Wall-attached pipeline support

Through the design of support components, tightening components and reinforcement mechanisms, the connection instability caused by vibration of the attached pipe bracket is solved, and the stable connection between the support frame and the wall is achieved, ensuring the safety and reliability of pipeline installation.

CN120274120APending Publication Date: 2025-07-08SHENJIE TECH (SUZHOU) CO LTD
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Patent Information

Application Number
CN202510508458.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

The existing wall-attached pipe brackets are unstable in the connection between the support bracket and the wall due to vibration during the transmission of high-pressure water or compressed gas, which affects the installation reliability.

Method used

Support components and tightening components are used for elastic support and tightening. Combined with the reinforcement mechanism, the connection stability of the support frame and the wall is improved through the plug-in positioning and locking structure of the anchor plate and the connecting plate.

Benefits of technology

Effectively reduce vibration transmission, improve the stability and reliability of the support frame installed on the wall, and ensure the safety and reliability of the pipes on the support frame.

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Abstract

The invention relates to the technical field of pipeline supports, in particular to a wall-attached pipeline support which comprises a supporting frame arranged on a wall, a mounting frame is arranged on the supporting frame, a supporting assembly and a plurality of abutting assemblies are arranged in the mounting frame, and the supporting assembly is used for elastically supporting a pipeline. The abutting assembly is used for being matched with the supporting assembly to elastically abut against the pipeline, the supporting frame and the wall are jointly provided with a reinforcing mechanism, and the reinforcing mechanism is used for reinforcing connection of the supporting frame and the wall. According to the supporting frame, the stability and reliability of the supporting frame installed on the wall body can be improved, and therefore the reliability of the pipeline placed on the supporting frame can be guaranteed.
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Description

Technical Field

[0001] The present invention relates to the technical field of pipeline supports, and more particularly to an attached-wall pipeline support. Background Art

[0002] The attached-wall pipeline support is a commonly used installation method for saving floor space when pipelines are installed on walls. The attached-wall pipeline support is usually a supporting pipeline structure extended on a bearing wall for fixing pipelines such as water pipes and gas pipes on the wall.

[0003] An existing attached-wall pipeline support includes a support frame fixed to the wall by embedded bolts. A clamping structure is installed on the support frame, and the pipeline is clamped and fixed to the support frame through the clamping structure to achieve the purpose of attaching the pipeline to the wall. However, the high-frequency vibration generated during the transmission of high-pressure water or compressed gas by the pipeline will be directly transmitted to the wall through the clamping structure and the support frame, which is likely to have an adverse impact on the stability and reliability of the support frame installed on the wall. Summary of the Invention

[0004] In order to improve the stability and reliability of the support frame installed on the wall, and thus ensure the reliability of the pipeline placed on the support frame, the present application provides an attached-wall pipeline support.

[0005] The present application provides an attached-wall pipeline support, adopting the following technical solutions: An attached-wall pipeline support includes a support frame arranged on a wall. An installation frame is arranged on the support frame. A support assembly and a plurality of sets of pressing components are arranged in the installation frame. The support assembly is used for elastically supporting the pipeline, and the pressing components are used for elastically pressing the pipeline in cooperation with the support assembly. A reinforcement mechanism is jointly arranged on the support frame and the wall, and the reinforcement mechanism is used for reinforcing the connection between the support frame and the wall.

[0006] By adopting the above technical solutions, the use of the support assembly helps to elastically support the pipeline, the use of the plurality of sets of pressing components helps to elastically press the pipeline, and the cooperation of the support assembly and the pressing components helps to play a role in buffering and shock absorption, thereby helping to reduce the vibration transmitted to the support frame, and further helping to improve the stability and reliability of the support frame installed on the wall, and helping to ensure the safety and reliability of the pipeline installed on the support frame. The use of the reinforcement mechanism helps to reinforce the connection between the support frame and the wall, thereby helping to further improve the stability and reliability of the support frame installed on the wall, and further ensuring the safety and reliability of the pipeline installed on the support frame.

