An automatically locking and fixing pipe support base and air conditioning system
By designing an automatically locking and fixing pipe support base, and utilizing clamping and position adjustment structures, the problem of inconvenient installation of central air conditioning pipes is solved, achieving convenient and universal installation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GREE ELECTRIC APPLIANCE INC OF ZHUHAI
- Filing Date
- 2025-07-22
- Publication Date
- 2026-07-17
AI Technical Summary
The existing mounting brackets used for central air conditioning pipes have low versatility and are inconvenient to install, requiring specific holes to be drilled on the mounting beam for fixing.
Design an automatic locking and fixing pipe support base, including a clamping structure and a position adjustment structure. The clamping structure achieves automatic locking through a clamping fixing plate and a double hook spring, while the position adjustment structure adjusts the installation position and angle through a moving base and a turning base.
It improves the versatility and ease of installation of the mounting bracket, adapts to mounting beams of different sizes, and is not limited by the position of the mounting holes on the mounting beam.
Smart Images

Figure CN224516979U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to air conditioning systems, and in particular to an automatically locking and fixing pipe support base and air conditioning system. Background Technology
[0002] Air conditioning piping plays a crucial role in air conditioning systems, primarily responsible for transporting refrigerant and other media to ensure the normal operation of the entire system. To ensure that the air conditioning piping can efficiently and stably connect various components and achieve the air conditioning's cooling and heating functions, mounting brackets need to be installed within a certain distance to support and fix the piping, preventing it from shaking during operation.
[0003] Currently, the mounting brackets used for our company's central air conditioning pipes are all simple sheet metal brackets, which require specific holes to be drilled in the mounting beams and then fixed with bolts; they have low versatility and are relatively inconvenient to install.
[0004] Therefore, how to design an automatic locking and fixing pipe support base and air conditioning system that can improve the versatility and ease of installation of the mounting bracket is a technical problem that the industry urgently needs to solve. Utility Model Content
[0005] To address the problem of inconvenient installation of mounting brackets used in existing central air conditioning pipe systems, this utility model proposes an automatically locking and fixing pipe support base and air conditioning system.
[0006] The technical solution of this utility model is to propose an automatic locking and fixing pipe support, including a mounting base 1, a clamping structure and a position adjustment structure installed on the mounting base 1. The clamping structure is used to clamp and fix the mounting base 1 to the mounting beam, and the position adjustment structure is used to assemble the mounting support and adjust the installation position of the mounting support.
[0007] Furthermore, the clamping structure includes two clamping fixing plates symmetrically arranged on the mounting base 1 and a double hook spring 4 connecting the two clamping fixing plates 2;
[0008] Each of the clamping and fixing plates 2 has a clamping part located below the mounting base 1, and the clamping parts of the two clamping and fixing plates 2 are distributed on both sides of the mounting beam. When the double hook spring 4 contracts, it controls the clamping parts of the two clamping and fixing plates 2 to move toward the mounting beam.
[0009] Furthermore, the clamping and fixing plate 2 has a first plate body 21, a second plate body 22, and a third plate body 23, wherein the first plate body 21 serves as the clamping part;
[0010] A first slide rail groove 11 is provided on the mounting base 1. The second plate 22 is perpendicular to the first plate 21 and is installed in the first slide rail groove 11. The third plate 23 is perpendicular to the second plate 22 and is provided with a connecting hole 24. The double hook spring 4 is connected to the connecting hole 24.
[0011] Furthermore, it also includes a limiting and fixing plate 3 disposed on the mounting base 1. The limiting and fixing plate 3 is disposed perpendicularly to the third plate 23. A positioning groove 31 is provided on the limiting and fixing plate 3, and the third plate 23 passes through the positioning groove 31.
[0012] Furthermore, the position adjustment structure includes a movable base 5 and a steering base 6 mounted on the movable base 5 and capable of angle adjustment;
[0013] The mounting bracket is assembled on the steering base 6, and the mounting position of the mounting bracket can be adjusted by the movable base 5 and the steering base 6.
[0014] Furthermore, a second slide rail groove 12 is provided on the mounting base 1, and a guide rail 51 is provided at the bottom of the movable base 5, which is fitted in the second slide rail groove 12. The movable base 5 moves on the second slide rail groove 12 via the guide rail 51 to change the installation position of the mounting bracket.
