Motor support and air conditioning equipment
By designing a motor bracket for an air conditioner external unit, the limit structure between the plug-in and the heat exchanger fins is used to solve the problem that the air blades cannot rotate or be damaged during installation and transportation of the air conditioner external unit, and the installation reliability and structural stability are improved.
Patent Information
- Application Number
- CN202421950366.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-08-12
AI Technical Summary
During the installation and transportation of existing air conditioning external units, there are problems such that the air blades cannot rotate, the air blades are cracked or flew out of the external units, resulting in poor installation reliability and high usage failure rate.
A motor bracket is designed, by providing a first connecting structure on the frame body, including a plug-in part, which is connected between the plug-in part and the fins of the heat exchanger, so as to limit the displacement of the motor bracket and avoid contact between the air blades and the air guide ring.
It improves the installation reliability and structural stability of the motor bracket, avoids contact problems between the air blades and the air guide ring, reduces the failure rate and reduces the installation cost.
Smart Images

Figure CN222964058U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air conditioners, and particularly to a motor bracket and an air conditioner device. Background Art
[0002] The outdoor unit of an air conditioner is one of the main parts of the air conditioner, and is mainly used to achieve heat dissipation and heat exchange. However, in the prior art, when the outdoor unit of the air conditioner is installed and started, there are situations such as the impeller being unable to rotate, the impeller being cracked, and the impeller flying out of the outdoor unit, resulting in poor overall installation reliability of the outdoor unit of the air conditioner, high installation costs, and high subsequent usage failure rates. Summary of the Utility Model
[0003] The utility model aims to solve at least one of the technical problems in the related art to some extent.
[0004] To this end, an embodiment of the utility model provides a motor bracket with high installation reliability, stable structure, which avoids the displacement caused by dropping or the like, and further avoids the problem of the impeller contacting the air deflector ring.
[0005] An embodiment of the utility model also provides an air conditioner device including the above motor bracket.
[0006] The motor bracket of the embodiment of the utility model includes:
[0007] A frame body;
[0008] A first connection structure provided on the frame body and used to connect with a heat exchanger. The first connection structure includes a plugging portion. The heat exchanger includes a plurality of fins arranged at intervals in a first direction. The plugging portion is used to be inserted between two adjacent fins to limit the displacement of the motor bracket in the first direction.
[0009] In some embodiments, the first connection structure includes a flange. The plugging portion is located between the frame body and the flange in a second direction perpendicular to the first direction. The flange is used to be attached and abutted against the outer surface of the heat exchanger facing away from the frame body.
[0010] In some embodiments, the first connection structure includes:
[0011] A first plate portion, the first plate portion and the flange are arranged opposite to each other in the second direction;
[0012] A second plate portion, the second plate portion is connected between the first plate portion and the flange. The first plate portion, the second plate portion and the flange define a groove for the heat exchanger to be embedded. The plugging portion is connected to the second plate portion and is located in the groove.
[0013] In some embodiments, the flanging includes a guiding portion disposed on a side of the flanging facing away from the second plate portion, and a distance between the guiding portion and the first plate portion in the second direction gradually decreases along a direction approaching the second plate portion.
[0014] In some embodiments, a cross-section of the guiding portion orthogonal to the first direction is arc-shaped;
[0015] And / or, corners of the plugging portion and the guiding portion are all rounded.
[0016] In some embodiments, the first connecting structure includes an extending portion extending along the first direction, and the extending portion is connected between an edge of the first plate portion facing away from the second plate portion and the frame body.
[0017] In some embodiments, the first connecting structure includes:
[0018] A plurality of reinforcing ribs, the plurality of reinforcing ribs are arranged at intervals in the first direction, and each reinforcing rib extends along the extending portion, the first plate portion, and the second plate portion;
[0019] And / or, a plurality of strengthening portions, the plurality of strengthening portions are disposed within an angle formed by the first plate portion and the extending portion, and the plurality of strengthening portions are arranged at intervals along the first direction.
