Cable installation structure for greenhouse installation

By employing a cable installation structure in the greenhouse using components such as branch pipes, side brackets, locking pipe holders, and threaded pipes, and utilizing J-shaped main boards and supporting plates to support and tighten the cables, the variability and heat dissipation issues of greenhouse cable installation are resolved, achieving stable and effective cable fixing.

CN223912198UActive Publication Date: 2026-02-13TIANJIN DONGHENG XIANGSHENG CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202520125489.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-02-13
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

In existing sheds, cable ties or ropes are commonly used to secure cables, which can easily compress the cables. Furthermore, the number of supports is fixed, which cannot meet diverse needs, and the heat dissipation of the cables is poor.

Method used

The cable installation structure includes branch pipes, side brackets, locking pipe holders, vertical connecting plates, and threaded pipes. Cables are supported by J-shaped main boards and J-shaped auxiliary boards and clamped by rear pressure frames. The locking pipe holders are clamped onto the shed frame poles, enabling flexible installation, reducing cable pressure, and ensuring heat dissipation.

Benefits of technology

It enables versatile cable installation, reduces cable stress, improves heat dissipation, and meets the needs of flexible installation and protection for greenhouse cables.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cable installation structure for greenhouse installation, which comprises a branch pipe, a side connecting frame, a lock pipe clamping seat A, a lock pipe clamping seat B, a vertical connecting plate and a threaded pipe, vertical seat plates of the lock pipe clamping seat A and the lock pipe clamping seat B are welded outside a pipe body of the branch pipe through the side connecting frame, and seat penetrating holes are formed in the surfaces of the vertical seat plates, far away from the side connecting frame, of the lock pipe clamping seat A and the lock pipe clamping seat B in a penetrating manner; by arranging the cable mounting structure for mounting the greenhouse, the cable mounting structure can be clamped in the frame rod of the greenhouse, then the J-shaped main board and the J-shaped auxiliary board can be mounted one by one at the threaded pipe of the cable mounting structure to support and connect the cable, and the rear pressing frame is arranged at the cable mounting structure to press and mount the supported and connected line. A supporting and connecting cable structure composed of the J-shaped matching plate, the matching connecting block and the matching pipe can be installed backwards according to the number of the cables, and the number-variable installation requirements of the cables in the greenhouse are met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a shed cable installation technical field, especially a cable installation structure for shed installation. BACKGROUND

[0002] A shed is an agricultural facility, mainly used for protecting crops from the influence of the natural environment, providing a suitable growth environment for plants through the design of cover and structure. The design and construction of the shed aim to solve some problems in the natural environment, such as temperature, humidity, light, etc., to ensure that crops can grow all year round and improve yield and quality. Shed technology includes four seasons of shed and tent house, etc. Each has different characteristics and purposes, and some power equipment is used in the shed, and the cable is usually installed in the shed to connect the power.

[0003] At present, when the shed is installed, the cable is usually bound to the metal skeleton in the shed with a random use of a cable tie or a rope. The fixed cable is easily damaged by a large amount of pressure, although some sheds choose to install the cable with a support, but the number of supports for the cable needs to be pre-customized, which cannot meet the variable number of cable installation requirements of the shed. Therefore, we propose a cable installation structure for shed installation. UTILITY MODEL CONTENT

[0004] The main purpose of the utility model is to provide a cable installation structure for shed installation, which can be clamped in the frame rod of the shed for installation. The threaded pipe of the cable installation structure can install J-shaped main plates and J-shaped plates one by one to support the cable, and the rear pressure frame of the cable installation structure can press the supported cable, and the supported cable structure composed of J-shaped plates, connecting blocks and pipes can be installed by increasing the number of cables backward, which meets the variable number of cable installation requirements of the shed, and the shed cable installation is simply supported and clamped in the cable installation structure, so that the cable suffers less pressure. At the same time, the J-shaped main plate and the J-shaped plate used for cable support have a bottom opening, which ensures the heat dissipation effect of the cable after installation in the J-shaped main plate and the J-shaped plate, which can effectively solve the problems in the background technology.