[0015] Furthermore, the steering base 6 is disc-shaped, and a rotating fixed shaft 61 is provided at the center of the steering base 6. A mounting groove 52 is provided at the center of the movable base 5. The rotating fixed shaft 61 is fitted into the mounting groove 52 and can rotate within the mounting groove 52.
[0016] Furthermore, a plurality of telescopic pins 62 are provided on the periphery of the steering base 6, and a positioning groove 53 matching the position of the telescopic pins 62 is provided on the movable base 5. The steering base 6 is fixed to the movable base 5 by the cooperation of the telescopic pins 62 and the positioning groove 53.
[0017] Furthermore, a limiting groove 63 is provided on the steering base 6, the limiting groove 63 is cross-shaped, and the mounting bracket is L-shaped;
[0018] When the mounting bracket is assembled on the steering base 6, the bottom edge of the mounting bracket is assembled in the limiting groove 63.
[0019] This utility model also proposes an air conditioning system, which has the above-mentioned automatically locking and fixing pipe support base.
[0020] Compared with the prior art, the present invention has at least the following beneficial effects:
[0021] 1. This utility model is equipped with a clamping structure, which can clamp and fix the mounting base to the mounting beam to achieve an automatic locking function;
[0022] 2. This utility model is equipped with a position adjustment structure, which can adaptively adjust the position and angle of the mounting bracket to adapt to mounting beams of different sizes. It is not limited by the position of the mounting holes on the mounting beam, thus improving the versatility and ease of installation of the mounting bracket. Attached Figure Description
[0023] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0024] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0025] Figure 2 This is a schematic diagram of the mounting base in this utility model;
[0026] Figure 3 This is an assembly diagram of the mounting base, clamping fixing plate, and limiting fixing plate in this utility model;
[0027] Figure 4 This is a schematic diagram of the movable base in this utility model from one perspective;
[0028] Figure 5 This is a schematic diagram of the movable base in this utility model from another perspective;
[0029] Figure 6 This is a schematic diagram of the steering base of this utility model from one perspective;
[0030] Figure 7 This is a schematic diagram of the steering base in this utility model from another perspective;
[0031] Wherein, 1 is the mounting base, 11 is the first guide rail groove, and 12 is the second guide rail groove;
[0032] 2 is a clamping and fixing plate, 21 is a first plate, 22 is a second plate, 23 is a third plate, and 24 is a connecting hole;
[0033] 3 is the limiting and fixing plate, and 31 is the positioning groove;
[0034] 4 is a double-hook spring;
[0035] 5 is the movable base, 51 is the guide rail, 52 is the mounting groove, 53 is the positioning groove, and 54 is the threaded hole;
[0036] 6 is the steering base, 61 is the rotating fixed shaft, 62 is the telescopic pin, and 63 is the positioning groove. Detailed Implementation
[0037] To make the technical problems, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0038] Therefore, a feature pointed out in this specification is used to describe one feature of one embodiment of the present invention, and does not imply that every embodiment of the present invention must have the described feature. Furthermore, it should be noted that this specification describes many features. Although certain features may be combined to illustrate possible system designs, these features may also be used in other combinations not explicitly stated. Therefore, unless otherwise stated, the described combinations are not intended to be limiting.
[0039] The principle and structure of this utility model will be described in detail below with reference to the accompanying drawings and embodiments.
[0040] Currently, the mounting brackets used for central air conditioning pipes are all simple sheet metal brackets. They require specific holes to be drilled in the mounting beams and then fixed with bolts. They have low versatility and are relatively inconvenient to install.
[0041] Based on the above problems, this utility model proposes an automatic locking and fixing pipe support base, which includes a mounting base 1, a clamping structure and a position adjustment structure mounted on the mounting base 1. The clamping structure is used to clamp and fix the mounting base 1 to the mounting beam, and the position adjustment structure is used to assemble the mounting bracket and adjust the installation position of the mounting bracket.
[0042] Please see Figure 1 and Figure 3 The clamping structure in this utility model consists of a clamping fixing plate 2 and a double hook spring 4. When the mounting base 1 clamps and fixes the installation beam, the mounting beam is located below the mounting base 1, that is, between the two clamping fixing plates 2. Under the tension of the double hook spring 4, the mounting beam can be clamped and fixed by the two clamping fixing plates 2.