[0020] In some embodiments, the plugging portion is provided with an avoidance groove for embedding a heat exchange tube of the heat exchanger.
[0021] In some embodiments, the plugging portion is integrally formed with the first connecting structure by stamping;
[0022] And / or, the plugging portion is sheet-shaped;
[0023] And / or, there are a plurality of plugging portions, the plurality of plugging portions are arranged at intervals along the first direction, and each plugging portion is inserted between two adjacent fins corresponding thereto.
[0024] In some embodiments, it includes a second connecting structure and a third connecting structure, the frame body extends along a third direction, the second connecting structure is disposed at one end of the frame body in the third direction and is used for connecting with a panel, and the third connecting structure is disposed at the other end of the frame body in the third direction and is used for connecting with a chassis.
[0025] The air-conditioning equipment of the embodiment of the present utility model includes the motor bracket as described in any one of the above embodiments.
[0026] In some embodiments, the air-conditioning equipment is an outdoor unit of an air conditioner, and the outdoor unit of the air conditioner includes:
[0027] A heat exchanger, the first connection structure is connected to the heat exchanger, and the insertion part is inserted and fitted between two adjacent fins of the heat exchanger arranged at intervals in the first direction;
[0028] A panel and a chassis, the heat exchanger and the panel are arranged at intervals in the second direction, the motor bracket is arranged between the panel and the heat exchanger, the panel and the heat exchanger are on the same side of the chassis, and the motor bracket is fixedly connected to both the panel and the chassis.
[0029] Beneficial effects: The motor bracket and the air-conditioning equipment of the embodiment of the present utility model have high installation reliability and stable structure, avoiding the situation of displacement caused by dropping, etc., and further avoiding the problem of contact between the wind leaf and the air guide ring. Description of the drawings
[0030] Figure 1 is a three-dimensional schematic diagram of the overall structure of the motor bracket of the embodiment of the present utility model.
[0031] Figure 2 is Figure 1 an enlarged schematic diagram of the first connection structure in [Figure number].
[0032] Figure 3 is an installation schematic diagram of the motor bracket and the heat exchanger of the embodiment of the present utility model.
[0033] Figure 4 is Figure 3 a partial enlarged schematic diagram of part A in [Figure number].
[0034] Figure 5 is a schematic diagram of the air-conditioning equipment of the embodiment of the present utility model.
[0035] Reference numerals:
[0036] 100 - Motor bracket;
[0037] 1 - Frame body;
[0038] 2 - First connection structure; 21 - Insertion part; 211 - Avoidance groove; 22 - Flanging; 221 - Guide part; 23 - First plate part; 24 - Second plate part; 25 - Groove; 26 - Extension part; 27 - Reinforcing rib; 28 - Reinforcing part;
[0039] 3 - Second connection structure;
[0040] 4 - Third connection structure;
[0041] 200 - Heat exchanger; 201 - Fin;
[0042] 300 - Panel; 301 - Air guide ring;
[0043] 400 - Chassis;
[0044] 500 - Wind blade. Detailed implementation manners
[0045] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present utility model, and should not be construed as a limitation to the present utility model.
[0046] The present utility model is made based on the inventor's discovery and understanding of the following facts and problems:
[0047] In the related art, an outdoor unit of an air conditioner generally includes a front panel, a motor bracket, a motor, a wind blade, etc. Among them, a wind guide ring is provided on the front panel. The motor bracket is usually fixed inside the outdoor unit, the motor is fixed on the motor bracket, and the wind blade is installed on the drive shaft of the motor, and the wind blade is arranged opposite to the wind guide ring.