[0005] To achieve the above purpose, the utility model adopts the technical scheme:

[0006] The utility model provides a kind of cable installation structure for shed installation, including branch pipe, side link frame, lock pipe card seat A, lock pipe card seat B, vertical connecting plate and threaded pipe, the pipe body of the branch pipe is welded with the vertical seat plate of lock pipe card seat A and lock pipe card seat B outside side link frame, and the vertical seat plate surface of lock pipe card seat A and lock pipe card seat B away from side link frame is penetrated and is equipped with through seat hole, the threaded pipe is welded with the threaded pipe on the pipe orifice of the end of branch pipe away from side link frame, and threaded pipe surface is equipped with main pipe and pipe in proper order and is sleeved, the threaded pipe at the rear of pipe is screwed with tail lock pipe, the main pipe and pipe are welded with main connecting block and matching connecting block below respectively, and the lower surface of main connecting block and matching connecting block is welded with J-shaped main plate and J-shaped matching plate respectively, the side surface of main connecting block below main pipe is equipped with main fixed groove, the side surface of matching connecting block below pipe is equipped with matching fixed groove, and the other end of matching connecting block away from matching fixed groove is fixed with fixed plate for being clamped into main fixed groove, the vertical plate surface of vertical connecting plate, J-shaped main plate and J-shaped matching plate is welded with rear pressing frame.

[0007] Further, the frame body of the rear pressing frame is recessed to form an arc-shaped frame surface, and the symmetrical frame plates of the rear pressing frame are welded outside the vertical plate surface of the vertical connecting plate, the J-shaped main plate and the J-shaped matching plate.

[0008] By adopting the above technical scheme, the arc-shaped frame surface of the rear pressing frame can be pressed into the J-shaped main plate and the J-shaped matching plate to compress the shed cable.

[0009] Further, the diameters of the lumen of the main pipe and the pipe are greater than the diameter of the pipe body of the threaded pipe.

[0010] By adopting the above technical scheme, the main pipe and the pipe can be slidably sleeved at the threaded pipe.

[0011] Further, the lumen of the tail lock pipe is provided with a threaded hole cavity, and the threaded pipe is screwed at the threaded hole cavity of the tail lock pipe.

[0012] By adopting the above technical scheme, the tail lock pipe is screwed and installed at the threaded pipe through the threaded hole cavity.

[0013] Further, the inner convex ribs are protruded at the inner arc seat surface of the lock pipe card seat A and the lock pipe card seat B.

[0014] By adopting the above technical scheme, the lock pipe card seat A and the lock pipe card seat B can be sleeved at the frame rod of the shed through the inner convex ribs, and then the through seat hole of the lock pipe card seat A and the lock pipe card seat B can pass through the bolt and be screwed with the nut, so that the lock pipe card seat A and the lock pipe card seat B can be locked at the frame rod of the shed.

[0015] Further, two groups of side link frames are symmetrically welded between the vertical seat plates of the lock pipe card seat A and the lock pipe card seat B and the branch pipe.

[0016] By adopting the above technical scheme, the branch pipe firmly connects the lock pipe card seat A and the lock pipe card seat B through more side link frames.

[0017] Compared with the prior art, the utility model has the beneficial effects that:

[0018] The utility model discloses a cable mounting structure for shed installation, which can be installed in the frame rod of the shed, and then J-shaped main plates and J-shaped matching plates can be installed one by one at the threaded pipe of the cable mounting structure to support and connect the cables, and the rear pressing frame at the cable mounting structure can press and install the supported cables, and the supported cable structure composed of the J-shaped matching plates, matching blocks and pipes can be installed continuously backward according to the number of cables, meeting the variable installation requirements of the number of cables in the shed.

[0019] And the cables installed in the cable mounting structure are simply supported and pressed, so that the cables suffer less pressure, and the J-shaped main plates and J-shaped matching plates for supporting the cables have bottom openings, ensuring the heat dissipation effect of the cables after being installed in the J-shaped main plates and J-shaped matching plates. BRIEF DESCRIPTION OF DRAWINGS

[0020] Fig. 1 It is a whole structure schematic view of the utility model's cable mounting structure for shed installation.

[0021] Fig. 2 It is an explosion view of the utility model's cable mounting structure for shed installation.

[0022] In the drawing: 1, branch pipe; 2, side connecting frame; 3, lock pipe clamping seat A; 4, lock pipe clamping seat B; 5, through seat hole; 6, inner convex rib; 7, vertical connecting plate; 8, threaded pipe; 9, main pipe; 10, matching pipe; 11, main connecting block; 12, matching connecting block; 13, J-shaped main plate; 14, J-shaped matching plate; 15, main fixed groove; 16, fixed plate; 17, matching fixed groove; 18, tail lock pipe; 19, rear pressing frame. DETAILED DESCRIPTION

[0023] In order to make the technical means, creative features, purposes and effects of the utility model easy to understand, the utility model is further described below in combination with specific embodiments.