[0007] In a specific feasible implementation scheme, the reinforcement mechanism includes an anchor plate and a connecting plate, the anchor plate is arranged on the wall, the connecting plate is arranged on the support frame, the anchor plate and the connecting plate are arranged in close proximity, the anchor plate and the connecting plate are jointly provided with anchors, the anchors are inserted into the wall, the anchor plate is provided with a fixing seat, the fixing seat is embedded in the wall, the fixing seat and the connecting plate are jointly provided with a plug-in assembly, and the plug-in assembly is used to realize the plug-in positioning between the connecting plate and the fixing seat.

[0008] By adopting the above technical solution, the use of plug-in components helps to improve the plug-in positioning effect between the connecting plate and the anchor plate, and the use of anchors helps to anchor the plug-in and positioned connecting plate and anchor plate to the wall, thereby helping to reinforce the installation connection between the support frame and the wall, and further helping to improve the stability and reliability of the support frame installed on the wall, ensuring the safety and reliability of the pipeline installed on the support frame.

[0009] In a specific possible implementation scheme, the plug-in component includes a plug-in post and a plug-in sleeve, the plug-in post is arranged on the connecting plate, the fixing seat is provided with a placement groove, the plug-in sleeve is arranged in the placement groove, and the length of the plug-in sleeve is less than the depth of the placement groove, and the plug-in post is also provided with a locking component for locking the position of the plug-in post after being inserted into the plug-in sleeve.

[0010] By adopting the above technical solution, inserting the plug-in column into the plug-in sleeve helps to achieve the plug-in positioning between the connecting plate and the anchor plate, and using the locking component helps to lock the position of the plug-in column after being inserted into the plug-in sleeve, thereby helping to reinforce the installation connection between the connecting plate and the anchor plate, thereby helping to improve the stability and reliability of the support frame installed on the wall, and ensuring the safety and reliability of the pipeline installed on the support frame.

[0011] In a specific feasible implementation scheme, the locking assembly includes a locking block, a telescopic rod and a supporting spring. A mounting groove is provided on the side wall of the plug-in column along its own axial direction. The locking block is hingedly disposed in the mounting groove, and the hinged position is located at an end of the mounting groove away from the connecting plate. The telescopic rod is disposed in the mounting groove and is located at an end of the mounting groove close to the connecting plate. The telescopic rod is in contact with the locking block, and the supporting spring is sleeved on the telescopic rod and is used to support the locking block.

[0012] By adopting the above technical solution, after the insertion post is inserted into the insertion sleeve, the self-elastic force of the top support spring helps to push out the movable end of the locking block from the installation groove, thereby helping the movable end of the locking block to abut against the insertion sleeve, and further helping the insertion sleeve to lock the insertion post through the locking block, which helps to reinforce the installation connection between the connecting plate and the anchoring plate, improves the stability and reliability of the support frame installed on the wall, and ensures the safety and reliability of the pipeline installed on the support frame.

[0013] In a specific feasible embodiment, a locking insert block is provided on the connecting plate, and a locking slot for the locking insert block to insert is provided on the fixed seat. A cavity is provided inside the locking insert block. A fixing rod is provided on one side of the inner wall of the cavity close to the connecting plate. A fixing block is provided on the fixing rod. An installation blind hole is provided on the side wall of the fixing block. A first spring is provided in the installation blind hole. A locking insertion rod is provided at one end of the first spring close to the opening of the installation blind hole. A first through hole for the locking insertion rod to pass through is provided on the locking insert block. A locking insertion hole for the locking insertion rod to insert is provided on the groove wall of the locking slot. A transmission assembly for making the locking insertion rod insert into the locking insertion hole is provided in the locking insert block.

[0014] By adopting the above technical solution, when the locking insert block is inserted into the locking slot, the transmission assembly helps the locking insertion rod to pass through the first through hole and then insert into the locking insertion hole, thereby helping to lock the relative position between the locking insert block and the fixed seat, and further helping to improve the stability of the installation connection between the connecting plate and the anchoring plate, improving the stability and reliability of the support frame installed on the wall, and ensuring the safety and reliability of the pipeline installed on the support frame.