[0048] During the long - distance transportation and installation of the outdoor unit of the air conditioner, there is a situation where the outdoor unit of the air conditioner accidentally falls. Due to the poor installation reliability of the motor bracket in the related art, the motor bracket will shift under the action of the falling impact. Especially when the outdoor unit falls on its side, at this time, the wind blade will approach and touch the wind guide ring, resulting in problems such as the wind blade and the wind guide ring being stuck, the wind blade being unable to rotate, the wind blade being cracked, and the wind blade flying out of the outdoor unit.
[0049] Based on the above problems and understandings, an embodiment of the present utility model proposes a motor bracket.
[0050] As Figure 1 shown, the motor bracket 100 of the embodiment of the present utility model includes a frame body 1 and a first connection structure 2. The material of the frame body 1 can be metal, plastic, etc. The frame body 1 can be in the shape of a long plate, and the frame body 1 can be vertically arranged and extend along the up - and - down direction.
[0051] The first connection structure 2 is arranged on the frame body 1 and is used to connect with the heat exchanger 200. The first connection structure 2 includes a plug - in part 21. The heat exchanger 200 includes a plurality of fins 201 arranged at intervals in the first direction. The plug - in part 21 is used to be inserted between two adjacent fins 201 to limit the displacement of the motor bracket 100 in the first direction.
[0052] For example, as Figure 1 shown, the first connection structure 2 can be integrally formed at the top end of the frame body 1, and the first connection structure 2 can extend rearward of the frame body 1. In some other embodiments, the first connection structure 2 can also be connected to the frame body 1 by welding, fastening with fasteners, etc.
[0053] As Figure 2As shown, the first connection structure 2 can be integrally formed with a plug-in portion 21. The plug-in portion 21 can be a sheet-like structure, and the plug-in portion 21 can be located in a vertical plane.
[0054] As Figure 3 shown, the air-conditioning equipment can include a heat exchanger 200. The heat exchanger 200 can be a condenser or an evaporator. The heat exchanger 200 as a whole can also be flat, and the heat exchanger 200 can be located at the rear side of the frame 1. As Figure 4 shown, the heat exchanger 200 can include a plurality of thin sheet-like fins 201. The material of the fins 201 can be a heat-conducting material such as aluminum. The above-mentioned first direction can be the left-right direction, and the plurality of fins 201 of the heat exchanger 200 can be arranged at equal intervals along the left-right direction.
[0055] During assembly, as Figure 4 shown, the first connection structure 2 can be hung on the top of the heat exchanger 200, and the plug-in portion 21 can be inserted into the space between two adjacent fins 201.
[0056] In the motor bracket 100 of the embodiment of the present utility model, during use, since the plug-in portion 21 is inserted and fitted between two fins 201, the plug-in portion 21 and the fins 201 can abut against each other, thereby restricting the displacement of the plug-in portion 21 in the left-right direction, and further restricting the situation of the first connection structure 2 moving in the left-right direction. This avoids the problem that the relative movement is likely to occur between the motor bracket 100 and the heat exchanger 200 due to side falls and other situations in the related art, improves the installation reliability and structural stability of the motor bracket 100, and further avoids problems such as the impeller 500 not being able to rotate, the impeller 500 being cracked, and the impeller 500 flying out of the outdoor unit caused by the contact between the impeller 500 and the air guide ring 301.
[0057] In some embodiments, the first connection structure 2 includes a flanging 22. The plug-in portion 21 is located between the frame 1 and the flanging 22 in a second direction. The second direction is perpendicular to the first direction, and the flanging 22 is used to fit and abut against the outer surface of the heat exchanger 200 facing away from the frame 1.
[0058] For example, as Figure 2 shown, the flanging 22 can be integrally formed at the rear side of the first connection structure 2 by bending. The flanging 22 is generally located in a vertical plane. The above-mentioned second direction can be the front-rear direction. In the front-rear direction, the plug-in portion 21 can be located between the frame 1 and the flanging 22. During assembly, the flanging 22 can be in contact with the rear surface of the heat exchanger 200, thereby enhancing the stability of the connection between the first connection structure 2 and the heat exchanger 200, and also playing a role in restricting the movement of the motor bracket 100 in the front-rear direction.
