Damping support
By combining rubber buffer pads and U-shaped spring steel, the problem of reduced damping effect caused by spring fatigue in existing shock-absorbing supports is solved, achieving a more durable and stable damping effect and ensuring the safety and reliability of equipment operation.
Patent Information
- Application Number
- CN202520740142.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-04-18
AI Technical Summary
Existing shock absorber supports mainly rely on springs for support. Long-term use leads to spring fatigue, reduced shock absorption effect, and short service life.
The shock absorption component combines rubber buffer pads and U-shaped spring steel. The rubber buffer pads bear part of the equipment weight and vibration energy, while the U-shaped spring steel provides restoring force. The two work together to absorb and buffer vibrations.
It improves the durability of vibration damping effect and structural stability, extends the service life of vibration damping components, and ensures the safety and reliability of equipment operation.
Smart Images

Figure CN223908704U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to shock absorbing support technical field, concretely relates to a shock absorbing support. BACKGROUND
[0002] Mechanical and electrical equipment will produce vibration when running, generally will install shock absorbing support at the bottom, but the existing shock absorbing support mainly uses spring support, and the weight of the whole equipment is on the spring, which will cause spring fatigue over a long period of time, thereby reducing the shock absorbing effect. CONTENT
[0003] The utility model provides a shock absorbing support, it can overcome certain or some defects of prior art.
[0004] According to the utility model discloses a shock absorbing support, it includes support main part, and support main part includes base, and the base forms the extension cylinder that extends upwards at place, and the extension cylinder is slidably equipped with the installation cover at place, and the extension cylinder forms the installation cavity inside, and the extension cylinder with installation cover between the equipment shock absorbing component, and the shock absorbing component includes the rubber buffer pad that sets up along the installation cavity axis, and along rubber buffer pad circumferential equidistance arrangement's multiple U type spring steels, multiple U type spring steel is respectively equipped between installation cover and base.
[0005] The shock absorbing support of the utility model adopts the shock absorbing component that rubber buffer pad and U type spring steel are combined, and rubber buffer, bears a part of equipment's weight and vibration energy, reduces the pressure and load that U type spring steel bears, avoids the fatigue problem that single spring bears the whole weight of equipment for a long time, prolongs the service life of shock absorbing component, guarantees the durability of shock absorbing effect.
[0006] It can be understood that, through the combined use of rubber buffer pad and U type spring steel, the advantages of both are fully utilized. The damping property of the rubber buffer pad can quickly attenuate the vibration, while the elasticity of the U type spring steel can provide a certain restoring force. The two work together to more comprehensively and effectively absorb and buffer the vibration generated during the operation of the mechanical and electrical equipment, thereby improving the shock absorbing effect of the entire shock absorbing support.
[0007] It can be understood that the U type spring steel is arranged equidistantly around the rubber buffer pad, which makes the shock absorbing force evenly distributed, further improves the structural stability of the entire shock absorbing support, and ensures the safety and reliability of the equipment during operation.
[0008] Preferably, the bottom wall of the installation cover is formed with a concave matching cavity, the matching cavity is formed with a downward extending connecting column along the axis, and the plurality of U type spring steels are arranged between the connecting column and the bottom wall of the installation cavity; wherein, the matching cavity cooperates with the outer wall of the extension cylinder.
[0009] The connecting column is arranged to reserve a certain buffer space between the mounting cover and the extension cylinder, and also provides a fixing and supporting position for the U-shaped spring steel, so that the connecting column can transmit the vibration of the mounting cover to the U-shaped spring steel and the rubber buffer pad, and the U-shaped spring steel and the rubber buffer pad can more effectively absorb and buffer the vibration energy.
[0010] Preferably, a threaded column extending upward is arranged at the top wall of the mounting cover, and the threaded column is used to connect with the base of the electromechanical equipment.
[0011] Through the above structure, the shock-absorbing support can reliably support the electromechanical equipment, and ensure that the electromechanical equipment forms an integral whole with the shock-absorbing support during operation, so as to better transmit the vibration generated by the equipment to the shock-absorbing support for processing.
[0012] It can be understood that the threaded connection has good operability. When installing the electromechanical equipment, only the corresponding threaded hole on the equipment base is matched with the threaded column, and the equipment and the shock-absorbing support can be installed by matching the nut. When the electromechanical equipment needs to be repaired, replaced or the shock-absorbing support needs to be maintained, the two can be easily separated, improving the installation and maintenance efficiency.
[0013] Preferably, a ring groove is formed at the outer wall of the extension cylinder, and a rubber ring is arranged in the ring groove.
