A heating pipe installation support structure

By designing a heating pipe installation support structure including a base, compensation, support and pipe fixing structure, the problem of unstable fixing of thermal pipes in the existing technology is solved, and earthquake resistance, loosening prevention and stability improvement are achieved.

CN116792593BActive Publication Date: 2025-10-21HUANENG JIANGYIN GAS TURBINE THERMAL POWER CO LTD
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Patent Information

Application Number
CN202310706816.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-14
Publication Date
2025-10-21
Estimated Expiration
2043-06-14

AI Technical Summary

Technical Problem

Existing thermal pipe fixing brackets are prone to bouncing and unstable fixation when vibrating, resulting in thermal displacement and damage.

Method used

A heating pipe installation support structure is designed, which includes a base structure, a compensation structure, a support structure, a pipe fixing structure and an auxiliary structure. The compensation structure is used to compensate for thermal deformation, the support structure and the pipe fixing structure are used to improve stability, and the auxiliary structure enhances the anti-seismic and anti-loosening effects.

Benefits of technology

It effectively avoids bouncing and loosening caused by vibration, improves the fixing stability of the heating pipe, and reduces the instability caused by vibration.

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Abstract

The application discloses a heat supply pipeline installation support structure which comprises a base structure, a compensation structure, a support structure, a pipeline fixing structure and an auxiliary structure. The application has the compensation structure which can play a compensation role when the heat supply pipeline is subjected to thermal deformation expansion and contraction, avoids deformation damage of the application, and has a self-locking function. The compensation structure can effectively avoid deviation caused by other external factors, has a compensation role, and has good stability. The application has the pipeline fixing structure. The pipeline fixing structure can be used for conveniently fixing the heat supply pipeline. The pipeline fixing structure cooperates with the auxiliary structure to stably fix the heat supply pipeline, can effectively avoid loosening caused by long-time vibration, has good fixing stability, has better anti-vibration and anti-loosening effect than ordinary spring damping, reduces rebound caused by vibration, avoids gap loosening caused by vibration, and avoids unstable phenomenon.
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Description

Technical Field

[0001] The present application relates to the field of pipeline support frames, and in particular to a heating pipeline installation support structure. Background Art

[0002] A heating network, also known as a heat pipe, is a network of heating pipes running from the boiler room, direct-fired engine room, or heating center, from the heat source to the building's heat inlet. Multiple heating pipes form a network, and supporting frames are required to secure these pipes.

[0003] The existing patent document "Utility Model CN217653494U - A Seismic Bracket for Fixing Thermal Pipes" discloses a pipe fixing bracket. Although this pipe fixing bracket can support the thermal pipe, it uses a spring for buffering and shock absorption during vibration. The vibration of the pipe also drives the spring to vibrate, and the vibration of the spring causes the spring to bounce, which can easily cause the fixed pipe to become unstable. Long-term bouncing vibration can also easily cause gaps, making the fixation unstable. In addition, the thermal pipe is subject to thermal displacement, which can easily cause the fixing bracket to deviate and cause damage.

[0004] Specifically, the existing technology has the following technical problems: while conventional pipe fixing brackets can support heating pipes, they use springs for shock absorption during vibration. The vibration of the pipes also drives the springs to vibrate, and the vibration of the springs causes the springs to bounce, which can easily cause the fixed pipes to become unstable. Prolonged bouncing vibrations can also easily cause gaps. Therefore, a heating pipe installation support structure is proposed to address this issue. Summary of the Invention

[0005] In this embodiment, a heating pipe installation support structure is provided to solve the problem that ordinary pipe fixing brackets in the prior art are not stable enough and the thermal pipes have thermal displacement, which easily causes the fixing brackets to deviate and cause damage.

[0006] According to one aspect of the present application, a heating pipe installation support structure is provided, comprising a base structure, a compensation structure, a support structure, a pipe fixing structure and an auxiliary structure;

[0007] A pair compensation structure is installed at the base structure, a support structure is installed at the upper surface of the compensation structure, a pipe fixing structure is installed at the top of the support structure, and an auxiliary structure is provided at the pipe fixing structure.

