Pipeline fixing structure
By setting highly overlapping wire and pipe grooves on the base and using a separating protrusion and clamping structure, the problems of large pipe fixing structure height and complex operation in the existing technology are solved, achieving space saving and efficient installation.
Patent Information
- Application Number
- CN202422957830.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Existing pipe fixing structures have problems during installation and maintenance, such as large overall height, large space occupation, and complex installation of pipe fittings and lines, making them difficult to carry out independently.
Design a pipe fixing structure in which both wire grooves and pipe grooves are set on the base and overlap in the height direction. The pipe groove is divided into multiple sub-pipe grooves by the dividing protrusions, and multiple wire grooves are set on the side of the base. The fixing is reinforced by clamping ribs and clamping protrusions. The cover can be opened and closed by the pivot and buckle to meet the independent installation requirements.
It effectively reduces the overall height of the structure, reduces the space required for installation and maintenance, improves the efficiency of independent installation of pipes and lines, and simplifies the operation process.
Smart Images

Figure CN223527720U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of pipe, more specifically, relate to a pipeline fixing structure. BACKGROUND
[0002] When installing multi-split air conditioner on engineering, pipeline fixing structure (also known as pipe code structure) is usually used to fix the connecting pipe and wire of outdoor unit and indoor unit. The pipeline fixing structure in prior art mainly includes seat body and cover body, and there are various specific structure types. For example, the patent with publication number CN220507172U discloses a sliding type integrated pipe code convenient to install, which sets wire slot on the top of seat body, and multiple pipe slots are arranged in the seat body. This design increases the overall structure height, resulting in large space required for air conditioning unit ceiling installation and maintenance, and occupies indoor space. For example, the patent with publication number CN219655437U discloses a wire stable type air conditioner heat preservation pipeline installation fixing structure, which sets wire slot on the cover body, and the opening end of wire slot is provided with baffle, and multiple pipe slots are arranged in the seat body. This design needs to remove wire before adjusting pipe fitting in pipe slot, which increases operation difficulty and is not convenient for after-sales installation.
[0003] Therefore, how to provide a pipeline fixing structure with small height size and convenient for installation of pipe fitting and wire is a technical problem to be solved in the industry. CONTENT OF UTILITY MODEL
[0004] The utility model aims at providing a pipeline fixing structure, which can effectively reduce the overall height of the structure, and enable pipe fitting and wire to be installed independently without interference.
[0005] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of:
[0006] The utility model provides a pipeline fixing structure, which comprises seat body and cover body, the seat body is provided with pipe slot capable of penetrating multiple pipe fittings, the cover body is installed at the bottom of the seat body and used for closing the pipe slot, the side edge of the seat body is provided with multiple wire slots used for wire clamping, and the height of multiple wire slots coincides with that of the pipe slot.
[0007] Further, a separation protrusion is arranged on the groove wall of the pipe slot to separate the pipe slot into multiple communicating sub-pipe slots, and the cover body can close one of the sub-pipe slots.
[0008] Further, the pipe slot has first sub-pipe slot and second sub-pipe slot arranged in sequence along the height direction, and the groove width of the first sub-pipe slot is smaller than that of the second sub-pipe slot.
[0009] Further, multiple wire slots are arranged in sequence along the height direction and located at the right side of the first sub-pipe slot.
[0010] Further, a plurality of clamping ribs are arranged on the groove wall of the pipe groove.
[0011] Further, a plurality of clamping ribs are arranged on the groove wall of the pipe groove.
[0012] Further, the opening of the wire groove faces obliquely upwards.
[0013] Further, a rotating shaft and a clamping groove are arranged on the cover body, and a rotating shaft clamping groove for fixing the rotating shaft and a clamping buckle for cooperating with the clamping groove are arranged on the seat body.
[0014] Further, the cover body is curved towards the upper end surface of the pipe groove, and two clamping ribs are arranged on the upper end surface.
[0015] Further, two screw clamping buckles are arranged on the seat body opposite to the wire groove.
