Motor base stabilization device
The motor base stabilizing device addresses the issue of hidden bolt inspection in motor mounting by using snap rings and a gear-based tightening mechanism with a vibration sensor, ensuring stable and safe motor fixation and timely bolt adjustment.
Patent Information
- Application Number
- JP2025003657U
- Authority / Receiving Office
- JP · JP
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2025-03-19
- Filing Date
- 2025-10-23
- Publication Date
- 2025-12-22
- Estimated Expiration
- 2035-10-23
AI Technical Summary
Existing motor mounting systems lack visibility and timely inspection of fixing bolts, posing a safety risk due to potential loosening or breakage, especially in horizontal mounting configurations where bolts are hidden and inaccessible.
A motor base stabilizing device with semicircular snap rings, inner and outer bolts, a position restricting and tightening mechanism, and a vibration sensor to ensure stable fixation and timely detection of bolt loosening, using a combination of gears and clamping mechanisms for secure mounting and adjustment.
Ensures stable and safe motor fixation by allowing both internal and external bolt fixation, enabling timely detection and adjustment of loose bolts, reducing vibration-induced risks and ensuring continuous operation safety.
Smart Images

Figure 0003254110000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a motor base stabilizing device, which belongs to the technical field of motor parts. [Background technology]
[0002] Motors are generally mounted in two ways: vertical mounting and horizontal mounting. Vertical mounting involves the front cover of the motor being directly connected and fixed to the reducer (or other load), and is generally used for equipment with relatively low power or in special locations. Horizontal mounting involves attaching a coupling to the front shaft of the motor, connecting it to the reducer (or other load) using a coupler or pin shaft, and fixing the motor to the foundation via the base of the motor body. This type of mounting is generally used for equipment with relatively high power.
[0003] However, in order to reduce costs, some motor manufacturers do not provide an integrated mounting base for the motors they produce, but instead provide four screw holes on the motor body for mounting the base, without distinguishing between vertical and horizontal mounting. The motor can be selected according to actual needs. For vertical mounting, an end cover integrated with the reducer is replaced at the head; for horizontal mounting, a standard front end cover is installed, and the motor base is then attached using the four screw holes for mounting the base. The bolts in these four screw holes are generally hexagon socket head bolts and are installed below the motor base. After the motor base is fixed to the base, inspectors cannot see the fixing bolts at the bottom of the motor base, and therefore cannot inspect them on a daily basis. If the bolts become loose or break, the motor will vibrate, posing a significant safety risk.
[0004] The Chinese utility model patent having publication number CN219086930U discloses a motor base mounting structure including a motor base body, four height-adjusting structures symmetrically mounted on the lower end of the motor base body, and the four height-adjusting structures can all rotate at the lower end of the motor base body, the height-adjusting structures including a rotating column and an adjusting screw, and the adjusting screw is mounted on the lower end of the rotating column, two base support plates are symmetrically mounted on the four height-adjusting structures below the motor base body, and four first mounting holes are symmetrically opened on the motor base body, and the four first mounting holes all pass through the upper and lower ends of the motor base body.
[0005] The motor in the above reference example is attached and connected to the motor base body via an attachment connection plate. However, when facing a motor type where only the motor body has screw holes, the motor and motor base can only be fixed by attaching bolts from bottom to top. This means that workers cannot observe the condition of the attached bolts during inspection. If a problem occurs with the bolts, corresponding protective work cannot be carried out in a timely manner. This poses a relatively large safety risk and requires immediate improvement. Summary of the Invention [Problem to be solved by the invention]
[0006] To overcome the drawbacks of the prior art, the present invention designs a motor base stabilizing device, which can firmly fix the motor to the base platform, ensuring high safety and risk resistance. [Means for solving the problem]
[0007] To achieve the above objectives, the present invention adopts the following technical solutions.
[0008] A motor base stabilizing device includes a motor body, at least two semicircular fixed snap rings fitted to the motor body, both ends of each fixed snap ring attached to a foundation platform by snap ring bolts, and base plates installed on both sides of the bottom end of the motor body, the inner sides of the base plates being threadedly connected to the threaded holes at the bottom end of the motor body by a number of inner bolts, and the outer sides of the base plates being threadedly connected to the foundation platform by a number of outer bolts after protruding from the bottom of the motor body.