[0015] In a specific feasible embodiment, the transmission assembly includes an abutting member, a movable box body and a second spring. The abutting member is slidably arranged on the locking insert block, and one end of the abutting member is located inside the cavity. The movable box body is movably arranged inside the cavity and abuts against the abutting member. The outer wall of the movable box body is attached to the inner wall of the cavity. The movable box body is sleeved around the fixing block, and a second through hole for the locking insertion rod to pass through is provided on the movable box body. The second spring is provided on one side of the inner wall of the cavity close to the connecting plate. The second spring is connected to the movable box body and is used to support the movable box body.

[0016] By adopting the above technical scheme, in the process of inserting the locking plug into the locking slot, the abutment between the abutment piece and the slot wall of the locking slot helps to make the movable box body move in the cavity, and at the same time, since the position of the fixed block in the cavity remains unchanged, it helps to make the fixed block move inside the movable box body; when the second through hole on the movable box body is aligned with the first through hole, the elastic force of the first spring itself helps to push the locking plug rod out of the installation blind hole, thereby helping the locking plug rod to pass through the second through hole and the first through hole in turn and then insert into the locking plug hole, and then helps to lock the relative position between the locking plug block and the fixed seat, which helps to improve the stability of the installation connection between the connecting plate and the anchor plate, improves the stability and reliability of the support frame installed on the wall, and ensures the safety and reliability of the pipeline installed on the support frame.

[0017] In a specific feasible implementation scheme, the support assembly includes a support rod, a support plate and a support spring. The support rod is liftable and arranged on the inner bottom wall of the mounting frame. The support plate is arranged at the top end of the support rod and is used to support the pipeline. The support spring is sleeved on the support rod, and one end of the support spring is connected to the support plate, and the other end is connected to the inner bottom wall of the mounting frame.

[0018] By adopting the above technical solution, the support springs and support rods are used to help the support plate to elastically support the pipeline, thereby helping to buffer the vibration generated by the pipeline during use, and further helping to reduce the vibration transmitted to the support frame, further improving the stability and reliability of the support frame installed on the wall, and further ensuring the safety and reliability of the pipeline installed on the support frame.

[0019] In a specific feasible implementation scheme, a piston cylinder is provided at the inner bottom of the mounting frame, a piston head is slidably provided in the piston cylinder, the bottom end of the support rod is inserted into the piston cylinder and connected to the piston head, and the interior of the piston cylinder is filled with a buffer medium on the side of the piston head facing away from the support rod.

[0020] By adopting the above technical solution, the piston head is used in conjunction with the buffer medium in the piston cylinder to help elastically support the support rod, which helps to further buffer the vibration generated by the pipeline during use, further reduces the vibration transmitted to the support frame, further improves the stability and reliability of the support frame installed on the wall, and further ensures the safety and reliability of the pipeline installed on the support frame.

[0021] In a specific possible implementation manner, a plurality of guide rods are vertically arranged on the bottom surface of the support plate, the plurality of guide rods are symmetrically distributed on both sides of the support rod, and the bottoms of the guide rods are inserted into the installation frame.

[0022] By adopting the above technical solution, the guide rod helps to guide the moving directions of the support rod and the support plate, thereby helping to improve the elastic support effect of the support plate on the pipeline.

[0023] In a specific feasible embodiment, the pressing component includes a mounting block, a telescopic connecting rod, a telescopic spring, and a pressing plate. The mounting block is arranged on the circumferential inner wall of the mounting frame. The telescopic connecting rod is arranged on the mounting block. The pressing plate is arranged on the telescopic connecting rod. The telescopic spring is sleeved on the telescopic connecting rod, and one end of the telescopic spring is connected to the mounting block, and the other end is connected to the pressing plate.

[0024] By adopting the above technical solution, the telescopic spring and the telescopic rod help to elastically press the pipeline with the pressing plate, thereby helping to buffer the vibration generated during the use of the pipeline, and further helping to reduce the vibration transmitted to the support frame, further improving the stability and reliability of the support frame installed on the wall, and further ensuring the safety and reliability of the pipeline installed on the support frame.

