Supporting device for heat distribution pipeline
By designing a multi-layered support structure and a buffer layer, the problem of insufficient support for thermal pipelines was solved, achieving stable support and cost savings, while protecting the environment and personal safety.
Patent Information
- Application Number
- CN202422871062.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-22
AI Technical Summary
The existing support structure of heating pipelines is insufficient after the heating medium is changed, and cannot stably support the heating pipelines. This leads to personal injury, environmental pollution and high costs associated with the removal and installation of concrete supports.
The structure employs a multi-layered support structure, including T-shaped support frames, connectors, and concrete support frames. The multi-layered support is achieved through welding and bolting, combined with a buffer layer and stiffening plates to provide stable support.
It provides strong support for heating pipelines, protects human health and the environment, saves time and labor costs, and avoids the hazards and pollution of dismantling and installing concrete supports.
Smart Images

Figure CN223524615U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to heat pipeline support structure technical field, concretely relates to a heat pipeline support device. BACKGROUND
[0002] At present, with the change of heat medium in heat pipeline (namely from water vapor to water flow), the support structure of heat pipeline needs to be further strengthened.
[0003] In the prior art, the support structure of heat pipeline (namely heat supply pipeline) is to set a base and a concrete support frame in turn under the heat pipeline, thereby realizing the support of heat pipeline.
[0004] However, the support force of a layer of support structure (namely base) fixedly arranged under the heat pipeline is insufficient to stably support the heat pipeline.
[0005] Therefore, a heat pipeline support device is urgently needed, which can stably support the heat pipeline. SUMMARY
[0006] To solve the above technical problems, the utility model provides a heat pipeline support device, which can realize powerful support of heat pipeline through T-shaped support frame and connecting piece, avoids removing the concrete support frame originally supporting the heat pipeline in the prior art, and greatly saves time and labor cost.
[0007] The utility model provides a heat pipeline support device, which is characterized by comprising: a first support mechanism arranged below the heat pipeline and used for initially supporting the heat pipeline, a second support mechanism arranged below the first support mechanism and used for secondarily supporting the heat pipeline, a third support mechanism arranged below the second support mechanism and used for thirdly supporting the heat pipeline, and a concrete support frame arranged below the third support mechanism.
[0008] The second support mechanism comprises a T-shaped support frame arranged below the first support mechanism.
[0009] The third support mechanism comprises a connecting piece fixedly arranged below the T-shaped support frame, and the connecting piece is fixedly connected with the concrete support frame.
[0010] The heat pipeline support device is characterized in that the T-shaped support frame is a T-shaped support steel frame.
[0011] The heat pipeline support device is characterized in that the connecting piece is provided with a groove on the bottom surface for clamping the concrete support frame.
[0012] The connecting piece is fixedly connected with the concrete support frame through a plurality of pairs of bolts and nuts matched with the threaded holes.
[0013] The first support mechanism comprises a U-shaped support seat fixedly arranged below the heat pipe and a cross beam arranged below the U-shaped support seat.
[0014] The first support mechanism comprises a U-shaped support seat fixedly arranged below the heat pipe and a cross beam arranged below the U-shaped support seat.
[0015] The first support mechanism comprises a U-shaped support seat fixedly arranged below the heat pipe and a cross beam arranged below the U-shaped support seat.
[0016] Beneficial effect reasoning analysis is as follows:
[0017] In the prior art, a layer of support structure (i.e. base) fixedly arranged below the heat pipe is insufficient in supporting force for stably supporting the heat pipe.
[0018] And in the technical scheme of the utility model, on the basis of removing the base between the heat pipe and the original concrete support frame, the first support mechanism, the second support mechanism (specifically a T-shaped support frame) and the third support mechanism (specifically a connecting piece) are sequentially arranged between the heat pipe and the original concrete support frame.
