Thermal control construction damping structure

By using a fixed frame and shock-absorbing mechanism in thermal control construction, and utilizing damping oil friction to convert vibration energy, the problem of complex installation of existing thermal control pipeline shock absorption structures is solved, achieving a compact and efficient shock absorption effect.

CN224049833UActive Publication Date: 2026-03-27BEIJING QIHANGZHANYE ELECTROMECHANICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In current thermal control construction, the installation of vibration damping structures for thermal control pipelines is complex and difficult to promote. Existing devices are large in size and have cumbersome structures, which affects construction efficiency.

Method used

It adopts a fixed frame, rotating parts, fixed ring and shock absorption mechanism, including connecting rod, spring, crossbar, slot, buffer cylinder and piston, and converts vibration energy through damping oil friction to achieve rapid shock absorption.

Benefits of technology

It provides compact and well-integrated vibration damping, quickly absorbing pipeline vibration energy and improving construction convenience and vibration damping effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a thermal control construction damping structure which comprises a fixing frame, a rotating piece is movably arranged at the lower end of the fixing frame through a rotating shaft, a first fixing ring is fixedly arranged on one side of the rotating piece, and a second fixing ring is arranged on one side of the first fixing ring. A damping and buffering mechanism is arranged on the side, away from the first fixing ring, of the fixing frame and the rotating piece, the damping and buffering mechanism comprises a connecting rod, a fixing plate, a spring, a transverse rod and a clamping groove, the connecting rod is movably arranged on one side of the fixing frame in a penetrating and inserting mode, and the fixing plate is fixedly arranged at the upper end of the connecting rod; the surface of the connecting rod is sleeved with a spring between the fixing plate and the fixing frame, the connecting rod movably penetrates through the fixing frame and extends to the lower end of the fixing frame, and a transverse rod is fixedly arranged at the lower end of the connecting rod. The device is good in using effect, simple and compact in overall structure, small in occupied area and convenient to install and fix, thereby being convenient to popularize and use.
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Description

TECHNICAL FIELD

[0001] The utility model relates to shock attenuation structure technical field, concretely is a heat control construction shock attenuation structure. BACKGROUND

[0002] The heat control system is a crucial component in complex systems such as spacecraft or thermal power plants. The main task of the heat control system is to control the thermal parameters of the equipment, such as temperature, temperature difference and humidity, to meet the overall design requirements.

[0003] The heat control construction mainly refers to the engineering activities of installing, debugging and maintaining the heat control system. As a key part of the engineering project, the heat control system is mainly responsible for monitoring and adjusting the temperature of the equipment to ensure the normal operation of the entire system.

[0004] In the prior art, sometimes the installation of heat control pipes is required during heat control construction. In order to prevent damage to the pipe connection due to subsequent vibration, important pipe parts such as heat dissipation pipes often need to be installed with shock absorption. However, the existing pipe shock absorption structure, such as the pipe hoisting shock absorption frame with application number 202220517813.8, has the disadvantage of being difficult to install (assemble) and having a complex structure. In order to ensure shock absorption, the device often needs to be articulated at multiple places, so the overall volume and structure of the device are complex and difficult to promote and use. Therefore, a heat control construction shock attenuation structure is needed to improve this. UTILITY MODEL CONTENT

[0005] The utility model aims to provide a heat control construction shock attenuation structure to solve the problems raised in the background art.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a heat control construction shock attenuation structure, comprising a fixed frame, a rotating part is movably arranged at the lower end of the fixed frame through a rotating shaft, a first fixed ring is fixedly arranged on one side of the rotating part, a second fixed ring is arranged on one side of the first fixed ring, a shock absorption and buffering mechanism is arranged on the side of the fixed frame and the rotating part away from the first fixed ring, the shock absorption and buffering mechanism comprises a connecting rod, a fixed plate, a spring, a cross bar and a clamping groove, the connecting rod is movably inserted into the fixed frame on one side of the fixed frame, the fixed plate is fixedly arranged on the upper end of the connecting rod, the spring is sleeved between the fixed plate and the fixed frame on the surface of the connecting rod, the connecting rod extends to the lower end of the fixed frame by movably inserting through the fixed frame, the cross bar is fixedly arranged on the lower end of the connecting rod, the clamping groove is arranged on the surface of the rotating part, and the clamping groove is movably clamped on the outer surface of the cross bar.

[0007] Preferably, the shock absorbing buffer mechanism further comprises a buffer oil cylinder, a piston, the lower end of the buffer oil cylinder is fixedly arranged between the fixed frame and one side of the fixed plate, the movable end of the buffer oil cylinder is fixedly arranged with the piston, the piston is movably clamped in the buffer oil cylinder, and the buffer oil cylinder is provided with damping oil; the shock absorbing buffer mechanism of the device also needs the damping oil in the piston and the buffer oil cylinder to provide damping when absorbing shock, and if there is no such damping, the rotating part and the pipeline in the first fixed ring and the second fixed ring will always shake under the action of the spring, and with such damping, the piston will be continuously moved up and down in the buffer oil cylinder when the rotating ring rotates and shakes, at which time the piston and the damping oil in the buffer oil cylinder are rubbed, so that the mechanical energy during the shock can be quickly converted into heat energy of friction, thereby helping the rotating part to quickly stop shaking and absorbing energy, so as to improve the shock absorbing and buffering effect of the device.

