Energy-saving air-conditioning fan installation structure

Through inclined plugging and foldable fan support structure, the stability and convenience of the energy-saving air conditioner fan installation structure is solved, the installation and disassembly process is simplified, and transportation and maintenance costs are reduced.

CN120402984BActive Publication Date: 2025-09-02JINGJIANG QIYUN AIR CONDITIONING EQUIP CO LTD
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Patent Information

Application Number
CN202510904639.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-01
Publication Date
2025-09-02
Estimated Expiration
2045-07-01

AI Technical Summary

Technical Problem

The existing energy-saving air conditioner fan installation structure is prone to loosening during long-term operation, resulting in poor stability and cumbersome installation and disassembly, which increases labor costs and transportation difficulties, and at the same time, the complex structure increases maintenance difficulties.

Method used

The wall connection mechanism with inclined plug and the fan support mechanism that can be expanded and folded is adopted. The installation and disassembly process is simplified by the "M" frame and the plug-in assembly, and the installation and disassembly process is maintained while the fan is running; the fan support mechanism can be folded for easy transportation.

Benefits of technology

It realizes the rapid installation and disassembly of the fan, ensures operating stability, reduces transportation costs and maintenance difficulties, and improves convenience and portability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of fan installation technology, and discloses an energy-saving air-conditioning fan installation structure, comprising: a wall connection mechanism detachably mounted on a wall, a fan support mechanism fixedly mounted at both ends of the wall connection mechanism, an energy-saving air-conditioning outdoor fan being mounted on a pair of fan support mechanisms via bolts; the wall connection mechanism comprises an "M"-shaped frame, two inclined plates of the "M"-shaped frame respectively penetrated by a first plug-in component and a second plug-in component, the inclined plates are perpendicular to the corresponding plug-in components, and the adjacent ends of the first plug-in component and the second plug-in component form a snap fit. The present invention inserts the first plug-in component and the second plug-in component into the interior of the inclined hole of the wall by adopting an inclined plug-in method. On the one hand, the "M"-shaped frame can be simply fixed on the wall, which is convenient for installation or removal, and on the other hand, the "M"-shaped frame can be stably fixed on the wall.
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Description

Technical Field

[0001] The present invention relates to the field of fan installation technology, and specifically to an energy-saving air-conditioning fan installation structure, which is particularly suitable for energy-saving air-conditioning fan installation scenarios with high requirements on installation convenience, stability, portability and convenience of subsequent maintenance. Background Art

[0002] In the current field of energy-saving air-conditioning fan installation, traditional installation structures have many problems that need to be solved. Some installation structures use a simple bolt fixing method to install the fan directly on the wall or other supporting surface. During the long-term operation of the fan, the continuous vibration generated by the operation of the fan will produce a periodic force on the bolts, which can easily cause the bolts to gradually loosen. Once the bolts are loose, the installation stability of the fan will drop significantly, which will not only affect the normal operation efficiency of the fan, resulting in poor cooling or heating effects of the energy-saving air conditioner, but may also cause serious safety hazards such as the fan falling, posing a threat to the safety of personnel and property. Moreover, during installation and disassembly operations, special tools are required to tighten or disassemble multiple bolts one by one. The operation steps are cumbersome, not only consuming a lot of time, but also increasing labor costs, greatly reducing the efficiency of the installation work.

[0003] In addition, some installation structures, although aware of the importance of stability, enhance the fixing effect by adding complex supporting components and connection structures. However, this approach will undoubtedly increase the overall weight and volume of the installation structure, making the installation process more difficult. During the installation process, more manpower and auxiliary equipment are required to complete the operation, which increases the complexity and difficulty of the installation. At the same time, the larger size and weight are not conducive to the transportation and carrying of the equipment. During the transportation of the equipment, a larger transportation space is required, which increases the transportation cost and is more inconvenient during the handling process. In addition, during the later maintenance and inspection of the complex structure, it is difficult to quickly locate the fault point due to the large number of components and complex structure, and the operation is difficult, which prolongs the maintenance and inspection time and increases the maintenance cost.