[0008] Furthermore, the base structure includes a fixed bottom plate, a positioning plate and a fixed ear plate. Positioning plates are fixedly provided at both ends of the fixed bottom plate, and fixed ear plates are fixedly provided at the four corners of the fixed bottom plate.

[0009] Furthermore, the compensation structure includes a support seat, a guide column, a positioning pin column, a connecting spring and a round head. There are two guide columns, both of which pass through the support seat and slide with the support seat. The two ends of the two guide columns are fixedly connected to the two positioning plates respectively, and semicircular guide grooves are provided on both sides of the guide columns.

[0010] Furthermore, an inner cavity is provided inside the support seat, and a positioning pin is slidably connected in the inner cavity of the support seat. A round head is provided at one end of the positioning pin, and the round head is pressed against the semicircular guide groove of the guide column. One end of the positioning pin is fixedly connected to one end of a connecting spring, and the other end of the connecting spring is fixedly connected to the inner cavity side wall of the support seat, and the connecting spring is in a compressed state.

[0011] Furthermore, the support structure includes a first support column, a second support column, a fixed block, a first bevel gear, a rotating handle, a second bevel gear, a guide slot, a guide block, a threaded rod and a circular fixed shell, the first support column is fixedly connected to the upper surface of the support seat, the second support column is slidably connected to the inner cavity of the first support column, a fixed block is fixedly arranged in the inner cavity of the second support column, guide blocks are fixedly arranged on both sides of the outer surface of the second support column, a guide slot is opened on the inner wall of the first support column, and the guide block extends to the guide slot and slides with the guide slot.

[0012] Furthermore, one end of a threaded rod is rotatably connected to the bottom wall of the inner cavity of the first support column, and the other end of the threaded rod extends into the inner cavity of the second support column. The threaded rod passes through the fixed block and is threadedly engaged with the fixed block. A first bevel gear is fixedly provided on the threaded rod, and a rotating handle is rotatably connected to the side wall of the first support column. One end of the rotating handle extends into the inner cavity of the first support column, and a second bevel gear is fixedly connected to one end of the rotating handle, and the second bevel gear and the first bevel gear are meshed with each other.

[0013] Furthermore, a plurality of positioning holes are provided on the arc-shaped surface of the rotating handle, a circular fixed shell is fixedly provided on the outer surface of the first support column, a connecting slider is slidably connected in the inner cavity of the circular fixed shell, a positioning column is fixedly provided on the bottom surface of the connecting slider, the bottom end of the positioning column extends into the positioning hole of the rotating handle, one end of the limiting handle is fixedly connected to the upper surface of the connecting slider, the other end of the limiting handle passes through the upper wall of the inner cavity of the circular fixed shell and extends outside the wall, one end of the positioning spring is fixedly connected to the upper surface of the connecting slider, and the other end of the positioning spring is fixedly connected to the upper wall of the inner cavity of the circular fixed shell.

[0014] Furthermore, the pipe fixing structure includes a first pipe clamp, a first connecting plate, a second pipe clamp, a second connecting plate, a fixing screw and a fixing nut. The first pipe clamp is fixedly arranged at the top of the supporting structure, the first connecting plates are fixedly arranged at both ends of the first pipe clamp, the second connecting plates are fixedly connected at both ends of the second pipe clamp, a fixing screw is fixedly arranged on the upper surface of the first connecting plate, the fixing screw passes through the second connecting plate and slides with the second connecting plate, and a fixing nut is threadedly connected to the fixing screw.

[0015] Furthermore, the auxiliary structure includes a cylindrical cavity, a piston, a push rod, a pressure plate, a connecting air duct, an auxiliary structure, a connecting sleeve rod, a connecting rod, a spring, a fixed plate, a fixed cylinder, a connecting piston, a moving rod and a connecting pipe. The first pipe splint and the second pipe splint are both provided with a cylindrical cavity. There are several cylindrical cavities, and several of the cylindrical cavities are distributed in a ring shape inside the first pipe splint and the second pipe splint. Connecting air ducts are provided between several of the cylindrical cavities. The cylindrical cavity is slidably connected to the piston, one end of the push rod is fixedly connected to the bottom surface of the piston, and the other end of the push rod is fixedly connected to the pressure plate.