[0008] Preferably, the piston surface is uniformly provided with a plurality of through grooves, and the through grooves can increase the friction area of the piston and the damping oil in the buffer oil cylinder, thereby improving the damping effect.

[0009] Preferably, the fixed frame is fixedly provided with a fixed plate at the upper end, and mounting holes are formed at the four corners of the upper end surface of the fixed plate, so that the device can be conveniently fixed and installed at the target position through the fixed plate and the mounting holes.

[0010] Preferably, the spring is fixedly connected between the upper end of the spring and the fixed plate, and the lower end of the spring and the fixed frame, so that the connecting rod can be automatically reset by the spring, thereby driving the rotating part to reset.

[0011] Preferably, the first fixed ring and the second fixed ring are provided with locking screws, so that the first fixed ring and the second fixed ring can be fixed through the locking screws, thereby clamping and fixing the pipeline between the first fixed ring and the second fixed ring.

[0012] Compared with the prior art, the device has the advantages that:

[0013] 1、The device is small in size and high in overall height integration, can provide good fixing effect and shock absorbing effect for the pipeline, and is convenient to use and promote.

[0014] 2、The utility model discloses can convert the vibration of pipeline into the rotation of rotating part, and the connecting rod can be driven to move up or move down through the clamping groove when the rotating part rotates, so that the spring can help the connecting rod reset, and the connecting rod moves up and down at this time, and the buffer oil cylinder is also constantly elongated or shortened, so that the piston and the damping oil in the buffer oil cylinder can be rubbed, thereby the mechanical energy during vibration can be quickly converted into the heat energy of friction, so that the rotating part is quickly stopped from shaking and absorbs energy, thereby improving the damping and buffering effect of the device, so that the pipeline can be quickly stopped from vibrating, and excellent damping effect is provided for the pipeline. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a whole structure schematic view of a heat control construction damping structure of the utility model;

[0016] Figure 2 It is a front view of a heat control construction damping structure of the utility model;

[0017] Figure 3 It is a side view of a heat control construction damping structure of the utility model;

[0018] Figure 4 It is a sectional view of a heat control construction damping structure of the utility model;

[0019] Figure 5 It is a heat control construction damping structure of the utility model Figure 4 It is an enlarged view of A in the heat control construction damping structure.

[0020] In the drawing: 1, fixed frame; 2, rotating part; 3, first fixed ring; 4, second fixed ring; 5, connecting rod; 6, fixed plate; 7, spring; 8, cross bar; 9, clamping groove; 10, buffer oil cylinder; 11, piston; 12, through slot; 13, fixed plate; 14, mounting hole; 15, locking screw. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0022] Please refer to Figures 1-5The utility model provides a technical scheme: a heat control construction damping structure, including fixed frame 1, the lower extreme of fixed frame 1 is swingly provided with rotating part 2 through the pivot, one side of rotating part 2 is fixedly provided with first fixed ring 3, one side of first fixed ring 3 is provided with second fixed ring 4, and the side, away from first fixed ring 3, of fixed frame 1 and rotating part 2 is provided with damping buffer mechanism, and the damping buffer mechanism includes connecting rod 5, fixed plate 13, spring 7, cross bar 8, clamping groove 9, one side of fixed frame 1 is swingly inserted and is provided with connecting rod 5, and the upper end of connecting rod 5 is fixedly provided with fixed plate 13, and the surface of connecting rod 5 is provided with spring 7 between fixed plate 13 and fixed frame 1, and connecting rod 5 swingly inserts through fixed frame 1 and extends to the lower extreme of fixed frame 1, and the lower end of connecting rod 5 is fixedly provided with cross bar 8, and the surface of rotating part 2 is provided with clamping groove 9, and clamping groove 9 swingly engages in the outer side surface of cross bar 8.

[0023] The damping buffer mechanism further includes buffer oil cylinder 10 and piston 11, the side, between the lower end of fixed plate 13 and fixed frame 1, is fixedly provided with buffer oil cylinder 10, the active end of buffer oil cylinder 10 is fixedly provided with piston 11, and piston 11 swingly engages in the inside of buffer oil cylinder 10, and the inside of buffer oil cylinder 10 is provided with damping oil; the damping buffer mechanism of the device further needs the damping oil in the inside of piston 11 and buffer oil cylinder 10 to provide damping when damping, if there is no this part of damping under the action of spring 7, the pipeline in the inside of rotating part 2 and first fixed ring 3 and second fixed ring 4 will always shake, and with this part of damping, when rotating ring rotates and shakes and buffers, will continuously drive piston 11 to move up and down in the inside of buffer oil cylinder 10, at this moment, piston 11 and the damping oil in the inside of buffer oil cylinder 10 rub, to convert the mechanical energy when shaking into the heat energy of friction quickly, so as to help rotating part 2 to stop shaking and absorb energy quickly, to improve the damping buffer effect of the device;

