Automatic mounting system for water pump motor vibration damper

The automated installation system utilizes a conveying mechanism and a clamping frame to automatically install vibration damping pads, solving the problem of low installation efficiency in existing technologies and achieving efficient and automated installation of vibration damping pads.

CN121756059APending Publication Date: 2026-03-31GP ENTERPRISES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-30
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The installation efficiency of existing water pump motor vibration damping devices is low, mainly because the vibration damping pads need to be installed manually, which increases the workload of the staff.

Method used

An automated installation system is adopted, including a conveying mechanism, a placement rack, and an installation mechanism. The system uses a moving component and a clamping frame to automatically clamp the vibration damping pad, and the moving component drives the installation frame through the holes in the base to achieve automatic installation of the vibration damping pad.

Benefits of technology

It improves the installation efficiency of vibration damping pads, reduces the workload of workers, reduces the chance of vibration damping pads tearing, and increases the degree of automation in installation.

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Abstract

The invention relates to an automatic mounting system for a water pump motor damping device, and relates to the technical field of water pump motor manufacturing. The automatic mounting system for the water pump motor damping device comprises a conveying mechanism, a placing frame and a mounting mechanism, the placing frame is used for placing a base of a to-be-damped device, the mounting mechanism comprises a moving assembly and a plurality of mounting frames, and the mounting frames correspond to holes, for mounting damping pads, in the base of the damping device. One end of each mounting frame penetrates through a corresponding hole, for mounting a damping pad, in the base of the damping device and is used for clamping one end of the damping pad, and the moving assembly is used for driving each mounting frame to clamp one end of the damping pad and move to the other side of the base; the conveying mechanism is used for conveying the anti-vibration pad to the end, used for clamping the anti-vibration pad, of the mounting frame. The mounting device has the effect of improving the mounting efficiency of the damping pad on the water pump motor damping device.
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Description

Technical Field

[0001] This application relates to the field of water pump motor manufacturing, and in particular to an automated installation system for water pump motor vibration damping devices. Background Technology

[0002] Water pump motors are commonly used in construction, aquaculture, and daily life. They generate negative pressure through the high-speed rotation of blades, drawing water from pipes to achieve the pumping function. During operation, water pump motors produce significant noise due to the internal motor and rotating blades. Since this noise primarily originates from surface vibrations, vibration damping devices must be installed at the base of the water pump motor during installation to reduce operating noise.

[0003] A vibration damping device for a water pump motor exists in the prior art, comprising a base and several damping pads. The base is fixedly installed on the bottom of the water pump motor, and several mounting holes are opened through the bottom. The diameter of the middle part of each damping pad along its own axis is smaller than the diameter of the rest. One end of each damping pad passes through the corresponding mounting hole, and the middle part of the damping pad is fitted into the corresponding mounting hole, while both ends protrude outside the mounting frame.

[0004] Regarding the aforementioned technologies, existing technologies generally require workers to manually compress each vibration damping pad and pass it through the corresponding mounting hole, and to manually ensure that the middle of each vibration damping pad is in contact with the inner wall of the corresponding mounting hole. This increases the workload of workers and reduces the installation efficiency of the water pump motor vibration damping device, and therefore needs to be improved. Summary of the Invention

[0005] To improve the installation efficiency of vibration damping pads on water pump motor vibration damping devices, this application provides an automated installation system for water pump motor vibration damping devices.

[0006] The automated installation system for the water pump motor vibration damping device provided in this application adopts the following technical solution: An automated installation system for a water pump motor vibration damping device includes a conveying mechanism, a placement frame, and an installation mechanism. The placement frame is used to place the base of the vibration damping device. The installation mechanism includes a moving component and several mounting frames. The mounting frames correspond to the holes on the base of the vibration damping device for mounting the vibration damping pads. One end of each mounting frame passes through the corresponding hole on the base of the vibration damping device for mounting the vibration damping pads and is used to clamp one end of the vibration damping pad. The moving component is used to drive each mounting frame to move to the other side of the base. The conveying mechanism is used to convey the vibration damping pads to the end of the mounting frame used to clamp the vibration damping pads.