[0059] In some embodiments, the first connecting structure 2 includes a first plate portion 23 and a second plate portion 24. The first plate portion 23 and the flange 22 are arranged relative to each other in the second direction. The second plate portion 24 is connected between the first plate portion 23 and the flange 22. The first plate portion 23, the second plate portion 24, and the flange 22 limit a groove 25 for the heat exchanger 200 to be embedded. The plug-in portion 21 is connected to the second plate portion 24 and is located in the groove 25.
[0060] For example, Figure 2 As shown, the first plate portion 23 and the second plate portion 24 can both be flat plates, wherein the first plate portion 23 can be arranged vertically and can be connected to the front edge of the second plate portion 24, the first plate portion 23, the flange 22, and the plug-in portion 21 can all be located on the lower side of the second plate portion 24, and the first plate portion 23, the plug-in portion 21, and the flange 22 are arranged in sequence from front to back.
[0061] like Figure 2 As shown, the first plate portion 23 and the flange 22 are arranged substantially in parallel, and the spacing space between the first plate portion 23 and the flange 22 forms a groove 25. When the motor bracket 100 and the heat exchanger 200 are assembled, as shown in FIG. Figure 3 and Figure 4 As shown, the top side of the heat exchanger 200 can be embedded in the groove 25, and the second plate portion 24 can be superimposed on the top surface of the heat exchanger 200, thereby realizing the constraint and limitation of the heat exchanger 200 and the first connecting structure 2 in the front-to-back direction, further enhancing the compactness of the assembly structure.
[0062] In some embodiments, the flange 22 includes a guide portion 221 , which is disposed on a side of the flange 22 away from the second plate portion 24 , and a distance between the guide portion 221 and the first plate portion 23 in the second direction gradually decreases along a direction approaching the second plate portion 24 .
[0063] For example, Figure 2 As shown, the guide portion 221 can be integrally formed on the bottom side of the flange 22, and the guide portion 221 is arranged obliquely, that is, the guide portion 221 can be arranged obliquely generally in the direction from the front to the top to the back. Therefore, in the front-to-back direction, the distance between the guide portion 221 and the first plate portion 23 can gradually increase from the top to the bottom. This size gradient design facilitates the insertion of the heat exchanger 200 into the above-mentioned groove 25, thereby improving the convenience of assembly. Secondly, it is also convenient for people to manually bend the flange 22 outward, thereby also improving the convenience of disassembling the motor bracket 100 and the heat exchanger 200.
[0064] In some embodiments, the cross section of the guide portion 221 orthogonal to the first direction is arc-shaped. The first direction is the left-right direction, and the cross section of the guide portion 221 is the cross section perpendicular to the left-right direction, and the cross section of the guide portion 221 can be an arc-shaped, specifically a quarter arc, etc. Thus, the flange 22 can be a smooth curved surface as a whole, which further facilitates the embedding of the heat exchanger 200 into the groove 25, and can also avoid scratches on the heat exchanger 200 by edges, etc.
[0065] In some embodiments, the corners of the plug-in portion 21 and the guide portion 221 are rounded. For example, the guide portion 221 can be generally in the shape of a rectangular plate, and each corner of the guide portion 221 can be rounded. The plug-in portion 21 can also be in the shape of a rectangular plate, and each corner of the plug-in portion 21 can also be rounded, thereby avoiding the situation where sharp edges and corners cause scratches on human hands and parts, and improving the safety of subsequent operations.
[0066] In some embodiments, the first connection structure 2 includes an extending portion 26 extending along the first direction, and the extending portion 26 is connected between an edge of the first plate portion 23 away from the second plate portion 24 and the frame 1 .