[0009] Furthermore, the number of the inner bolts and the outer bolts is two, and the distance between the two inner bolts is smaller than the distance between the two outer bolts.
[0010] Furthermore, a position restricting and tightening mechanism is attached to the top end of the motor body, and the position restricting and tightening mechanism includes a ring gear, a sun gear is concentrically installed inside the ring gear, and four planetary gears are installed in mesh with the sun gear and ring gear. A rotating shaft is rotatably connected to the top end of each of the four planetary gears, and the free ends of each rotating shaft are rotatably connected to a mounting frame. A drive motor 1 is further attached to the top end of the mounting frame, and the output shaft of the drive motor 1 rotatably passes through the mounting frame and is fixedly connected to the inner ring of the sun gear. A clamping post is fixedly fitted into the bottom end of the inner ring of each of the planetary gears, and a locking nut is fixedly connected to the bottom end of each of the clamping posts, which corresponds one-to-one with each outer bolt and is removably locked.
[0011] Furthermore, a position restricting and rotating mechanism is installed on both sides of the motor body, corresponding one-to-one to each clamping column. The position restricting and rotating mechanism includes a fixed disk, an L-shaped fixed plate is fixedly installed at the bottom end of the fixed disk, the bottom end of the L-shaped fixed plate is detachably connected to the base platform, and a clamping mechanism is attached to the top end of the fixed disk for rotatably clamping the clamping column.
[0012] Furthermore, the clamp mechanism includes a rotating disk, a hinge connection disk, a clamp assembly, and a drive assembly, wherein the rotating disk is rotatably attached to the top end of the fixed disk, and the hinge connection disk is attached to the top end of the rotating disk by three fixed blocks at intervals, the fixed disk, the rotating disk, and the hinge connection disk are concentrically arranged, and the clamp assembly has an axial line of the rotating disk as a rotation axis and three clamps uniformly arranged between the rotating disk and the hinge connection disk along a circumferential direction. the clamp unit includes a limit sleeve and a clamp rod, the limit sleeve is hingedly connected to a bottom end of a hinge connection disk, and the limit sleeve is slidably fitted on the clamp rod, one end of the limit sleeve is hingedly connected to a top end of a fixed disk by a hinge connection post, and the clamp disk is rotatably connected to the other end of the limit sleeve, and the drive assembly is used to drive the rotating disk to rotate.
[0013] The drive assembly further includes a drive motor 2, a screw rod, a rotating block, and a threaded block. A hinged connection block is protruded from the side of the rotating disk, the threaded block is hingedly attached to the top end of the hinge block, a rotating column is fixedly attached to the top end of the fixed disk, and the rotating block is hingedly attached to the top end of the rotating column. The screw thread of the screw rod passes through between the threaded block and the rotating block, and the drive motor 2 is power-transmittingly connected to one end of the screw rod that passes through the rotating block.
[0014] Furthermore, a vibration sensor is attached to the motor body, and both the vibration sensor and the drive motor 1 are electrically connected to a host machine.
[0015] Furthermore, the two fixed snap rings are respectively installed on both sides of the base plate.
[0016] Furthermore, both ends of the fixed snap ring are horizontally installed and have connecting screw holes.
[0017] Furthermore, the width of the fixed snap ring is 30 to 60 mm. [Effects of the Invention]
[0018] Compared with the prior art, the present invention has the following characteristics and beneficial effects:
[0019] 1. This invention installs a base plate and provides two mounting points, one inside and one outside, for the inner bolt and one outside bolt, which not only ensures stable fixing to the motor body, but also allows for both internal and external fixing. Even if the inner bolt loosens or breaks, it can still be fixed by the outer bolt, ensuring safety. If the outer bolt loosens or breaks, it can be observed and inspected in a timely manner, further ensuring the safety of the connection. At the same time, the additional fixing of the fixing snap ring provides a final guarantee even if a problem occurs with either the inner or outer bolt, and the motor body can be firmly fixed to the base platform.