[0019] It is also because that a plurality of support mechanisms (specifically the first support mechanism, the T-shaped support frame and the connecting piece) are arranged between the heat pipe and the concrete support frame that the heat pipe is stably supported.
[0020] The prior art that only one layer of support mechanism cannot stably support the heat pipe and that the original concrete support frame needs to be removed first and then the steel structure support frame is installed to cause personal injury, environmental pollution and a large amount of time and labor cost is avoided.
[0021] Therefore, by adopting the technical scheme of the utility model, the heat pipe can be stably supported, personal health and environmental tidiness can be protected, and time and labor cost can be saved. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 is a front view of the heat pipe support device provided by the utility model;
[0023] Figure 2 For Figure 1 The perspective view of the T-shaped support frame 1,
[0024] Figure 3 For Figure 1 The perspective view of the connecting piece 2,
[0025] Figure 4 For Figure 1 The perspective view of the reinforced plate 6,
[0026] Explanation of reference signs:
[0027] T-shaped support frame 1; connecting piece 2;
[0028] U-shaped support seat 3; cross beam 4; first buffer layer 5;
[0029] Reinforced plate 6; heat pipe 7; concrete support frame 8. DETAILED DESCRIPTION
[0030] The utility model will be further explained in detail below by combining with the embodiments and drawings. It can be understood that the specific embodiments described here are only used to explain the related utility model, and not limited to the utility model. In addition, it should be noted that only the parts related to the utility model are shown in the drawings for convenience of description.
[0031] It should be noted that the features of the embodiments in the utility model, i.e. the features of the embodiments, can be combined with each other without conflict. The utility model will be described in detail below with reference to the embodiments and in combination with the drawings.
[0032] In the prior art, the support force of a layer of support structure (i.e. base) fixedly arranged below the heat pipe is insufficient for the heat pipe, and cannot stably support the heat pipe.
[0033] Based on this, the utility model provides a support device for heat pipe, which can realize strong support for the heat pipe through the T-shaped support frame and the connecting piece, avoids removing the concrete support frame originally supporting the heat pipe in the prior art, and greatly saves time and labor cost.
[0034] Figure 1 The front view of the support device for heat pipe provided by the utility model, Figure 2 For Figure 1 The perspective view of the T-shaped support frame 1, Figure 3 For Figure 1 The perspective view of the connecting piece 2, Figure 4 For Figure 1 The perspective view of the reinforced plate 6.
[0035] ReferenceFigure 1 The utility model provides a kind of supporting device for heat pipe, comprising: the first supporting mechanism for initially supporting heat pipe 7 being arranged below heat pipe 7, the second supporting mechanism for secondarily supporting heat pipe 7 being arranged below the first supporting mechanism, the third supporting mechanism for thirdly supporting heat pipe 7 being arranged below the second supporting mechanism, and concrete support frame 8 being arranged below the third supporting mechanism;
[0036] The second supporting mechanism includes T-shaped support frame 1 arranged below the first supporting mechanism.
[0037] The third supporting mechanism includes connecting piece 2 fixedly arranged below T-shaped support frame 1, and connecting piece 2 and concrete support frame 8 are fixedly connected.
[0038] Wherein, T-shaped support frame 1 is arranged below the first supporting mechanism.
[0039] T-shaped support frame 1 and connecting piece 2 are weldedly connected.
[0040] In specific implementation, first, the base between heat pipe 7 and original concrete support frame 8 (i.e. heat pipe supporting base) is removed. Secondly, T-shaped support frame 1 and connecting piece 2 can be integrally connected (for example, welded). Thirdly, the first supporting mechanism is arranged below heat pipe 7. Fourthly, integrally connected T-shaped support frame 1 and connecting piece 2 are placed below the first supporting mechanism, and connecting piece 2 is sleeved above the concrete support frame 8 below. Fifthly, connecting piece 2 and concrete support frame 8 are fixedly connected, and the stable support for heat pipe is realized through multi-layer supporting structure.
