Pipe fixing block structure and air conditioning system
Patent Information
- Application Number
- CN202521511995.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-18
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-07-18
AI Technical Summary
[0005]针对现有技术中,管路固定块不能使用不同管路间距,导致需要开发不同的管路固定块,增加投入成本的问题,本实用新型提出了一种管路固定块结构及空调系统
[0024]本实用新型提出的管路固定块结构能够使用不同的管路间距,在设计本实用新型的管路固定块结构时,只需采用一套模具,减少了模具的数量,避免了频繁更换模具带来的高额费用,同时也减少了模具保养和维护成本、以及仓储管理成本,简化了生成流程,只需要设计一套管路固定块结构即可,减少了生产线上频繁更换模具的时间和操作步骤。
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Figure CN224743724U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of air conditioning, and in particular to a pipe fixing block structure and an air conditioning system. Background Technology
[0002] Using pipe fixing blocks as an effective installation method to control the distance between two pipes is becoming increasingly common as companies continue to develop new air conditioning system models, resulting in more complex pipe structures and more varied pipe spacing.
[0003] To meet the requirements of different pipe spacing, different pipe fixing blocks need to be developed. Developing different pipe fixing blocks requires the creation of new molds, which requires a considerable investment in mold costs. The subsequent maintenance of the molds, the demolding and assembly of different pipe fixing blocks, the storage and management of the molds, the warehousing management of a large number of different pipe fixing blocks, and the coding management all require a significant investment of money and manpower, which is not conducive to standardized management.
[0004] Therefore, how to design a pipe fixing block structure and air conditioning system that can adapt to different pipe spacing and meet different usage scenarios is a technical problem that the industry urgently needs to solve. Utility Model Content
[0005] In view of the problem that existing pipe fixing blocks cannot be used with different pipe spacings, which requires the development of different pipe fixing blocks and increases investment costs, this utility model proposes a pipe fixing block structure and an air conditioning system.
[0006] The technical solution of this utility model is to propose a pipeline fixing block structure, including a first fixing block 1 for assembling a first pipeline and a second fixing block 2 for assembling a second pipeline, and a third fixing block 3 assembled between the first fixing block 1 and the second fixing block 2. The first fixing block 1 and the second fixing block 2 are adapted to the spacing between the first pipeline and the second pipeline according to the number of the third fixing blocks 3.
[0007] Furthermore, each of the third fixing blocks 3 has a first protrusion structure 31 for assembly with the first fixing block 1 and a first groove structure 32 for assembly with the second fixing block 2, and the first protrusion structure 31 and the first groove structure 32 can be assembled with each other so that different third fixing blocks 3 can be assembled with each other.
[0008] Furthermore, the first fixing block 1 has a second groove structure 11 that cooperates with the first protrusion structure 31;
[0009] The second fixing block 2 has a second protrusion structure 21 that cooperates with the first groove structure 32;
[0010] The first fixing block 1 and the second fixing block 2 can be directly assembled through the second groove structure 11 and the second protrusion structure 21.
[0011] Furthermore, the third fixing block 3 is a rectangular block, and the first protrusion structure 31 and the first groove structure 32 are disposed on two opposite sides of the rectangular block.
[0012] Furthermore, the first protrusion structure 31 is a T-shaped protrusion disposed on the third fixing block 3;
[0013] The first groove structure 32 is a T-shaped groove disposed on the third fixing block 3.
[0014] Furthermore, the second groove structure 11 is a T-shaped groove disposed on the first fixing block 1;
[0015] The second protrusion structure 21) is a T-shaped protrusion disposed on the second fixing block 2.
[0016] Furthermore, each of the third fixing blocks 3 also has a first positioning protrusion 33 for positioning with the first fixing block 1 and a first positioning recess 34 for positioning with the second fixing block 2, and the first positioning protrusion 33 and the first positioning recess 34 can be assembled with each other so that the different third fixing blocks 3 are positioned with each other.