[0016] The pipeline fixing structure has at least the following beneficial effects: the wire groove and the pipe groove are arranged on the base, the height of the wire groove and the pipe groove coincide in the height direction, the overall height of the pipeline fixing structure can be effectively reduced, the disassembly and assembly of the pipe in the pipe groove do not affect the wire passing through the wire groove, the pipe and the wire can be independently installed and do not interfere with each other, and the installation efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0018] Figure 1 The figure is a seat body structure schematic diagram in the embodiment one of the present application.
[0019] Figure 2 The figure is a cover body structure schematic diagram in the embodiment one and two of the present application.
[0020] Figure 3 The figure is a pipeline fixing structure schematic diagram when the cover body is opened in the embodiment one of the present application.
[0021] Figure 4 The figure is a pipeline fixing structure local enlarged schematic diagram when the cover body is opened in the embodiment one of the present application.
[0022] Figure 5 The figure is a pipeline fixing structure schematic diagram when the cover body is closed in the embodiment one of the present application.
[0023] Figure 6 Partially enlarged schematic view of the pipeline fixing structure when the cover body is closed in the embodiment one of the utility model;
[0024] Figure 7 Schematic view of the seat body structure in the embodiment two of the utility model;
[0025] Figure 8 Schematic view of the pipeline fixing structure when the cover body is opened in the embodiment two of the utility model;
[0026] Figure 9 Schematic view of the pipeline fixing structure when the cover body is closed in the embodiment two of the utility model;
[0027] In the drawings, the main marks are as follows:
[0028] 1, seat body; 2, cover body;
[0029] 11, pipe groove; 12, wire groove; 13, clamping rib; 14, clamping protrusion; 15, rotating shaft clamping groove; 16, buckle; 17, weight reduction hole; 18, screw clamping buckle; 21, rotating shaft; 22, clamping groove;
[0030] 110, separation protrusion; 111, first sub-pipe groove; 112, second sub-pipe groove. DETAILED DESCRIPTION
[0031] In order to make the technical problems, technical schemes and beneficial effects to be solved by the utility model more clearly understood, the utility model will be further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the utility model, and are not used to limit the utility model.
[0032] When installing a multi-connected machine in engineering, a pipeline fixing structure is usually used to fix the connecting pipes and wires of the outdoor and indoor machines. The pipeline fixing structures on the market include a seat body and a cover body, and most of them usually set the wire groove on the top of the seat body. This design increases the overall structure height, resulting in a large space required for the installation and maintenance of the machine group suspended ceiling, which occupies the indoor space. A few of them set the wire groove on the cover body, and the wires need to be removed first when disassembling and adjusting the pipe fittings, which increases the operation difficulty and is not convenient for after-sales installation.
[0033] Based on this, the pipeline fixing structure provided by the utility model can effectively reduce the overall height of the structure, reduce the space required for installation and maintenance, improve the compatibility; at the same time, the pipe fittings and wires can be independently installed without interfering with each other, improving the installation efficiency.
[0034] Embodiment one:
[0035] Please see Figure 1 、 Figure 2The pipeline fixing structure comprises a seat body 1 and a cover body 2. The seat body 1 is internally provided with a plurality of pipe grooves 11 through which a plurality of pipe fittings can pass. The cover body 2 is installed at the bottom of the seat body 1 to close the pipe grooves 11. The side edge of the seat body 1 is provided with a plurality of wire grooves 12 for clamping wires. The plurality of wire grooves 12 are in height coincidence with the pipe grooves 11.
[0036] The advantage of this design is that the wire grooves 12 and the pipe grooves 11 are both arranged on the seat body 1, and the wire grooves 12 are in height coincidence with the pipe grooves 11 in the height direction. This can effectively reduce the overall height of the pipeline fixing structure, and the disassembly and assembly of the pipe fittings in the pipe grooves 11 do not affect the wire passing in the wire grooves 12. The pipe fittings and the wires can be independently installed without interference, thereby improving the installation efficiency.
