A fixing structure for a pipe and a building

CN224771029UActive Publication Date: 2026-09-18SHANGHAI AEROSPACE ARCHITECTURAL DESIGN INST CO LTD
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Patent Information

Application Number
CN202522454458.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-19
Publication Date
2026-09-18
Estimated Expiration
2035-11-19

AI Technical Summary

Technical Problem

[0005]本实用新型的目的是针对现有技术中的不足,提供一种用于管道的固定结构及建筑,以解决相关技术中存在的管道固定结构适配性低的问题

Benefits of technology

本实用新型的一种用于管道的固定结构及建筑,利用连接单元、固定单元、第一收紧单元、第二收紧单元和锁定单元之间的配合带来了固定单元的收紧效果,第一收紧单元固定于固定单元一端,第二收紧单元可沿固定单元的周向移动,两者配合带动固定单元两端收拢或展开,实现收紧范围的灵活调整,适配不同直径管道的固定。

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Abstract

The utility model relates to a fixed knot for pipeline and building, fixed knot includes connecting unit, fixed unit, first tightening unit, second tightening unit and locking unit, wherein, for with main structure connects, fixed unit sets up in connecting unit, and with connecting unit connects, for fixed pipeline, first tightening unit sets up in the first end of fixed unit, and with fixed unit connects, second tightening unit movably sets up in the second end of fixed unit, for along the circumference of fixed unit removes. Its advantage lies in, the cooperation between connecting unit, fixed unit, first tightening unit, second tightening unit and locking unit brings the tightening effect of fixed unit, first tightening unit is fixed in fixed unit one end, second tightening unit can along the circumference of fixed unit remove, and the both cooperation drives fixed unit both ends to contract or to unfold, realizes the flexible adjustment of tightening range, adapts the fixed knot of different diameter pipeline.
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Description

Technical Field

[0001] This utility model relates to the technical field of building construction, and in particular to a fixing structure and building for pipelines. Background Technology

[0002] In the construction industry, pipeline fixing structures are core components that ensure the stable operation of pipelines and are widely used in the installation of various pipeline systems such as water supply and drainage, HVAC, and gas. Pipelines need to be firmly connected to the building structure (such as walls and supports) through fixing structures to resist the effects of their own weight, medium pressure, and environmental vibration, prevent pipeline displacement, deformation, or detachment, and ensure the safe operation of the system.

[0003] Traditional pipe fixing structures have a fixed tightening range, which can only accommodate pipes of a single or narrow diameter. When faced with the installation requirements of pipes of different specifications, it is necessary to purchase additional fixing structures of the corresponding models, which not only increases procurement costs and inventory management difficulties, but may also lead to construction interruptions due to model incompatibility, reduce installation efficiency, and make it difficult to meet the unified installation requirements of multiple pipe specifications.

[0004] Currently, no effective solution has been proposed to address the issue of low adaptability of pipeline fixing structures in related technologies. Utility Model Content

[0005] The purpose of this utility model is to address the shortcomings of existing technologies by providing a fixing structure and building for pipelines, thereby solving the problem of low adaptability of pipeline fixing structures in related technologies.

[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows: In a first aspect, a fixing structure for a pipe is provided, comprising: Connection unit, used for connection with the main structure; A fixing unit is disposed on and connected to the connecting unit for fixing the pipe; A first tightening unit is disposed at the first end of the fixing unit and connected to the fixing unit; The second tightening unit is movably disposed at the second end of the fixing unit and is used to move along the circumference of the fixing unit; A locking unit is detachably connected to the first tightening unit and the second tightening unit, respectively, and is used to close the first end and the second end of the fixing unit to fix the pipe or to unfold the first end and the second end of the fixing unit to loosen the pipe.

[0007] In some embodiments, the connection unit includes: A first support element, wherein the front end of the first support element is provided with the fixing unit and is connected to the fixing unit; A first connecting element is disposed at the rear end of the first support element and connected to the first support element for connection with the main structure.