[0041] Beneficial effect reasoning analysis as follows:
[0042] In prior art, the supporting force of one layer of supporting structure (i.e. base) fixedly arranged below heat pipe 7 is insufficient, and heat pipe 7 cannot be stably supported.
[0043] And in the technical scheme of the utility model, on the basis of removing the base between heat pipe 7 and original concrete support frame 8, the first supporting mechanism, the second supporting mechanism (specifically T-shaped support frame 1) and the third supporting mechanism (specifically connecting piece 2) are sequentially arranged between heat pipe 7 and original concrete support frame 8.
[0044] It is also because that multiple supporting mechanisms (specifically the first supporting structure, T-shaped support frame 1 and connecting piece 2) are arranged between heat pipe 7 and concrete support frame 8, and the powerful support for heat pipe 7 is realized.
[0045] The present application avoids the situation that only one layer of support mechanism cannot stably support the heat pipe 7, and the original concrete support 8 needs to be removed first, and then the steel structure support is installed, which brings personal injury, environmental pollution, and a large amount of time and labor cost.
[0046] Therefore, by adopting the technical scheme of the present application, the heat pipe 7 can be stably supported, the personal health and the environment can be protected, and the time and labor cost can be saved.
[0047] In the foregoing embodiment, a support device for a heat pipe is introduced. In another embodiment of the present application, the specific material of the T-shaped support frame 1 is introduced.
[0048] For example, the T-shaped support frame 1 is a T-shaped steel support frame.
[0049] In the foregoing embodiment, the specific material of the T-shaped support frame 1 is introduced. In another embodiment of the present application, the specific structure of the connecting piece 2 is introduced.
[0050] Referring to Figure 3 For example, a groove 2-1 for clamping the concrete support frame 8 is formed on the bottom surface of the connecting piece 2.
[0051] For example, the shape of the connecting piece 2 can be a cube or a cylinder, and the shape of the connecting piece 2 can be set according to the shape of the concrete support frame 8, and the shape of the connecting piece 2 is adapted to the shape of the concrete support frame 8.
[0052] It should be noted that the groove 2-1 can enable the connecting piece 2 to be clamped with the concrete support frame 8 below.
[0053] It can be understood that the size of the groove 2-1 is adapted to the size of the concrete support frame 8.
[0054] In a specific implementation, first, five steel plates are welded into the connecting piece 2 with the groove 2-1 on the bottom. Second, the connecting piece 2 and the T-shaped support frame 1 are integrally connected. Third, the integrally connected T-shaped support frame 1 and the connecting piece 2 are arranged below the first support mechanism. Fourth, the connecting piece 2 and the concrete support frame 8 are fixedly connected.
[0055] In the foregoing embodiment, the specific structure of the connecting piece 2 is introduced. In another embodiment of the present application, the specific connection manner of the connecting piece 2 and the concrete support frame 8 is introduced.
[0056] For example, a plurality of threaded holes are formed on the surface of the connecting piece 2, and the connecting piece 2 and the concrete support frame 8 are fixedly connected through a plurality of pairs of bolts and nuts matched with the threaded holes.
[0057] In the specific implementation, when the connecting piece 2 is sleeved on the concrete support frame 8, the bolt can be inserted into the threaded hole formed on the connecting piece 2 and the concrete support frame 8 by using a tool, and then the position of the bolt is limited by using a nut, so that the relative fixation between the connecting piece 2 and the concrete support frame 8 is realized.
[0058] In the foregoing embodiment, the specific connection mode of the connecting piece 2 and the concrete support frame 8 is introduced. In another embodiment of the utility model, the specific structure of the first support structure is introduced.
[0059] Referring to Figure 1 For example, the first support mechanism includes a U-shaped support seat 3 fixedly arranged below the heat pipe 7 and a cross beam 4 arranged below the U-shaped support seat 3.
[0060] In the specific implementation, the U-shaped support seat 3 can be welded below the heat pipe 7, and then the cross beam 4 is arranged below the U-shaped support seat 3.