[0020] 2. In this invention, by installing a vibration sensor, when the vibration of the motor body is relatively strong and exceeds the preset threshold of the host machine, the host machine can control the drive motor 1 to start and rotate the sun gear, causing the gear meshing transmission operation, and the four planetary gears to rotate in the same direction. At the same time, the planetary gears drive the clamping column to rotate, and the clamping column can further drive the outer bolt to rotate. If the outer bolt becomes loose, the outer bolt can be tightened, ensuring the fixing stability of the motor body, and the loosening situation can be handled in a timely manner, ensuring safety.
[0021] 3. In this device, when the drive motor 2 is started, the hinge connection block and the rotating disk are driven to rotate. As the rotating disk rotates, the hinge connection disk is driven to rotate synchronously. The rotation of the hinge connection disk drives the limit sleeve to swing, which in turn drives the clamp rod to swing. Since there are three clamp rods, the three clamp rods can clamp the clamping column synchronously. When the clamp rods clamp, the clamp discs come into contact with the clamping column. Therefore, when the clamping column needs to be rotated, the clamp discs also rotate synchronously, preventing interference with the clamping column. This not only achieves vertical positioning of the clamping column, but also allows the clamping column to rotate smoothly, ensuring the stability and smoothness of its rotation. [Brief explanation of the drawings]
[0022] [Figure 1] FIG. 2 is a front view of the motor base stabilizing device of the present invention; [Figure 2] FIG. 2 is a bottom view of the motor base stabilizing device of the present invention; [Figure 3] 1 is a schematic diagram of the three-dimensional structure of a position limiting and tightening mechanism according to a first aspect of the present invention; [Figure 4] 4 is a schematic diagram of the three-dimensional structure of the position limiting and tightening mechanism of the present invention from a second perspective; FIG. [Figure 5] 2 is a schematic diagram of the planetary gear, sun gear, and ring gear of the present invention; FIG. [Figure 6] FIG. 2 is a plan view showing the installation of the position limiting and rotating mechanism of the present invention. [Figure 7] 1 is a schematic diagram of the three-dimensional structure of the position limiting and rotating mechanism of the present invention; DETAILED DESCRIPTION OF THE INVENTION
[0023] The present invention will be described in more detail below in conjunction with examples.
[0024] Example 1 1 and 2, the motor base stabilizing device of this embodiment includes a motor body 3, on which two semicircular fixed snap rings are fitted, namely, a front end fixed snap ring 2 and a rear end fixed snap ring 6, and both ends of each fixed snap ring are attached to the base platform 11 by snap ring bolts.
[0025] Specifically, the front end fixed snap ring 2 is installed on one side of the motor body 3 close to the motor front end cover 1, and the rear end fixed snap ring 6 is installed on one side of the motor body 3 close to the fan cover 7. The front end fixed snap ring 2 is removably connected to the base platform 11 by two front end snap ring bolts 9, and the rear end fixed snap ring 6 is removably connected to the base platform 11 by two rear end snap ring bolts 10.
[0026] The installation of two fixing snap rings can provide strong fixing at both the front and rear ends of the motor body 3, effectively improving the stability when fixing the motor body 3 and ensuring safety.
[0027] In this embodiment, a connection box 5 is installed on the side of the motor body 3, and a suspension ring 4 is installed on the top end of the motor body 3.
[0028] At the same time, base plates 13 are further installed on both sides of the bottom end of the motor body 3, the inside of which is screwed into pre-installed threaded holes at the bottom end of the motor body 3 by two inner bolts 12, and the outside of which is screwed into the foundation platform 11 by two outer bolts 8 after protruding from the bottom of the motor body 3. Although the connection between the inner bolts 12 and the motor body 3 is invisible, the installation of the outer bolts 8 not only increases the number of connection points, but also allows direct observation of the connection of the outer bolts 8, allowing for timely detection of loosening or breakage of the bolts, making inspection easier and further improving safety.