[0017] Furthermore, the first fixing block 1 also has a second positioning recess 12 that cooperates with the first positioning protrusion 33;
[0018] The second fixing block 2 also has a second positioning protrusion 22 that cooperates with the first positioning recess 34;
[0019] The first fixing block 1 and the second fixing block 2 can be positioned relative to each other by the second positioning recess 12 and the second positioning protrusion 22.
[0020] Furthermore, the first positioning protrusion 33 and the first protrusion structure 31 are disposed on the same side of the third fixing block 3;
[0021] The first positioning recess 34 and the first groove structure 32 are disposed on the same side of the third fixing block 3.
[0022] This utility model also proposes an air conditioning system having the above-mentioned pipe fixing block structure.
[0023] Compared with the prior art, the present invention has at least the following beneficial effects:
[0024] The pipe fixing block structure proposed in this utility model can use different pipe spacings. When designing the pipe fixing block structure of this utility model, only one set of molds is needed, which reduces the number of molds and avoids the high costs caused by frequent mold replacement. It also reduces mold maintenance and warehousing management costs, simplifies the production process, and only one set of pipe fixing block structure needs to be designed, which reduces the time and operation steps of frequent mold replacement on the production line. Attached Figure Description
[0025] 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.
[0026] Figure 1 This is a schematic diagram of a traditional fixing block.
[0027] Figure 2 This is a schematic diagram of the assembly of a traditional fixing block;
[0028] Figure 3 This is a schematic diagram of the structure of the first fixing block in the first embodiment of this utility model;
[0029] Figure 4 This is a schematic diagram of the structure of the second fixing block in the first embodiment of this utility model;
[0030] Figure 5 This is a schematic diagram of the structure of the third fixing block in the first embodiment of this utility model;
[0031] Figure 6 This is a schematic diagram of the structure of the first fixing block in the second embodiment of this utility model;
[0032] Figure 7 This is a schematic diagram of the structure of the second fixing block in the second embodiment of this utility model;
[0033] Figure 8 This is a structural schematic diagram of the third fixing block from a first perspective in the second embodiment of this utility model;
[0034] Figure 9 This is a structural schematic diagram of the third fixing block from a second perspective in the second embodiment of this utility model;
[0035] Figure 10 This is an assembly diagram of the pipeline fixing block structure of this utility model;
[0036] Wherein, 1 is the first fixing block, 11 is the second groove structure, 12 is the second positioning recess, and 13 is the first mounting hole;
[0037] 2 is the second fixing block, 21 is the second protruding structure, 22 is the second positioning protrusion, and 23 is the second mounting hole;
[0038] 3 is the third fixing block, 31 is the first protruding structure, 32 is the first groove structure, 33 is the first positioning protrusion, and 34 is the first positioning concave point. Detailed Implementation
[0039] 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.
[0040] 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.
[0041] The principle and structure of this utility model will be described in detail below with reference to the accompanying drawings and embodiments.
[0042] Please see Figure 1 and Figure 2 Currently, the pipe fixing block is a single unit, and generally two mounting holes are opened at both ends of the pipe fixing block for assembling different pipes;
[0043] However, the pipe spacing varies in different applications, necessitating adjustments to the length of the pipe fixing blocks to accommodate the aforementioned pipe spacing, as shown in the attached figure. Figure 2 The pipeline fixing blocks are categorized into four types: Pipeline Fixing Block 1, Pipeline Fixing Block 2, Pipeline Fixing Block 3, and Pipeline Fixing Block 4. Different types of pipeline fixing blocks require different molds, which increases the cost of the molds.
[0044] To address the aforementioned problems, this utility model proposes a pipeline fixing block structure. Please refer to [link / reference]. Figure 10 It includes a first fixing block 1 for assembling a first pipeline and a second fixing block 2 for assembling a second pipeline;
[0045] It also includes a third fixing block 3 assembled between the first fixing block 1 and the second fixing block 2, wherein the first fixing block 1 and the second fixing block 2 are adapted to the spacing between the first pipeline and the second pipeline according to the number of the third fixing blocks 3.