[0037] Further, a separation protrusion 110 is arranged on the groove wall of the pipe groove 11 to separate the pipe groove 11 into a plurality of connected sub-pipe grooves 11. The cover body 2 can close one of the sub-pipe grooves 11.
[0038] The advantage of this design is that, compared with the prior art in which a plurality of spaced pipe grooves 11 are arranged, the present embodiment divides a large-size pipe groove 11 into a plurality of connected small-size sub-pipe grooves 11. This can reduce the spacing between the sub-pipe grooves 11, thereby facilitating the reduction of the overall height of the structure.
[0039] Further, the pipe groove 11 has a first sub-pipe groove 111 and a second sub-pipe groove 112 arranged in sequence in the height direction. The groove width of the first sub-pipe groove 111 is smaller than that of the second sub-pipe groove 112.
[0040] It should be understood that the groove width of each sub-pipe groove 11 corresponds to the pipe diameter of the pipe fitting. In actual application, there are various specifications of pipe fittings. For example, the pipe diameter of the pipe fitting can be 40 mm or 50 mm, etc. Moreover, the outside of the pipe fitting is wrapped with thermal insulation cotton. The groove width of each sub-pipe groove 11 can be slightly smaller than the pipe diameter of the pipe fitting wrapped with the thermal insulation cotton. Since the thermal insulation cotton has a certain elasticity, the pipe fitting can be clamped into the pipe groove 11, and the pipe fitting can be clamped tightly after installation and will not fall off.
[0041] The advantage of this design is that the present embodiment can fix two specifications of pipe fittings in one large-size pipe groove 11, thereby meeting the installation requirements of pipe fittings of different specifications and controlling the overall height of the pipeline fixing structure.
[0042] Further, the plurality of wire grooves 12 are arranged in sequence in the height direction and located at the right side of the first sub-pipe groove 111.
[0043] The advantage of this design is that the plurality of wire grooves 12 are arranged on the seat body 1 and located at the right side of the first sub-pipe groove 111 with a smaller groove width. This can reduce the overall height of the structure without excessively increasing the overall width of the structure, thereby reducing the overall volume of the structure.
[0044] Further, the number of the wire slots 12 is three, and the slot widths of the three wire slots 12 are different.
[0045] It should be understood that the slot width of each wire slot 12 corresponds to the wire diameter. In practical applications, there are various specifications of wires. For example, the wire diameter can be in the range of 10mm-15mm. The slot width of each wire slot 12 can be slightly smaller than the wire diameter, so that the wire can be clamped into the wire slot 12 and not easily fall out after being installed. The wire can be a power line, a communication line, etc. used for fixing the unit.
[0046] The advantage of this design is that the present embodiment can install wires of three different specifications on the pipe fixing structure, meet the installation requirements of wires of different specifications, and control the overall height of the pipe fixing structure.
[0047] Further, a plurality of clamping ribs 13 are arranged on the slot wall of the pipe slot 11.
[0048] The number of clamping ribs 13 in the pipe slot 11 is not limited in the present embodiment, i.e., it can be flexibly set according to actual application requirements.
[0049] The advantage of this design is that the present embodiment increases the clamping force on the pipe by the clamping ribs 13 in the pipe slot 11, so that the pipe is less likely to fall off.
[0050] Further, a plurality of clamping protrusions 14 are arranged on the slot wall of the wire slot 12.
[0051] The number of clamping protrusions 14 in each wire slot 12 is not limited in the present embodiment, i.e., it can be flexibly set according to actual application requirements.
[0052] The advantage of this design is that the present embodiment increases the clamping force on the wire by the clamping protrusions 14 in the wire slot 12, so that the wire is less likely to fall off.
[0053] Further, the opening of the wire slot 12 is inclined upward.
[0054] The inclination angle of the opening of the wire slot 12 is not limited in the present embodiment, and in practical applications, the opening of the wire slot 12 can meet the requirements of wire insertion and clamping at the same time.