[0014] By arranging the rubber ring in the ring groove of the outer wall of the extension cylinder, a sealing effect can be achieved at the matching position of the mounting cover and the extension cylinder. When the mounting cover slides along the extension cylinder, the rubber ring can prevent dust, debris, moisture and the like from entering the mounting cavity inside the extension cylinder, and can avoid the influence of dust and other impurities on the performance and service life of the shock-absorbing assembly.
[0015] It can be understood that during the vibration of the equipment, there will be relative motion and a certain impact force between the mounting cover and the extension cylinder. The rubber has elasticity and can play a buffering role when the two move relative to each other, further absorbing and dispersing part of the vibration energy, and assisting the entire shock-absorbing support to improve the shock-absorbing effect.
[0016] Preferably, a rubber pad is arranged at the top wall of the mounting cover.
[0017] Through the above structure, when the electromechanical equipment is installed on the mounting cover, vibration and impact will be generated during operation. The rubber pad has good elasticity and can play a buffering role between the electromechanical equipment and the mounting cover, reducing the rigid impact generated when the equipment and the mounting cover are in direct contact, and avoiding damage to the equipment base or the mounting cover due to excessive impact.
[0018] Preferably, a rubber sleeve is arranged at the base.
[0019] Through the above structure, the friction between the rubber sleeve and the ground is improved, the sliding or displacement of the shock support during equipment vibration can be effectively prevented, the position stability of the electromechanical equipment and the shock support is ensured, and the normal operation and safety of the equipment are ensured. BRIEF DESCRIPTION OF DRAWINGS
[0020] Fig. 1 It is a schematic diagram of the overall structure of a shock support.
[0021] Fig. 2 It is a schematic diagram of the overall side view structure of a shock support.
[0022] Fig. 3 It is a schematic diagram of the overall top view structure of a shock support. DETAILED DESCRIPTION
[0023] In order to further understand the content of the present application, the present application will be described in detail in conjunction with the embodiments. It should be understood that the embodiments are only used to explain the present application but not to limit it.
[0024] Embodiment 1
[0025] Please refer to Figs. 1-3 The shock support provided by the embodiment includes a support body 100, and the support body 100 includes a base 110, an extension cylinder 210 extending upward is formed at the base 110, a mounting cover 120 is slidably arranged at the extension cylinder 210, a mounting cavity 220 is formed in the extension cylinder 210, a shock absorbing assembly is arranged between the extension cylinder 210 and the mounting cover 120, the shock absorbing assembly includes a rubber buffer 250 arranged along the axis of the mounting cavity 220, and a plurality of U-shaped spring steels 240 arranged equidistantly along the circumference of the rubber buffer 250, and the plurality of U-shaped spring steels 240 are respectively arranged between the mounting cover 120 and the base 110.
[0026] The shock support of the present application adopts the shock absorbing assembly combining the rubber buffer 250 and the U-shaped spring steel 240, the rubber buffer 250 bears part of the weight and vibration energy of the equipment, reduces the pressure and load borne by the U-shaped spring steel 240, avoids the fatigue problem caused by the long-term bearing of the whole weight of the equipment by the single spring, prolongs the service life of the shock absorbing assembly, and ensures the durability of the shock absorbing effect.
[0027] It can be understood that the advantages of the rubber buffer 250 and the U-shaped spring steel 240 are fully utilized through the combined use of the rubber buffer 250 and the U-shaped spring steel 240. The damping property of the rubber buffer 250 can quickly attenuate the vibration, and the elasticity of the U-shaped spring steel 240 can provide a certain restoring force. The two work together to more comprehensively and effectively absorb and buffer the vibration generated during the operation of the electromechanical equipment, thereby improving the shock absorbing effect of the whole shock support.
[0028] It can be understood that the U-shaped spring steel 240 is arranged equidistantly along the circumference of the rubber buffer pad 250, so that the shock absorbing force is uniformly distributed, further improving the structural stability of the entire shock absorbing support, and ensuring the safety and reliability of the equipment during operation.
[0029] In the embodiment, a matching cavity is formed inwardly recessed at the bottom wall of the mounting cover 120, and a connecting column 230 extending downward is formed at the axis of the matching cavity. The plurality of U-shaped spring steels 240 are arranged between the connecting column 230 and the bottom wall of the mounting cavity 220. The matching cavity cooperates with the outer wall of the extension cylinder 210.
[0030] Through the arrangement of the connecting column 230, a certain buffer space is reserved between the mounting cover 120 and the extension cylinder 210, and at the same time, a fixed and supported position is provided for the U-shaped spring steel 240. The connecting column 230 can transmit the vibration received by the mounting cover 120 to the U-shaped spring steel 240 and the rubber buffer pad 250, so that the U-shaped spring steel 240 and the rubber buffer pad 250 can more effectively absorb and buffer the vibration energy.
[0031] In the embodiment, a threaded column 260 extending upward is arranged at the top wall of the mounting cover 120, which is used to connect with the mechanical and electrical equipment base.