[0046] like Figure 10 As shown, the first and second pipes refer to each set of pipe fixing blocks. The pipe assembled with the first fixing block 1 is the first pipe, and the pipe assembled with the second fixing block 2 is the second pipe. The first fixing block 1 is equipped with the first pipe through the first mounting hole 13, and the second fixing block 2 is equipped with the second pipe through the second mounting hole 23. Figure 10 As can be seen, for different groups of pipe fixing block structures, the structures of the first fixing block 1, the second fixing block 2, and the third fixing block 3 are exactly the same, and the only difference is the number of the third fixing block 3.
[0047] In this way, when developing the corresponding molds, only three molds need to be set up for the design of the first fixing block 1, the second fixing block 2, and the third fixing block 3, which reduces the number of molds and avoids the high costs caused by frequent mold replacements.
[0048] Please see Figures 3 to 5 In this utility model, each third fixing block 3 has a first protrusion structure 31 for assembly with the first fixing block 1 and a first groove structure 32 for assembly with the second fixing block 2, and the first protrusion structure 31 and the first groove structure 32 can be assembled with each other so that different third fixing blocks 3 can be assembled with each other.
[0049] Please see Figure 10 In this design, the third fixing block 3 can not only be assembled with the first fixing block 1 and the second fixing block 3, but also with each other; since the third fixing blocks 3 can be assembled with each other, the following can be achieved: Figure 10 The design method adjusts the number of the third fixing block 3 according to the actual pipe spacing, thereby adapting to different pipe installations;
[0050] In other words, by improving the structure of the third fixing block 3, this utility model can adjust the number of the third fixing blocks 3 according to actual usage needs, thereby adapting to different pipeline installations.
[0051] Please see Figure 3 and Figure 4 In this utility model, the first fixing block 1 has a second groove structure 11 that cooperates with the first protrusion structure 31;
[0052] The second fixing block 2 has a second protrusion structure 21 that cooperates with the first groove structure 32;
[0053] The first fixing block 1 and the second fixing block 2 can be directly assembled through the second groove structure 11 and the second protrusion structure 21;
[0054] Based on this configuration, in this utility model, not only can the first fixing block 1 and the second fixing block 2 be assembled through the third fixing block 3, but the first fixing block 1 and the second fixing block 2 can also be directly assembled. In this case, the design requirements for some pipeline spacing can be met without setting the third fixing block 3.
[0055] Please see Figure 5 In this utility model, the third fixing block 3 is a rectangular block, and the first protrusion structure 31 and the first groove structure 32 are arranged on two opposite sides of the rectangular block.
[0056] This utility model employs this configuration to simplify the assembly between the third fixing blocks 3, achieving the effect shown in the attached figure. Figure 10 The simple stacking of the components can accommodate the spacing of the pipes. If the first protruding structure 31 and the first groove structure 32 are not placed on opposite sides, when assembling between the third fixing blocks 3, vertical installation between the third fixing blocks 3 will occur, ultimately leading to a complex assembly method and unstable assembly.
[0057] Please see Figure 5 In this utility model, the first protrusion structure 31 is a T-shaped protrusion provided on the third fixing block 3;
[0058] The first groove structure 32 is a T-shaped groove provided on the third fixing block 3;
[0059] Based on the T-shaped protrusion and T-shaped groove, self-locking between the third fixing blocks 3 can be achieved. When assembling between two third fixing blocks 3, simply offset the two third fixing blocks 3 and place them vertically so that the T-shaped protrusion of the first third fixing block 3 corresponds to the T-shaped groove structure of the second third fixing block 3. Then, insert the T-shaped protrusion downward into the T-shaped groove to achieve the assembly of the two third fixing blocks 3.
[0060] After the assembly between the two third fixing blocks 3 is completed, due to the locking between the T-shaped protrusion and the T-shaped groove, the two third fixing blocks 3 can only move in the up and down direction. However, when assembling the pipeline, due to the limitation of the pipeline and the stress between different third fixing blocks 3, the up and down movement between the third fixing blocks 3 will be restricted, thereby achieving the effect of completely fixing different third fixing blocks 3.