[0067] For example, Figure 2 As shown, the extension part 26 may also be in the shape of a flat plate, and the extension part 26 may be arranged substantially horizontally, and the front side of the extension part 26 may be connected to the top of the frame body 1, and the rear side of the extension part 26 may be connected to the lower edge of the first plate part 23. The provision of the extension part 26 may play a role in compensating the size, thereby facilitating the groove 25 and the heat exchanger 200 to face each other in the vertical direction. Secondly, the extension part 26 may allow the first connection structure 2 to have a certain swing amplitude in the vertical direction, thereby facilitating the first connection structure 2 to be overlapped and assembled on the top of the heat exchanger 200.
[0068] In some embodiments, the first connection structure 2 includes a plurality of reinforcing ribs 27, the plurality of reinforcing ribs 27 are arranged at intervals in the first direction, and each reinforcing rib 27 extends along the extension portion 26, the first plate portion 23, and the second plate portion 24.
[0069] For example, Figure 2 As shown, three reinforcing ribs 27 can be provided, and the three reinforcing ribs 27 can be arranged in parallel and spaced apart along the left-right direction. Each reinforcing rib 27 can be distributed on the upper surface of the extension portion 26, the front side surface of the first plate portion 23 and the upper surface of the second plate portion 24, so as to enhance the structural strength.
[0070] Optionally, the reinforcing rib 27 can be formed by stamping.
[0071] In some embodiments, the first connection structure 2 further includes a plurality of reinforcing portions 28. The plurality of reinforcing portions 28 are disposed within the included angle formed by the first plate portion 23 and the extending portion 26, and the plurality of reinforcing portions 28 are arranged at intervals along the first direction.
[0072] For example, as Figure 2 shown, the reinforcing portion 28 can generally be triangular. There can be two reinforcing portions 28, and both of the two reinforcing portions 28 are disposed within the included angle formed by the extending portion 26 and the first plate portion 23. The specific fixing method can be welding, stamping, etc., and the two reinforcing portions 28 are arranged at intervals in the left-right direction. Thus, it can enhance the structural strength of the connection between the extending portion 26 and the first plate portion 23.
[0073] In some embodiments, the insertion portion 21 is provided with an avoidance groove 211 for embedding the heat exchange tube of the heat exchanger 200. For example, as Figure 2 shown, the avoidance groove 211 can be disposed on the bottom side of the insertion portion 21. The avoidance groove 211 can be an arched groove, and the notch of the avoidance groove 211 can be arranged downward. The above heat exchanger 200 further includes a heat exchange tube, the heat exchange tube can be a copper tube, and the heat exchange tube can pass through a plurality of fins 201. When the insertion portion 21 is inserted between two adjacent fins 201, the heat exchange tube can be horizontally embedded in the avoidance groove 211, thereby avoiding the interference between the insertion portion 21 and the heat exchanger 200 during assembly, and further enhancing the limit constraint between the insertion portion 21 and the heat exchanger 200.
[0074] In some embodiments, the insertion portion 21 is integrally formed with the first connection structure 2 by stamping. For example, as Figure 2 shown, the insertion portion 21 can be processed and formed by the method of punching and then folding, which facilitates the processing of the insertion portion 21 and is also beneficial to improving the overall processing efficiency.
[0075] In some embodiments, there are a plurality of insertion portions 21. The plurality of insertion portions 21 are arranged at intervals along the first direction, and each insertion portion 21 is inserted between two corresponding adjacent fins 201.
[0076] For example, as Figure 2 shown, there can be two insertion portions 21. Both of the two insertion portions 21 can be processed and formed by the method of punching and then folding. The two insertion portions 21 can be arranged in parallel at intervals in the left-right direction, and both of the two insertion portions 21 are integrally formed on the second plate portion 24. After processing and forming, there are two punching holes left on the second plate portion 24 formed by folding the two insertion portions 21. The punching holes can generally be square holes, and the above two insertion portions 21 can be respectively connected to the left side edge and the right side edge of the punching hole.