[0008] In some embodiments, the fixing unit includes: A fixing element is disposed at the front end of the connecting unit. The first end of the fixing element is provided with the first tightening unit, and the second end of the fixing element is provided with the second tightening unit. The fixing element is connected to the connecting unit and the first tightening unit respectively, and is used to fix the pipe under the action of the first tightening unit and the second tightening unit. A first adjusting element is disposed at the second end of the fixed element and is slidably connected to the second tightening unit, for the second tightening unit to move circumferentially along the first adjusting element.

[0009] In some embodiments, the first tightening unit includes: A second support element is disposed at the first end of the fixing unit and connected to the fixing unit; A first mounting element is disposed inside the second bracket element; The first movable element is movably disposed inside the first mounting element and is detachably connected to the locking unit.

[0010] In some embodiments, the first tightening unit further includes: A second connecting element passes through the first movable element and is detachably connected to the locking unit.

[0011] In some embodiments, the second tightening unit includes: The second adjusting element is slidably disposed at the second end of the fixed unit and is used to move along the circumference of the fixed unit; A third support element is disposed at the front end of the second adjusting element and connected to the second adjusting element, for moving with the second adjusting element; A second mounting element is disposed inside the third support element; The second movable element is movably disposed inside the second mounting element and is detachably connected to the locking unit.

[0012] In some embodiments, the second tightening unit further includes: A first through-slot element is disposed through the second movable element for the locking unit to pass through.

[0013] In some embodiments, the locking unit includes: A locking element is detachably connected to the first tightening unit and the second tightening unit, respectively, for tightening the first end and the second end of the fixing unit to fix the pipe or for unfolding the first end and the second end of the fixing unit to loosen the pipe. A limiting element is disposed at the end of the locking element and abuts against the second tightening unit to prevent the locking element from passing through the second tightening unit.

[0014] In some embodiments, the locking unit further includes: The second through-slot element is disposed at the end of the limiting element and is used for inserting a hex wrench.

[0015] Secondly, a building is provided, comprising: The fixing structure as described in the first aspect is connected to the main structure.

[0016] The present invention adopts the above technical solution and has the following technical effects compared with the prior art: This utility model discloses a pipe fixing structure and building. The fixing unit achieves a tightening effect by cooperating with a connecting unit, a fixing unit, a first tightening unit, a second tightening unit, and a locking unit. The first tightening unit is fixed to one end of the fixing unit, and the second tightening unit can move along the circumference of the fixing unit. The two work together to cause the two ends of the fixing unit to close or open, realizing flexible adjustment of the tightening range and adapting to the fixing of pipes of different diameters. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural diagram of the fixing structure according to an embodiment of the present utility model; Figure 2 This is an exploded view of the fixed structure according to an embodiment of the present utility model; Figure 3 This is a three-dimensional structural diagram (a) of a portion of the fixing structure installed on a pipeline according to an embodiment of the present utility model; Figure 4 This is a partial three-dimensional structural diagram (II) of the fixing structure installed on the pipeline according to an embodiment of the present utility model; Figure 5 This is a partial structural diagram of the pipe being installed on the exterior wall according to the fixing structure of this utility model embodiment; Figure 6 This is a three-dimensional structural schematic diagram of the connection unit according to an embodiment of the present utility model; Figure 7 This is a three-dimensional structural diagram of the fixing unit according to an embodiment of the present utility model; Figure 8 This is an exploded view of the first tightening unit according to an embodiment of the present utility model; Figure 9 This is an exploded view of the second tightening unit according to an embodiment of the present utility model; Figure 10 This is a three-dimensional structural diagram of the locking unit according to an embodiment of the present utility model.

[0018] The reference numerals in the accompanying drawings are: 10, connecting unit; 11, first support element; 12, first connecting element; 20. Fixing unit; 21. Fixing element; 22. First adjusting element; 30. First tightening unit; 31. Second support element; 32. First mounting element; 33. First movable element; 34. Second connecting element; 40. Second tightening unit; 41. Second adjusting element; 42. Third support element; 43. Second mounting element; 44. Second movable element; 45. First through slot element; 50. Locking unit; 51. Locking element; 52. Limiting element; 53. Second through slot element. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0021] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the present invention.

[0022] Example 1 This embodiment relates to the fixing structure of this utility model.