[0016] The lockhole that is formed on the upper of the two said the upper and lower ends of the lifting pin is fixedly provided with a toothed connecting strip which is cooperatively connected with the toothed connecting strip.

[0017] Through the above-mentioned embodiments of the present application, the compensation structure can have a supplementary function, which can play a compensatory role when the heating pipe undergoes thermal deformation and expansion, thereby avoiding deformation damage of the present application, and the compensation structure has a self-locking function, which can effectively avoid displacement caused by other external factors. It not only has a compensation effect, but also has good stability. The present application has a pipe fixing structure, which can be used to fix the heating pipe more conveniently, and the pipe fixing structure can be used in conjunction with the auxiliary structure to fix the heating pipe more stably, which can effectively avoid loosening caused by long-term vibration, so that the fixing stability is better. Compared with ordinary spring shock absorption, the anti-seismic and anti-loosening effect is better, reducing the bounce caused by vibration, avoiding the loosening of the gap caused by vibration, and avoiding instability. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.

[0019] Figure 1 This is a schematic diagram of the three-dimensional structure of an embodiment of the present application;

[0020] Figure 2 This is a schematic structural diagram of a base structure according to an embodiment of the present application;

[0021] Figure 3 This is a schematic diagram of a cross-sectional structure of a compensation structure according to an embodiment of the present application;

[0022] Figure 4 This is a schematic diagram of the planar structure of a guide post according to an embodiment of the present application;

[0023] Figure 5 This is a schematic diagram of a cross-sectional structure of a support structure according to an embodiment of the present application;

[0024] Figure 6 This is a schematic cross-sectional view of a circular fixed housing according to an embodiment of the present application;

[0025] Figure 7 This is a schematic cross-sectional view of a guide block according to an embodiment of the present application;

[0026] Figure 8 This is a schematic structural diagram of a pipeline fixing structure according to an embodiment of the present application;

[0027] Figure 9 This is a schematic cross-sectional view of a second pipe splint according to an embodiment of the present application;

[0028] Figure 10 This is a schematic structural diagram of an auxiliary structure according to an embodiment of the present application;

[0029] Figure: 1, base structure; 2, compensation structure; 3, support structure; 4, pipe fixing structure; 5, heating pipe; 6, fixed bottom plate; 7, positioning plate; 8, fixed ear plate; 9, guide column; 10, semicircular guide groove; 11, support seat; 12, positioning pin column; 13, connecting spring; 14, round head; 15, first support column; 16, second support column; 17, fixing block; 18, first bevel gear; 19, rotating handle; 20, second bevel gear; 21, guide groove; 22, guide block; 23, threaded rod; 24, circular fixing Shell; 25, connecting slider; 26, limit handle; 27, positioning column; 28, positioning spring; 29, first pipe clamp; 30, first connecting plate; 31, second pipe clamp; 32, second connecting plate; 33, fixing screw; 34, fixing nut; 35, cylindrical cavity; 36, piston; 37, push rod; 38, pressure plate; 39, connecting airway; 40, auxiliary structure; 41, connecting sleeve rod; 42, connecting rod; 43, spring; 44, fixing plate; 45, fixing cylinder; 46, connecting piston; 47, moving rod; 48, connecting pipe. DETAILED DESCRIPTION

[0030] In order to enable those skilled in the art to better understand the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.

[0031] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequential order. It should be understood that the data used in this way can be interchanged where appropriate, so that the embodiments of the present application described herein. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.

[0032] In this application, terms such as "upper," "lower," "left," "right," "front," "back," "top," "bottom," "inner," "outer," "center," "vertical," "horizontal," "transverse," and "longitudinal" indicate positions or locations based on the positions or locations shown in the accompanying drawings. These terms are primarily intended to better describe this application and its embodiments and are not intended to limit the devices, elements, or components indicated to having a specific orientation, or to being constructed or operated in a specific orientation.