[0043] The mounting bracket is installed on the position adjustment structure to further adjust the specific installation position and angle of the mounting bracket. The position adjustment structure is divided into a movable base 5 and a steering base 6. The movable base 5 is set on the second guide groove 12 of the mounting base 1, thereby realizing the position movement of the movable base 5. The steering base 6 is installed on the movable base 5 through a rotating fixed shaft 61 to realize the angle adjustment of the steering base 6. Through the cooperation of the movable base 5 and the steering base 6, this utility model can realize the further adjustment of the specific installation position and angle of the mounting bracket.
[0044] Appendix Figure 1 The arrows in the diagram indicate the movement directions of the two clamping plates 2, the moving base 5, and the turning base 6, respectively.
[0045] As can be seen from the above settings, this utility model, through the above clamping structure and position adjustment structure, can achieve automatic locking function and adapt to mounting beams of different sizes, without being limited by the position of the mounting holes on the mounting beam, thus improving the versatility and ease of installation of the mounting bracket.
[0046] The specific structures of the clamping structure and the position adjustment structure in this utility model are described below:
[0047] As mentioned above, the clamping structure in this utility model includes two clamping fixing plates symmetrically arranged on the mounting base 1, and a double hook spring 4 connecting the two clamping fixing plates 2;
[0048] Each clamping plate 2 has a clamping part located below the mounting base 1, and the clamping parts of the two clamping plates 2 are distributed on both sides of the mounting beam. When the double hook spring 4 contracts, it controls the clamping parts of the two clamping plates 2 to move toward the mounting beam.
[0049] Based on this design, when it is necessary to clamp and fix the mounting beam, the present invention can first control the clamping parts of the two clamping and fixing plates 2 to move outward, that is, stretch the double hook spring 4. At this time, the mounting beam can be smoothly placed between the clamping parts of the two clamping and fixing plates 2. Meanwhile, since the double hook spring 4 needs to reset, when it retracts, it will control the clamping parts of the two clamping and fixing plates 2 to move towards the mounting beam. Finally, the clamping parts of the two clamping and fixing plates 2 can clamp the mounting beam, thereby achieving the clamping and fixing of the mounting base 1.
[0050] In other words, through the above-mentioned clamping structure, this utility model can clamp and fix the mounting base 1 to the mounting beam, thereby achieving an automatic locking function.
[0051] Please see Figure 2 and Figure 3In this utility model, the clamping and fixing plate 2 has a first plate body 21, a second plate body 22, and a third plate body 23, wherein the first plate body 21 is used as a clamping part;
[0052] A first slide rail groove 11 is provided on the mounting base 1. A second plate 22 is perpendicular to the first plate 21 and is installed in the first slide rail groove 11. A third plate 23 is perpendicular to the second plate 22 and is provided with a connecting hole 24. A double hook spring 4 is connected to the connecting hole 24.
[0053] Here, the first plate 21, the second plate 22, and the third plate 23 are integrally formed. After the double hook spring 4 is connected to the two clamping and fixing plates 2 through the connecting hole 24, it can apply a pulling force to the third plate 23. This pulling force is actually used to pull the entire clamping and fixing plate 2, thereby achieving the above-mentioned clamping effect.
[0054] The purpose of setting the first slide rail groove 11 on the mounting base 1 is, on the one hand, to install the second plate 22, and on the other hand, to restrict the movement direction of the second plate 22, that is, to restrict the movement direction of the entire clamping and fixing plate 2. As mentioned above, the two clamping and fixing plates 2 are actually used to clamp the mounting beam below. Therefore, in order to ensure the clamping effect of the two clamping and fixing plates 2, it is necessary to ensure that the movement direction of the first plate 21 is perpendicular to the mounting beam. Since the first plate 21, the second plate 22, and the third plate 23 are integrally formed, the setting of the first slide rail groove 11 to restrict the movement direction of the second plate 22 actually restricts the movement direction of the first plate 21, thereby ensuring that the two first plates 21 can smoothly clamp the mounting beam under the action of the double hook spring 4.
[0055] As for the vertical structure between the first plate 21, the second plate 22, and the third plate 23, it is designed to accommodate the functions of each plate. As mentioned earlier, the mounting beam is located below the mounting base 1. Therefore, in order for the first plate 21 to clamp and fix the mounting beam, its main body must also be located below the mounting base 1. Thus, the first plate 21 needs to be set vertically downward. This is not a tilted downward setting, but rather to ensure that the first plate 21 and the mounting beam are completely fitted together, ensuring the clamping and restraint.