[0004] Therefore, developing an energy-saving air-conditioning fan installation structure that can take into account installation convenience, stability, portability and maintenance convenience has become a key issue that urgently needs to be solved in this field. Summary of the Invention

[0005] In order to overcome the deficiencies of the prior art, the present invention provides an energy-saving air-conditioning fan installation structure, which has the advantages of easy installation and stability.

[0006] To achieve the above objectives, the present invention provides the following technical solutions: an energy-saving air-conditioning fan installation structure, comprising:

[0007] A wall connection mechanism detachably mounted on a wall, wherein a fan support mechanism is fixedly mounted on both ends of the wall connection mechanism, and an energy-saving air-conditioning outdoor fan is mounted on a pair of the fan support mechanisms by bolts;

[0008] The wall connection mechanism includes an "M"-shaped frame, wherein two inclined plates of the "M"-shaped frame are respectively penetrated by a first plug-in component and a second plug-in component, wherein the inclined plates are perpendicular to the corresponding plug-in components, and the proximal ends of the first plug-in component and the second plug-in component are engaged with each other;

[0009] The wall is drilled with oblique holes for accommodating the far ends of the two plug-in components.

[0010] As a preferred technical solution of the present invention, a square through hole is respectively provided on the two inclined plates of the "M"-shaped frame;

[0011] The first plug-in assembly and the second plug-in assembly each include a plug connector;

[0012] The U-shaped plate is fixed on the end surface of the plug-in steel column that is not inserted into the inclined hole of the wall, and a protruding column is fixed on the one end surface of the U-shaped plate that is not inserted into the inclined hole of the wall. The guide rod passes through the U-shaped plate, and the end plate is fixed on the one end of the guide rod that is located inside the U-shaped plate. Deep holes for accommodating the protruding column are formed on the guide rod and the end plate, and a spring is sleeved on the outside of the guide rod and between the end plate and the inner wall of the U-shaped plate.

[0013] A locking plate is fixed on the rotating plate in the first plug-in assembly, and a locking groove that is engaged with the locking plate is fixed on the rotating plate in the second plug-in assembly.

[0014] As a preferred technical solution of the present invention, the inner diameter of the inclined hole in the wall is 1 mm-2 mm larger than the diameter of the inserted steel column.

[0015] As a preferred technical solution of the present invention, the fan support mechanism includes a support plate, one end of the support plate is fixed to the "M"-shaped frame, and the end of the support plate away from the "M"-shaped frame is provided with a horizontal track groove along the length direction of the support plate, and the support plate is further provided with a limiting groove, the limiting groove is located above the end of the horizontal track groove and the limiting groove is connected to the horizontal track groove, the limiting groove is located at the end of the horizontal track groove close to the wall, and the end of the support plate away from the horizontal track groove is provided with a vertical through hole;

[0016] An inclined plate is rotatably provided below the support plate, and a sliding shaft is fixed on the top of the inclined plate and slides in the horizontal track groove and the limit groove;

[0017] The end of the inclined plate away from the sliding shaft is rotatably connected to the vertical plate, and the end of the vertical plate away from the inclined plate is provided with a receiving cavity, a slider slides inside the receiving cavity, and a stud is fixed on the slider, and the end of the stud away from the slider passes through the interior of the receiving cavity and extends to the outside of the vertical plate;

[0018] One end of the stud located outside the accommodating cavity passes through the through hole and is threadedly connected to the nut.

[0019] As an optimal technical solution of the present invention, a mounting plate 1 is fixed on the support tray, and a mounting plate 2 corresponding to the mounting plate 1 is fixed on the bottom of the energy-saving air-conditioning outdoor fan, and the mounting plate 1 and the mounting plate 2 are fixed together by limiting bolts.

[0020] As a preferred technical solution of the present invention, a second spring is provided inside the accommodating cavity and on the side of the slider away from the stud.

[0021] As a preferred technical solution of the present invention, a vertical hole communicating with the accommodating cavity is opened inside the vertical plate, and a column with one end inserted into the vertical hole is fixed on the slider.

