (4) is an elastic strip body (4-1). A number of first cutting indentations (4-2) are provided on one outer wall of the detachable cover strip (4). When the elastic strip body (4-1) is divided into two component strips (4-1-1) through the first cutting indentations (4-2), each component strip (4-1-1) is detachably connected to the strip-shaped notch (5). The ends of the two component strips (4-1-1) and the two sides of the strip-shaped notch (5) enclose a wire threading opening (4-3). The wire threading opening (4-3) is communicated with the wire threading cavity (2-1). The bottom end of the inner vertical support plate (1) is integrally connected with a connecting cross plate (3). A number of support parts (7) matching the air conditioner outdoor unit (8) are provided on one side of the connecting cross plate (3) facing the outdoor. The air conditioner connecting wire (6) is arranged in the wire threading cavity (2-1) along the length direction of the wire conduit (2). One end of the air conditioner connecting wire (6) passes through the wire threading opening (4-3) and is connected to the air conditioner outdoor unit (8). The other end of the air conditioner connecting wire (6) passes through the pipe wall of the wire conduit (2), the inner vertical support plate (1), and the building exterior wall (10) in sequence and is then connected to the air conditioner indoor unit.

2. The built-in wiring support integrated board for adapting to an outdoor air conditioner unit according to claim 1, wherein: A through hole (2-2) for matching the air conditioner indoor unit is processed on the pipe wall of the wire conduit (2). The through hole (2-2) is arranged near the top end of the wire conduit (2).

3. An integrated wiring support board for adapting to an outdoor air conditioner, as claimed in claim 1 or 2, characterized in that: The connecting cross plate (3) is a horizontal plate body. The length direction of the connecting cross plate (3) is the same as the width direction of the inner vertical support plate (1). A number of second cutting indentations (3-1) are processed on the outer walls at both ends of the connecting cross plate (3) along its width direction.

4. The built-in wiring support integrated board for adapting to an air conditioner outdoor unit according to claim 3, characterized in that: When the inner vertical support plate (1) and the connecting cross plate (3) are arranged in one-to-one correspondence, one side of the bottom end of the inner vertical support plate (1) and one end of the connecting cross plate (3) are integrally connected to form an L-shaped plate body. The plate surface of the connecting cross plate (3) and the plate surface of the inner vertical support plate (1) are in the same vertical plane.

5. The built-in wiring support integrated board for adapting to an outdoor unit of an air conditioner according to claim 3, characterized in that: When there are two connecting cross plates (3) corresponding to the inner vertical support plate (1), the two connecting cross plates (3) are respectively arranged on both sides of the inner vertical support plate (1). One end of each connecting cross plate (3) close to the inner vertical support plate (1) is fixedly connected to the inner vertical support plate (1). The inner vertical support plate (1) and the two connecting cross plates (3) are integrally connected to form an inverted T-shaped plate body. The plate surface of each connecting cross plate (3) and the plate surface of the inner vertical support plate (1) are in the same vertical plane.

6. The integrated wiring support board for adapting to an outdoor unit of an air conditioner according to claim 1, wherein: The conduit (2) is a square outer and circular inner tube body.

7. An integrated wiring support board for adapting to an outdoor unit of an air conditioner, as claimed in claim 6, wherein: When the strip-shaped notch (5) is a wide-width notch, the width of the strip-shaped notch (5) is less than the width of the conduit (2), and the central axis of the strip-shaped notch (5) and the central axis in the length direction of the conduit (2) are on the same vertical plane.

8. The built-in wiring support integrated board for adapting to an air conditioner outdoor unit according to claim 6, wherein: When the strip-shaped notch (5) is a narrow-width offset notch, the width of the strip-shaped notch (5) is less than half of the width of the conduit (2), and the central axis of the strip-shaped notch (5) and the central axis in the length direction of the conduit (2) are on the same inclined plane.