[0024] The surface of piston 11 is uniformly provided with a plurality of through grooves 12, and the friction area of the damping oil in the inside of piston 11 and buffer oil cylinder 10 can be increased through the through grooves 12, so as to improve the damping effect;

[0025] The upper end of fixed frame 1 is fixedly provided with fixed plate 13, and the upper end surface of fixed plate 13 is provided with mounting holes 14 at four corners, and the device can be conveniently fixed and installed at the target position through fixed plate 13 and mounting holes 14;

[0026] The upper end of spring 7 is fixedly connected between spring 7 and fixed plate 13, and the lower end of spring 7 is fixedly connected between spring 7 and fixed frame 1, and connecting rod 5 can be automatically reset through spring 7, so as to drive rotating part 2 to reset;

[0027] The first fixed ring 3 and the second fixed ring 4 are provided with locking screws 15, the first fixed ring 3 and the second fixed ring 4 can be fixed through the locking screws 15, so that the pipeline between the first fixed ring 3 and the second fixed ring 4 can be clamped and fixed.

[0028] Working principle: when using the device, the device is small in size, and the overall height integration can provide good fixing effect and damping effect for the pipeline, so that the use can be facilitated;

[0029] When performing thermal control construction, the device can be fixed at the target position through the fixing plate 13, and then the thermal control pipeline such as the water cooling pipeline can be fixed through the first fixed ring 3 and the second fixed ring 4;

[0030] When fixing, the pipeline is clamped and fixed through the first fixed ring 3 and the second fixed ring 4, and then when the pipeline works and produces vibration, such as water hammer effect, the pipeline shakes up and down, which can make the rotating part 2 rotate around the rotating shaft, so as to push the connecting rod 5 to move up or down, so that the spring 7 can help the connecting rod 5 to reset, and when the connecting rod 5 moves up and down, the buffer oil cylinder 10 is also constantly elongated or shortened, so that the piston 11 and the damping oil in the buffer oil cylinder 10 are rubbed, so as to quickly convert the mechanical energy in vibration into frictional heat energy, so as to help the rotating part 2 to quickly stop shaking and absorb energy, so as to improve the damping and buffering effect of the device, so as to quickly make the pipeline stop vibrating, and provide excellent damping effect for the pipeline.

[0031] It should be noted that in this text, relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between the entities or operations. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or includes elements inherent to such process, method, article or equipment.

[0032] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A thermal control construction damping structure comprising a fixed frame (1), characterized in that: The lower end of the fixed frame (1) is movably provided with a rotating part (2) through a rotating shaft, one side of the rotating part (2) is fixedly provided with a first fixed ring (3), one side of the first fixed ring (3) is provided with a second fixed ring (4), the fixed frame (1) and the rotating part (2) are provided with a damping buffer mechanism away from one side of the first fixed ring (3), the damping buffer mechanism comprises a connecting rod (5), a fixed plate (13), a spring (7), a cross rod (8) and a clamping groove (9), one side of the fixed frame (1) is movably provided with the connecting rod (5), the upper end of the connecting rod (5) is fixedly provided with the fixed plate (13), the surface of the connecting rod (5) is sleeved with the spring (7) between the fixed plate (13) and the fixed frame (1), the connecting rod (5) movably penetrates through the fixed frame (1) and extends to the lower end of the fixed frame (1), the lower end of the connecting rod (5) is fixedly provided with the cross rod (8), the surface of the rotating part (2) is provided with the clamping groove (9), and the clamping groove (9) is movably clamped on the outer surface of the cross rod (8).

2. The thermal control construction damping structure according to claim 1, characterized in that: The damping buffer mechanism further comprises a buffer oil cylinder (10) and a piston (11), the buffer oil cylinder (10) is fixedly arranged between one side of the lower end of the fixed plate (13) and the fixed frame (1), the movable end of the buffer oil cylinder (10) is fixedly provided with the piston (11), the piston (11) is movably clamped in the buffer oil cylinder (10), and the buffer oil cylinder (10) is provided with damping oil.

3. The thermal control construction damping structure according to claim 2, wherein: The surface of the piston (11) is uniformly provided with a plurality of through grooves (12).

4. The thermal control construction damping structure according to claim 1, wherein: The upper end of the fixed frame (1) is fixedly provided with the fixed plate (13), and the upper end surface of the fixed plate (13) is provided with mounting holes (14) at four corners.

5. The thermal control construction damping structure according to claim 1, wherein: The upper end of the spring (7) is fixedly connected with the fixed plate (13), and the lower end of the spring (7) is fixedly connected with the fixed frame (1).

6. The thermal control construction damping structure of claim 1, wherein: The first fixed ring (3) and the second fixed ring (4) are provided with locking screws (15).

Citation Information

Patent Citations

  • Pipeline hoisting damping frame

    CN216896148U