[0022] Compared with the prior art, the present invention has the following beneficial effects:

[0023] 1. Advantages of the Wall Connection Mechanism: The present invention utilizes an angled insertion method to insert the first and second plug-in assemblies into the inclined wall hole. This unique installation method offers multiple advantages. Firstly, compared to traditional bolt-based fixing methods, the angled insertion method is simpler and more convenient, eliminating the need for complex tools to operate multiple bolts. This allows the "M"-shaped bracket to be quickly secured to the wall, saving both time and effort during both installation and removal. Secondly, because the first and second plug-in assemblies are inserted at an angle, the angle formed by them effectively limits outward movement when the "M"-shaped bracket is pulled outward, thereby ensuring stable fixing of the bracket. Furthermore, by interlocking the adjacent ends of the first and second plug-in assemblies, the present invention further enhances the strength and stability of the connection between the first and second plug-in assemblies. Even when subjected to external forces such as vibration during fan operation, the first and second plug-in assemblies are unlikely to disengage from the inclined wall hole, ensuring the reliability of the entire installation structure.

[0024] 2. Advantages of the fan support mechanism: The fan support mechanism of the present invention has flexible expansion and folding functions. When in use, the fan support mechanism is expanded. At this time, the stable triangular structure formed by the support plate, inclined plate, vertical plate and studs can provide a strong load-bearing capacity for the energy-saving air-conditioning outdoor fan, ensuring the stability of the fan during operation. When not in use, the fan support mechanism can be folded up. Through a series of simple operations such as screwing the nut, pressing down the stud, folding the vertical plate, sliding the inclined plate, etc., its volume can be effectively reduced, making it easier to carry and transport the equipment, reducing transportation costs and handling difficulties. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 This is a schematic diagram of the structure of the present invention installed on a wall;

[0026] Figure 2 For the present invention Figure 1 A top view of

[0027] Figure 3 For the present invention Figure 2 sectional view of

[0028] Figure 4 This is a schematic diagram of the structure of the wall connection mechanism and the fan support mechanism of the present invention;

[0029] Figure 5 Schematic diagram of the structure of the wall connection mechanism of the present invention;

[0030] Figure 6 is a cross-sectional view of the wall connection mechanism of the present invention;

[0031] Figure 7 For the present invention Figure 6 Enlarged view of part A;

[0032] Figure 8 It is a structural schematic diagram of the "M"-shaped frame of the present invention;

[0033] Figure 9 This is a schematic structural diagram of the first plug-in assembly of the present invention;

[0034] Figure 10 is a cross-sectional view of the first plug-in assembly of the present invention;

[0035] Figure 11 is a structural schematic diagram of the second plug-in assembly of the present invention;

[0036] Figure 12 This is a schematic structural diagram of the fan support mechanism of the present invention when it is unfolded;

[0037] Figure 13 This is a schematic structural diagram of the fan support mechanism of the present invention when it is folded;

[0038] Figure 14 An exploded view of the fan support mechanism of the present invention;

[0039] Figure 15 is a cross-sectional view of a vertical plate of the present invention;

[0040] Figure 16 For the present invention Figure 15 Enlarged view of part B;

[0041] Figure 17 This is a structural diagram of the outdoor fan of the energy-saving air conditioner of the present invention.

[0042] Figure: 1. Wall connection mechanism; 11. "M"-shaped frame; 111. Square through hole; 12. First plug-in assembly; 121. Plug-in steel column; 122. Square hollow block; 123. "U"-shaped plate; 124. Rotating plate; 125. Boss; 126. Guide rod; 127. End plate; 128. Spring 1; 129. Clamping plate; 13. Second plug-in assembly; 131. Clamping slot; 2. Fan support mechanism Structure; 21. Support plate; 211. Horizontal track groove; 212. Limiting groove; 213. Through hole; 22. Inclined plate; 221. Sliding shaft; 23. Vertical plate; 231. Accommodating cavity; 232. Slider; 233. Stud; 234. Spring 2; 235. Vertical hole; 236. Column; 24. Nut; 3. Mounting plate 1; 4. Limiting bolt; 5. Energy-saving air conditioner outdoor fan; 51. Mounting plate 2. DETAILED DESCRIPTION

[0043] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments 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] like Figures 1 to 17 As shown, the present invention provides an energy-saving air-conditioning fan installation structure, comprising:

