Damping mounting device

By designing a shock-absorbing installation device, the coordination of elastic components and buffer components is used to solve the stability and noise problems of mechanical equipment during installation and operation, and the stable installation and long-life operation of the equipment is achieved.

CN222992639UActive Publication Date: 2025-06-17中建五局安装工程有限公司
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Patent Information

Application Number
CN202422338798.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-25
Publication Date
2025-06-17
Estimated Expiration
2034-09-25

AI Technical Summary

Technical Problem

There are stability and noise problems during installation and operation of mechanical equipment, and frequent vibrations will affect the life and operation stability of the equipment.

Method used

A shock absorption installation device is designed, including a mounting bracket and a shock absorption mechanism. The shock absorption mechanism is composed of a mounting rod, an elastic component and a buffer assembly. Through the deformation and reaction force of the elastic component, the vibration force generated by the equipment is offset.

Benefits of technology

It effectively reduces the vibration force of the equipment during operation, improves the installation stability of the equipment, reduces noise, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of damping devices, in particular to a damping installation device which comprises an installation support and a damping mechanism, and the installation support is arranged on a wall. The damping mechanism comprises a mounting rod, an elastic assembly and two buffer assemblies which are oppositely arranged, the mounting rod is arranged on the mounting bracket, the elastic assembly is arranged on the mounting rod, and the middle part of the elastic assembly is fixedly connected with the mounting rod; the buffering assembly comprises a bearing piece, a buffering piece and a connecting rod, the first end of the bearing piece is connected with the mounting support through the buffering piece, and the bearing piece is used for bearing the equipment body; one end of the connecting rod is hinged to the second end of the bearing piece, and the other end of the connecting rod is hinged to the elastic assembly. Large vibration force generated when the equipment body works is reduced through the damping mechanism, the installation stability of the equipment body is effectively improved, noise generated by vibration is reduced, equipment damage caused by vibration is avoided, and the service life can be prolonged.
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Description

Technical Field

[0001] The utility model relates to the technical field of shock absorption devices, in particular to a shock absorption mounting device. Background Art

[0002] When installing mechanical equipment, it is necessary to cooperate with an installation platform or a fixed bracket for installation to provide stable support for the mechanical equipment and prevent the mechanical equipment from falling. During the operation of existing mechanical equipment, due to the movement of internal parts and the drive of the motor, there is a certain vibration. Frequent vibration will not only generate noise but also have a certain impact on the service life of the mechanical equipment.

[0003] Therefore, it is necessary to provide a new shock absorption mounting device to solve the above technical problems. Summary of the Utility Model

[0004] The main purpose of the utility model is to provide a shock absorption mounting device, aiming to solve the problems of instability and high noise during the installation of mechanical equipment.

[0005] To achieve the above object, the shock absorption mounting device proposed by the utility model includes a mounting bracket and a shock absorption mechanism. The mounting bracket is arranged on the wall.

[0006] The shock absorption mechanism includes a mounting rod, an elastic component, and two buffer components arranged oppositely. The mounting rod is arranged on the mounting bracket. The elastic component is arranged on the mounting rod, and the middle part of the elastic component is fixedly connected to the mounting rod.

[0007] Each buffer component includes a supporting member, a buffer member, and a connecting rod. The first end of the supporting member is connected to the mounting bracket through the buffer member, and the supporting member is used for supporting the main body of the equipment. One end of the connecting rod is hinged to the second end of the supporting member, and the other end is hinged to the elastic component. The elastic component can exert a reaction force on the connecting rod.

[0008] Optionally, the elastic component includes a fixed seat and two elastic structures respectively arranged at both ends of the fixed seat. The fixed seat is arranged on the mounting rod. Each elastic structure includes an elastic member sleeved on the mounting rod and a sliding block. The sliding block is connected to the fixed seat through the elastic member, and the sliding block is hinged to the connecting rod.