[0007] By adopting the above technical solution, compared with the prior art, which requires workers to manually compress each vibration damping pad and pass it through the corresponding mounting hole, and manually ensure that the middle part of each vibration damping pad is in contact with the inner wall of the corresponding mounting hole, thus increasing the workload of workers and reducing the installation efficiency of the water pump motor vibration damping device, this application, through the setting of the installation mechanism, enables one end of the mounting frame to clamp one end of the vibration damping pad after the conveying mechanism places the vibration damping pad on the mounting frame, thereby deforming one end of the vibration damping pad. Subsequently, when the moving component drives this end of the mounting frame to pass through the hole on the base of the vibration damping device, the mounting frame can drive one end of the vibration damping pad to pass through the hole in the base, thereby making the middle position of the vibration damping pad contact with the inner wall of the hole, realizing the automatic installation of the vibration damping pad, reducing the workload of relevant personnel, and thus improving the installation efficiency of the vibration damping pad on the water pump motor vibration damping device.

[0008] Preferably, the mounting mechanism further includes a movable seat, the movable component being used to drive the movable seat away from the vibration damping device base on the placement frame. Each mounting frame includes two clamping frames, one end of each clamping frame being rotatably connected to the movable seat, and the other end passing through the corresponding hole on the vibration damping device base for mounting the vibration damping pad, with a gap left for placing one end of the vibration damping pad.

[0009] By adopting the above technical solution, the arrangement of the movable seat and the clamping frame allows the movable seat to move away from the base of the vibration damping device when the movable component moves the movable seat away from the base. At this time, the side wall of the clamping frame will continuously contact and abut against the inner wall of the positioning hole on the positioning frame, thereby causing the clamping frame to rotate under the abutment action, and then clamping the vibration damping pad, causing the vibration damping pad to deform, effectively realizing the automatic clamping of the vibration damping pad.

[0010] Preferably, each of the clamping frames has an embedding groove at the end away from the movable seat for embedding the end of the vibration damping pad.

[0011] Preferably, the placement frame is also provided with a positioning component, which includes two positioning frames. Each positioning frame has a groove on its top for the base of the vibration damping device to be embedded in, and each positioning frame has several positioning holes for the corresponding mounting frame to pass through.

[0012] By adopting the above technical solution and setting the positioning components, the two ends of the base of the vibration damping device can be embedded in the grooves of the two positioning frames to achieve their own placement. At the same time, the presence of positioning holes can guide the movement of the mounting frame, thereby ensuring the stability of the mounting frame when it moves.

[0013] Preferably, the conveying mechanism includes a mobile robot and an adsorption component. The mobile robot is located on one side of the placement rack, and the adsorption component is installed on the working end of the mobile robot and is used to adsorb several vibration damping pads at one time.

[0014] By adopting the above technical solution and setting the conveying mechanism, the mobile robot can adsorb several vibration damping pads at one time through the adsorption component, and after adsorption, place one end of the vibration damping pad into the embedding groove of the corresponding gripper, thereby realizing the automatic conveying of the vibration damping pad, effectively improving the automation level of this application and improving the installation efficiency.

[0015] Preferably, each of the grippers has an extension at one end near the movable seat, and the mounting mechanism also includes a plurality of drive frames, which are arranged corresponding to the grippers. One end of each drive frame is rotatably connected to the corresponding extension, and the other end is rotatably connected to the placement frame.

[0016] By adopting the above technical solution, the extension and drive frame are configured so that when the moving component drives the moving seat to move, the gripper can drive the drive frame to rotate relative to the placement frame through the extension, thereby causing the drive frame to drive the corresponding gripper to rotate, realizing automatic drive of the gripper rotation. Compared with the contact method, this effectively reduces the probability of wear on the gripper surface and ensures the service life of the gripper.

[0017] Preferably, each of the gripping frames is provided with a rotating mechanism at its top. Each rotating mechanism includes a rotating frame and a linkage component. Each rotating frame is rotatably connected to the end of the corresponding gripping frame away from the movable seat and is used to contact the end of the vibration damping pad. Each linkage component is used to drive the corresponding rotating frame to rotate.