[0055] The advantage of this design is that the present embodiment further arranges the opening of the wire slot 12 to be inclined upward, more reliably clamps the wire so that it cannot fall out, and does not need to additionally increase the baffle.
[0056] Further, the cover body 2 is provided with a rotating shaft 21 and a clamping groove 22, and the seat body 1 is provided with a rotating shaft clamping groove 15 for fixing the rotating shaft 21 and a clamping buckle 16 for cooperating with the clamping groove 22.
[0057] AsFigures 1 to 6 As shown, in order to realize that the cover 2 can be opened and closed on the seat body 1, the embodiment adopts that the rotating shaft 21 on the cover 2 is placed in the rotating shaft clamping groove 15 on the lower end of the seat body 1, so that the cover 2 as a whole can rotate around the rotating shaft 21; when it is needed to cover the cover 2, the buckle 16 on the cover 2 is tightly clamped with the clamping groove 22 on the lower end of the seat body 1.
[0058] Of course, in other embodiments, the cover 2 can also be detachably arranged on the seat body 1, for example, the cover is fixed on the seat body 1 by screws and the like.
[0059] Further, the upper end face of the cover 2 towards the pipe groove 11 is provided with an arc, and two clamping ribs 13 are arranged on the upper end face.
[0060] The advantage of such design is that the shape of the upper end face of the cover 2 can better match the shape of the pipe groove 11 in the seat body 1, and the pipe is clamped in the pipe groove 11 by the cooperation of the cover 2 and the seat body 1.
[0061] Further, a plurality of lightening holes 17 are arranged above the pipe groove 11 in the seat body 1 to reduce the overall weight of the seat body 1.
[0062] The number and shape of the lightening holes 17 are not limited in the embodiment, that is, they can be flexibly set according to actual application requirements. For example, the number of the lightening holes 17 is three, and the shape of the lightening holes 17 includes a circular hole, a rectangular hole, a trapezoidal hole or a special-shaped hole. Of course, the lightening holes 17 can also have other reserved functions.
[0063] Embodiment two:
[0064] Please see Figure 2 , Figures 7 to 9 The pipeline fixing structure provided in the embodiment includes a seat body 1 and a cover 2.
[0065] For the convenience of understanding, first introduce the difference between the embodiment and the above-mentioned embodiment one, that is, in the embodiment, two screw clamping buckles 18 are arranged on the side of the seat body 1 opposite to the wire groove 12 (i.e. the left side in the figure), and the two screw clamping buckles 18 are used to fix a screw.
[0066] The advantage of such design is that in the embodiment, by arranging two screw clamping buckles 16 on the side of the seat body 1, the screw can be clamped in the two screw clamping buckles 16, so that the screw and the seat body 1 are fixed by clamping cooperation.
[0067] Meanwhile, the seat body 1 is provided with a pipe groove 11, which is divided into a first sub-pipe groove 111 and a second sub-pipe groove 112 by a partition protrusion 110, the first sub-pipe groove 111 is used for passing a pipe with a diameter of 40 mm, and the second sub-pipe groove 112 is used for passing a pipe with a diameter of 50 mm; three lightening holes 17 are arranged above the pipe groove 11 in the seat body 1; and three wire grooves 12 for clamping wires are arranged on the right side of the seat body 1. A plurality of clamping ribs 13 are arranged on the groove wall of the pipe groove 11 in an interval mode; a plurality of clamping protrusions 14 are arranged on the groove wall of each wire groove 12 in an interval mode; and the opening of each wire groove 12 is directed obliquely upward.
[0068] The cover body 2 is arranged on the bottom of the seat body 1 and used for closing the second sub-pipe groove 112; the cover body 2 is provided with a rotating shaft 21 and a clamping groove 22; the seat body 1 is provided with a rotating shaft clamping groove 15 for fixing the rotating shaft 21 and a clamping buckle 16 for cooperating with the clamping groove 22, so that the cover body 2 is designed to be openable and closable, and the actual engineering installation requirements are met. The upper end surface of the cover body 2 directed towards the pipe groove 11 is provided with an arc, and the upper end surface is provided with two clamping ribs 13 arranged in an interval mode. The lower end surface of the cover body 2 directed away from the pipe groove 11 is a flat surface, which is convenient for printing and silk-screen processing of a large logo on the surface, and the appearance of the cover body 2 is neat, so that the overall installation effect can be improved.