[0023] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 As shown, a pipe fixing structure includes a connecting unit 10, a fixing unit 20, a first tightening unit 30, a second tightening unit 40, and a locking unit 50. The connecting unit 10 is used to connect to the main structure; the fixing unit 20 is disposed on and connected to the connecting unit 10, and is used to fix the pipe; the first tightening unit 30 is disposed at the first end of the fixing unit 20 and is connected to the fixing unit 20; the second tightening unit 40 is movably disposed at the second end of the fixing unit 20, and is used to move along the circumference of the fixing unit 20; the locking unit 50 is detachably connected to both the first tightening unit 30 and the second tightening unit 40, and is used to close the first and second ends of the fixing unit 20 to fix the pipe or to unfold the first and second ends of the fixing unit 20 to release the pipe.

[0024] like Figure 6 As shown, the connecting unit 10 includes a first support element 11 and a first connecting element 12. The front end of the first support element 11 is provided with a fixing unit 20 and is connected to the fixing unit 20; the first connecting element 12 is provided at the rear end of the first support element 11 and is connected to the first support element 11, for connecting to the main structure.

[0025] The first support element 11 has a structure with a rounded front end and a rectangular rear end. The rounded shape is used to fit the fixing unit 20.

[0026] In some of these embodiments, the first support element 11 is made of metal.

[0027] In some of these embodiments, the first support element 11 is a support plate.

[0028] One end of the first connecting element 12 (the end closer to the first support element 11) is round, and the other end (the end farther from the first support element 11) is conical, wherein the conical shape facilitates entry into the main structure (wall).

[0029] The dimensions of the first connecting element 12 are matched with the dimensions of the first support element 11. Generally, the maximum radial dimension of the first connecting element 12 is smaller than the length and height of the first support element 11, and the axial dimension of the first connecting element 12 is larger than the width of the first support element 11.

[0030] In some embodiments, the first connecting element 12 is fixedly connected to the first support element 11, including but not limited to welding.

[0031] In some of these embodiments, the first connecting element 12 is made of metal.

[0032] In some of these embodiments, the first connecting element 12 is a connecting rod.

[0033] like Figure 7 As shown, the fixing unit 20 includes a fixing element 21 and a first adjusting element 22. The fixing element 21 is located at the front end of the connecting unit 10. A first tightening unit 30 is located at the first end of the fixing element 21, and a second tightening unit 40 is located at the second end of the fixing element 21. Both are connected to the connecting unit 10 and the first tightening unit 30, respectively, and are used to fix the pipe under the action of the first tightening unit 30 and the second tightening unit 40. The first adjusting element 22 is located at the second end of the fixing element 21 and is slidably connected to the second tightening unit 40, allowing the second tightening unit 40 to move circumferentially along the first adjusting element 22.

[0034] Specifically, the fixing element 21 is disposed at the front end of the first support element 11 and is connected to the first support element 11.

[0035] The dimensions of the fixing element 21 are matched with the dimensions of the first support element 11. Generally, the radial dimension (length) of the fixing element 21 is greater than the length of the first support element 11, and the axial dimension (height) of the fixing element 21 is not less than the height of the first support element 11.

[0036] In some embodiments, the fixing element 21 is fixedly connected to the first support element 11, including but not limited to welding.

[0037] In some of these embodiments, the fixing element 21 is made of metal.

[0038] In some of these embodiments, the fixing element 21 is a clamp ring.

[0039] The first adjusting element 22 has a convex cross-section. Specifically, the first adjusting element 22 includes a first adjusting groove and a second adjusting groove. The first adjusting groove is disposed at the second end of the fixing element 21 and is slidably connected to the second tightening unit 40; the second adjusting groove is disposed on the inner side of the fixing element 21, communicates with the first adjusting groove, and is slidably connected to the second tightening unit 40.

[0040] The dimensions of the first adjusting groove are matched with the dimensions of the fixing element 21. Generally, the radial dimension (length) of the first adjusting groove is smaller than the radial dimension (length) of the fixing element 21, the depth of the first adjusting groove is smaller than the thickness of the fixing element 21, and the axial dimension (height) of the first adjusting groove is smaller than the axial dimension (height) of the fixing element 21.