[0018] By adopting the above technical solution and configuring the rotating mechanism, when the clamping frame moves the damping pad, the linkage component can drive the rotating frame to rotate, thereby causing the damping pad to rotate and adjusting the angle of the damping pad. This allows the damping pad to be coaxially aligned with the hole on the base, reducing the likelihood of excessive resistance from the hole end wall when the clamping frame pulls up the damping pad due to the mismatch between the damping pad axis and the base hole axis, thus reducing the probability of the damping pad tearing.

[0019] Preferably, the linkage assembly includes a sliding frame, a transmission frame, and a linkage component. Each sliding frame is slidably connected to the corresponding clamping frame. One end of each transmission frame is rotatably connected to the corresponding sliding frame, and the other end is rotatably connected to the corresponding rotating frame. The rotatable connection point with the rotating frame is different from the rotatable connection point of the rotating frame itself. The clamping frame drives the corresponding sliding frame to slide through the linkage assembly.

[0020] By adopting the above technical solution and setting the linkage component, the corresponding sliding frame can be driven to slide during the rotation of the gripping frame. This allows the sliding frame to drive the corresponding rotating frame to rotate through the transmission frame, thereby realizing the linkage between the gripping frame and the rotating frame. This achieves automatic rotation of the rotating frame, effectively saving the active device required to drive the rotating frame to rotate. It is suitable for the actual working scenario of this application, reduces the size of the gripping frame, and facilitates passing through the holes on the base.

[0021] Preferably, the linkage component includes a linkage frame, one end of which is rotatably connected to the corresponding sliding frame, and the other end of which is rotatably connected to the movable seat.

[0022] By adopting the above technical solution and setting the linkage frame, when the gripping frame rotates, the gripping frame can drive the linkage frame to slide relative to the moving seat, thereby causing the end of the linkage frame away from the moving seat to drive the sliding frame to slide relative to the gripping frame, realizing the sliding of the sliding frame, thus realizing the linkage between the sliding frame and the gripping frame, and effectively saving the space required to drive the sliding frame to slide, and facilitating the setting of the gripping frame.

[0023] Preferably, the movable seat is further provided with a plurality of extension columns, which correspond to the mounting frame and are all located between the two corresponding clamping frames. The end of the linkage frame away from the corresponding sliding frame is rotatably connected to the corresponding extension column.

[0024] By adopting the above technical solution, the extension column is designed to enable transmission between the extension column and the linkage frame, thereby eliminating the need for the linkage frame to transmit power to the bottom movable seat. This effectively saves on the size required for the linkage frame, facilitating its installation and ensuring smooth clamping and driving of the vibration damping pad.

[0025] In summary, this application includes at least one of the following beneficial technical effects: 1. The installation mechanism is designed so that after the conveying mechanism places the vibration damping pad on the mounting frame, one end of the mounting frame can clamp one end of the vibration damping pad, thereby deforming one end of the vibration damping pad. Subsequently, when the moving component drives this end of the mounting frame through the hole on the base of the vibration damping device, the mounting frame can drive one end of the vibration damping pad through the hole in the base, so that the middle position of the vibration damping pad contacts the inner wall of the hole. This realizes the automatic installation of the vibration damping pad, reduces the workload of relevant personnel, and thus improves the installation efficiency of the vibration damping pad on the water pump motor vibration damping device. 2. The design of the movable seat and the clamping frame allows the movable seat to move away from the base of the vibration damping device when the movable component moves the movable seat away from the base. At this time, the side wall of the clamping frame will continuously contact and abut against the inner wall of the positioning hole on the positioning frame, thereby causing the clamping frame to rotate under the abutment action, and then clamping the vibration damping pad, causing the vibration damping pad to deform, effectively realizing the automatic clamping of the vibration damping pad. 3. The rotating mechanism is designed so that when the clamping frame moves the damping pad, the linkage component can drive the rotating frame to rotate, thereby causing the damping pad to rotate and adjusting the angle of the damping pad. This allows the damping pad to be coaxially aligned with the hole on the base, reducing the likelihood of excessive resistance from the hole end wall when the clamping frame pulls up the damping pad due to a mismatch between the damping pad axis and the base hole axis. This, in turn, reduces the chance of the damping pad tearing. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the automated installation system for the water pump motor vibration damping device in Embodiment 1 of this application.