[0009] Optionally, the shock-absorbing mounting device further includes a cleaning mechanism, which includes a triggering component, a transmission member, and a scraping plate. The triggering component includes a triggering body and a rotating plate. The triggering body is slidably arranged on the mounting bracket in the vertical direction; the first end of the rotating plate is rotatably connected to the triggering body through a torsion spring, and the second end is in rolling contact with the mounting bracket through a roller; the scraping plate is connected to the roller through the transmission member, and the scraping plate is used for cleaning the outer wall of the equipment main body.

[0010] Optionally, the transmission member includes a driving section and a mounting section that are vertically connected. The driving section is coaxially arranged with the roller, and the mounting section is connected to the scraping plate; the triggering body includes a top rod and a limiting plate. The top rod is slidably arranged on the mounting bracket in the vertical direction. The limiting plate includes a connected mounting portion and a limiting portion. The mounting portion is threadedly connected to the end of the top rod away from the rotating plate, and the limiting portion abuts against the mounting bracket to limit the mounting portion.

[0011] Optionally, the cleaning mechanism further includes an adapter, a rotating shaft, a pulling rope, and a counterweight. The adapter is arranged on the scraping plate, and the rotating shaft is rotatably arranged on the adapter; the counterweight is connected to the rotating shaft through the pulling rope, and a cushion is sleeved on the counterweight.

[0012] Optionally, the number of the cleaning mechanisms is two, and the two cleaning mechanisms are respectively arranged on both sides of the mounting bracket.

[0013] Optionally, one shock-absorbing mechanism is arranged along the length or width direction of the equipment main body; or two or more shock-absorbing mechanisms are arranged at intervals along the length or width direction of the equipment main body.

[0014] Optionally, the shock-absorbing mounting device further includes a shielding component, which includes a support plate, a shielding cloth, and a counterweight strip. The support plate is detachably arranged on the equipment main body. The counterweight strip is connected to the support plate through the shielding cloth, and the shielding cloth is used for shielding the mounting bracket and the shock-absorbing mechanism.

[0015] In the technical solution of the present utility model, the equipment main body is connected to the supporting member through fasteners to be fixedly arranged on the mounting bracket. During the operation of the equipment main body, the equipment main body generates vibration and drives the supporting member to press down the buffer member, so that the buffer member pushes the elastic component to deform through the connecting rod, and the elastic component applies a reaction force to the buffer member through the connecting rod. The reaction force can offset the force generated by the equipment main body, so that the equipment main body is reset to achieve the shock-absorbing effect. The present utility model reduces the large vibration force generated by the equipment main body during work through the shock-absorbing mechanism, effectively improves the installation stability of the equipment main body, reduces the noise generated by vibration, avoids equipment damage caused by vibration, and is beneficial to extending the service life. Description of the Drawings

[0016] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.

[0017] Figure 1 It is a schematic structural diagram of a shock-absorbing installation device in an embodiment of the present invention;

[0018] Figure 2 It is a schematic diagram of the use of a shock-absorbing installation device in an embodiment of the present invention;

[0019] Figure 3 It is a schematic structural diagram of a shock-absorbing mechanism in an embodiment of the present invention;

[0020] Figure 4 It is a schematic structural diagram of a cleaning mechanism in an embodiment of the present invention;

[0021] Figure 5 It is a schematic structural diagram of a shielding component in an embodiment of the present invention.

[0022] Explanation of the reference numerals in the drawings:

[0023] 1 Installation bracket, 2 Shock-absorbing mechanism, 2.1 Installation rod, 2.2 Elastic component, 2.2.1 Fixed seat, 2.2.2 Elastic structure, A Elastic member, B Slide block, 2.3 Buffer component, 2.3.1 Support member, 2.3.2 Buffer member, 2.3.3 Link rod, 3 Cleaning mechanism, 3.1 Trigger component, 3.1.1 Trigger body, C Push rod, D Limit plate, D1 Installation part, D2 Limit part, 3.1.2 Rotating plate, 3.1.3 Roller, 3.2 Transmission member, 3.2.1 Driving section, 3.2.2 Installation section, 3.3 Scraper, 3.4 Adapter, 3.5 Rotating shaft, 3.6 Pull rope, 3.7 Counterweight, 4 Shielding component, 4.1 Support plate, 4.2 Cloth curtain, 4.3 Counterweight strip, 5 Equipment main body.