[0032] Through the above structure, the shock absorbing support can reliably support the mechanical and electrical equipment, and ensure that the mechanical and electrical equipment forms an integral whole with the shock absorbing support during operation, so as to better transmit the vibration generated by the equipment to the shock absorbing support for processing.
[0033] It can be understood that the threaded connection has good operability. When installing the mechanical and electrical equipment, only the corresponding threaded hole on the equipment base is matched with the threaded column 260, and the installation of the equipment and the shock absorbing support can be completed through the cooperation of the nut. When the mechanical and electrical equipment needs to be repaired, replaced or the shock absorbing support needs to be maintained, the two can be easily separated, improving the installation and maintenance efficiency.
[0034] In the embodiment, a ring groove is formed at the outer wall of the extension cylinder 210, and a rubber ring 270 is arranged in the ring groove.
[0035] By arranging the rubber ring 270 in the ring groove of the outer wall of the extension cylinder, a sealing effect can be achieved at the matching part of the mounting cover 120 and the extension cylinder 210. When the mounting cover 120 slides along the extension cylinder 210, the rubber ring 270 can prevent dust, debris, moisture and the like from entering the mounting cavity 220 inside the extension cylinder 210, and can avoid the influence of dust and other impurities on the performance and service life of the shock absorbing assembly.
[0036] It can be understood that, during the vibration of the equipment, there is relative movement and impact force between the mounting cover 120 and the extension cylinder 210, the rubber 270 is elastic and can play a buffering role when the two move relative to each other, further absorbing and dispersing part of the vibration energy, assisting the entire shock-absorbing support to improve the shock-absorbing effect.
[0037] In the embodiment, the mounting cover 120 is provided with a rubber pad at the top wall.
[0038] Through the above structure, when the electromechanical equipment is installed on the mounting cover 120, vibration and impact will be generated during operation, the rubber pad has good elasticity and can play a buffering role between the electromechanical equipment and the mounting cover 120, reducing the rigid impact generated when the equipment directly contacts the mounting cover 120, and avoiding damage to the equipment base or the mounting cover 120 due to excessive impact.
[0039] In the embodiment, the base 110 is provided with a rubber sleeve 280.
[0040] Through the above structure, the friction between the rubber sleeve 280 and the ground is improved, which can effectively prevent the shock-absorbing support from sliding or displacing during the vibration of the equipment, ensure the position stability of the electromechanical equipment and the shock-absorbing support, and protect the normal operation and safety of the equipment.
[0041] It is easy to understand that, based on one or more embodiments provided in the present application, a person skilled in the art can combine, split, recombine, etc. to obtain other embodiments, and these embodiments do not exceed the protection scope of the present application.
[0042] The above describes the present application and its embodiments in a schematic manner, and the description is not restrictive, and the embodiments shown are only part of the embodiments of the present application, and the actual structure is not limited thereto. Therefore, if a person skilled in the art is inspired by this, without departing from the creative purpose of the present application, without creative design, similar structure and embodiments of the technical solutions can be obtained, which should belong to the protection scope of the present application.
Claims
1. A shock absorbing mount, characterized by The utility model provides a support body (100) comprising a base (110) having an extension cylinder (210) extending upward formed thereon, a mounting cover (120) slidably arranged on the extension cylinder (210), a mounting cavity (220) formed inside the extension cylinder (210), a damping assembly arranged between the extension cylinder (210) and the mounting cover (120), the damping assembly comprising a rubber buffer pad (250) arranged along the axis of the mounting cavity (220), and a plurality of U-shaped spring steels (240) equidistantly arranged along the circumference of the rubber buffer pad (250), each of the plurality of U-shaped spring steels (240) being arranged between the mounting cover (120) and the base (110).
2. A shock absorbing mount according to claim 1, characterized in that: The bottom wall of the mounting cover (120) is formed with an inwardly recessed matching cavity, the matching cavity is formed with a connecting column (230) extending downward along the axis, and the plurality of U-shaped spring steels (240) are arranged between the connecting column (230) and the bottom wall of the mounting cavity (220); wherein the matching cavity is matched with the outer wall of the extension cylinder (210).
3. A shock absorbing mount according to claim 2, characterised in that: The top wall of the mounting cover (120) is provided with a threaded column (260) extending upward, which is used for connecting with the base of the electromechanical equipment.
4. A shock absorbing mount according to claim 1, characterized in that: The outer wall of the extension cylinder (210) is formed with a ring groove, and a rubber ring (270) is arranged in the ring groove.
5. A shock absorbing mount according to claim 1, characterized in that: The top wall of the mounting cover (120) is provided with a rubber pad.
6. A shock-absorbing support according to claim 1, characterized in that: The base (110) is provided with a rubber sleeve (280).