[0029] In this embodiment, the number of inner bolts 12 and outer bolts 8 is two, and the distance between the two inner bolts 12 is smaller than the distance between the two outer bolts 8. The small distance between the inner bolts 12 can more effectively disperse the vibrations and stresses generated when the motor body 3 is operating, and reduce local stress concentrations on the motor body 3 and base plate 13. The large distance between the outer bolts 8 can disperse these stresses in the foundation platform 11, preventing the foundation platform 11 from bearing too large a local force.
[0030] Furthermore, two fixed snap rings are respectively installed on both sides of the base plate 13, and are fitted with the base plate 13 to gradually stabilize the motor body 3, further improving safety.
[0031] Furthermore, both ends of the fixed snap ring are horizontally installed and have connecting screw holes, and the width of the fixed snap ring is 30 to 60 mm.
[0032] As can be seen from the above description, the installation of the base plate 13 provides two mounting points, one inside and one outside, for the inner bolt 12 and the other outside bolt 8, which not only ensures stable fixing to the motor body 3 but also allows for fixing both inside and outside. Even if the inner bolt 12 loosens or breaks, it can still be fixed by the outer bolt 8, ensuring safety. If the outer bolt 8 loosens or breaks, it can be observed and inspected in a timely manner, further ensuring the safety of the connection. At the same time, the additional fixing of the fixing snap ring provides a final guarantee even if a problem occurs with either the inner bolt 12 or the outer bolt 8, and the motor body 3 can be firmly fixed to the base platform 11.
[0033] Example 2 Referring to Figures 3 to 5, based on the above-mentioned Example 1, a position restricting tightening mechanism 14 is attached to the top end of the motor body 3, and the position restricting tightening mechanism 14 includes a ring gear 21, a sun gear 18 is concentrically installed inside the ring gear 21, and four planetary gears 17 are installed in mesh with each other between the sun gear 18 and the ring gear 21, and the four planetary gears 17 are installed directly above the four outer bolts 8 in a one-to-one correspondence.
[0034] Here, a rotating shaft is rotatably connected to the top end of each of the four planetary gears 17, and the free end of each rotating shaft is rotatably connected to one mounting frame 15. A drive motor 1 16 is further attached to the top end of the mounting frame 15, and the output shaft of the drive motor 1 16 rotatably passes through the mounting frame 15 and is fixedly connected to the inner ring of the sun gear 18.
[0035] At the same time, a fastening post 19 is fixedly fitted onto the bottom end of the inner ring of each planetary gear 17, and a locking nut 20 is fixedly connected to the bottom end of each fastening post 19, which corresponds one-to-one with each outer bolt 8 and is removably locked.
[0036] By starting the drive motor 1 16, the sun gear 18 can be driven to rotate, and the four planetary gears 17 rotate in the same direction due to the gear meshing transmission action. At the same time, the planetary gears 17 drive the clamping posts 19 to rotate, which in turn drives the outer bolts 8 to rotate. If the outer bolts 8 are loose, they can be tightened, ensuring the fixing stability of the motor body 3.
[0037] Furthermore, a vibration sensor is attached to the motor main body 3, and both the vibration sensor and the drive motor 116 are electrically connected to a higher-level device.
[0038] By installing the vibration sensor, if the vibration of the motor body 3 is relatively strong and exceeds the preset threshold of the host machine, the host machine can control the drive motor 1 16 to start and tighten the outer bolt 8, thereby dealing with the loosening situation in a timely manner and ensuring safety.
[0039] Example 3 6 and 7, based on the above-mentioned second embodiment, a position restricting and rotating mechanism 22 is installed on both sides of the motor body 3, corresponding to each clamping post 19 in a one-to-one correspondence. The position restricting and rotating mechanism 22 includes a fixed disk 24, and an L-shaped fixed plate 23 is fixedly installed at the bottom end of the fixed disk 24. The bottom end of the L-shaped fixed plate 23 is detachably connected to the base platform 11. Specifically, two screw connection holes are installed at the bottom end of the L-shaped fixed plate 23, and the L-shaped fixed plate 23 is fixed to the base platform 11 by two bolts.
[0040] Here, a clamping mechanism for rotatably clamping the fastening post 19 is attached to the top end of the fixed disk 24.