[0025] In summary, the present application includes at least one of the following beneficial technical effects: 1. Through the arrangement of the support component and the pressing component, the support component helps to elastically support the pipeline, the pressing component helps to elastically press the pipeline, and the support component and the pressing component help to jointly play a role in buffering and shock absorption, thereby helping to reduce the vibration transmitted from the pipeline to the support frame, and further helping to improve the stability and reliability of the support frame installed on the wall, and ensuring the safety and reliability of the pipeline installed on the support frame; 2. Through the arrangement of the reinforcement mechanism, the reinforcement mechanism helps to reinforce the connection between the support frame and the wall, thereby helping to further improve the stability and reliability of the support frame installed on the wall, and further ensuring the safety and reliability of the pipeline installed on the support frame. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 is the overall structural schematic diagram of the embodiment of the present application.

[0027] Figure 2 is the schematic diagram showing the specific structures of the support component and the pressing component.

[0028] Figure 3 is the schematic diagram showing the specific structure of the plug-in component.

[0029] Figure 4 is Figure 3 the enlarged view of part A in

[0030] Figure 5 is the cross-sectional view showing the specific structure inside the locking plug.

[0031] Figure 6 is Figure 5 The enlarged view at position B in

[0032] Explanation of reference numerals in the drawings: 1, support frame; 2, mounting frame; 3, support assembly; 31, support rod; 32, support plate; 33, support spring; 4, pressing assembly; 41, mounting block; 42, telescopic connecting rod; 43, telescopic spring; 44, pressing plate; 5, anchoring plate; 6, connecting plate; 7, anchor; 8, fixed seat; 9, plugging assembly; 91, plugging post; 92, plugging sleeve; 10, placement groove; 11, locking assembly; 111, locking block; 112, telescopic rod; 113, top support spring; 12, mounting groove; 13, locking plug; 14, locking slot; 15, fixed rod; 16, fixed block; 17, mounting blind hole; 18, first spring; 19, locking plug rod; 20, first through hole; 21, locking socket; 22, transmission assembly; 221, abutting member; 222, movable box body; 223, second spring; 23, second through hole; 24, piston cylinder; 25, piston head; 26, guide rod. Detailed implementation manners

[0033] The following further elaborates on this application with reference to the attached drawings.

[0034] An embodiment of this application discloses an attached-wall pipeline support. Referring to Figure 1 and Figure 2 , it includes a support frame 1 installed on a wall. A mounting frame 2 is fixedly installed on the support frame 1. A piston cylinder 24 is fixedly embedded in the inner bottom wall of the mounting frame 2. A piston head 25 is slidably placed inside the piston cylinder 24, and the circumferential side wall of the piston head 25 is in sliding fit with the circumferential inner wall of the piston cylinder 24. A buffer medium is filled below the piston head 25 inside the piston cylinder 24.

[0035] Referring to Figure 1 and Figure 2 , a support assembly 3 is arranged on the inner bottom of the mounting frame 2. The support assembly 3 includes a support rod 31, a support plate 32, and a support spring 33. The support rod 31 is vertically inserted into the inner bottom wall of the mounting frame 2 in a liftable manner. The bottom end of the support rod 31 is inserted into the piston cylinder 24 and connected to the piston head 25. The support plate 32 is fixedly installed at the top end of the support rod 31. The support spring 33 is sleeved on the circumference of the support rod 31, and the top end of the support spring 33 is fixedly connected to the support plate 32, and the bottom end of the support spring 33 is fixedly connected to the inner bottom wall of the mounting frame 2. Two guide rods 26 are vertically fixedly installed on the bottom surface of the support plate 32. The two guide rods 26 are symmetrically distributed on both sides of the support rod 31, and the bottom ends of the two guide rods 26 are slidably inserted into the inner bottom wall of the mounting frame 2.

[0036] Referring to Figure 1 and Figure 2, after the pipeline is installed inside the installation frame 2, the support spring 33 elastically supports the support plate 32 under the action of its own elastic force. At the same time, the support rod 31 elastically supports the support plate 32 under the combined action of the piston head 25, the piston cylinder 24 and the buffer medium, which helps the support plate 32 to elastically support the pipeline, thereby helping to buffer the vibration generated during the use of the pipeline, and further helping to reduce the vibration transmitted to the support frame 1, improving the stability and reliability of the support frame 1 installed on the wall, and ensuring the safety and reliability of the pipeline installed on the support frame 1.