[0024] The realization of the purpose, functional characteristics and advantages of the present invention will be further described with reference to the embodiments and the drawings. Specific embodiments

[0025] The following will describe the embodiments of the present invention in detail with reference to the drawings. However, the present invention can be implemented in many different ways defined and covered by the claims.

[0026] The present invention provides a shock-absorbing installation device, aiming to solve the problems of instability and high noise during the installation of mechanical equipment.

[0027] As Figure 1 and Figure 2 shown, the shock-absorbing mounting device includes a mounting bracket 1 and a shock-absorbing mechanism 2. The mounting bracket 1 is arranged on the wall; the shock-absorbing mechanism 2 includes a mounting rod 2.1, an elastic component 2.2 and two relatively arranged buffer components 2.3. The mounting rod 2.1 is arranged on the mounting bracket 1, the elastic component 2.2 is arranged on the mounting rod 2.1, and the middle part of the elastic component 2.2 is fixedly connected to the mounting rod 2.1; the buffer component 2.3 includes a supporting member 2.3.1, a buffer member 2.3.2 and a connecting rod 2.3.3. The first end of the supporting member 2.3.1 is connected to the mounting bracket 1 through the buffer member 2.3.2, and the supporting member 2.3.1 is used for supporting the equipment main body 5; one end of the connecting rod 2.3.3 is hinged to the second end of the supporting member 2.3.1, and the other end is hinged to the elastic component 2.2. The elastic component 2.2 can exert a reaction force on the connecting rod 2.3.3. The equipment main body 5 is connected to the supporting member 2.3.1 through a fastener to be fixedly arranged on the mounting bracket 1. During the operation of the equipment main body 5, the equipment main body 5 generates vibration and drives the supporting member 2.3.1 to press down the buffer member 2.3.2, so that the buffer member 2.3.2 pushes the elastic component 2.2 to deform through the connecting rod 2.3.3, and the elastic component 2.2 exerts a reaction force on the buffer member 2.3.2 through the connecting rod 2.3.3. The reaction force can offset the force generated by the equipment main body 5, so that the equipment main body 5 is reset to achieve the shock-absorbing effect. The utility model reduces the large vibration force generated by the equipment main body 5 during work through the shock-absorbing mechanism 2, effectively improves the installation stability of the equipment main body 5, reduces the noise generated by vibration, avoids reducing the equipment damage caused by vibration, and is beneficial to extending the service life.

[0028] As Figure 3 shown, the elastic component 2.2 includes a fixed seat 2.2.1 and two elastic structures 2.2.2 respectively arranged at both ends of the fixed seat 2.2.1. The fixed seat 2.2.1 is arranged on the mounting rod 2.1. The elastic structure 2.2.2 includes an elastic member A sleeved on the mounting rod 2.1 and a slider B. The slider B is connected to the fixed seat 2.2.1 through the elastic member A, and the slider B is hinged to the connecting rod 2.3.3. The sliders B in the two elastic structures 2.2.2 are respectively connected to the connecting rods 2.3.3 in the two buffer components 2.3. When the equipment main body 5 presses down the supporting plate, the connecting rods 2.3.3 respectively push the corresponding sliders B to move along the mounting rod 2.1 towards the fixed seat 2.2.1 to compress the elastic member A, and the elastic member A exerts a reaction force on the supporting member 2.3.1 through the connecting rod 2.3.3, thereby damping the equipment main body 5.