[0041] Specifically, the clamping mechanism includes a rotating disk 25, a hinge connecting disk 33, a clamp assembly, and a drive assembly, in which the rotating disk 25 is rotatably attached to the top end of the fixed disk 24, and the hinge connecting disk 33 is attached to the top end of the rotating disk 25 at intervals by three fixing blocks, in which the fixed disk 24, the rotating disk 25, and the hinge connecting disk 33 are arranged concentrically, and the three fixing blocks are arranged uniformly along the circumferential direction.
[0042] The clamp assembly has the axis of rotation of the axial line of the rotating disk 25 and includes three clamp units uniformly installed between the rotating disk 25 and the hinge connection disk 33 along the circumferential direction, with one clamp unit installed between any two adjacent fixed blocks.
[0043] Here, the clamp unit includes a limit sleeve 36 and a clamp rod 35. The limit sleeve 36 is hingedly connected to the bottom end of the hinge connection disc 33, and the limit sleeve 36 is slidably fitted onto the clamp rod 35. One end of the limit sleeve 36 is hingedly connected to the top end of the fixed disc 24 by a hinge connection post 34, and the clamp disc 32 is rotatably connected to the other end of the limit sleeve 36.
[0044] A drive assembly is used to drive the rotating disk 25 into rotation.
[0045] Specifically, the drive assembly includes a drive motor 2 29, a screw rod 28, a rotating block 30, and a threaded block 27. A hinged connection block 26 is protruded from the side of the rotating disk 25, the threaded block 27 is hingedly attached to the top end of the hinge block 26, a rotating column 31 is fixedly attached to the top end of the fixed disk 24, and the rotating block 30 is hingedly attached to the top end of the rotating column 31. The screw thread of the screw rod 28 passes through between the threaded block 27 and the rotating block 30, and the drive motor 2 29 is power-transmittingly connected to one end of the screw rod 28 that passes through the rotating block 30.
[0046] The threaded block is a part or member having a block-like or plate-like outer shape and designed with structural features such as screw holes or holes and grooves for attaching screw fasteners (e.g., bolts, screws),
[0047] When the drive motor 2 29 is started, the hinge connection block 26 and the rotating disc 25 are driven to rotate. When the rotating disc 25 rotates, the hinge connection disc 33 is driven to rotate synchronously. The rotation of the hinge connection disc 33 drives the limit sleeve 36 to swing, which in turn drives the clamp rod 35 to swing. Since there are three clamp rods 35, the clamping column 19 can be clamped synchronously by the three clamp rods 35. When the clamp rods 35 clamp, the clamp discs 32 come into contact with the clamping column 19. Therefore, when the clamping column 19 needs to be clamped and rotated, the clamp discs 32 also rotate synchronously, which does not cause any obstruction to the clamping column 19. This not only realizes the vertical positioning of the clamping column 19, but also allows the clamping column 19 to rotate smoothly, ensuring the stability of the clamping column 19 and the smooth rotation of the clamping column 19.
[0048] The working principle of this invention is that the installation of the base plate 13 provides two mounting points, one inside and one outside, for the inner bolt 12 and the other outside bolt 8, which not only ensures stable fixing to the motor body 3 but also allows for both internal and external fixing. Even if the inner bolt 12 loosens or breaks, it can still be fixed by the outer bolt 8, ensuring safety. If the outer bolt 8 loosens or breaks, it can be observed and inspected in a timely manner, further ensuring the safety of the connection. At the same time, the additional fixing of the fixing snap ring provides a final guarantee even if a problem occurs with either the inner bolt 12 or the outer bolt 8, and the motor body 3 can be firmly fixed to the base platform 11.
[0049] By installing the vibration sensor, when the vibration of the motor body 3 is relatively strong and exceeds the preset threshold of the host machine, the host machine can control the drive motor 1 16 to start and drive the sun gear 18 to rotate. Due to the gear meshing transmission operation, the four planetary gears 17 rotate in the same direction. At the same time, the planetary gears 17 drive the clamping posts 19 to rotate, which in turn drives the outer bolts 8 to rotate. If the outer bolts 8 become loose, the outer bolts 8 can be tightened, ensuring the fixing stability of the motor body 3, allowing the loosening situation to be handled in a timely manner, and ensuring safety.