[0045] A wall connection mechanism 1 detachably mounted on a wall, wherein a fan support mechanism 2 is fixedly mounted at both ends of the wall connection mechanism 1, and an energy-saving air-conditioning outdoor fan 5 is mounted on a pair of the fan support mechanisms 2 by bolts;

[0046] The wall connection mechanism 1 is provided to achieve a tight connection between the fan support mechanism 2 and the wall, so that the fan support mechanism 2 is fixed to the wall;

[0047] The fan support mechanism 2 is provided to support the energy-saving air conditioner outdoor fan 5;

[0048] The wall connection mechanism 1 includes an "M"-shaped frame 11, and a first plug-in component 12 and a second plug-in component 13 are respectively passed through the two inclined plates of the "M"-shaped frame 11. The inclined plates are perpendicular to the corresponding plug-in components, and the proximal ends of the first plug-in component 12 and the second plug-in component 13 are engaged with each other;

[0049] The wall is drilled with oblique holes for accommodating the far ends of the two plug-in components;

[0050] By setting the shape of the "M"-shaped frame 11 to be "M"-shaped, since the "M"-shape has two oblique sides, the "M"-shaped frame 11 will form two inclined plates. When the first plug-in component 12 and the second plug-in component 13 are respectively vertically passed through the two inclined plates of the "M"-shape, the first plug-in component 12 and the second plug-in component 13 can be obliquely inserted into the oblique holes opened on the wall. Since the first plug-in component 12 and the second plug-in component 13 are inserted obliquely, when the "M"-shaped frame 11 is pulled outward, the angle formed by the first plug-in component 12 and the second plug-in component 13 will limit the outward movement of the "M"-shaped frame 11, thereby forming a fixed limit for the "M"-shaped frame 11. When the "M"-shaped frame 11 needs to be removed from the wall, one of the first plug-in component 12 and the second plug-in component 13 is first pulled out of the oblique hole, and then the other is pulled out of the oblique hole.

[0051] Since the proximal ends of the first plug-in assembly 12 and the second plug-in assembly 13 are engaged with each other, after the "M"-shaped frame 11 is installed, it is difficult to remove the "M"-shaped frame 11 from the wall unless the engagement between the first plug-in assembly 12 and the second plug-in assembly 13 is released, thereby forming a stable fixation for the "M"-shaped frame 11;

[0052] The two inclined plates of the "M"-shaped frame 11 are respectively provided with a square through hole 111;

[0053] The first plug-in assembly 12 and the second plug-in assembly 13 each include a plug connector;

[0054] The connector includes a plug-in steel column 121 with one end inserted into the oblique hole of the wall, and a square hollow block 122 that is adapted to the square through hole 111 is fixedly sleeved on the circumference of the end of the plug-in steel column 121 that is not inserted into the oblique hole of the wall. When plugged in, the square hollow block 122 is located in the square through hole 111, and a "U"-shaped plate 123 is fixed on the end surface of the plug-in steel column 121 that is not inserted into the oblique hole of the wall. A rotating plate 124 is rotated inside the "U"-shaped plate 123 through a connecting shaft. A boss 125 is fixed to one end of the rotating plate 124 located inside the "U"-shaped plate 123. A guide rod 126 passes through the "U"-shaped plate 123. An end plate 127 is fixed to one end of the guide rod 126 located inside the "U"-shaped plate 123. Deep holes are formed on the guide rod 126 and the end plate 127 to accommodate the boss 125. A spring 128 is sleeved on the outside of the guide rod 126 and between the end plate 127 and the inner wall of the "U"-shaped plate 123.