[0029] As Figure 4As shown in the figure, the shock absorption mounting device further includes a cleaning mechanism 3. The cleaning mechanism 3 includes a trigger assembly 3.1, a transmission member 3.2, and a scraper 3.3. The trigger assembly 3.1 includes a trigger body 3.1.1 and a rotating plate 3.1.2. The trigger body 3.1.1 is slidably arranged on the mounting bracket 1 in the vertical direction; the first end of the rotating plate 3.1.2 is rotatably connected to the trigger body 3.1.1 through a torsion spring, and the second end is in rolling contact with the mounting bracket 1 through a roller 3.1.3; the scraper 3.3 is connected to the roller 3.1.3 through the transmission member 3.2, and the scraper 3.3 is used to clean the outer wall of the equipment main body 5. When the equipment main body 5 is arranged on the shock absorption mounting device, the trigger body 3.1.1 is pressed down, and at the same time, the trigger body 3.1.1 drives the first end of the rotating plate 3.1.2 to move downward. The mounting bracket 1 pushes the rotating plate 3.1.2 to rotate through the second end of the rotating plate 3.1.2, so that the second end of the rotating plate 3.1.2 moves away from the trigger body 3.1.1 along the mounting bracket 1 through the roller 3.1.3. The roller 3.1.3 drives the scraper 3.3 to rotate through the transmission member 3.2 to clean the impurities accumulated on the outer wall of the equipment main body 5, so as to ensure the cleanliness of the outer wall, thereby improving the heat dissipation effect and reducing the subsequent maintenance cost at the same time; in addition, the rotating plate 3.1.2 can quickly reset through the torsion spring, reducing the problem of jamming.

[0030] Among them, the transmission member 3.2 includes a driving section 3.2.1 and a mounting section 3.2.2 that are vertically connected. The driving section 3.2.1 is coaxially arranged with the roller 3.1.3, and the mounting section 3.2.2 is connected to the scraper 3.3; the trigger body 3.1.1 includes a push rod C and a limiting plate D. The push rod C is slidably arranged on the mounting bracket 1 in the vertical direction. The limiting plate D includes a connected mounting portion D1 and a limiting portion D2. The mounting portion D1 is threadedly connected to the end of the push rod C away from the rotating plate 3.1.2, and the limiting portion D2 abuts against the mounting bracket 1 to limit the mounting portion D1. The driving section 3.2.1 of the transmission member 3.2 is coaxially arranged with the roller 3.1.3 so that the driving section 3.2.1 can rotate synchronously with the roller 3.1.3, thereby driving the scraper 3.3 to rotate through the mounting section 3.2.2, so as to facilitate the scraper 3.3 to clean the outer wall of the equipment main body 5. In addition, an adjustment groove is provided at one end of the limiting portion D2 away from the mounting portion D1. During operation, the operator inserts a tool into the adjustment groove and rotates it to drive the entire limiting plate D to rotate, and adjusts the distance between the push rod C and the limiting portion D2 by controlling the screwing amount of the mounting portion D1 and the push rod C, so as to adjust the reset height of the equipment main body 5, improving the flexibility of the equipment main body 5 during buffering and reducing the adjustment difficulty of the reset height.

[0031] As Figure 5As shown in the figure, the cleaning mechanism 3 further includes an adapter 3.4, a rotating shaft 3.5, a pull rope 3.6 and a counterweight 3.7. The adapter 3.4 is arranged on the scraper 3.3, and the rotating shaft 3.5 is rotatably arranged on the adapter 3.4; the counterweight 3.7 is connected to the rotating shaft 3.5 through the pull rope 3.6, and a cushion is sleeved on the counterweight 3.7. During the downward rotation of the scraper 3.3, the counterweight 3.7 can play an auxiliary role, enabling the scraper 3.3 to quickly rotate in place, improving the cleaning efficiency. And since the rotating shaft 3.5 is connected to the transmission member 3.2 through the adapter 3.4, when the scraper 3.3 rotates upward for resetting, the rotating shaft 3.5 is driven to rotate under the gravity of the counterweight 3.7. When the transmission member 3.2 is reset to the vertical position as a whole, due to inertia, the counterweight 3.7 will impact the middle part of the scraper 3.3. The impact force of the counterweight 3.7 can clean the impurities that are accumulated and caked in the middle part of the scraper 3.3, reducing the long-term adhesion and corrosion of the impurities to the middle part of the scraper 3.3, and at the same time improving the cleaning accuracy of the scraper 3.3 for the outer wall of the equipment main body 5 in the future. The cushion can protect the counterweight 3.7 and prevent wear.