[0050] When the drive motor 2 29 is started, the hinge connection block 26 and the rotating disc 25 are driven to rotate. When the rotating disc 25 rotates, the hinge connection disc 33 is driven to rotate synchronously. The rotation of the hinge connection disc 33 drives the limit sleeve 36 to swing, which in turn drives the clamp rod 35 to swing. Since there are three clamp rods 35, the clamping column 19 can be clamped synchronously by the three clamp rods 35. When the clamp rods 35 clamp, the clamp discs 32 come into contact with the clamping column 19. Therefore, when the clamping column 19 needs to be clamped and rotated, the clamp discs 32 also rotate synchronously, which does not cause any obstruction to the clamping column 19. This not only realizes the vertical positioning of the clamping column 19, but also allows the clamping column 19 to rotate smoothly, ensuring the stability of the clamping column 19 and the smooth rotation of the clamping column 19.
[0051] In describing the present invention, it should be explained that the orientations or positional relationships indicated by terms such as "inside," "outside," "up," etc. are orientations or positional relationships shown based on the drawings, and are merely for the convenience and simplification of the description of the present invention. They do not indicate or imply that the referred devices or elements must have a specific orientation or be configured and operated in a specific orientation, and therefore should not be understood as limitations on the present invention.
[0052] It should be explained that in the description of the present invention, unless otherwise clearly specified and limited, the term "connection" should be understood in a broad sense, and may be, for example, a fixed connection, a detachable connection, an integral connection, a mechanical connection, an electrical connection, a direct connection, an indirect connection through an intermediate medium, or a communication between two elements. Those skilled in the art can understand the specific meaning of the above term in the present invention according to specific circumstances.
[0053] Obviously, the described embodiments are only some of the embodiments of the present invention, but not all of the embodiments, and all other embodiments obtained by those skilled in the art based on the embodiments of the present invention without any creative effort fall within the scope of protection of the present invention. [Explanation of symbols]
[0054] 1 Motor front cover 2 Front end fixing snap ring 3 Motor body 4 Hanging rings 5 Junction box 6 Rear end fixing snap ring 7 Fan cover 8 outer bolts 9 Front end snap ring bolt 10 Rear end snap ring bolt 11. Foundation Platform 12 Inner bolt 13 Base plate 14 Position control tightening mechanism 15 Mounting frame 16 Drive motor 1 17 Planetary gear 18 Sun gear 19 Fastening pillar 20 Locking nut 21 Ring gear 22 Position control rotation mechanism 23 L-shaped fixing plate 24 Fixed disc 25 Rotating disc 26 Hinge connection block 27 Threaded Block 28 screw rod 29 Drive motor 2 30 Rotating Blocks 31 Rotating Pillar 32 Clamping disc 33 Hinge connection disc 34 Hinge connection column 35 Clamp rod 36 Limit Sleeve
Claims
1. A motor base stabilization device, comprising:
1. A motor base stabilizing device comprising: a motor body (3), at least two semicircular fixed snap rings fitted to the motor body (3), both ends of each fixed snap ring being attached to a base platform (11) by snap ring bolts; base plates (13) installed on both sides of the bottom end of the motor body (3), the inner sides of the base plates (13) being threadedly connected to threaded holes in the bottom end of the motor body (3) by a plurality of inner bolts (12), and the outer sides of the base plates (13) being threadedly connected to the base platform (11) by a plurality of outer bolts (8) after protruding from the bottom of the motor body (3).
2. 2. The motor base stabilizing device according to claim 1, wherein the number of the inner bolts (12) and the number of the outer bolts (8) are both two, and the distance between the two inner bolts (12) is smaller than the distance between the two outer bolts (8).