[0055] A locking plate 129 is fixed on the rotating plate 124 in the first plug assembly 12, and a locking groove 131 that is engaged with the locking plate 129 is fixed on the rotating plate 124 in the second plug assembly 13;

[0056] When the wall connection mechanism 1 needs to be installed on the wall, the plug-in steel column 121 on the first plug-in component 12 is passed through the square through-hole 111 until the square hollow block 122 is completely in the square through-hole 111, and then the end plate 127 is squeezed to shrink the spring 128 until the boss 125 is disengaged from the deep hole opened by the guide rod 126 and the end plate 127, and then the rotating plate 124 is rotated 90 degrees to change the engaging plate 129 from the horizontal state to the vertical state. The purpose of rotating the engaging plate 129 is to avoid the engaging plate 129 from blocking the second plug-in component 13 when inserting the second plug-in component 13. After rotating the engaging plate 129, the second plug-in component 13 is passed through another square through-hole 1 11 is inserted into the oblique hole on the other wall. When the square hollow block 122 on the second plug-in assembly 13 is completely inside the square through hole 111, the end plate 127 is squeezed again, and then the rotating plate 124 is rotated to make the engaging plate 129 change from a vertical state to a horizontal state. At this time, the end of the engaging plate 129 away from the rotating plate 124 is just stuck in the engaging groove 131. Through the engaging connection between the engaging plate 129 and the engaging groove 131, the adjacent ends of the first plug-in assembly 12 and the second plug-in assembly 13 can be fixed. Even if the first plug-in assembly 12 and the second plug-in assembly 13 vibrate due to external force, the first plug-in assembly 12 and the second plug-in assembly 13 are difficult to be separated from the oblique hole on the wall.

[0057] The inner diameter of the inclined hole in the wall is 1mm-2mm larger than the diameter of the plug-in steel column 121;

[0058] The fan support mechanism 2 includes a support plate 21, one end of which is fixed to the "M"-shaped frame 11, and an end of the support plate 21 away from the "M"-shaped frame 11 is provided with a horizontal track groove 211 along the length direction of the support plate 21, and a limiting groove 212 is further provided on the support plate 21, wherein the limiting groove 212 is located above the end of the horizontal track groove 211 and the limiting groove 212 is connected to the horizontal track groove 211, and the limiting groove 212 is located at the end of the horizontal track groove 211 close to the wall, and a vertical through hole 213 is provided on the end of the support plate 21 away from the horizontal track groove 211;

[0059] A slant plate 22 is rotatably mounted below the support plate 21 , and a sliding shaft 221 is fixed to the top of the slant plate 22 , which slides in the horizontal track groove 211 and the limiting groove 212 ;

[0060] The inclined plate 22 is rotatably connected to the vertical plate 23 at one end away from the sliding shaft 221. The vertical plate 23 is provided with a receiving cavity 231 at one end away from the inclined plate 22. A slider 232 slides inside the receiving cavity 231. A stud 233 is fixed to the slider 232. The stud 233 extends through the receiving cavity 231 and to the outside of the vertical plate 23 at one end away from the slider 232.

[0061] One end of the stud 233 located outside the accommodating cavity 231 passes through the through hole 213 and is threadedly connected to the nut 24;

[0062] When the fan support mechanism 2 needs to be folded into Figure 13 When the cam 23 is in the closed position, the cam 23 is in the closed position, and the cam 23 is in the closed position, so that the cam 23 is in the closed position. Figure 12 The shape shown.

[0063] The support plate 21 is fixed with a mounting plate 3, and the bottom of the energy-saving air conditioner outdoor fan 5 is fixed with a mounting plate 2 51 corresponding to the mounting plate 1 3, and the mounting plate 1 3 and the mounting plate 2 51 are fixed together by a limiting bolt 4;

[0064] A second spring 234 is provided inside the accommodating cavity 231 and on the side of the slider 232 away from the stud 233;

[0065] A vertical hole 235 communicating with the accommodating cavity 231 is defined inside the vertical plate 23 , and a vertical column 236 having one end inserted into the vertical hole 235 is fixed to the slider 232 .

[0066] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0067] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. An energy-saving air conditioner fan installation structure, characterized by: include: A wall connection mechanism (1) detachably mounted on a wall, wherein a fan support mechanism (2) is fixedly mounted on both ends of the wall connection mechanism (1), and an energy-saving air-conditioning outdoor fan (5) is mounted on a pair of the fan support mechanisms (2) via bolts; The wall connection mechanism (1) comprises an "M"-shaped frame (11), wherein two inclined plates of the "M"-shaped frame (11) are respectively penetrated by a first plug-in component (12) and a second plug-in component (13), wherein the inclined plates are perpendicular to the corresponding plug-in components, and the adjacent ends of the first plug-in component (12) and the second plug-in component (13) are engaged with each other; The wall is drilled with oblique holes for accommodating the far ends of the two plug-in components.