[0027] Figure 2 This is a schematic diagram illustrating the structure of the mounting bracket in Embodiment 1 of this application.

[0028] Figure 3 This is a schematic diagram illustrating the structure of the gripper in Embodiment 2 of this application.

[0029] Figure 4 This is a schematic diagram illustrating the structure of the drive frame in Embodiment 2 of this application.

[0030] Figure 5 This is a structural schematic diagram of the linkage component used in Embodiment 2 of this application.

[0031] Explanation of reference numerals in the attached drawings: 1. Conveying mechanism; 11. Mobile robot; 12. Adsorption component; 2. Placement rack; 21. Positioning component; 211. Positioning frame; 2111. Positioning hole; 3. Mounting mechanism; 31. Moving component; 32. Mounting frame; 321. Clamping frame; 3211. Extension; 33. Moving seat; 34. Drive frame; 4. Insertion slot; 5. Extension column; 6. Rotating mechanism; 61. Rotating frame; 62. Linkage component; 621. Sliding frame; 622. Transmission frame; 623. Linkage component; 6231. Linkage frame. Detailed Implementation

[0032] The following is in conjunction with the appendix Figure 1-5 This application will be described in further detail.

[0033] Example 1: Embodiment 1 of this application discloses an automated installation system for a water pump motor vibration damping device. (Refer to...) Figure 1 and Figure 2 The automated installation system for a water pump motor vibration damping device includes a conveying mechanism 1, a placement frame 2, and an installation mechanism 3. The placement frame 2 is used to place the base of the vibration damping device. The installation mechanism 3 includes a moving component 31 and several mounting frames 32. The mounting frames 32 correspond to the holes on the base of the vibration damping device for mounting the vibration damping pads. One end of each mounting frame 32 passes through the corresponding hole on the base of the vibration damping device for mounting the vibration damping pads and is used to clamp one end of the vibration damping pad. The moving component 31 is used to drive each mounting frame 32 to move to the other side of the base, clamping one end of the vibration damping pad. The conveying mechanism 1 is used to convey the vibration damping pad to the end of the mounting frame 32 used to clamp the vibration damping pad.

[0034] Reference Figure 1 and Figure 2 Each of the placement racks 2 has a positioning component 21 on its top. The positioning component 21 includes two positioning frames 211, each of which is fixedly installed on the top of the placement rack 2 by bolts. The two positioning frames 211 are located on both sides of the placement rack 2 along its own length. The top walls of the two positioning frames 211 are provided with grooves on the side that is close to each other, so that the ends of the vibration damping devices can be embedded.

[0035] Reference Figure 1 and Figure 2 Each positioning frame 211 has several positioning holes 2111 through its top end. The positioning holes 2111 are distributed along the length of the corresponding positioning frame 211 and correspond to the holes on the base of the vibration damping device. In this embodiment, each positioning frame 211 has two positioning holes 2111.

[0036] Reference Figure 1 and Figure 2In this embodiment, the moving component 31 is configured as a cylinder, which is fixedly installed in the chamber of the placement frame 2, with the piston rod vertically upward. The mounting mechanism 3 also includes a moving seat 33, which is fixedly installed to the top of the piston rod of the cylinder by bolts. In this embodiment, the number of mounting frames 32 is set to four, and they correspond one-to-one with the four positioning holes 2111.

[0037] Reference Figure 1 and Figure 2 Each mounting bracket 32 ​​includes two gripping brackets 321. The bottom of each gripping bracket 321 is rotatably connected to the top of the movable base 33 via a pin, and the rotation axes of the gripping brackets 321 are arranged in parallel. The top of each gripping bracket 321 extends upward and passes sequentially through the positioning hole 2111 on the corresponding positioning bracket 211 and the hole on the vibration damping device base, thus exiting the hole on the vibration damping device base and reaching the side of the vibration damping device base away from the positioning bracket 211.

[0038] Reference Figure 1 and Figure 2 Each mounting bracket 32 ​​has a recessed groove 4 on the side wall of the two clamping brackets 321 that are close to each other at the top, for the end of the vibration damping pad to be embedded. The recessed grooves 4 on the two clamping brackets 321 extend out of the same side of the clamping bracket 321 to allow the rest of the vibration damping pad to pass through.