[0033] Furthermore, some of the above terms may be used to express other meanings besides indicating a position or location. For example, the term "on" may also be used to indicate a dependency or connection in certain circumstances. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.

[0034] Furthermore, the terms "installed," "disposed," "provided with," "connected," "connected," and "socketed" should be interpreted broadly. For example, they can refer to fixed connections, removable connections, or integral structures; mechanical connections or electrical connections; direct connections, indirect connections through an intermediary, or internal communication between two devices, elements, or components. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.

[0035] See also Figure 1 As shown, a heating pipe installation support structure includes a base structure 1, a compensation structure 2, a support structure 3, a pipe fixing structure 4 and an auxiliary structure 40;

[0036] The base structure 1 is provided with a pair of compensation structures 2, and a supporting structure 3 is provided on the upper surface of the compensation structure 2, and a pipe fixing structure 4 is provided on the top of the supporting structure 3, and an auxiliary structure 40 is provided on the pipe fixing structure 4. The present application can more conveniently fix and support the heating pipe 5, and the present application has a compensation structure 2, which can have a supplementary function and can play a compensatory role when the heating pipe 5 undergoes thermal deformation and expansion, thereby avoiding deformation damage of the present application, and the compensation structure 2 has a self-locking function, which can effectively avoid the deviation caused by other external factors, and has both compensation and good stability. The present application has a pipe fixing structure 4, which can more conveniently fix the heating pipe 5 through the pipe fixing structure 4, and the pipe fixing structure 4 cooperates with the auxiliary structure 40 to fix the heating pipe 5 more stably, which can effectively avoid loosening caused by long-term vibration, making the fixing stability better, and compared with ordinary spring shock absorption, it has better anti-seismic and anti-loosening effects, reduces the bouncing caused by vibration, avoids the loosening of the gap caused by vibration, and avoids instability.

[0037] For further technical solutions, see Figure 2 As shown, the base structure 1 includes a fixed bottom plate 6, a positioning plate 7 and a fixed ear plate 8. The positioning plates 7 are fixedly provided at both ends of the fixed bottom plate 6, and the fixed ear plates 8 are fixedly provided at the four corners of the fixed bottom plate 6. The setting of the fixed ear plates 8 can more conveniently fix the base structure 1 on the ground, thereby fixing the entire device.

[0038] For specific technical solutions, please refer to Figure 3 and Figure 4 As shown, the compensation structure 2 includes a support seat 11, a guide column 9, a positioning pin column 12, a connecting spring 13 and a round head 14. Two guide columns 9 are provided. Both guide columns 9 pass through the support seat 11 and slide with the support seat 11. The two ends of the two guide columns 9 are fixedly connected to the two positioning plates 7 respectively. Semicircular guide grooves 10 are provided on both sides of the guide columns 9. Through the sliding action between the support seat 11 and the guide columns 9, the device has a certain movement compensation function, which can play a role in movement compensation when the heating pipe 5 is stretched or contracted, thereby avoiding damage to the device.

[0039] The support seat 11 is provided with an inner cavity, and a positioning pin 12 is slidably connected in the inner cavity of the support seat 11. A round head 14 is provided at one end of the positioning pin 12, and the round head 14 is pressed against the semicircular guide groove 10 of the guide column 9. The other end of the positioning pin 12 is fixedly connected to one end of a connecting spring 13, and the other end of the connecting spring 13 is fixedly connected to the inner cavity side wall of the support seat 11. The connecting spring 13 is in a compressed state. Through the compression elastic action of the connecting spring 13, the positioning pin 12 can be pressed against the semicircular guide groove 10 of the guide column 9, and then the guide column 9 and the support seat 11 can be fixed, which plays a role of self-locking fixation and is not easily deflected due to external factors such as external collision, so that the stability is better.