[0037] Refer to Figure 1 and Figure 2 , a plurality of sets of tightening components 4 are further arranged on the circumferential inner wall of the installation frame 2. Each set of tightening components 4 includes an installation block 41, a telescopic connecting rod 42, a telescopic spring 43 and a tightening plate 44. The installation block 41 is fixedly installed on the circumferential inner wall of the installation frame 2. One end of the telescopic connecting rod 42 is fixedly installed on the installation block 41. The tightening plate 44 is fixedly connected to the other end of the telescopic connecting rod 42. The telescopic spring 43 is fixedly sleeved on the outer periphery of the telescopic connecting rod 42, and one end of the telescopic spring 43 is fixedly connected to the installation block 41 and the other end is fixedly connected to the tightening plate 44.

[0038] Refer to Figure 1 and Figure 2 , when the pipeline generates vibration during use, the telescopic spring 43 cooperates with the telescopic rod 112 to elastically support the tightening plate 44, so that a plurality of tightening plates 44 elastically tighten the pipeline, which helps to further buffer the vibration generated during the use of the pipeline, and further helps to further reduce the vibration transmitted to the support frame 1, further improving the stability and reliability of the support frame 1 installed on the wall, and further ensuring the safety and reliability of the pipeline installed on the support frame 1.

[0039] Refer to Figure 1 and Figure 3 , a reinforcement mechanism is jointly arranged on the support frame 1 and the wall. The reinforcement mechanism includes an anchor plate 5 and a connecting plate 6. The anchor plate 5 is embedded in the wall. The connecting plate 6 is fixedly connected to the support frame 1. The anchor plate 5 and the connecting plate 6 are placed in contact with each other, and an anchor 7 is jointly penetrated and installed on the anchor plate 5 and the connecting plate 6. The anchor 7 is inserted into the wall. A fixed seat 8 is fixedly installed on the anchor plate 5. The fixed seat 8 is embedded in the wall, and a plurality of sets of plugging components 9 are jointly arranged on the fixed seat 8 and the connecting plate 6.

[0040] Refer to Figure 3 and Figure 4, each set of plugging components 9 includes a plugging post 91 and a plugging sleeve 92. The plugging post 91 is fixedly installed on the connecting plate 6. A placement groove 10 is formed on the fixing seat 8, and the plugging sleeve 92 is fixedly installed on the wall of the placement groove 10, and the length of the plugging sleeve 92 is less than the depth of the placement groove 10. A plurality of groups of locking components 11 are further arranged on the circumferential side wall of the plugging post 91. Each group of locking components 11 includes a locking block 111, a telescopic rod 112 and a top support spring 113. An installation groove 12 is axially formed on the side wall of the plugging post 91 along its own axis. One end of the locking block 111 is hinged in the installation groove 12, and the hinged position is located at the end of the installation groove 12 away from the connecting plate 6. The telescopic rod 112 is fixedly installed at one end of the installation groove 12 close to the connecting plate 6, and the telescopic rod 112 abuts against the movable end of the locking block 111. The top support spring 113 is fixedly sleeved on the circumference of the telescopic rod 112 and abuts against the movable end of the locking block 111.

[0041] Referring to Figure 3 and Figure 4 , during the installation and connection process of the anchoring plate 5 and the connecting plate 6, the plugging post 91 is correspondingly inserted into the plugging sleeve 92; during the insertion process, the movable end of the locking block 111 abuts tightly against the inner wall of the plugging sleeve 92, so that the top support spring 113 and the contraction rod are in a contracted state; when the plugging post 91 is completely inserted, the movable end of the locking block 111 extends out of the plugging sleeve 92, and the top support spring 113 ejects the movable end of the locking block 111 out of the installation groove 12 under the action of its own elastic force, so that the movable end of the locking block 111 abuts against the plugging sleeve 92, and further enables the plugging sleeve 92 to lock the plugging post 91 through the locking block 111, which helps to reinforce the installation and connection between the connecting plate 6 and the anchoring plate 5, improves the stability and reliability of the support frame 1 installed on the wall, and ensures the safety and reliability of the pipeline installed on the support frame 1.