[0039] Reference Figure 1 and Figure 2 The conveying mechanism 1 includes a mobile robot 11 and an adsorption component 12. The mobile robot 11 is placed on the ground. In this embodiment, the adsorption component 12 is a sponge suction cup, which is fixedly installed on the working end of the mobile robot 11. The working end of the mobile robot 11 is provided with multiple rotating structures to adjust the state of the sponge suction cup, so that the adsorbed vibration damping pad corresponds to the embedded groove 4 on the gripper 321.

[0040] Reference Figure 1 and Figure 2 In other embodiments, the suction cup on the mobile robot 11 may also be provided with four suction cups, and each suction cup is provided with a cylindrical positioning block. The positioning block can be snapped onto the outer periphery of the shock-absorbing ring to better fix the shock-absorbing ring. This suction cup is prior art, so it will not be described in detail here.

[0041] The implementation principle of the automated installation system for the water pump motor vibration damping device in Embodiment 1 of this application is as follows: When the vibration damping device needs to be installed, an industrial robot places the base of the vibration damping device to be installed into the groove on the positioning frame 211. During this process, each gripper 321 passes through the corresponding hole on the base of the vibration damping device. Then, the mobile robot 11 moves the four adsorbed vibration damping pads to directly above the base of the vibration damping device.

[0042] Then, the mobile robot 11 drives the adsorption component 12 to rotate 90 degrees, so that the axes of the vibration damping pads are aligned parallel. It then moves downwards, so that one end of the two vibration damping pads below the adsorption component 12 is positioned between the gaps of the corresponding grippers 321 and embedded in the corresponding slots 4 of the two grippers 321. Next, the mobile robot 11 drives the adsorption component 12 to rise and rotate 180 degrees, so that the two vibration damping pads on the adsorption component 12 are adjusted to the bottom of the adsorption component 12. Afterwards, the mobile robot 11 drives the adsorption component 12 to move downwards again, so that one end of the other two vibration damping pads is positioned between the gaps of the corresponding grippers 321 and embedded in the corresponding slots 4 of the two grippers 321.

[0043] Subsequently, the moving component 31 drives the moving base 33 to move downwards. At this time, the inner wall of the positioning hole 2111 abuts against the side wall of the clamping frame 321, causing the clamping frame 321 to rotate and bringing the clamping frames 321 within the same mounting bracket 32 ​​closer together. This clamps and compresses one end of the vibration damping pad, causing the end of the vibration damping pad to deform. Then, driven by the clamping frame 321, the vibration damping pad passes through the hole in the vibration damping device and moves to below the base of the vibration damping device.

[0044] Subsequently, the gripper 321 continues to move. At this point, the damping pad remains in its current position due to the obstruction of the damping device base. The damping pad then slides away from the gripper 321, allowing it to detach and be installed. Next, the industrial robot grips the damping device base and moves it to the location of the water pump motor. The robot then tightens bolts between the water pump motor and the damping device base, completing the overall installation of the damping device base.

[0045] Example 2: The difference between Embodiment 2 and Embodiment 1 in this application is that: (Refer to...) Figure 3 and Figure 4 Each gripper 321 has an extension 3211 at its bottom, and each extension 3211 is integrally formed with the corresponding gripper 321. One end of each extension 3211 extends obliquely downward and away from the main body of the gripper 321.

[0046] Reference Figure 3 and Figure 4The mounting mechanism 3 also includes several drive frames 34, each drive frame 34 being arranged in a one-to-one correspondence with the clamping frame 321. One end of each drive frame 34 is rotatably connected to the end of the corresponding extension 3211 via a pin, and the other end is inclined downward and rotatably connected to the bracket in the corresponding placement frame 2 via a pin. This allows the drive frame 34 to rotate relative to the placement frame 2 when the moving seat 33 moves downward, thereby driving the corresponding clamping frame 321 to rotate, which in turn causes the clamping frame 321 in the same mounting frame 32 to close and clamp the vibration damping pad.