[0069] The advantages of the design are that, in the embodiment, the wire groove 12 and the pipe groove 11 are arranged on the seat body 1, and the height of the wire groove 12 coincides with the height of the pipe groove 11 in the height direction, so that the overall height of the pipe fixing structure can be effectively reduced, the pipe in the pipe groove 11 can be disassembled without affecting the wire passing through the wire groove 12, the pipe and the wire can be independently installed and do not interfere with each other, and the installation efficiency is improved. In addition, in the embodiment, a plurality of small-size sub-pipe grooves 11 are divided in a large-size pipe groove 11, so that the distance between the sub-pipe grooves 11 can be reduced, thereby reducing the overall height of the structure. In addition, in the embodiment, a plurality of wire grooves 12 are arranged on the seat body 1 and located on the right side of the first sub-pipe groove 111 with a smaller groove width, so that the overall height of the structure is reduced without excessively increasing the overall width of the structure, so that the overall volume of the structure is reduced. In addition, in the embodiment, the openings of the three wire grooves 12 are directed obliquely upward, so that a baffle for shielding the openings of the wire grooves 12 is not additionally required to prevent the wire from falling out of the wire groove 12, and the three wire grooves 12 can be compatible with different wire specifications, thereby improving the installation efficiency.
[0070] The above merely describes the preferred embodiments of the utility model and is not used to limit the utility model, and any modification, equivalent replacement and improvement made within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A pipe fixing structure comprising a base and a cover, the base being provided with pipe grooves through which a plurality of pipes pass, characterized in that, The cover is installed on the bottom of the base body for closing the pipe groove, and the side of the base body is provided with a plurality of wire grooves for clamping wires, and the plurality of wire grooves are coincident with the height of the pipe groove.
2. The pipe fixing structure according to Claim 1, wherein The pipe groove is provided with a separation protrusion on the groove wall, so that the pipe groove is separated into a plurality of communicated sub-pipe grooves, and the cover can close one of the sub-pipe grooves.
3. The pipe fixing structure according to claim 2, wherein The pipe groove has a first sub-pipe groove and a second sub-pipe groove arranged in sequence along the height direction, and the groove width of the first sub-pipe groove is smaller than that of the second sub-pipe groove.
4. The pipe fixing structure according to Claim 3, wherein The plurality of wire grooves are arranged in sequence along the height direction and located on the right side of the first sub-pipe groove.
5. The pipe fixing structure according to Claim 1, wherein The groove wall of the pipe groove is provided with a plurality of clamping rib strips arranged at intervals.
6. The pipe fixing structure according to Claim 1, wherein The groove wall of the wire groove is provided with a plurality of clamping protrusions arranged at intervals.
7. The pipe fixing structure according to Claim 1, wherein The opening of the wire groove faces obliquely upward.
8. The pipe fixing structure according to Claim 1, wherein The cover is provided with a rotating shaft and a clamping groove, the base body is provided with a rotating shaft clamping groove for fixing the rotating shaft and a clamping buckle for cooperating with the clamping groove.
9. The pipe fixing structure according to Claim 1, wherein The cover has an arc towards the upper end surface of the pipe groove, and the upper end surface is provided with two clamping rib strips arranged at intervals.
10. The pipe fixing structure according to Claim 1, wherein The side of the base body opposite to the wire groove is provided with two screw clamping buckles arranged at intervals.
Citation Information
Patent Citations
Stable-line-pipe type air conditioner heat preservation pipeline mounting and fixing structure
CN219655437U
Sliding type integrated pipe code convenient to install
CN220507172U