An efficient motor base

By designing a slidable sliding seat and mounting block structure on the motor base, the installation adaptability problem of motors of different specifications is solved, and the heat dissipation efficiency is improved through ventilation holes and ventilation fans, achieving stable and efficient operation of the motor.

CN115955037BActive Publication Date: 2025-07-25SHAOXING MOTAI ELECTROMECHANICAL TECH CO LTD
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Patent Information

Application Number
CN202310087925.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-09
Publication Date
2025-07-25
Estimated Expiration
2043-02-09

AI Technical Summary

Technical Problem

The existing motor base cannot adjust the position of the threaded hole, cannot meet the installation needs of motors of different specifications, and has low heat dissipation efficiency.

Method used

A slidable sliding seat and mounting block structure is designed to enable position adjustment through locking components, and ventilation holes and ventilation fans are provided on the base plate to improve heat dissipation efficiency.

Benefits of technology

The motor base is suitable for installation of motors of different specifications, and the heat dissipation efficiency of the motor is improved to ensure stable and efficient operation of the motor.

✦ Generated by Eureka AI based on patent content.

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    Figure CN115955037B_ABST
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Abstract

The present invention belongs to the technical field of motor fixing, and relates to an efficient motor base. An efficient motor base includes a bottom plate, on which two first sliding grooves are symmetrically opened. Two sliding seats are slidably arranged in each of the first sliding grooves, and a locking component is fixedly arranged inside the two sliding seats. A second sliding groove is opened on the cross beam, and a mounting block is slidably arranged in the second sliding groove. A threaded hole is opened in the middle of the mounting block. By providing slidable sliding seats, the sliding seats drive the cross beam to adjust the mounting block in the direction of the first sliding groove. At the same time, by providing a slidable mounting block, the adjustment of the mounting block in the direction of the second sliding groove is completed, so that the present invention can be applied to motors of different specifications. At the same time, ventilation holes are opened on the bottom plate and ventilation fans are installed, avoiding the problem of inconvenient heat dissipation of the motor caused by the close distance between the traditional base and the motor. Further improving the heat dissipation efficiency of the motor enables the motor to work more efficiently.
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Description

Technical Field

[0001] The present invention belongs to the technical field of motor fixation and relates to an efficient motor base. Background Art

[0002] The base of a motor mainly provides convenience for the installation of the motor in daily industrial production and at the same time provides stable working conditions for the motor.

[0003] An application with the publication number CN105406638A provides an adjustable motor reinforcement base. The motor reinforcement base includes a base, longitudinal reinforcing ribs, transverse reinforcing ribs, a support plate, bolts, and locknuts. A longitudinal reinforcing rib is longitudinally arranged in the middle of the base, a transverse reinforcing rib is transversely arranged in the middle of the base, a support plate is fixed above the longitudinal reinforcing rib and the transverse reinforcing rib, through holes are arranged at four corners of the upper end surface of the support plate, eight threaded holes are arranged at both ends of the four side surfaces of the support plate in total, bolts are rotatably fixed on the threaded holes, and locknuts are fixed between the support plate and the bolts. Through a simple improvement design of the support plate of the engine base, the present invention solves the influence caused by the loosening of bolts during the installation of the existing engine, enables the engine to run for a long time without affecting the continuous progress of the project, is simple, efficient, stable and reliable, and convenient for workers to operate.

[0004] However, the position of the threaded holes of this reinforcement base cannot be adjusted, and the requirements for installing motors of different specifications cannot be met. Moreover, the gap between the base and the motor is small, which is not conducive to the ventilation and heat dissipation of the lower part of the motor. Therefore, a motor base that can install motors of different specifications and can maintain good heat dissipation when the motor is working is needed.

[0005] To solve the above problems, the present invention proposes an efficient motor base. Summary of the Invention

[0006] To solve the problems in the background art, the present invention proposes an efficient motor base.

[0007] To achieve the above object, the technical solution adopted by the present invention is as follows: An efficient motor base includes: a bottom plate, two first chutes are symmetrically opened on the bottom plate, two sliding seats are slidably arranged in each first chute, and a locking component is fixedly arranged inside the sliding seat; crossbeams are fixedly arranged on two sliding seats on the same side of the two first chutes, a second chute is opened on the crossbeam, an installation block is slidably arranged in the second chute, a threaded hole is opened in the middle of the installation block, a ventilation hole is opened in the middle of the bottom plate, and a heat dissipation component is fixedly arranged in the ventilation hole.