[0040] For specific technical solutions, please refer to Figure 5-7As shown, the support structure 3 includes a first support column 15, a second support column 16, a fixed block 17, a first bevel gear 18, a rotating handle 19, a second bevel gear 20, a guide slot 21, a guide block 22, a threaded rod 23 and a circular fixed shell 24, the first support column 15 is fixedly connected to the upper surface of the support seat 11, the second support column 16 is slidably connected in the inner cavity of the first support column 15, the fixed block 17 is fixedly provided in the inner cavity of the second support column 16, guide blocks 22 are fixedly provided on both sides of the outer surface of the second support column 16, a guide slot 21 is opened on the inner wall of the first support column 15, and the guide block 22 extends to the guide slot 21 and slides with the guide slot 21;

[0041] One end of a threaded rod 23 is rotatably connected to the bottom wall of the inner cavity of the first support column 15, and the other end of the threaded rod 23 extends into the inner cavity of the second support column 16. The threaded rod 23 passes through the fixed block 17 and is threadedly engaged with the fixed block 17. A first bevel gear 18 is fixedly provided at the threaded rod 23. A rotating handle 19 is rotatably connected to the side wall of the first support column 15. One end of the rotating handle 19 extends into the inner cavity of the first support column 15, and a second bevel gear 20 is fixedly connected to one end of the rotating handle 19. The second bevel gear 20 is in contact with the first bevel gear 1 8 are meshed with each other. When the overall height of the device needs to be adjusted, the rotating handle 19 can be manually rotated. The rotation of the rotating handle 19 can drive the second bevel gear 20 to rotate, and then the rotation of the second bevel gear 20 drives the first bevel gear 18 to rotate. The rotation of the first bevel gear 18 can drive the threaded rod 23 to rotate, and then the rotation of the threaded rod 23 can drive the fixing block 17 to move, and then drive the second support column 16 to move, and then the height of the second support column 16 can be adjusted, and the overall height of the device can be adjusted;

[0042] A number of positioning holes are provided on the arc-shaped surface of the rotating handle 19, and a circular fixed shell 24 is fixedly provided on the outer surface of the first support column 15. A connecting slider 25 is slidably connected in the inner cavity of the circular fixed shell 24, and a positioning column 27 is fixedly provided on the bottom surface of the connecting slider 25. The bottom end of the positioning column 27 extends into the positioning hole of the rotating handle 19, and one end of the limiting handle 26 is fixedly connected to the upper surface of the connecting slider 25. The other end of the limiting handle 26 passes through the upper wall of the inner cavity of the circular fixed shell 24 and extends to the outside of the wall. One end of the positioning spring 28 is fixedly connected to the upper surface of the connecting slider 25, and the other end of the positioning spring 28 is fixedly connected to the upper surface of the connecting slider 25. One end is fixedly connected to the upper wall of the inner cavity of the circular fixed shell 24. The present application can control the overall height of the device by manually rotating the rotating handle 19, and by inserting the positioning column 27 into the positioning hole of the rotating handle 19, the rotating handle 19 can be locked to avoid rotation caused by accidental collision. When the rotating handle 19 needs to be rotated, the limit handle 26 can be manually pulled up, and the upward movement of the limit handle 26 drives the connecting slider 25 to move up. The upward movement of the connecting slider 25 can drive the positioning column 27 to move up, so that the positioning column 27 is separated from the positioning hole of the rotating handle 19, and it can be unlocked, and the rotating handle 19 can be rotated to adjust the height.

[0043] As a preferred technical solution, please refer to Figure 8 As shown, the pipe fixing structure 4 includes a first pipe clamp 29, a first connecting plate 30, a second pipe clamp 31, a second connecting plate 32, a fixing screw 33 and a fixing nut 34. The first pipe clamp 29 is fixedly arranged at the top of the supporting structure 3, and the first connecting plates 30 are fixedly arranged at both ends of the first pipe clamp 29. The second connecting plates 32 are fixedly connected at both ends of the second pipe clamp 31. A fixing screw 33 is fixedly arranged on the upper surface of the first connecting plate 30. The fixing screw 33 passes through the second connecting plate 32 and slides with the second connecting plate 32. A fixing nut 34 is threadedly connected to the fixing screw 33. The heating pipe 5 can be fixed by clamping the first pipe clamp 29 and the second pipe clamp 31, and the clamping and fixing of the heating pipe 5 is achieved by tightening the fixing nut 34.