[0041] The dimensions of the second adjusting groove are matched with the dimensions of the fixing element 21. Generally, the radial dimension (length) of the second adjusting groove is smaller than the radial dimension (length) of the fixing element 21, the depth of the second adjusting groove is smaller than the thickness of the fixing element 21, and the axial dimension (height) of the second adjusting groove is smaller than the axial dimension (height) of the fixing element 21.

[0042] The dimensions of the second adjusting groove match those of the first adjusting groove. Generally, the radial dimension (length) of the second adjusting groove is equal to the radial dimension (length) of the first adjusting groove, the depth of the second adjusting groove is greater than the depth of the first adjusting groove, and the axial dimension (height) of the second adjusting groove is greater than the axial dimension (height) of the first adjusting groove.

[0043] like Figure 8 As shown, the first tightening unit 30 includes a second support element 31, a first mounting element 32, and a first movable element 33. The second support element 31 is disposed at the first end of the fixing unit 20 and connected to the fixing unit 20; the first mounting element 32 is disposed inside the second support element 31; and the first movable element 33 is movably disposed inside the first mounting element 32 and is detachably connected to the locking unit 50.

[0044] Specifically, the second support element 31 is disposed at the first end of the fixing element 21 and is connected to the fixing element 21.

[0045] The second support element 31 has a U-shaped cross-section. Specifically, the second support element 31 includes a first vertical plate and two first horizontal plates. The first vertical plate is disposed at the first end of the fixing element 21 and is connected to the fixing element 21; the two first horizontal plates are symmetrically disposed at the ends of the first vertical plate, and the bottom / top of the two first horizontal plates are respectively provided with first mounting elements 32.

[0046] The dimensions of the first vertical plate are matched with the dimensions of the fixing element 21. Generally, the radial dimension (length) of the first vertical plate is smaller than the radial dimension (length) of the fixing element 21, the thickness of the first vertical plate is smaller than the thickness of the fixing element 21, and the axial dimension (height) of the first vertical plate is smaller than the axial dimension (height) of the fixing element 21.

[0047] The dimensions of the first horizontal board match the dimensions of the first vertical board. Generally, the length of the first horizontal board is equal to the length of the first vertical board, the width of the first horizontal board is greater than the width of the first vertical board, and the height of the first horizontal board is less than the height of the first vertical board.

[0048] In some embodiments, the second support element 31 is fixedly connected to the fixing element 21, including but not limited to welding.

[0049] In some of these embodiments, the second support element 31 is made of metal.

[0050] The cross-section of the first mounting element 32 is circular.

[0051] The dimensions of the first mounting element 32 are matched with the dimensions of the second support element 31. Generally, the radial dimension of the first mounting element 32 is smaller than the length and width of the first horizontal plate, and the axial dimension of the first mounting element 32 is larger than the height of the first horizontal plate.

[0052] In some of these embodiments, the first mounting element 32 is a first mounting hole.

[0053] The cross-section of the first active element 33 is circular.

[0054] The dimensions of the first movable element 33 are matched with the dimensions of the first mounting element 32. Generally, the radial dimension of the first movable element 33 is smaller than the radial dimension of the first mounting element 32, and the axial dimension of the first movable element 33 is equal to the axial dimension of the first mounting element 32.

[0055] In some of these embodiments, the first active element 33 is made of metal.

[0056] In some of these embodiments, the first movable element 33 is a first movable rod.

[0057] Furthermore, the first tightening unit 30 also includes a second connecting element 34. The second connecting element 34 passes through the first movable element 33 and is detachably connected to the locking unit 50.

[0058] The cross-section of the second connecting element 34 is circular.

[0059] The dimensions of the second connecting element 34 are matched with the dimensions of the first movable element 33. Generally, the radial dimension of the second connecting element 34 is smaller than the radial dimension of the first movable element 33, and the axial dimension (depth) of the second connecting element 34 is equal to the radial dimension of the first movable element 33.

[0060] In some of these embodiments, the second connecting element 34 is a threaded hole.