[0008] Further, the locking component includes a clamping block, a spring, a push plate and a screw; a groove is formed in the lower part of the sliding seat, the clamping block is slidably arranged in the groove, a protrusion is fixedly arranged on the upper part of the clamping block, one end of the spring is fixedly connected with the protrusion, and the other end of the spring is fixedly connected with the inner wall of the groove; a vertical groove is formed in the sliding seat, the vertical groove is perpendicular to the groove, and the vertical groove communicates with the middle of the groove, the push plate is slidably arranged in the vertical groove, the push plate cooperates with the clamping block, a screw is rotatably arranged at the short end of the push plate away from the clamping block, a through hole is formed in the sliding seat, the through hole communicates with the inside of the vertical groove, and the screw passes through the through hole and extends to the outside of the sliding seat.

[0009] Further, there are two clamping blocks, the two clamping blocks are symmetrically arranged in the groove, and both of the two clamping blocks cooperate with the push plate; the surfaces of the clamping blocks cooperating with the push plate are both arc surfaces protruding outwards.

[0010] Further, a bearing is fixedly embedded at one end of the push plate away from the clamping block, the inner ring of the bearing is fixedly connected with the screw, and the outer ring of the bearing is fixedly connected with the push plate.

[0011] Further, first serrated portions are symmetrically formed in the first sliding groove, and second serrated portions are formed at the ends of the two clamping blocks away from each other, and the first serrated portions cooperate with the second serrated portions.

[0012] Further, two clamping plates are symmetrically arranged at the lower part of the mounting block, a top block groove is formed between the clamping plate and the mounting block, and the top block groove communicates with the threaded hole; a top block is slidably arranged inside the top block groove, the intersection of the top block groove and the two clamping plates is an inward concave arc surface, and the shape of the top block is complementary to the shape of the top block groove.

[0013] Further, third serrated portions are symmetrically arranged inside the second sliding groove, and fourth serrated portions are arranged at the ends of the clamping plates away from the top block, and the third serrated portions cooperate with the fourth serrated portions.

[0014] Further, the heat dissipation component includes a mounting rod and a ventilation fan, the mounting rod is fixedly arranged in the ventilation hole, and the ventilation fan is fixedly installed on the ventilation rod.

[0015] Compared with the prior art, the present invention has the following beneficial effects: by providing a slidable sliding seat, the sliding seat drives the cross beam to adjust the mounting block in the direction of the first sliding groove. At the same time, a slidable mounting block is provided to complete the adjustment of the mounting block along the direction of the second sliding groove, so that the present invention can be applicable to different specifications of motors. At the same time, ventilation holes are formed in the bottom plate and ventilation fans are installed, avoiding the problem of inconvenient heat dissipation of the motor caused by the close distance between the traditional base and the motor. Further improving the heat dissipation efficiency of the motor enables the motor to work more efficiently. Brief Description of the Drawings

[0016] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0017] Figure 2 is an enlarged view of part A in the present invention 1;

[0018] Figure 3 is a schematic diagram of the connection between the cross beam and the mounting block in the present invention;

[0019] Figure 4 is the present invention Figure 3 an enlarged view of part B in;

[0020] Figure 5 is the present invention Figure 3 an enlarged view of part C in;

[0021] Figure 6 is a schematic diagram of the structure of the mounting block in the present invention;

[0022] Figure 7 is a schematic diagram of the internal structure of the sliding seat in the present invention;

[0023] Figure 8 is a schematic diagram of the structure of the clamping block in the present invention.

[0024] In the figure: 1, bottom plate; 2, first sliding groove; 21, first serrated part; 3, sliding seat; 31, clamping block; 32, spring; 33, second serrated part; 34, push plate; 35, screw; 4, cross beam; 5, second sliding groove; 51, third serrated part; 6, mounting block; 61, threaded hole; 62, top block; 63, clamping plate; 64, fourth serrated part; 7, ventilation hole; 71, ventilation fan. Detailed Description of the Invention