[0047] Reference Figure 4 and Figure 5 The top of the movable base 33 is also provided with several extension columns 5. In this embodiment, the number of extension columns 5 is set to four, and the four extension columns 5 are arranged one-to-one with the four mounting brackets 32, and are all located between the corresponding two clamping brackets 321. The bottom of each extension column 5 is fixedly connected to the movable base 33, and the top of each extension column 5 extends vertically upward.

[0048] Reference Figure 4 and Figure 5 Each gripper 321 is provided with a rotating mechanism 6 at its top. Each rotating mechanism 6 includes a rotating frame 61 and a linkage component 62. Each rotating frame 61 is rotatably connected to the top of the corresponding gripper 321 via a pin. On the side of the two rotating frames 61 in the same mounting frame 32 that are close to each other, there is an embedding groove 4 for one end of the vibration damping pad to be embedded and in contact.

[0049] Reference Figure 4 and Figure 5 Each linkage component 62 includes a sliding frame 621, a transmission frame 622, and a linkage member 623, and each linkage member 623 includes a linkage frame 6231. Each sliding frame 621 is slidably connected to the corresponding gripping frame 321 via a slide rail, and the sliding direction is the length direction of the corresponding gripping frame 321. One end of each linkage frame 6231 is rotatably connected to the corresponding sliding frame 621 via a pin, and the other end extends obliquely upward and is rotatably connected to the corresponding extension column 5 via a pin. One end of each transmission frame 622 is rotatably connected to the corresponding sliding frame 621 via a pin, and the other end extends obliquely upward and is rotatably connected to the corresponding rotating frame 61.

[0050] Reference Figure 3 , Figure 4 and Figure 5In the initial state, when the top of the gripper 321 protrudes from the hole in the base plate of the vibration damping device, the top of the gripper 321 is positioned above the base plate of the vibration damping device. At this time, the movable seat 33 is located at the top of its own displacement path, and the sliding frame 621 is located at the top of its own sliding path. When the movable component 31 drives the movable seat 33 to move downward, the drive frame 34 rotates relative to the placement, thereby causing the corresponding gripper 321 to rotate, and causing the tops of the two grippers 321 within the same mounting frame 32 to move closer to each other.

[0051] Reference Figure 3 , Figure 4 and Figure 5 During this process, the clamping frame 321 moves together with the sliding frame 621. At this time, the linkage frame 6231 rotates relative to the extension column 5, causing the linkage frame 6231 to drive the sliding frame 621 to slide downwards. During this process, the sliding frame 621 moves together with one end of the transmission frame 622, causing the transmission frame 622 to rotate relative to the sliding frame 621. This, in turn, causes the transmission frame 622 to drive the rotating frame 61 to rotate, thereby causing the rotating frame 61 to drive the clamped damping pad to rotate, making the axis of the damping pad vertically downward. Afterwards, the clamping frame 321 continues to move, causing the end of the damping pad to gradually disengage from the rotating frame 61, thus completing the installation of the damping pad.

[0052] The implementation principle of the automated installation system for the water pump motor vibration damping device in Embodiment 2 of this application is as follows: When the moving component 31 drives the moving seat 33 to move downward, the driving frame 34 rotates relative to the placement, thereby causing the corresponding clamping frame 321 to rotate, and causing the tops of the two clamping frames 321 within the same mounting frame 32 to move closer to each other. During this process, the clamping frame 321 drives the sliding frame 621 to move together. At this time, the linkage frame 6231 rotates relative to the extension column 5, thereby causing the linkage frame 6231 to drive the sliding frame 621 to slide downward.

[0053] During this process, the sliding frame 621 moves one end of the transmission frame 622 together, causing the transmission frame 622 to rotate relative to the sliding frame 621. This, in turn, causes the transmission frame 622 to drive the rotating frame 61 to rotate, thereby causing the rotating frame 61 to drive the clamped damping pad to rotate as well, making the axis of the damping pad vertically downward. Afterward, the clamping frame 321 continues to move, gradually disengaging the end of the damping pad from the rotating frame 61, thus completing the installation of the damping pad.