[0061] That is, by adopting the above-mentioned first protrusion structure 31 and first groove structure 32, the assembly of the third fixing blocks 3 can be made simpler, and the mutual locking between the third fixing blocks 3 can be achieved.
[0062] Please see Figure 3 and Figure 4 In this utility model, the second groove structure 11 is a T-shaped groove disposed on the first fixing block 1;
[0063] The second protrusion structure 21 is a T-shaped protrusion provided on the second fixing block 2;
[0064] The T-shaped groove and T-shaped protrusion are designed to be consistent with the structure of the T-shaped groove and T-shaped protrusion on the third fixing block 3, so that they can achieve the same effect and realize the assembly and self-locking between the first fixing block 1 and the second fixing block 2, between the first fixing block 1 and the third fixing block 3, and between the second fixing block 2 and the third fixing block 3.
[0065] As mentioned above, after adopting the above-mentioned first protrusion structure 31, first groove structure 32, second groove structure 11 and second protrusion structure 21, the vertical movement between the third fixing blocks 3, between the first fixing block 1 and the third fixing block 3, and between the second fixing block 2 and the third fixing block 3 is fixed by stress, which still has a certain risk of loosening. In order to avoid this problem, the present invention provides a first positioning protrusion 33 and a first positioning recess 34 on the third fixing block 3.
[0066] Please see Figure 8 and Figure 9 Specifically, each third fixing block 3 is further provided with a first positioning protrusion 33 for positioning with the first fixing block 1 and a first positioning recess 34 for positioning with the second fixing block 2, and the first positioning protrusion 33 and the first positioning recess 34 can be assembled with each other so that different third fixing blocks 3 can be positioned with each other.
[0067] Here, the first positioning protrusion 33 can be a small protruding square or cylinder, or a semi-circular protrusion. The shape of the first positioning concave point 34 needs to be set to match the first positioning protrusion 33, the difference being that its structure is set to be concave.
[0068] In this way, when assembling the third fixing block 3, the first positioning protrusion 33 can also be inserted into the corresponding first positioning recess 34. In this configuration, since the third fixing block 3 restricts the movement of the first positioning protrusion 33, it avoids the up-and-down movement between the third fixing blocks 3 and avoids the risk of the third fixing blocks 3 becoming loose from each other.
[0069] In other words, by setting the first positioning protrusion 33 and the first positioning recess 34, the firmness of the assembly between the third fixing blocks 3 is further strengthened, avoiding the risk of loosening due to the insecure assembly between the third fixing blocks 3.
[0070] Please see Figure 6and Figure 7 In order to accommodate the setting of the first positioning protrusion 33 and the first positioning recess 34 on the third fixing block 3, the first fixing block 1 in this utility model also has a second positioning recess 12 that cooperates with the first positioning protrusion 33.
[0071] The second fixing block 2 also has a second positioning protrusion 22 that cooperates with the first positioning recess 34;
[0072] The first fixing block 1 and the second fixing block 2 can be positioned relative to each other by the second positioning concave point 12 and the second positioning convex point 22.
[0073] Here, the purpose of setting the second positioning recess 12 and the second positioning protrusion 22 is, on the one hand, for the assembly of the third fixing block 3. As mentioned above, each third fixing block 3 is provided with a first positioning protrusion 33 and a first positioning recess 34. Therefore, if the corresponding second positioning recess 12 and second positioning protrusion 22 are not opened on the first fixing block 1 and the second fixing block 2, the assembly between the third fixing block 3 and the first fixing block 1 and the second fixing block 2 will be restricted due to the first positioning protrusion 33 and the first positioning recess 34.
[0074] On the other hand, it is used to strengthen the assembly firmness between the first fixing block 1 and the third fixing block 3, and between the second fixing block 2 and the third fixing block 3. As mentioned above, the assembly between the first protrusion structure 31 and the second groove structure 11, and between the first groove structure 32 and the second protrusion structure 21, actually has a weak limitation on the vertical direction. However, after setting the first positioning protrusion 33 and the second positioning concave point 12, and the first positioning concave point 34 and the second positioning protrusion 22, the vertical movement can be further limited. Therefore, the assembly firmness between the first fixing block 1 and the third fixing block 3, and between the second fixing block 2 and the third fixing block 3 can be strengthened.