[0044] For further technical solutions, see Figure 9 、 Figure 10As shown, the auxiliary structure 40 includes a cylindrical cavity 35, a piston 36, a push rod 37, a pressure plate 38, a connecting air channel 39, a connecting sleeve rod 41, a connecting rod 42, a spring 43, a fixed plate 44, a fixed cylinder 45, a connecting piston 46, a moving rod 47 and a connecting pipe 48, wherein the first pipe splint 29 and the second pipe splint 31 are both provided with a cylindrical cavity 35, and there are several cylindrical cavities 35, and several of the cylindrical cavities 35 are distributed in an annular shape inside the first pipe splint 29 and the second pipe splint 31, and connecting air channels 39 are provided between several of the cylindrical cavities 35, and the piston 36 is slidably connected to the cylindrical cavity 35, and one end of the push rod 37 is fixedly connected to the bottom surface of the piston 36, and the other end of the push rod 37 is fixedly connected to the pressure plate 38.

[0045] For specific technical solutions, please refer to Figure 10As shown, the connecting rod 41 is provided with two, and the two connecting rods 41 are fixedly connected to the two first connecting plates 30 respectively, and a connecting rod 42 is slidably connected in the inner cavity of the connecting rod 41, and one end of a spring 43 is fixedly connected to the bottom end of the connecting rod 42, and the other end of the spring 43 is fixedly connected to the upper wall of the inner cavity of the connecting rod 41, and a fixed plate 44 is fixedly connected to the top end of the connecting rod 42, and the fixed cylinder 45 is fixedly connected to the second connecting plate 32, and a connecting piston 46 is slidably connected in the inner cavity of the fixed cylinder 45, and a connecting piston 46 is fixedly connected on the upper surface of the connecting piston 46. One end of the movable rod 47, the other end of the movable rod 47 passes through the upper wall of the inner cavity of the fixed cylinder 45 and extends to the outside of the wall, the top of the movable rod 47 is fixedly connected to the fixed plate 44, and one end of the connecting pipe 48 is fixedly connected to the bottom wall of the inner cavity of the fixed cylinder 45, and the other end of the connecting pipe 48 extends into the cylindrical cavity 35 and is fixedly connected to the second pipe clamp 31. After the pipe is clamped and fixed in this application, due to the setting of the auxiliary structure 40, the elastic action of the spring 43 can exert a downward pulling force on the connecting rod 42, thereby driving the fixed plate 44 to press down, and the fixed plate 44 The downward pressure of the moving rod 47 drives the moving rod 47 to press down, and the downward pressure of the moving rod 47 drives the connecting piston 46 to press down, so that the gas inside the connecting piston 46 can be transported to the cylindrical cavity 35 through the downward pressure of the connecting piston 46, and then it can play the role of pushing the piston 36, so that the piston 36 pushes the push rod 37 and the pressure plate 38 to move, so that the pressure plate 38 is pressed against the outer surface of the heating pipe 5 and fixed. Due to the elastic force of the spring 43 pulling down, the pipe can always be pressed against and fixed. When the heating pipe 5 vibrates, the vibration of the heating pipe 5 will also be transmitted to the second pipe clamping plate 31, and the second pipe clamping plate When the plate 31 vibrates up and down, it will drive the second connecting plate 32 to jump up and down. The jumping of the second connecting plate 32 will drive the fixing cylinder 45 to jump, and the jumping of the fixing cylinder 45 will further press the connecting piston 46 in the inner cavity of the connecting piston 46. The downward pressure of the connecting piston 46 will further push the gas into the cylindrical cavity 35, thereby further pushing the piston 36, so that the pressing force of the pressure plate 38 on the heating pipe 5 is further enhanced, making the fixation of the heating pipe 5 more stable, thereby reducing the loosening phenomenon caused by vibration, having better stability, and also reducing repeated bouncing.