3. A position restricting and tightening mechanism (14) is attached to the top end of the motor body (3), and the position restricting and tightening mechanism (14) includes a ring gear (21), a sun gear (18) is concentrically installed inside the ring gear (21), four planetary gears (17) are installed in mesh with the sun gear (18) and the ring gear (21), a rotation shaft is rotatably connected to the top end of each of the four planetary gears (17), and the free ends of each of the rotation shafts are rotatably connected to a mounting frame (15), and the mounting frame 3. The motor base stabilizing device according to claim 2, further comprising: a driving motor 1 (16) mounted on the top end of the mounting frame (15); an output shaft of the driving motor 1 (16) rotatably passing through the mounting frame (15) and then fixedly connected to the inner ring of the sun gear (18); a fastening post (19) is fixedly fitted onto the bottom end of the inner ring of each of the planetary gears (17); and a locking nut (20) fixedly connected to the bottom end of each of the fastening posts (19) in a one-to-one correspondence with each of the outer bolts (8) and removably locked thereto.
4. 4. The motor base stabilizing device according to claim 3, wherein position restricting and rotating mechanisms (22) are installed on both sides of the motor body (3) in a one-to-one correspondence with each clamping post (19), the position restricting and rotating mechanisms (22) include a fixed disk (24), an L-shaped fixed plate (23) is fixedly installed at the bottom end of the fixed disk (24), the bottom end of the L-shaped fixed plate (23) is detachably connected to the base platform (11), and a clamping mechanism for rotatably clamping the clamping post (19) is attached to the top end of the fixed disk (24).
5. The clamp mechanism includes a rotating disk (25), a hinge connection disk (33), a clamp assembly, and a drive assembly, the rotating disk (25) is rotatably attached to the top end of the fixed disk (24), the hinge connection disk (33) is attached to the top end of the rotating disk (25) at intervals by three fixed blocks, the fixed disk (24), the rotating disk (25), and the hinge connection disk (33) are installed concentrically, the clamp assembly includes three clamp units that have the axis of rotation of the axis line of the rotating disk (25) and are evenly installed between the rotating disk (25) and the hinge connection disk (33) along the circumferential direction, and the clamp assembly includes three clamp units that have the axis of rotation of the axis line of the rotating disk (25) and are evenly installed between the rotating disk (25) and the hinge connection disk (33), and the clamp assembly includes three clamp units that have the axis of rotation of the axis of the rotating disk (25) and are evenly installed between the rotating disk (25) and the hinge connection disk (33) along the circumferential direction, and the drive assembly includes three clamp units that have the axis of rotation of the axis of the rotating disk (25) and are evenly installed between the rotating disk (25) and the hinge connection disk (33), ...
5. The motor base stabilizing device of claim 4, wherein the pump unit includes a limit sleeve (36) and a clamp rod (35), the limit sleeve (36) is hingedly connected to the bottom end of the hinge connection disc (33), and the limit sleeve (36) is slidably fitted on the clamp rod (35), one end of the limit sleeve (36) is hingedly connected to the top end of the fixed disc (24) by a hinge connection post (34), and the clamp disc (32) is rotatably connected to the other end of the limit sleeve (36), and the drive assembly is used to drive the rotating disc (25) to rotate.
6. 6. The motor base stabilizing device of claim 5, wherein the drive assembly includes a drive motor (29), a screw rod (28), a rotation block (30), and a threaded block (27), wherein a hinge connection block (26) is protruded from a side of the rotating disk (25), the threaded block (27) is hingedly installed on the top end of the hinge block (26), a rotation column (31) is fixedly installed on the top end of the fixed disk (24), the rotation block (30) is hingedly installed on the top end of the rotation column (31), the screw thread of the screw rod (28) is installed between the threaded block (27) and the rotation block (30), and the drive motor (29) is power-transmittingly connected to one end of the screw rod (28) that passes through the rotation block (30).
7. 4. The motor base stabilizing device according to claim 3, wherein a vibration sensor is attached to the motor body (3), and the vibration sensor and the drive motor 1 (16) are both electrically connected to a host machine.
8. 2. The motor base stabilizing device according to claim 1, wherein the two fixing snap rings are respectively installed on both sides of the base plate (13).
9. 2. The motor base stabilizing device according to claim 1, wherein both ends of the fixing snap ring are horizontally installed and have connecting screw holes.
10. 2. The motor base stabilizing device according to claim 1, wherein the width of the fixed snap ring is 30 mm to 60 mm.