[0077] In some embodiments, the motor bracket 100 includes a second connection structure 3 and a third connection structure 4. The frame body 1 extends along the third direction. The second connection structure 3 is provided at one end of the frame body 1 in the third direction and is used to connect to the panel 300, and the third connection structure 4 is provided at the other end of the frame body 1 in the third direction and is used to connect to the chassis 400.
[0078] For example, as Figure 1 shown, the second connection structure 3 can be integrally formed on the top of the frame body 1, the second connection structure 3 can be integrally formed on the bottom of the frame body 1, both the second connection structure 3 and the third connection structure 4 can be plate-like structures, and both the second connection structure 3 and the third connection structure 4 can overhang towards the front side of the frame body 1.
[0079] Assembly holes for fasteners such as screws can be provided on the second connection structure 3 and the third connection structure 4. During assembly, the second connection structure 3 can be fixedly connected to the panel 300 of the outdoor unit of the air conditioner through fasteners, and the third connection structure 4 can be fixedly connected to the chassis 400 through fasteners.
[0080] The air conditioning equipment of the embodiments of the present invention will be described below.
[0081] The air conditioning equipment of the embodiments of the present invention includes a motor bracket, and the motor bracket can be the motor bracket 100 described in any of the above embodiments.
[0082] In some embodiments, as Figure 5 shown, the air conditioning equipment is an outdoor unit of an air conditioner. The outdoor unit of the air conditioner includes a heat exchanger 200, a panel 300, and a chassis 400. The first connection structure 2 of the motor bracket 100 is connected to the heat exchanger 200, and the insertion part 21 is inserted and matched between two adjacent fins 201 arranged at intervals of the heat exchanger 200 in the first direction. Specifically, the first connection structure 2 can be hung on the top of the heat exchanger 200, and each insertion part 21 of the first connection structure 2 can be inserted between the corresponding two fins from above.
[0083] The heat exchanger 200 and the panel 300 are arranged at intervals in the second direction. The motor bracket 100 is provided between the panel 300 and the heat exchanger 200. The panel 300 and the heat exchanger 200 are located on the same side of the chassis 400, and the motor bracket 100 is fixedly connected to both the panel 300 and the chassis 400.
[0084] For example, both the panel 300 and the heat exchanger 200 can be vertically arranged. The heat exchanger 200 can be disposed at the rear side of the panel 300, and the chassis 400 can be fixedly installed at the bottom sides of the panel 300 and the heat exchanger 200. The first connection structure 2 of the motor bracket 100 can be connected to the rear heat exchanger 200, the second connection structure 3 of the motor bracket 100 can be hung on the front panel 300 and fixed by fasteners, and the third connection structure 4 of the motor bracket 100 can be connected and fixed to the chassis 400 by fasteners.
[0085] In some embodiments, a wind guide ring 301 can be provided on the panel 300, a motor can be installed on the motor bracket 100, and a wind blade 500 can be installed on the drive shaft of the motor. The wind blade 500 is located within the wind guide ring 301 and there is a certain gap between the wind blade 500 and the wind guide ring 301.
[0086] In the air conditioning device according to the embodiment of the present utility model, the limiting cooperation between the plug-in portion and the fin can prevent the air conditioning device from shifting when it falls, so that a certain gap is always maintained between the wind guide ring and the wind blade, avoiding the situation where the wind blade contacts the wind guide ring.
[0087] Since the motor bracket is installed and fixed through three connection structures, the overall fixing structure is stable and reliable. Therefore, the requirement for the material thickness of the motor bracket can be reduced, that is, the material thickness of the motor bracket can be appropriately thinned, thereby reducing the overall cost.
[0088] In addition, since the problem of easy displacement of the motor bracket is avoided, the gap between the wind guide ring and the wind blade can be further reduced, thereby improving the air volume and the heat exchange efficiency of the outdoor unit.