[0061] like Figure 9 As shown, the second tightening unit 40 includes a second adjusting element 41, a third support element 42, a second mounting element 43, and a second movable element 44. The second adjusting element 41 is slidably disposed at the second end of the fixing unit 20 and is used to move circumferentially along the fixing unit 20. The third support element 42 is disposed at the front end of the second adjusting element 41 and connected to the second adjusting element 41, and is used to move with the second adjusting element 41. The second mounting element 43 is disposed inside the third support element 42. The second movable element 44 is movably disposed inside the second mounting element 43 and is detachably connected to the locking unit 50.

[0062] Specifically, the second adjusting element 41 is slidably connected to the first adjusting element 22.

[0063] More specifically, the second adjusting element 41 is slidably connected to the first adjusting groove and the second adjusting groove, respectively.

[0064] The second adjusting element 41 has a convex cross-section. Specifically, the second adjusting element 41 includes a first adjusting block and a second adjusting block. The front end of the first adjusting block is provided with a third support element 42 and is slidably connected to the first adjusting groove; the second adjusting block is disposed at the rear end of the first adjusting block and is slidably connected to the second adjusting groove.

[0065] The dimensions of the first adjusting block are matched with the dimensions of the first adjusting element 22. Generally, the length of the first adjusting block is less than the length of the first adjusting groove, the thickness of the first adjusting block is equal to the depth of the first adjusting groove, and the height of the first adjusting block is equal to the height of the first adjusting groove.

[0066] The dimensions of the second adjusting block are matched with the dimensions of the first adjusting element 22. Generally, the length of the second adjusting block is less than the length of the second adjusting groove, the thickness of the second adjusting block is equal to the depth of the second adjusting groove, and the height of the second adjusting block is equal to the height of the second adjusting groove.

[0067] The dimensions of the second adjusting block are matched with those of the first adjusting block. Generally, the length of the second adjusting block is equal to the length of the first adjusting block, the thickness of the second adjusting block is greater than the thickness of the first adjusting block, and the height of the second adjusting block is greater than the height of the first adjusting block.

[0068] In some of these embodiments, the second adjustment element 41 is made of metal.

[0069] The third support element 42 has a U-shaped cross-section. Specifically, the third support element 42 includes a second vertical plate and two second horizontal plates. The second vertical plate is located at the front end of the first adjusting block and is connected to the first adjusting block; the two second horizontal plates are symmetrically located at the ends of the second vertical plate, and the bottom / top ends of the two second horizontal plates are respectively provided with second mounting elements 43.

[0070] The dimensions of the second vertical plate are matched with the dimensions of the second adjusting element 41. Generally, the radial dimension (length) of the second vertical plate is equal to the length of the first adjusting block, the thickness of the second vertical plate is less than the thickness of the first adjusting block, and the axial dimension (height) of the second vertical plate is equal to the axial dimension (height) of the first adjusting block.

[0071] The dimensions of the second horizontal board match the dimensions of the second vertical board. Generally, the length of the second horizontal board is equal to the length of the second vertical board, the width of the second horizontal board is greater than the width of the second vertical board, and the height of the second horizontal board is less than the height of the second vertical board.

[0072] In some embodiments, the third support element 42 is fixedly connected to the second adjustment element 41, including but not limited to welding.

[0073] In some of these embodiments, the third support element 42 is made of metal.

[0074] The cross-section of the second mounting element 43 is circular.

[0075] The dimensions of the second mounting element 43 are matched with the dimensions of the third support element 42. Generally, the radial dimension of the second mounting element 43 is smaller than the length and width of the second horizontal plate, and the axial dimension of the second mounting element 43 is larger than the height of the second horizontal plate.

[0076] In some of these embodiments, the second mounting element 43 is a second mounting hole.

[0077] The cross-section of the second active element 44 is circular.

[0078] The dimensions of the second movable element 44 are matched with the dimensions of the second mounting element 43. Generally, the radial dimension of the second movable element 44 is smaller than the radial dimension of the second mounting element 43, and the axial dimension of the second movable element 44 is equal to the axial dimension of the second mounting element 43.

[0079] In some of these embodiments, the second active element 44 is made of metal.

[0080] In some of these embodiments, the second movable element 44 is a second movable lever.