[0042] Referring to Figure 5 and Figure 6 , a locking plug 13 is fixedly installed on the side wall of the connecting plate 6, and a locking slot 14 is formed on the fixing seat 8. The locking plug 13 has a cavity inside. A fixing rod 15 is fixedly installed on the side of the inner wall of the cavity close to the connecting plate 6. A fixing block 16 is fixedly connected to the end of the fixing rod 15 away from the connecting plate 6. A plurality of installation blind holes 17 are formed on the side wall of the fixing block 16. A first spring 18 is fixedly installed in each installation blind hole 17. A locking plug rod 19 is also slidably installed in each installation blind hole 17. The locking plug rod 19 is connected to the first spring 18 and the circumferential side wall of the locking plug rod 19 is slidably attached to the hole wall of the installation blind hole 17. A plurality of first through holes 20 are formed on the locking plug 13, and each first through hole 20 is aligned with a locking plug rod 19. A plurality of locking holes 21 are formed on the wall of the locking slot 14, and each locking hole 21 is aligned with a first through hole 20.

[0043] Reference Figure 5 and Figure 6 In the locking insert block 13, a transmission assembly 22 is provided. The transmission assembly 22 includes an abutting member 221, a movable box body 222, and a second spring 223. The abutting member 221 is slidably mounted on the locking insert block 13, and one end of the abutting member 221 is located inside the cavity. The movable box body 222 is slidably clamped inside the cavity and abuts against the abutting member 221. The movable box body 222 is located outside the fixing block 16, and a plurality of second through holes 23 are formed in the movable box body 222. The second spring 223 is fixedly mounted on one side of the inner wall of the cavity close to the connecting plate 6, and the second spring 223 is fixedly connected to the movable box body 222.

[0044] Reference Figure 5 and Figure 6 During the installation and connection process of the anchoring plate 5 and the connecting plate 6, the locking insert block 13 is inserted into the locking slot 14. During the process of inserting the locking insert block 13 into the locking slot 14, the abutting member 221 gradually abuts against the wall of the locking slot 14. Then, the locking insert block 13 continues to be inserted, and the abutting member 221 drives the movable box body 222 to stop inserting, so that the position of the movable box body 222 in the cavity changes. At the same time, since the position of the fixing block 16 in the cavity remains unchanged, a relative displacement of the fixing block 16 inside the movable box body 222 is caused. When the second through holes 23 on the movable box body 222 are aligned with the first through holes 20, the first spring 18 pushes the locking insert rod 19 out of the installation blind hole 17 under the action of its own elastic force, so that the locking insert rod 19 sequentially passes through the second through holes 23 and the first through holes 20 and then inserts into the locking insertion hole 21, thereby locking the relative position between the locking insert block 13 and the fixed seat 8, which helps to improve the stability of the installation and connection between the connecting plate 6 and the anchoring plate 5, improves the stability and reliability of the support frame 1 installed on the wall, and ensures the safety and reliability of the pipeline installed on the support frame 1.

[0045] The implementation principle of the embodiment of the present application is as follows: When the pipeline is installed inside the installation frame 2, the support spring 33 elastically supports the support plate 32 under the action of its own elastic force. At the same time, the support rod 31 elastically supports the support plate 32 under the cooperation of the piston head 25, the piston cylinder 24, and the buffer medium, which helps to make the support plate 32 elastically support the pipeline, thereby helping to buffer the vibration generated during the use of the pipeline, and further helping to reduce the vibration transmitted to the support frame 1, improving the stability and reliability of the support frame 1 installed on the wall, and ensuring the safety and reliability of the pipeline installed on the support frame 1.

[0046] When the pipeline vibrates during use, the telescopic spring 43 cooperates with the telescopic rod 112 to elastically support the pressing plate 44, so that multiple pressing plates 44 elastically press the pipeline, which helps to further buffer the vibration generated by the pipeline during use, and further helps to reduce the vibration transmitted to the support frame 1, further improving the stability and reliability of the support frame 1 installed on the wall, and further ensuring the safety and reliability of the pipeline installed on the support frame 1.