[0046] The benefits of this application are:

[0047] 1. The present invention has a reasonable structure and is easy to use. It can conveniently fix and support the heating pipe. In addition, the present invention has a compensation structure, which can provide a supplementary function. It can compensate for the thermal deformation and expansion of the heating pipe, thus avoiding deformation and damage. The compensation structure has a self-locking function, which can effectively prevent deviation caused by other external factors. It has both a compensatory effect and good stability.

[0048] 2. The present application has a pipe fixing structure, through which the heating pipe can be fixed more conveniently, and the pipe fixing structure cooperates with the auxiliary structure to fix the heating pipe more stably, which can effectively avoid loosening caused by long-term vibration, making the fixing stability better. Compared with ordinary spring shock absorption, the anti-seismic and anti-loosening effect is better, reducing the bounce caused by vibration, avoiding the looseness of the gap caused by vibration, and avoiding instability.

[0049] The foregoing description is merely a preferred embodiment of the present application and is not intended to limit the present application. Persons skilled in the art will readily appreciate that various modifications and variations are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.

Claims

1. A heating pipe installation support structure, characterized by: It comprises a base structure (1), a compensation structure (2), a support structure (3), a pipeline fixing structure (4) and an auxiliary structure (40); A compensation structure (2) is installed on the base structure (1), a support structure (3) is installed on the upper surface of the compensation structure (2), a pipeline fixing structure (4) is installed on the top of the support structure (3), and an auxiliary structure (40) for stabilizing the pipeline is provided on the pipeline fixing structure (4); The pipeline fixing structure (4) comprises a first pipeline clamping plate (29), a first connecting plate (30), a second pipeline clamping plate (31), a second connecting plate (32), a fixing screw (33) and a fixing nut (34); the first pipeline clamping plate (29) is fixedly arranged at the top end of the supporting structure (3); the first connecting plate (30) is fixedly arranged at both ends of the first pipeline clamping plate (29); the second connecting plate (32) is fixedly connected at both ends of the second pipeline clamping plate (31); a fixing screw (33) is fixedly arranged on the upper surface of the first connecting plate (30); the fixing screw (33) passes through the second connecting plate (32) and is slidably matched with the second connecting plate (32); and the fixing nut (34) is threadedly connected to the fixing screw (33); The auxiliary structure (40) includes a cylindrical cavity (35), a piston (36), a push rod (37), a pressure plate (38), a connecting airway (39), a connecting sleeve rod (41), a connecting rod (42), a spring (43), a fixed plate (44), a fixed cylinder (45), a connecting piston (46), a moving rod (47) and a connecting pipe (48). The first pipe clamping plate (29) and the second pipe clamping plate (31) are both provided with a cylindrical cavity (35). The cylindrical cavity A plurality of cavities (35) are provided, and the plurality of cylindrical cavities (35) are distributed in an annular manner inside the first pipe clamping plate (29) and the second pipe clamping plate (31). A connecting air passage (39) is provided between the plurality of cylindrical cavities (35). A piston (36) is slidably connected to the cylindrical cavity (35), one end of a push rod (37) is fixedly connected to the bottom surface of the piston (36), and a pressure plate (38) is fixedly connected to the other end of the push rod (37); Two connecting sleeve rods (41) are provided, and the two connecting sleeve rods (41) are fixedly connected to the two first connecting plates (30) respectively. A connecting rod (42) is slidably connected in the inner cavity of the connecting sleeve rod (41), and one end of a spring (43) is fixedly connected to the bottom end of the connecting rod (42), and the other end of the spring (43) is fixedly connected to the upper wall of the inner cavity of the connecting sleeve rod (41). A fixed plate (44) is fixedly connected to the top end of the connecting rod (42), and the fixed cylinder (45) is fixedly connected to the second connecting plate (32). A connecting piston (46) is slidably connected in the inner cavity of the cylinder (45), one end of a moving rod (47) is fixedly connected to the upper surface of the connecting piston (46), the other end of the moving rod (47) passes through the upper wall of the inner cavity of the fixed cylinder (45) and extends outside the wall, the top end of the moving rod (47) is fixedly connected to the fixed plate (44), one end of a connecting pipe (48) is fixedly connected to the bottom wall of the inner cavity of the fixed cylinder (45), the other end of the connecting pipe (48) extends into the cylindrical cavity (35) and is fixedly connected to the second pipe clamp (31); The compensation structure (2) comprises a support seat (11), a guide column (9), a positioning pin column (12), a connecting spring (13) and a round head (14); two guide columns (9) are provided, and both guide columns (9) pass through the support seat (11) and are slidably matched with the support seat (11); the two ends of the two guide columns (9) are respectively fixedly connected to the two positioning plates (7); and semicircular guide grooves (10) are provided on both sides of the guide column (9); An inner cavity is provided inside the support seat (11), and a positioning pin (12) is slidably connected in the inner cavity of the support seat (11). A round head (14) is provided at one end of the positioning pin (12), and the round head (14) is pressed against the semicircular guide groove (10) of the guide column (9). One end of the positioning pin (12) is fixedly connected to one end of a connecting spring (13), and the other end of the connecting spring (13) is fixedly connected to the inner cavity side wall of the support seat (11), and the connecting spring (13) is in a compressed state.