[0081] Furthermore, the second tightening unit 40 also includes a first through slot element 45. The first through slot element 45 is disposed through the second movable element 44 for the locking unit 50 to pass through.

[0082] The cross-section of the first through-slot element 45 is circular.

[0083] The dimensions of the first through-slot element 45 are matched with the dimensions of the second movable element 44. Generally, the radial dimension of the first through-slot element 45 is smaller than the radial dimension of the second movable element 44, and the axial dimension (depth) of the first through-slot element 45 is equal to the radial dimension of the second movable element 44.

[0084] In some of these embodiments, the first through-slot element 45 is a first through-hole.

[0085] like Figure 10As shown, the locking unit 50 includes a locking element 51 and a limiting element 52. The locking element 51 is detachably connected to the first tightening unit 30 and the second tightening unit 40, respectively, and is used to close the first end and the second end of the fixing unit 20 to fix the pipe or to unfold the first end and the second end of the fixing unit 20 to loosen the pipe. The limiting element 52 is disposed at the end of the locking element 51 and abuts against the second tightening unit 40 to prevent the locking element 51 from passing through the second tightening unit 40.

[0086] Specifically, the locking element 51 passes through the first through slot element 45 and is threadedly connected to the second connecting element 34; the limiting element 52 abuts against the second movable element 44.

[0087] The locking element 51 has a circular cross-section.

[0088] The dimensions of the locking element 51 are matched with the dimensions of the first through-slot element 45 (second connecting element 34). Generally, the radial dimension of the locking element 51 is equal to the radial dimension of the first through-slot element 45 (second connecting element 34), and the axial dimension of the locking element 51 is greater than the axial dimension (depth) of the first through-slot element 45 (second connecting element 34).

[0089] In some of these embodiments, the locking element 51 is made of metal.

[0090] In some of these embodiments, the locking element 51 is a locking bolt.

[0091] The cross-section of the limiting element 52 is circular.

[0092] The dimensions of the limiting element 52 are matched with the dimensions of the locking element 51. Generally, the radial dimension of the limiting element 52 is larger than the radial dimension of the locking element 51, and the axial dimension of the limiting element 52 is smaller than the axial dimension of the locking element 51.

[0093] The dimensions of the limiting element 52 are matched with the dimensions of the second movable element 44. Generally, the radial dimension of the limiting element 52 is equal to the radial dimension of the second movable element 44.

[0094] The dimensions of the limiting element 52 are matched with the dimensions of the third support element 42. Generally, the radial dimension of the limiting element 52 is not greater than the distance between the two second cross plates.

[0095] In some embodiments, the limiting element 52 is fixedly connected to the locking element 51, including but not limited to integral molding.

[0096] In some of these embodiments, the limiting element 52 is made of metal.

[0097] In some of these embodiments, the limiting element 52 is a limiting block.

[0098] Furthermore, the locking unit 50 also includes a second through slot element 53. The second through slot element 53 is disposed at the end of the limiting element 52 for inserting a hex wrench.

[0099] The cross-section of the second through-slot element 53 is a regular hexagon.

[0100] The dimensions of the second through-slot element 53 are matched with the dimensions of the limiting element 52. Generally, the radial dimension of the second through-slot element 53 is smaller than the radial dimension of the limiting element 52, and the axial dimension of the second through-slot element 53 is smaller than the axial dimension of the limiting element 52.

[0101] In some of these embodiments, the second through slot element 53 is a second through hole.

[0102] The method of using this utility model is as follows: (a) Installation work The fixing structure is placed at the designated position (exterior wall) via the first connecting element 12 and fixed by expansion bolts.

[0103] (ii) Pipeline installation Insert the pipe into the fixing element 21; The locking element 51 is threaded through the first through slot element 45 and connected to the second connecting element 34. Insert the hex wrench into the second through slot element 53 and turn the hex wrench so that it causes the locking element 51 to rotate along the circumference of the second connecting element 34 and move along the axial direction of the second connecting element 34 toward the second movable element 44. During the process, as the locking element 51 is gradually twisted, the limiting element 52 will abut against the second movable element 44, and through the second adjusting element 41, the second movable element 44 will move along the length direction of the first adjusting element 22 towards the first movable element 33 until it is tightened.