[0056] The second plate 22 needs to be installed in the first slide rail groove 11 to restrict the movement direction of the first plate 21. The first slide rail groove 11 is set on the mounting base 1. Therefore, the second plate 22 also needs to be laid flat on the mounting base 1. Under this arrangement, the second plate 22 is perpendicular to the first plate 21.
[0057] The third plate 23 is set up for two purposes: firstly, to cooperate with the limiting and fixing plate 3 to fix the entire clamping and fixing plate 2; and secondly, to set the connecting hole 24 for connecting the double hook spring 4. Since the first plate 21 is located below the mounting base 1 and the second plate 22 is laid flat on the mounting base 1, neither of them has the structure or position to connect the double hook spring 4. Therefore, the third plate 23 is needed to set the connecting hole 24. The reason for setting the third plate 23 perpendicular to the second plate 22 is to ensure that the double hook spring 4 can stretch the third plate 23 smoothly.
[0058] As can be seen from the above configuration, the present invention divides the clamping and fixing plate 2 into a first plate 21, a second plate 22, and a third plate 23, which can respectively achieve the effects of clamping the mounting beam, restricting the movement direction of the clamping and fixing plate 2, and connecting the double hook spring 4 and fixing the clamping and fixing plate 2.
[0059] Please see Figure 3 The present invention also includes a limiting fixing plate 3 disposed on the mounting base 1. The limiting fixing plate 3 is disposed perpendicular to the third plate 23. A positioning groove 31 is provided on the limiting fixing plate 3, and the third plate 23 passes through the positioning groove 31.
[0060] As can be seen from the above introduction, the setting of the limiting and fixing plate 3 is actually used to fix the clamping and fixing plate 2. Specifically, by limiting the third plate 23, the clamping and fixing plate 2 is limited and fixed.
[0061] From the appendix Figure 3 As can be seen, both the limiting fixing plate 3 and the third plate 23 are perpendicular to the second plate 22. After the positioning groove 31 is opened, the upward movement of the third plate 23 will be restricted by the upper part of the limiting fixing plate 3, the downward movement will be restricted by the mounting base 1, and the left or right movement will be restricted by the main body of the limiting fixing plate 3. Therefore, by setting the limiting fixing plate 3 and the positioning groove 31, the movement direction of the third plate 23 can be completely restricted, thereby achieving the fixation of the entire clamping fixing plate 2.
[0062] Here, two limiting and fixing plates 3 need to be set, which are used to fix the two clamping and fixing plates 2 located on both sides of the mounting base 1 respectively. At the same time, the limiting and fixing plates 3 can be provided with corresponding screw structures, so that when assembling this utility model, the limiting and fixing plates 3 can be assembled last to fix the clamping and fixing plates 2, and then the limiting and fixing plates 3 and the mounting base 1 can be fixed by screw structures. This setting method will make the assembly of the entire limiting and fixing plates 3 very convenient.
[0063] Please see Figure 1In this utility model, the position adjustment structure consists of a movable base 5 and a steering base 6 mounted on the movable base 5 and capable of angle adjustment.
[0064] The mounting bracket is assembled on the steering base 6, and the mounting position of the mounting bracket can be adjusted by moving the base 5 and the steering base 6.
[0065] As mentioned above, this utility model, through the setting of the movable base 5 and the steering base 6, can further adjust the specific installation position and angle of the mounting bracket, thereby adapting to mounting beams of different sizes, without being limited by the position of the mounting holes on the mounting beam, thus improving the versatility and ease of installation of the mounting bracket.
[0066] Please see Figure 2 , Figure 4 and Figure 5 In this utility model, a second slide rail groove 12 is provided on the mounting base 1, and a guide rail 51 is provided at the bottom of the movable base 5 and assembled in the second slide rail groove 12. The movable base 5 moves on the second guide rail groove 12 through the guide rail 51 to change the installation position of the mounting bracket.
[0067] As mentioned above, the position adjustment structure in this utility model is divided into two parts, namely the movable base 5 and the steering base 6, which are used to adjust the position and angle of the mounting bracket, respectively. Here, a guide rail 51 is set at the bottom of the movable base 5, and it is installed in conjunction with the slide rail groove 12 to realize the adjustment of the position of the movable base 5.
[0068] Under this configuration, on the one hand, the movement direction of the movable base 5 can be set through the second slide rail groove 12, and on the other hand, it can be used to fix the movable base 5.