[0089] Although the above embodiments have been shown and described, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present utility model. Any changes, modifications, substitutions, and variations made by those of ordinary skill in the art to the above embodiments are within the protection scope of the present utility model.
Claims
1. A motor bracket, characterized in that: include: Frame; A first connecting structure, which is arranged on the frame and used to be connected to the heat exchanger, and the first connecting structure includes a plug-in portion, and the heat exchanger includes a plurality of fins arranged at intervals in a first direction, and the plug-in portion is used to be inserted between two adjacent fins to limit the displacement of the motor bracket along the first direction.
2. The motor bracket according to claim 1, characterized in that: The first connection structure includes a flange, the plug-in portion is located between the frame and the flange in a second direction, the second direction is perpendicular to the first direction, and the flange is used to fit and abut against an outer surface of the heat exchanger away from the frame.
3. The motor bracket according to claim 2, characterized in that: The first connection structure comprises: a first plate portion, wherein the first plate portion and the flange are arranged opposite to each other in the second direction; The second plate portion is connected between the first plate portion and the flange, the first plate portion, the second plate portion and the flange limit a groove for the heat exchanger to be embedded, and the plug-in portion is connected to the second plate portion and is located in the groove.
4. The motor bracket according to claim 3, characterized in that: The flange includes a guide portion, which is arranged on a side of the flange away from the second plate portion, and a distance between the guide portion and the first plate portion in the second direction gradually decreases along a direction approaching the second plate portion.
5. The motor bracket according to claim 4, characterized in that: The cross section of the guide portion at right angles to the first direction is arc-shaped; And / or, the corners of the plug-in portion and the guide portion are rounded.
6. The motor bracket according to claim 3, characterized in that: The first connection structure includes an extending portion extending along the first direction, wherein the extending portion is connected between an edge of the first plate portion away from the second plate portion and the frame.
7. The motor bracket according to claim 6, characterized in that: The first connection structure comprises: a plurality of reinforcing ribs, wherein the plurality of reinforcing ribs are arranged at intervals in the first direction, and each of the reinforcing ribs extends along the extension portion, the first plate portion, and the second plate portion; And / or, a plurality of reinforcing portions, wherein the plurality of reinforcing portions are disposed within an angle formed by the first plate portion and the extending portion, and the plurality of reinforcing portions are arranged at intervals along the first direction.
8. The motor bracket according to claim 1, characterized in that: The plug-in portion is provided with an avoidance groove, and the avoidance groove is used for the heat exchange tube of the heat exchanger to be embedded.
9. The motor bracket according to claim 1, characterized in that: The plug-in portion is integrally formed with the first connecting structure by stamping; And / or, the plug-in portion is in sheet shape; And / or, there are multiple plug-in parts, and the multiple plug-in parts are arranged at intervals along the first direction, and each of the plug-in parts is inserted between two corresponding adjacent fins.
10. The motor bracket according to any one of claims 1 to 9, characterized in that: It includes a second connecting structure and a third connecting structure. The frame extends along a third direction. The second connecting structure is arranged at one end of the frame in the third direction and is used to be connected to the panel. The third connecting structure is arranged at the other end of the frame in the third direction and is used to be connected to the chassis.
11. An air conditioning device, characterized in that: The invention comprises a motor bracket as claimed in any one of claims 1 to 10.
12. The air conditioning device according to claim 11, characterized in that: The air conditioning equipment is an air conditioning outdoor unit, and the air conditioning outdoor unit comprises: A heat exchanger, wherein the first connecting structure is connected to the heat exchanger, and the plug-in portion is plug-fitted between two adjacent fins of the heat exchanger that are spaced apart in a first direction; The panel and the chassis, the heat exchanger and the panel are spaced apart in the second direction, the motor bracket is arranged between the panel and the heat exchanger, the panel and the heat exchanger are located on the same side of the chassis, and the motor bracket is connected and fixed to the panel and the chassis.