[0075] Please see Figure 8 and Figure 9 In this utility model, the first positioning protrusion 33 and the first protrusion structure 31 are provided on the same side of the third fixing block 3;
[0076] The first positioning recess 34 and the first groove structure 32 are disposed on the same side of the third fixing block 3;
[0077] The above configuration is used to simplify the assembly between the third fixing blocks 3, so that after the third fixing block 3 completes the assembly between the first protrusion structure 31 and the first groove structure 32, the first positioning protrusion 33 can be assembled with the first positioning recess 34 without additional assembly, and a more secure assembly effect can be achieved.
[0078] Based on the above settings, this utility model can have the following beneficial effects:
[0079] The pipe fixing block structure proposed in this utility model can use different pipe spacings. When designing the pipe fixing block structure of this utility model, only one set of molds is needed, which reduces the number of molds and avoids the high costs caused by frequent mold replacement. It also reduces mold maintenance and warehousing management costs, simplifies the production process, and only one set of pipe fixing block structure needs to be designed, which reduces the time and operation steps of frequent mold replacement on the production line.
[0080] This utility model also proposes an air conditioning system having the above-mentioned pipe fixing block structure.
[0081] 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. A pipe fixing block structure, comprising a first fixing block (1) for assembling a first pipe, and a second fixing block (2) for assembling a second pipe, characterized in that, It also includes a third fixing block (3) assembled between the first fixing block (1) and the second fixing block (2), wherein the first fixing block (1) and the second fixing block (2) are adapted to the spacing between the first pipeline and the second pipeline according to the number of the third fixing blocks (3); Each of the third fixing blocks (3) has a first protrusion structure (31) for assembly with the first fixing block (1) and a first groove structure (32) for assembly with the second fixing block (2), and the first protrusion structure (31) and the first groove structure (32) can be assembled with each other so that different third fixing blocks (3) can be assembled with each other; The first fixing block (1) has a second groove structure (11) that cooperates with the first protrusion structure (31). The second fixing block (2) has a second protrusion structure (21) that cooperates with the first groove structure (32); The first fixing block (1) and the second fixing block (2) can be directly assembled through the second groove structure (11) and the second protrusion structure (21).
2. The tube block structure according to claim 1, wherein The third fixing block (3) is a rectangular block, and the first protrusion structure (31) and the first groove structure (32) are disposed on two opposite sides of the rectangular block.
3. The tube block structure of claim 2, wherein, The first protrusion structure (31) is a T-shaped protrusion disposed on the third fixing block (3); The first groove structure (32) is a T-shaped groove provided on the third fixing block (3).
4. The pipeline fixing block structure according to claim 3, characterized in that, The second groove structure (11) is a T-shaped groove disposed on the first fixing block (1); The second protrusion structure (21) is a T-shaped protrusion disposed on the second fixing block (2).
5. The tube block structure of claim 1, wherein Each of the third fixing blocks (3) also has a first positioning protrusion (33) for positioning with the first fixing block (1) and a first positioning recess (34) for positioning with the second fixing block (2), and the first positioning protrusion (33) and the first positioning recess (34) can be assembled with each other to position the different third fixing blocks (3) with each other.
6. The pipeline fixing block structure according to claim 5, characterized in that, The first fixing block (1) also has a second positioning recess (12) that cooperates with the first positioning protrusion (33); The second fixing block (2) also has a second positioning protrusion (22) that cooperates with the first positioning recess (34); The first fixing block (1) and the second fixing block (2) can be positioned relative to each other by the second positioning recess (12) and the second positioning protrusion (22).
7. The tube block structure of claim 5, wherein The first positioning protrusion (33) and the first protrusion structure (31) are disposed on the same side of the third fixing block (3); The first positioning recess (34) and the first groove structure (32) are located on the same side of the third fixing block (3).
8. An air conditioning system characterized by, The air conditioning system has a pipe fixing block structure as described in any one of claims 1 to 7.