[0069] In addition, to further ensure the installation stability of the movable base 5, after the mounting bracket is moved to the corresponding installation position, it is necessary to ensure that the movable base 5 no longer moves. It is difficult to fix the entire movable base 5 using only the second slide rail groove 12. Therefore, this utility model also provides two threaded holes 54 on the movable base 5, which are distributed at two opposite corners of the movable base 5. They are used to fix the position of the movable base 5 on the mounting base 1 after the mounting bracket is moved to the corresponding installation position, and also to ensure the firmness of the mounting bracket installation.
[0070] After setting the movable base 5, the position of the mounting bracket can be adjusted. To adjust the angle of the mounting bracket, the steering base 6 is also required. Please refer to [link to relevant documentation]. Figure 6 and Figure 7In this utility model, the steering base 6 is disc-shaped, and a rotating fixed shaft 61 is provided at the center of the steering base 6. An installation groove 52 is provided at the center of the movable base 5. The rotating fixed shaft 61 is assembled in the installation groove 52 and can rotate within the installation groove 52.
[0071] Here, the rotating fixed shaft 61 and the entire steering base 6 are integrally formed. When the rotating fixed shaft 61 is assembled into the mounting groove 52 and rotated, it will drive the entire steering base 6 to rotate. In this utility model, the mounting bracket is installed on the steering base 6. Therefore, when the steering base 6 rotates, the mounting bracket will also rotate, thereby realizing the above-mentioned angle adjustment of the mounting bracket.
[0072] Here, the above-mentioned rotation function is achieved by mounting groove 52 and rotating fixed shaft 61, which can be achieved by setting mutually mating threads on mounting groove 52 and rotating fixed shaft 61.
[0073] In other words, this utility model achieves the adjustment of the installation angle of the mounting bracket through the setting of the steering base 6.
[0074] Similar to the setup of the movable base 5, after adjusting the angle of the mounting bracket, it is also necessary to ensure the overall stability of the steering base 6 to prevent further rotation. Please refer to [link to relevant documentation]. Figure 4 and Figure 6 The present invention provides multiple telescopic pins 62 on the periphery of the steering base 6 and positioning grooves 53 on the movable base 5 that match the positions of the telescopic pins 62, so that each telescopic pin 62 can be inserted into the corresponding positioning groove 53, thereby fixing the steering base 6 by the cooperation between the telescopic pins 62 and the positioning grooves 53.
[0075] Based on this setting, after the installation angle of the mounting bracket is adjusted, it can be inserted into the corresponding positioning groove 53 by means of telescopic pin 62. When the steering base 6 rotates, since the telescopic pin 62 is inserted into the corresponding positioning groove 53, each telescopic pin 62 will participate in restricting the rotation of the steering base 6, thereby restricting the rotation of the steering base 6.
[0076] In other words, by setting the telescopic nail 62 and the positioning groove 53, this utility model ensures the firmness of the entire steering base 6 after the angle of the mounting bracket is adjusted, and prevents it from continuing to rotate.
[0077] Please see Figure 7 In this utility model, the steering base 6 is also provided with a limiting groove 63, the limiting groove 63 is cross-shaped, and the mounting bracket is L-shaped;
[0078] When the mounting bracket is assembled onto the steering base 6, the bottom edge of the mounting bracket is assembled into the limiting groove 63;
[0079] The mounting bracket is L-shaped. During assembly, it is generally only necessary to install the bottom edge of the L-shape onto the steering base 6. In this invention, the limiting groove 63 is set to a cross shape instead of a straight shape to accommodate the mounting angle of the mounting bracket. With the cross-shaped limiting groove 63, the mounting bracket will have four mutually perpendicular mounting angles. Therefore, regardless of the mounting angle, the angle that needs to be adjusted when adjusting the mounting angle of the mounting bracket will not exceed 90 degrees. The angle that needs to be adjusted is smaller, making it easier to match different mounting angles.
[0080] Based on the above structure, the overall assembly process of this utility model is as follows: first, the clamping and fixing plate 2 is installed on the mounting base 1, then the limiting and fixing plate 3 is assembled to fix the clamping and fixing plate 2, then the movable base 6 is assembled on the second slide rail groove 12 of the mounting base 1 and fixed through the threaded hole 54, and finally the steering base 6 is assembled on the movable base 5 by rotating the fixing shaft 61 to realize the assembly of the entire device.