[0024] For example, Figs. 1-2As shown, a kind of shed installation cable installation structure, including branch pipe 1, side connection frame 2, lock pipe card seat A 3, lock pipe card seat B 4, vertical connecting plate 7 and threaded pipe 8, the pipe body of the branch pipe 1 is welded with the vertical seat plate of lock pipe card seat A 3 and lock pipe card seat B 4 outside side connection frame 2, and the vertical seat plate surface of lock pipe card seat A 3 and lock pipe card seat B 4 away from side connection frame 2 is penetrated and is set through seat hole 5, the end of the branch pipe 1 away from side connection frame 2 is welded with threaded pipe 8 at the pipe orifice, and threaded pipe 8 surface is successively sleeved with main pipe 9 and pipe 10, the threaded pipe 8 at the rear of pipe 10 is screwed with tail lock pipe 18, the main pipe 9 and pipe 10 below are welded with main connecting block 11 and connecting block 12 respectively, and the lower surface of main connecting block 11 and connecting block 12 is welded with J-shaped main plate 13 and J-shaped plate 14 respectively, the side surface of main connecting block 11 below main pipe 9 is set with main fixed groove 15, the side surface of connecting block 12 below pipe 10 is set with fixed groove 17, and the other end of connecting block 12 away from fixed groove 17 is fixed with fixed plate 16 for clamping into main fixed groove 15, the vertical plate surface of vertical connecting plate 7, J-shaped main plate 13 and J-shaped plate 14 is welded with rear pressing frame 19.

[0025] Wherein, the frame body of rear pressing frame 19 is recessed and set with arc-shaped frame surface outside, and the symmetrical frame plate of rear pressing frame 19 is welded outside the vertical plate surface of vertical connecting plate 7, J-shaped main plate 13 and J-shaped plate 14;

[0026] By adopting the above technical scheme, the arc-shaped frame surface of rear pressing frame 19 can be pressed into J-shaped main plate 13 and J-shaped plate 14 to compress the shed cable.

[0027] Wherein, the pipe cavity diameter of main pipe 9 and pipe 10 is greater than the pipe body diameter of threaded pipe 8;

[0028] By adopting the above technical scheme, main pipe 9 and pipe 10 can be sleeved at threaded pipe 8.

[0029] Wherein, the threaded hole cavity is arranged in the pipe cavity of tail lock pipe 18, and threaded pipe 8 is screwed at the threaded hole cavity of tail lock pipe 18;

[0030] By adopting the above technical scheme, tail lock pipe 18 is screwed and installed at threaded pipe 8 by threaded hole cavity.

[0031] Wherein, the inner convex rib 6 is protruded at the inner arc seat surface of lock pipe card seat A 3 and lock pipe card seat B 4;

[0032] By adopting the above technical scheme, lock pipe card seat A 3 and lock pipe card seat B 4 can be sleeved at the frame rod of shed by inner convex rib 6, then the through seat hole 5 of lock pipe card seat A 3 and lock pipe card seat B 4 can pass through bolt and screw nut, so that lock pipe card seat A 3 and lock pipe card seat B 4 can be locked at the frame rod of shed.

[0033] The two groups of the side connecting frames 2 are symmetrically welded between the vertical seat plates of the lock pipe clamping seat A3 and the lock pipe clamping seat B4 and the branch pipe 1.

[0034] By adopting the technical scheme, the branch pipe 1 is firmly connected with the lock pipe clamping seat A3 and the lock pipe clamping seat B4 by means of more side connecting frames 2.