[0054] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An automated installation system for a water pump motor vibration damping device, characterized by: The device comprises a conveying mechanism (1), a placing rack (2) and a mounting mechanism (3), the placing rack (2) is used for placing the base of a damping device, the mounting mechanism (3) comprises a moving assembly (31) and a plurality of mounting racks (32), the mounting racks (32) correspond to the holes on the base of the damping device for mounting damping pads, one end of each of the mounting racks (32) penetrates through the corresponding hole on the base of the damping device for mounting damping pads and is used for clamping one end of the damping pad, the moving assembly (31) is used for driving each mounting rack (32) to move to the other side of the base with the end of the damping pad clamped, and the conveying mechanism (1) is used for conveying the damping pad to the end of the mounting rack (32) for clamping the damping pad.

2. The water pump motor damping device automated installation system of claim 1, wherein: The mounting mechanism (3) further comprises a moving seat (33), the moving assembly (31) is used for driving the moving seat (33) to move away from the base of the damping device on the placing rack (2), each mounting rack (32) comprises two clamping racks (321), one end of each clamping rack (321) is rotationally connected with the moving seat (33), the other end penetrates through the corresponding hole on the base of the damping device for mounting damping pads and leaves a gap for placing one end of the damping pad.

3. The water pump motor damping device automated installation system of claim 2, wherein: One end of each clamping rack (321) away from the moving seat (33) is provided with an embedding groove (4) for embedding the end of the damping pad.

4. The water pump motor dampening device automated installation system of claim 1, wherein: The placing rack (2) is further provided with a positioning assembly (21), the positioning assembly (21) comprises two positioning racks (211), the top of each positioning rack (211) is provided with a groove for embedding the base of the damping device, and a plurality of positioning holes (2111) are formed in each positioning rack (211) for penetrating through the corresponding mounting rack (32).

5. The water pump motor dampening device automated installation system of claim 1, wherein: The conveying mechanism (1) comprises a moving robot (11) and a suction accessory (12), the moving robot (11) is located on one side of the placing rack (2), the suction accessory (12) is mounted on the working end of the moving robot (11) and is used for suctioning a plurality of damping pads at a time.

6. The water pump motor damping device automated installation system of claim 2, wherein: One end of each clamping rack (321) close to the moving seat (33) extends an extension (3211), the mounting mechanism (3) further comprises a plurality of driving racks (34), the driving racks (34) are correspondingly arranged with the clamping racks (321), one end of each driving rack (34) is rotationally connected with the corresponding extension (3211), and the other end is rotationally connected with the placing rack (2).

7. The water pump motor damping device automated installation system of claim 6, wherein: The top of each clamping rack (321) is provided with a rotating mechanism (6), each rotating mechanism (6) comprises a rotating rack (61) and a linkage assembly (62), each rotating rack (61) is rotationally connected with one end of the corresponding clamping rack (321) away from the moving seat (33) and is used for contacting the end of the damping pad, and each linkage assembly (62) is used for driving the corresponding rotating rack (61) to rotate.

8. The water pump motor damping device automated installation system of claim 7, wherein: The linkage assembly (62) comprises sliding frames (621), transmission frames (622) and linkage members (623), each sliding frame (621) is in sliding connection with the corresponding clamping frame (321), one end of each transmission frame (622) is in rotary connection with the corresponding sliding frame (621), the other end is in rotary connection with the corresponding rotary frame (61), and the rotary connection position of the clamping frame (321) with the rotary frame (61) is different from the rotary connection position of the rotary frame (61) itself, the clamping frame (321) drives the corresponding sliding frame (621) to slide through the linkage assembly (62).

9. The water pump motor dampening device automated installation system of claim 8, wherein: The linkage assembly (62) comprises linkage frames (6231), one end of the linkage frame (6231) is in rotary connection with the corresponding sliding frame (621), and the other end is in rotary connection with the moving seat (33).

10. The water pump motor dampening device automated installation system of claim 9, wherein: The moving seat (33) is also provided with a plurality of extension columns (5), the extension columns (5) correspond to the mounting frames (32) and are located between the corresponding two clamping frames (321), and one end of the linkage frame (6231) away from the corresponding sliding frame (621) is in rotary connection with the corresponding extension column (5).