[0061] In the foregoing embodiment, the specific structure of the first support structure is introduced. In another embodiment of the utility model, a buffer assembly for buffering the pressure of the heat pipe 7 and arranged between the heat pipe 7 and the first support structure (specifically the cross beam 4) is introduced.
[0062] For example, the first buffer layer 5 for initially buffering the pressure of the heat pipe 7 and arranged between the heat pipe 7 and the U-shaped support seat 3 and the second buffer layer for secondarily buffering the pressure of the heat pipe 7 and arranged between the U-shaped support seat 3 and the cross beam 4 are further included.
[0063] The second buffer layer can be a polytetrafluoroethylene pad.
[0064] In the foregoing embodiment, the buffer assembly for buffering the pressure of the heat pipe and arranged between the heat pipe and the first support structure (specifically the cross beam 4) is introduced. In another embodiment of the utility model, a reinforcing assembly of the T-shaped support frame 1 is introduced.
[0065] Referring to Figure 1 and combining Figure 4 The reinforcing plate 6 for supporting the T-shaped support frame 1 and arranged on both sides of the web plate of the T-shaped support frame 1 is further included.
[0066] In the specific implementation, the reinforcing plate 6 can be arranged on both sides of the web plate of the T-shaped support frame 1. The reinforcing plate 6 on one side can be a continuous structure (see Figure 4 ) or a discrete structure (i.e. multiple reinforcing plates 6 arranged at intervals). The specific structure of the reinforcing plate 6 can be arranged according to the actual situation, and the powerful support of the T-shaped support frame 1 can be realized.
[0067] The above is only the preferred embodiment of the present application, and does not limit the present application, and any simple modification, change and equivalent structure change according to the technical essence of the present application to the above embodiment still belong to the protection scope of the technical scheme of the present application.
Claims
1. A support device for a heat pipe, characterized by: The utility model relates to a heat pipe support frame, including: a first support mechanism arranged below a heat pipe (7) for initially supporting the heat pipe (7), a second support mechanism arranged below the first support mechanism for secondarily supporting the heat pipe (7), a third support mechanism arranged below the second support mechanism for thirdly supporting the heat pipe (7), and a concrete support frame (8) arranged below the third support mechanism; the second support mechanism comprises a T-shaped support frame (1) arranged below the first support mechanism; the third support mechanism comprises a connecting piece (2) fixedly arranged below the T-shaped support frame (1), and the connecting piece (2) and the concrete support frame (8) are fixedly connected.
2. The support device for a heat pipe according to claim 1, wherein: The T-shaped support frame (1) is a T-shaped support steel frame.
3. The support device for heat pipes according to claim 1, characterized in that: The bottom surface of the connecting piece (2) is provided with a groove (2-1) for clamping the concrete support frame (8).
4. The support device for a heat pipe according to claim 3, wherein: A plurality of threaded holes are formed in the peripheral surface of the connecting piece (2), and the connecting piece (2) and the concrete support frame (8) are fixedly connected through a plurality of pairs of bolts and nuts matched with the threaded holes.
5. The support device for heat pipes according to claim 1, characterized in that: The first support mechanism comprises a U-shaped support seat (3) fixedly arranged below the heat pipe (7) and a cross beam (4) arranged below the U-shaped support seat (3).
6. A support device for a heat pipe according to claim 5, characterized in that: Further comprising a first buffer layer (5) arranged between the heat pipe (7) and the U-shaped support seat (3) for initially buffering the pressure of the heat pipe (7), and a second buffer layer arranged between the U-shaped support seat (3) and the cross beam (4) for secondarily buffering the pressure of the heat pipe (7).
7. The support device for heat pipes according to claim 1, characterized in that: Further comprising a reinforced plate (6) arranged on both sides of the web of the T-shaped support frame (1) for supporting the T-shaped support frame (1).