[0035] It should be noted that the utility model is a kind of cable installation structure for shed installation, when installing cable of shed, the lock pipe clamping seat A3 and the lock pipe clamping seat B4 connected by side connecting frame 2 of branch pipe 1 can be clamped at the frame rod of shed, then the through seat hole 5 of lock pipe clamping seat A3 and lock pipe clamping seat B4 can pass through bolt and be screwed with nut, so that lock pipe clamping seat A3 and lock pipe clamping seat B4 can be locked at the frame rod of shed, according to the number of required cable of shed, select a group of main connecting block 11 with J-shaped main plate 13 and several groups of matching connecting block 12 with J-shaped matching plate 14, then J-shaped main plate 13 and J-shaped matching plate 14 can be placed into cable, then the fixed plate 16 of matching connecting block 12 can be inserted into the main fixed groove 15 of main connecting block 11, and the fixed plate 16 of subsequent matching connecting block 12 can be inserted into the matching fixed groove 17 of matching connecting block 12, so that main connecting block 11 and matching connecting block 12 are assembled, and the rear pressure frame 19 behind J-shaped main plate 13 can be pressed into J-shaped matching plate 14 to press the cable, and J-shaped matching plate 14 can press the cable in subsequent J-shaped matching plate 14, then main connecting block 11 and matching connecting block 12 have main pipe 9 and matching pipe 10 respectively on the top, which are sleeved on the surface of threaded pipe 8, tail lock pipe 18 is screwed on threaded pipe 8, so that main pipe 9 and matching pipe 10 are pressed towards vertical connecting plate 7, so that rear pressure frame 19 at vertical connecting plate 7 is pressed into J-shaped main plate 13 to press the cable, at this time, the installation of cable of shed is completed, when disassembling the cable, tail lock pipe 18 is rotated away from threaded pipe 8, then main pipe 9 and matching pipe 10 are sequentially removed from threaded pipe 8, and main connecting block 11 and matching connecting block 12 are disassembled, so that the cable can be removed from J-shaped main plate 13 and J-shaped matching plate 14.

[0036] It should be noted that the utility model is a kind of cable installation structure for shed installation, the components in the utility model are components known to those skilled in the art, and their structure and principle can be known by technical personnel in the art through technical manual or through conventional experimental method.

[0037] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above. Those skilled in the art should understand that the utility model is not limited to the above examples, and the above examples and descriptions in the specification are only to illustrate the principle of the utility model, and various changes and improvements can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the claimed utility model. The scope of protection of the utility model is defined by the appended claims and their equivalents.

Claims

1. A cable mounting structure for a greenhouse installation, characterized by: The system includes a branch pipe (1), a side frame (2), a locking pipe seat A (3), a locking pipe seat B (4), a vertical connecting plate (7), and a threaded pipe (8). The side frame (2) is used to weld the vertical seat plates of the locking pipe seat A (3) and the locking pipe seat B (4) to the outside of the branch pipe (1). The locking pipe seat A (3) and the locking pipe seat B (4) have through holes (5) on the surface of the vertical seat plate away from the side frame (2). The threaded pipe (8) is welded to the vertical connecting plate (7) at the end of the branch pipe (1) away from the side frame (2). The surface of the threaded pipe (8) is fitted with a main pipe (9) and a piping (10) in sequence. A tail locking pipe (18) is screwed onto the threaded pipe (8) behind the piping (10). The main pipe (9) and the piping (10) are respectively welded with a main connecting block (11) and a connecting block (12), and the lower surfaces of the main connecting block (11) and the connecting block (12) are respectively welded with a J-shaped main plate (13) and a J-shaped matching plate (14). The main connecting block (11) below the main pipe (9) has a main fixed groove (15) on its side, and the connecting block (12) below the piping (10) has a matching groove (17) on its side. The other end of the connecting block (12) away from the matching groove (17) is fixed with a fixed plate (16) for inserting into the main fixed groove (15). The vertical plate surfaces of the vertical connecting plate (7), the J-shaped main plate (13) and the J-shaped matching plate (14) are welded with a rear pressure frame (19).

2. The cable mounting structure for a greenhouse installation according to claim 1, characterized by: The rear pressure frame (19) has an arc-shaped frame surface recessed outside the frame body, and the symmetrical frame plates of the rear pressure frame (19) are welded to the outside of the vertical plate surface of the vertical connecting plate (7), the J-shaped main plate (13) and the J-shaped auxiliary plate (14).

3. The cable mounting structure for a greenhouse installation according to claim 1, characterized by: The diameter of the main pipe (9) and the piping (10) is greater than the diameter of the threaded pipe (8).

4. The cable mounting structure for a greenhouse installation according to claim 1, characterized by: The tail lock tube (18) has a threaded hole cavity inside its tube cavity, and a threaded tube (8) is screwed into the threaded hole cavity of the tail lock tube (18).

5. The cable mounting structure for a greenhouse installation according to claim 1, characterized by: The inner arc surface of the locking tube holder A (3) and the locking tube holder B (4) has an inner convex rib (6).

6. The cable mounting structure for a greenhouse installation according to claim 1, characterized by: The vertical support plate of the locking tube holder A (3) and the locking tube holder B (4) are symmetrically welded with two sets of side connecting frames (2) between the branch pipe (1).