2. The energy-saving air conditioner fan installation structure according to claim 1, characterized in that: A square through hole (111) is respectively provided on the two inclined plates of the "M"-shaped frame (11); The first plug-in assembly (12) and the second plug-in assembly (13) each include a plug connector; The connector comprises a plug-in steel column (121) with one end inserted into the oblique hole of the wall, a square hollow block (122) adapted to the square through hole (111) is fixedly sleeved on the circumference of the end of the plug-in steel column (121) not inserted into the oblique hole of the wall, and when plugged in, the square hollow block (122) is located in the square through hole (111), and a "U"-shaped plate (123) is fixed on the end surface of the plug-in steel column (121) not inserted into the oblique hole of the wall, and a rotating plate is provided inside the "U"-shaped plate (123) through a connecting shaft, and the rotating plate is positioned A boss (125) is fixed to one end of the interior of the "U"-shaped plate (123), a guide rod (126) passes through the "U"-shaped plate (123), an end plate (127) is fixed to one end of the guide rod (126) located inside the "U"-shaped plate (123), a deep hole for accommodating the boss (125) is provided on the guide rod (126) and the end plate (127), and a spring (128) is sleeved on the outside of the guide rod (126) and between the end plate (127) and the inner wall of the "U"-shaped plate (123); A locking plate (129) is fixed on the rotating plate in the first plug-in assembly (12), and a locking groove (131) that is engaged with the locking plate (129) is fixed on the rotating plate in the second plug-in assembly (13).

3. The energy-saving air-conditioning fan installation structure according to claim 2, characterized in that: The inner diameter of the inclined hole in the wall is 1 mm to 2 mm larger than the diameter of the plug-in steel column (121).

4. The energy-saving air conditioner fan installation structure according to claim 1, characterized in that: The fan support mechanism (2) includes a support plate (21), one end of the support plate (21) is fixed on the "M"-shaped frame (11), and the end of the support plate (21) away from the "M"-shaped frame (11) is provided with a horizontal track groove (211) along the length direction of the support plate (21), and the support plate (21) is also provided with a limiting groove (212), the limiting groove (212) is located above the end of the horizontal track groove (211) and the limiting groove (212) is connected to the horizontal track groove (211), the limiting groove (212) is located at the end of the horizontal track groove (211) close to the wall, and the end of the support plate (21) away from the horizontal track groove (211) is provided with a vertical through hole (213); An inclined plate (22) is rotatably provided below the support plate (21), and a sliding shaft (221) is fixed to the top end of the inclined plate (22) and slides in the horizontal track groove (211) and the limiting groove (212); One end of the inclined plate (22) away from the sliding shaft (221) is rotatably connected to the vertical plate (23); one end of the vertical plate (23) away from the inclined plate (22) is provided with a receiving cavity (231); a slider (232) slides inside the receiving cavity (231); a stud (233) is fixed on the slider (232); and one end of the stud (233) away from the slider (232) passes through the interior of the receiving cavity (231) and extends to the outside of the vertical plate (23); One end of the stud (233) located outside the accommodating cavity (231) passes through the through hole (213) and is threadedly connected to the nut (24).

5. The energy-saving air-conditioning fan installation structure according to claim 4, characterized in that: A mounting plate 1 (3) is fixed on the support bracket (21), and a mounting plate 2 (51) corresponding to the mounting plate 1 (3) is fixed on the bottom of the energy-saving air-conditioning outdoor fan (5), and the mounting plate 1 (3) and the mounting plate 2 (51) are fixed together by limiting bolts (4).

6. The energy-saving air-conditioning fan installation structure according to claim 5, characterized in that: A second spring (234) is provided inside the accommodating cavity (231) and on a side of the slider (232) away from the stud (233).

7. The energy-saving air-conditioning fan installation structure according to claim 6, characterized in that: A vertical hole (235) communicating with the accommodating cavity (231) is provided inside the vertical plate (23), and a vertical column (236) having one end inserted into the vertical hole (235) is fixed on the slider (232).

Citation Information

Patent Citations

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