[0104] The advantage of this utility model is that the cooperation between the connecting unit, the fixing unit, the first tightening unit, the second tightening unit and the locking unit brings about the tightening effect of the fixing unit. The first tightening unit is fixed to one end of the fixing unit, and the second tightening unit can move along the circumference of the fixing unit. The two work together to drive the two ends of the fixing unit to close or open, so as to realize the flexible adjustment of the tightening range and adapt to the fixing of pipes of different diameters.

[0105] Example 2 This embodiment relates to the building of this utility model.

[0106] In some embodiments, a building includes a fixed structure as described in Embodiment 1. The fixed structure is connected to the main structure.

[0107] Specifically, the first connecting element 12 is connected to the main structure.

[0108] In some of these embodiments, the first connecting element 12 is fixedly connected to the main structure, including but not limited to a fixed connection with an expansion bolt.

[0109] In some of these embodiments, the main structure is an exterior wall.

[0110] The above description is only a preferred embodiment of the present utility model and does not limit the implementation method and protection scope of the present utility model. Those skilled in the art should realize that all solutions obtained by equivalent substitutions and obvious changes made based on the description and illustrations of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A fixing structure for a pipe, characterized by, include: Connection unit, used for connection with the main structure; A fixing unit is disposed on and connected to the connecting unit for fixing the pipe; A first tightening unit is disposed at the first end of the fixing unit and connected to the fixing unit; The second tightening unit is movably disposed at the second end of the fixing unit and is used to move along the circumference of the fixing unit; A locking unit is detachably connected to the first tightening unit and the second tightening unit, respectively, and is used to close the first end and the second end of the fixing unit to fix the pipe or to unfold the first end and the second end of the fixing unit to loosen the pipe.

2. The fixing structure according to claim 1, characterized in that, The connection unit includes: A first support element, wherein the front end of the first support element is provided with the fixing unit and is connected to the fixing unit; A first connecting element is disposed at the rear end of the first support element and connected to the first support element for connection with the main structure.

3. The fixing structure according to claim 1, characterized by The fixing unit includes: A fixing element is disposed at the front end of the connecting unit. The first end of the fixing element is provided with the first tightening unit, and the second end of the fixing element is provided with the second tightening unit. The fixing element is connected to the connecting unit and the first tightening unit respectively, and is used to fix the pipe under the action of the first tightening unit and the second tightening unit. A first adjusting element is disposed at the second end of the fixed element and is slidably connected to the second tightening unit, for the second tightening unit to move circumferentially along the first adjusting element.

4. The fixing structure according to claim 1, characterized in that, The first tightening unit includes: A second support element is disposed at the first end of the fixing unit and connected to the fixing unit; A first mounting element is disposed inside the second bracket element; The first movable element is movably disposed inside the first mounting element and is detachably connected to the locking unit.

5. The fixture of claim 4, wherein The first tightening unit further includes: A second connecting element passes through the first movable element and is detachably connected to the locking unit.

6. The fixture of claim 1, wherein The second tightening unit includes: The second adjusting element is slidably disposed at the second end of the fixed unit and is used to move along the circumference of the fixed unit; A third support element is disposed at the front end of the second adjusting element and connected to the second adjusting element, for moving with the second adjusting element; A second mounting element is disposed inside the third support element; The second movable element is movably disposed inside the second mounting element and is detachably connected to the locking unit.

7. The fixture of claim 6, wherein The second tightening unit further includes: A first through-slot element is disposed through the second movable element for the locking unit to pass through.

8. The fixture of claim 1, wherein The locking unit includes: A locking element is detachably connected to the first tightening unit and the second tightening unit, respectively, for tightening the first end and the second end of the fixing unit to fix the pipe or for unfolding the first end and the second end of the fixing unit to loosen the pipe. A limiting element is disposed at the end of the locking element and abuts against the second tightening unit to prevent the locking element from passing through the second tightening unit.

9. The fixture of claim 8, wherein The locking unit further includes: The second through-slot element is disposed at the end of the limiting element and is used for inserting a hex wrench.

10. A building, characterized in that include: The fixing structure as described in any one of claims 1 to 9 is connected to the main structure.