[0032] Furthermore, the number of the cleaning mechanisms 3 is two, and the two cleaning mechanisms 3 are respectively arranged on both sides of the mounting bracket 1. The two cleaning mechanisms 3 cooperate to clean both sides of the equipment main body 5, so as to further improve the cleanliness of the equipment main body 5 and be beneficial to improving the heat dissipation effect.

[0033] Even further, the number of the shock absorption mechanisms 2 is multiple, and the multiple shock absorption mechanisms 2 are arranged on the mounting bracket 1 at intervals. One shock absorption mechanism 2 is arranged along the length or width direction of the equipment main body 5; or two or more shock absorption mechanisms 2 are arranged at intervals along the length or width direction of the equipment main body 5. Arranging multiple shock absorption mechanisms 2 to shock-absorb the equipment main body 5 can effectively improve the shock absorption effect of the shock absorption mounting device and is beneficial to improving the installation stability of the equipment main body 5.

[0034] In addition, the shock absorption mounting device further includes a shielding assembly 4. The shielding assembly 4 includes a support plate 4.1, a shielding cloth 4.2 and a counterweight bar 4.3. The support plate 4.1 is detachably arranged on the equipment main body 5, the counterweight bar 4.3 is connected to the support plate 4.1 through the shielding cloth 4.2, and the shielding cloth 4.2 is used to shield the mounting bracket 1 and the shock absorption mechanism 2. One end of the shielding cloth 4.2 is wound around the rotating shaft of the support plate 4.1, and the other end is connected to the counterweight bar 4.3. During operation, the support plate 4.1 is arranged on the equipment main body 5 by magnetic attraction or pasting. The shielding cloth 4.2 is unfolded under the gravity of the counterweight bar 4.3 to shield the shock absorption mechanism 2 and the mounting bracket 1. When subsequent maintenance of the shock absorption mechanism 2 is required, only the support plate 4.1 needs to be detached from the equipment main body 5 or the rotating shaft is rotated to retract the shielding cloth 4.2. The shielding assembly 4 can reduce the situation that a large amount of impurities directly accumulate and adhere to the mounting rod 2.1 without being blocked, thereby affecting the shock absorption effect of the shock absorption mechanism 2.

[0035] The above are only the preferred embodiments of the present utility model, and thus do not limit the patent scope of the present utility model. Any equivalent structural transformation made under the inventive concept of the present utility model by using the content of the specification and drawings of the present utility model, or any direct / indirect application in other related technical fields shall be included within the patent protection scope of the present utility model.

Claims

1. A shock-absorbing mounting device, characterized in that: The shock-absorbing mounting device comprises a mounting bracket (1) and a shock-absorbing mechanism (2), wherein the mounting bracket (1) is arranged on a wall; The shock absorbing mechanism (2) comprises a mounting rod (2.1), an elastic component (2.2) and two buffer components (2.3) arranged opposite to each other, the mounting rod (2.1) being arranged on the mounting bracket (1), the elastic component (2.2) being arranged on the mounting rod (2.1), and the middle part of the elastic component (2.2) being fixedly connected to the mounting rod (2.1); The buffer component (2.3) comprises a supporting member (2.3.1), a buffer member (2.3.2) and a connecting rod (2.3.3); the first end of the supporting member (2.3.1) is connected to the mounting bracket (1) via the buffer member (2.3.2); the supporting member (2.3.1) is used to support the equipment body (5); one end of the connecting rod (2.3.3) is hinged to the second end of the supporting member (2.3.1), and the other end is hinged to the elastic component (2.2); the elastic component (2.2) can apply a reaction force to the connecting rod (2.3.3).