[0047] During the installation and connection of the anchoring plate 5 and the connecting plate 6, the inserting column 91 is correspondingly inserted into the inserting sleeve 92; during the inserting process, the movable end of the locking block 111 abuts against the inner wall of the inserting sleeve 92, so that the top support spring 113 and the contraction rod are in a contracted state; when the inserting column 91 is completely inserted, the movable end of the locking block 111 extends out of the inserting sleeve 92, and the top support spring 113 pushes the movable end of the locking block 111 out of the installation groove 12 under the action of its own elastic force, so that the movable end of the locking block 111 abuts against the inserting sleeve 92, and further the inserting sleeve 92 locks the inserting column 91 through the locking block 111, which helps to reinforce the installation and connection between the connecting plate 6 and the anchoring plate 5, improves the stability and reliability of the support frame 1 installed on the wall, and ensures the safety and reliability of the pipeline installed on the support frame 1.

[0048] During the installation and connection of the anchoring plate 5 and the connecting plate 6, the locking plug 13 is inserted into the locking slot 14; during the process of the locking plug 13 being inserted into the locking slot 14, the abutting member 221 gradually abuts against the wall of the locking slot 14, and then the locking plug 13 continues to be inserted, while the abutting member 221 drives the movable box body 222 to stop inserting, so that the position of the movable box body 222 in the cavity changes. At the same time, since the fixed block 16 remains unchanged in the cavity, the fixed block 16 generates a relative displacement inside the movable box body 222; when the second through hole 23 on the movable box body 222 is aligned with the first through hole 20, the first spring 18 pushes the locking rod 19 out of the installation blind hole 17 under the action of its own elastic force, so that the locking rod 19 sequentially passes through the second through hole 23 and the first through hole 20 and then is inserted into the locking hole 21, thereby locking the relative position between the locking plug 13 and the fixed seat 8, which helps to improve the stability of the installation and connection between the connecting plate 6 and the anchoring plate 5, improves the stability and reliability of the support frame 1 installed on the wall, and ensures the safety and reliability of the pipeline installed on the support frame 1.

[0049] The above are all the preferred embodiments of this application, and the protection scope of this application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.

Claims

1. An attached wall pipe support, characterized in that: It includes a support frame (1) arranged on the wall. An installation frame (2) is arranged on the support frame (1). A support component (3) and several groups of pressing components (4) are arranged in the installation frame (2). The support component (3) is used for elastically supporting the pipeline, and the pressing component (4) is used to cooperate with the support component (3) to elastically press the pipeline. A reinforcement mechanism is jointly arranged on the support frame (1) and the wall, and the reinforcement mechanism is used to reinforce the connection between the support frame (1) and the wall.

2. The wall-mounted pipe support according to claim 1, wherein: The reinforcement mechanism includes an anchor plate (5) and a connecting plate (6). The anchor plate (5) is arranged on the wall, and the connecting plate (6) is arranged on the support frame (1). The anchor plate (5) and the connecting plate (6) are arranged in a fitting manner. An anchor (7) is jointly arranged on the anchor plate (5) and the connecting plate (6), and the anchor (7) is inserted into the wall. A fixing seat (8) is arranged on the anchor plate (5), and the fixing seat (8) is embedded in the wall. A plugging component (9) is jointly arranged on the fixing seat (8) and the connecting plate (6), and the plugging component (9) is used to realize the plugging and positioning between the connecting plate (6) and the fixing seat (8).

3. The wall-mounted pipe support according to claim 2, characterized in that: The plugging component (9) includes a plugging column (91) and a plugging sleeve (92). The plugging column (91) is arranged on the connecting plate (6). A placement groove (10) is formed on the fixing seat (8), and the plugging sleeve (92) is arranged in the placement groove (10), and the length of the plugging sleeve (92) is less than the depth of the placement groove (10). A locking component (11) is also arranged on the plugging column (91) and is used to lock the position of the plugging column (91) after it is inserted into the plugging sleeve (92).