2. A heating pipe installation support structure according to claim 1, characterized in that: The base structure (1) comprises a fixed base plate (6), a positioning plate (7) and a fixed ear plate (8); the positioning plates (7) are fixedly arranged at both ends of the fixed base plate (6); and the fixed ear plates (8) are fixedly arranged at the four corners of the fixed base plate (6).

3. A heating pipe installation support structure according to claim 1, characterized in that: The support structure (3) comprises a first support column (15), a second support column (16), a fixed block (17), a first bevel gear (18), a rotating handle (19), a second bevel gear (20), a guide slot (21), a guide block (22), a threaded rod (23) and a circular fixed shell (24); the first support column (15) is fixedly connected to the upper surface of the support seat (11); the second support column (16) is slidably connected in the inner cavity of the first support column (15); the fixed block (17) is fixedly arranged in the inner cavity of the second support column (16); guide blocks (22) are fixedly arranged on both sides of the outer surface of the second support column (16); a guide slot (21) is provided on the inner wall of the first support column (15); the guide block (22) extends to the guide slot (21) and slides with the guide slot (21).

4. A heating pipe installation support structure according to claim 3, characterized in that: One end of a threaded rod (23) is rotatably connected to the bottom wall of the inner cavity of the first support column (15), and the other end of the threaded rod (23) extends into the inner cavity of the second support column (16). The threaded rod (23) passes through the fixed block (17) and is threadedly engaged with the fixed block (17). A first bevel gear (18) is fixedly provided on the threaded rod (23). A rotating handle (19) is rotatably connected to the side wall of the first support column (15), and one end of the rotating handle (19) extends into the inner cavity of the first support column (15). A second bevel gear (20) is fixedly connected to one end of the rotating handle (19), and the second bevel gear (20) and the first bevel gear (18) are meshed with each other.

5. The heating pipe installation support structure according to claim 3, characterized in that: A plurality of positioning holes are provided on the arc surface of the rotating handle (19); a circular fixed shell (24) is fixedly provided on the outer surface of the first support column (15); a connecting slider (25) is slidably connected in the inner cavity of the circular fixed shell (24); a positioning column (27) is fixedly provided on the bottom surface of the connecting slider (25); the bottom end of the positioning column (27) extends into the positioning hole of the rotating handle (19); one end of a limiting handle (26) is fixedly connected to the upper surface of the connecting slider (25); the other end of the limiting handle (26) passes through the upper wall of the inner cavity of the circular fixed shell (24) and extends to the outside of the wall; one end of a positioning spring (28) is fixedly connected to the upper surface of the connecting slider (25); the other end of the positioning spring (28) is fixedly connected to the upper wall of the inner cavity of the circular fixed shell (24).

Citation Information

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