2. The shock-absorbing mounting device according to claim 1, characterized in that: The elastic component (2.2) comprises a fixed seat (2.2.1) and two elastic structures (2.2.2) respectively arranged at two ends of the fixed seat (2.2.1); the fixed seat (2.2.1) is arranged on the mounting rod (2.1); the elastic structure (2.2.2) comprises an elastic member (A) and a slider (B) sleeved on the mounting rod (2.1); the slider (B) is connected to the fixed seat (2.2.1) via the elastic member (A), and the slider (B) is hinged to the connecting rod (2.3.3).

3. The shock-absorbing mounting device according to claim 2, characterized in that: The shock-absorbing mounting device further comprises a cleaning mechanism (3), the cleaning mechanism (3) comprising a trigger assembly (3.1), a transmission member (3.2) and a scraper (3.3); the trigger assembly (3.1) comprises a trigger body (3.1.1) and a rotating plate (3.1.2); the trigger body (3.1.1) is slidably arranged on the mounting bracket (1) along a vertical direction; a first end of the rotating plate (3.1.2) is rotationally connected to the trigger body (3.1.1) via a torsion spring, and a second end is in rolling contact with the mounting bracket (1) via a roller (3.1.3); the scraper (3.3) is connected to the roller (3.1.3) via the transmission member (3.2), and the scraper (3.3) is used to clean the outer wall of the device body (5).

4. The shock-absorbing mounting device according to claim 3, characterized in that: The transmission member (3.2) comprises a vertically connected driving section (3.2.1) and a mounting section (3.2.2), the driving section (3.2.1) being coaxially arranged with the roller (3.1.3), and the mounting section (3.2.2) being connected with the scraper (3.3); the trigger body (3.1.1) comprises a push rod (C) and a limit plate (D), the push rod (C) being slidably arranged on the mounting bracket (1) along a vertical direction, the limit plate (D) comprising a connected mounting portion (D1) and a limit portion (D2), the mounting portion (D1) being threadedly connected with an end of the push rod (C) away from the rotating plate (3.1.2), and the limit portion (D2) being in contact with the mounting bracket (1) to limit the mounting portion (D1).

5. The shock-absorbing mounting device according to claim 4, characterized in that: The cleaning mechanism (3) further comprises an adapter (3.4), a rotating shaft (3.5), a pull rope (3.6) and a counterweight (3.7); the adapter (3.4) is arranged on the scraper (3.3); the rotating shaft (3.5) is rotatably arranged on the adapter (3.4); the counterweight (3.7) is connected to the rotating shaft (3.5) via the pull rope (3.6), and a protective pad is sleeved on the counterweight (3.7).

6. The shock-absorbing mounting device according to any one of claims 3 to 5, characterized in that: The number of the cleaning mechanisms (3) is two, and the two cleaning mechanisms (3) are arranged on both sides of the mounting bracket (1).

7. The shock-absorbing mounting device according to any one of claims 1 to 5, characterized in that: One shock absorbing mechanism (2) is arranged along the length or width direction of the device body; or two or more shock absorbing mechanisms (2) are arranged at intervals along the length or width direction of the device body.

8. The shock-absorbing mounting device according to any one of claims 1 to 5, characterized in that: The shock-absorbing mounting device further comprises a shielding assembly (4), the shielding assembly (4) comprising a support plate (4.1), a blocking cloth (4.2) and a counterweight bar (4.3), the support plate (4.1) being detachably arranged on the device body (5), the counterweight bar (4.3) being connected to the support plate (4.1) via the blocking cloth (4.2), and the blocking cloth (4.2) being used to shield the mounting bracket (1) and the shock-absorbing mechanism (2).