4. The wall-attached pipe support according to claim 3, characterized in that: The locking component (11) includes a locking block (111), a telescopic rod (112), and a top support spring (113). An installation groove (12) is arranged on the side wall of the plugging column (91) along its own axis. The locking block (111) is hinged in the installation groove (12), and the hinged position is located at one end of the installation groove (12) away from the connecting plate (6). The telescopic rod (112) is arranged in the installation groove (12) and is located at one end of the installation groove (12) close to the connecting plate (6). The telescopic rod (112) abuts against the locking block (111). The top support spring (113) is sleeved on the telescopic rod (112) and is used to support the locking block (111).

5. The wall-mounted pipe support according to claim 2, wherein: The connecting plate (6) is provided with a locking plug (13), the fixing seat (8) is provided with a locking slot (14) for inserting the locking plug (13), a cavity is provided inside the locking plug (13), a fixing rod (15) is provided on the inner wall of the cavity on the side close to the connecting plate (6), a fixing block (16) is provided on the fixing rod (15), a mounting blind hole (17) is provided on the side wall of the fixing block (16), and a first spring (17) is provided in the mounting blind hole (17). 8), a locking rod (19) is provided at one end of the first spring (18) close to the opening of the mounting blind hole (17), a first through hole (20) for the locking rod (19) to pass through is provided on the locking plug block (13), a locking plug hole (21) for the locking plug rod (19) to be inserted is provided on the groove wall of the locking slot (14), and a transmission component (22) for allowing the locking plug rod (19) to be inserted into the locking plug hole (21) is provided in the locking plug block (13).

6. The wall-mounted pipe support according to claim 5, characterized in that: The transmission assembly (22) comprises a contact piece (221), a movable box body (222) and a second spring (223); the contact piece (221) is slidably arranged on the locking plug block (13), and one end of the contact piece (221) is located inside the cavity; the movable box body (222) is movably arranged inside the cavity and abuts against the contact piece (221); the outer wall of the movable box body (222) is arranged in close contact with the inner wall of the cavity; the movable box body (222) is sleeved on the periphery of the fixed block (16), and the movable box body (222) is provided with a second through hole (23) for the locking plug rod (19) to pass through; the second spring (223) is arranged on a side of the inner wall of the cavity close to the connecting plate (6); the second spring (223) is connected to the movable box body (222) and is used to support the movable box body (222).

7. The wall-mounted pipe support according to claim 1, characterized in that: The support assembly (3) comprises a support rod (31), a support plate (32) and a support spring (33); the support rod (31) is movably arranged on the inner bottom wall of the installation frame (2); the support plate (32) is arranged at the top end of the support rod (31) and is used to support the pipeline; the support spring (33) is sleeved on the support rod (31), and one end of the support spring (33) is connected to the support plate (32), and the other end is connected to the inner bottom wall of the installation frame (2).

8. The wall-mounted pipe support according to claim 7, wherein: A piston cylinder (24) is arranged at the inner bottom of the installation frame (2), a piston head (25) is slidably arranged inside the piston cylinder (24), the bottom end of the support rod (31) is inserted into the piston cylinder (24) and connected to the piston head (25), and a buffer medium is filled inside the piston cylinder (24) on the side of the piston head (25) facing away from the support rod (31).

9. The wall-mounted pipe support according to claim 8, characterized in that: A plurality of guide rods (26) are vertically arranged on the bottom surface of the support plate (32). The plurality of guide rods (26) are symmetrically distributed on both sides of the support rod (31), and the bottom of the guide rod (26) is inserted into the mounting frame (2).

10. The wall-mounted pipe support according to claim 1, characterized in that: The pressing assembly (4) includes a mounting block (41), a telescopic connecting rod (42), a telescopic spring (43) and a pressing plate (44). The mounting block (41) is arranged on the circumferential inner wall of the mounting frame (2). The telescopic connecting rod (42) is arranged on the mounting block (41). The pressing plate (44) is arranged on the telescopic connecting rod (42). The telescopic spring (43) is sleeved on the telescopic connecting rod (42), and one end of the telescopic spring (43) is connected to the mounting block (41), and the other end is connected to the pressing plate (44).