[0081] When used to assemble the mounting bracket, the specific assembly process is as follows: first, pull open the two clamping and fixing plates 2 and place the mounting beam between the two clamping and fixing plates 2. Then, loosen the two clamping and fixing plates 2 so that the mounting base 1 can limit and lock the mounting beam through the tension of the double hook spring 4. Then, assemble the mounting bracket onto the steering base 6, and adjust the installation angle and installation position of the mounting bracket by moving the base 5 and the steering base 6. After reaching the appropriate position, the assembly of the mounting bracket is completed.
[0082] As can be seen from the above settings, this utility model has at least the following beneficial effects compared with the prior art:
[0083] 1. This utility model is equipped with a clamping structure, which can clamp and fix the mounting base to the mounting beam to achieve an automatic locking function;
[0084] 2. This utility model is equipped with a position adjustment structure, which can adaptively adjust the position and angle of the mounting bracket to adapt to mounting beams of different sizes. It is not limited by the position of the mounting holes on the mounting beam, thus improving the versatility and ease of installation of the mounting bracket.
[0085] This utility model also proposes an air conditioning system having the aforementioned automatically locking and fixing pipe support base.
[0086] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. An automatic locking fastened pipe support base, characterized by, It includes a mounting base (1), a clamping structure and a position adjustment structure mounted on the mounting base (1), the clamping structure being used to clamp and fix the mounting base (1) to the mounting beam, and the position adjustment structure being used to assemble the mounting bracket and adjust the installation position of the mounting bracket.
2. The self-locking fastened pipe support base of claim 1, wherein, The clamping structure includes two clamping fixing plates (2) symmetrically arranged on the mounting base (1) and a double hook spring (4) connecting the two clamping fixing plates (2); Each of the clamping fixing plates (2) has a clamping part located below the mounting base (1), and the clamping parts of the two clamping fixing plates (2) are distributed on both sides of the mounting beam. When the double hook spring (4) contracts, it controls the clamping parts of the two clamping fixing plates (2) to move toward the mounting beam.
3. The self-locking fastened pipe support base of claim 2, wherein, The clamping and fixing plate (2) has a first plate body (21), a second plate body (22), and a third plate body (23), wherein the first plate body (21) is used as the clamping part; A first slide rail groove (11) is provided on the mounting base (1), the second plate (22) is perpendicular to the first plate (21) and is installed in the first slide rail groove (11), the third plate (23) is perpendicular to the second plate (22) and is provided with a connecting hole (24), and the double hook spring (4) is connected to the connecting hole (24).
4. The self-locking fastened pipe support base of claim 3, wherein, It also includes a limiting fixing plate (3) disposed on the mounting base (1), the limiting fixing plate (3) being perpendicular to the third plate (23), and a positioning groove (31) being provided on the limiting fixing plate (3), through which the third plate (23) passes.
5. The self-locking fastened pipe support base of claim 1, wherein, The position adjustment structure includes a movable base (5) and a steering base (6) mounted on the movable base (5) and capable of angle adjustment; The mounting bracket is assembled on the steering base (6), and the mounting position of the mounting bracket can be adjusted by the movable base (5) and the steering base (6).
6. The self-locking fastened pipe support base of claim 5, wherein, A second slide rail groove (12) is provided on the mounting base (1), and a guide rail (51) is provided at the bottom of the movable base (5) in the second slide rail groove (12). The movable base (5) moves on the second slide rail groove (12) through the guide rail (51) to change the installation position of the mounting bracket.
7. The self-locking fastened pipe support base of claim 6, wherein, The steering base (6) is disc-shaped. A rotating fixed shaft (61) is provided at the center of the steering base (6). An installation groove (52) is provided at the center of the movable base (5). The rotating fixed shaft (61) is assembled into the installation groove (52) and can rotate within the installation groove (52).
8. The self-locking fastened pipe support base of claim 7, wherein, Multiple telescopic pins (62) are provided on the periphery of the steering base (6), and a positioning groove (53) matching the position of the telescopic pins (62) is provided on the movable base (5). The steering base (6) is fixed to the movable base (5) by the cooperation of the telescopic pins (62) and the positioning groove (53).
9. The self-locking secured conduit support base of claim 5, wherein, A limiting slot (63) is further arranged on the steering base (6), the limiting slot (63) is cross-shaped, and the mounting bracket is L-shaped; When the mounting bracket is assembled on the steering base (6), the bottom edge of the mounting bracket is assembled in the limiting slot (63).
10. An air conditioning system characterized by, The air conditioning system has the pipe support base with automatic locking fixation as claimed in any one of claims 1 to 9.