[0025] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0026] Such as Figures 1 - 8As shown in the figure, the technical solution adopted by the present invention is as follows: An efficient motor base, comprising: a bottom plate 1, on which two first sliding grooves 2 are symmetrically opened. Two sliding seats 3 are slidably arranged in each of the first sliding grooves 2, and a locking component is fixedly arranged inside the sliding seat 3. So as to facilitate the fixation of the sliding seat 3 through the locking component, providing necessary conditions for the stable operation of the motor. Two cross beams 4 are fixedly arranged on the upper parts of the two sliding seats 3 on the same side of the two first sliding grooves 2. A second sliding groove 5 is opened on the cross beam 4, and a mounting block 6 is slidably arranged in the second sliding groove 5. A threaded hole 61 is opened in the middle of the mounting block 6, and a ventilation hole 7 is opened in the middle of the bottom plate 1. A heat dissipation component is fixedly arranged in the ventilation hole 7. It is convenient to use a suitable bolt to fixedly install the motor on the mounting seat. At the same time, the positions of the sliding seat 3 and the mounting block 6 can be adjusted according to the specification size of the motor, so that the base is applicable to motors of different sizes, improving the actual use effect of the present invention. At the same time, the motor is cooled through the ventilation hole 7 and the heat dissipation component, so that the motor can maintain a good working state.

[0027] The locking component includes a clamping block 31, a spring 32, a push plate 34 and a screw 35. A groove is opened at the lower part of the sliding seat 3, and the clamping block 31 is slidably arranged in the groove. A protrusion is fixedly arranged on the upper part of the clamping block 31. One end of the spring 32 is fixedly connected to the protrusion, and the other end of the spring 32 is fixedly connected to the inner wall of the groove. A vertical groove is opened inside the sliding seat 3, which is perpendicular to the groove and communicates with the middle of the groove. The push plate 34 is slidably arranged in the vertical groove. The push plate 34 cooperates with the clamping block 31. A screw 35 is rotatably arranged at one end of the push plate 34 away from the clamping block 31. A through hole is opened on the sliding seat 3, which communicates with the inside of the vertical groove. The screw 35 passes through the through hole and extends to the outside of the sliding seat 3. By controlling the screw 35, the push plate 34 can be moved, so that the push plate 34 pushes the clamping plate to contact the inner wall of the first sliding groove 2, thus playing a role in fixing the sliding seat 3.

[0028] There are two clamping blocks 31, and the two clamping blocks 31 are symmetrically arranged in the groove, and both of the two clamping blocks 31 cooperate with the push plate 34. The surfaces of the clamping blocks 31 that cooperate with the push plate 34 are both arc surfaces protruding outwards. The arc surface design enables the push plate 34 to move towards the two clamping blocks 31 on both sides during the movement, so that the two clamping blocks 31 hold the inner wall of the first sliding groove 2 from both sides, thus making the sliding seat 3 more stably fixed in the first sliding groove 2 and providing necessary support for the stable operation of the motor.

[0029] One end of the push plate 34 away from the clamping block 31 is fixedly embedded with a bearing. The inner ring of the bearing is fixedly connected to the screw 35, and the outer ring of the bearing is fixedly connected to the push plate 34. The design of the bearing avoids the rotation of the push plate 34 when the screw 35 rotates, and at the same time can reduce the friction between the screw 35 and the push plate 34, making the adjustment of the position of the sliding seat 3 more convenient and labor-saving.

[0030] First serrated portions 21 are symmetrically formed in the first sliding groove 2. Second serrated portions 33 are formed at one ends of the two clamping blocks 31 away from each other. The first serrated portions 21 cooperate with the second serrated portions 33. When the push plate 34 pushes the clamping blocks 31 to move out of the groove, the second serrated portions 33 are engaged with the first serrated portions 21, making the fixing of the sliding seat 3 more firm, and avoiding the change of the position of the sliding seat 3 due to the vibration during the high-speed operation of the motor, further improving the stability of the base.

[0031] Two clamping plates 63 are symmetrically arranged at the lower part of the mounting block 6. A top block groove is formed between the clamping plates 63 and the mounting block 6, and the top block groove communicates with the threaded hole 61. A top block 62 is slidably arranged inside the top block groove. The intersection of the top block groove and the two clamping plates 63 is an inwardly concave arc surface, and the shape of the top block 62 is complementary to the shape of the top block groove. Third serrated portions 51 are symmetrically arranged inside the second sliding groove 5. A fourth serrated portion 64 is arranged at one end of the clamping plate 63 away from the top block 62. The third serrated portions 51 cooperate with the fourth serrated portions 64. After the mounting hole on the motor is placed corresponding to the threaded hole 61, a suitable bolt is passed through the mounting hole of the motor and the threaded hole 61, and then the bolt is tightened. After the bolt enters the threaded hole 61, it gradually presses the top block 62, so that the top block 62 moves downward, and the arc surfaces on both sides of the top block 62 push the lower ends of the corresponding clamping plates 63 to expand outward. It is worth noting that the clamping plates 63 are made of a tough hard alloy, so they are not easily broken during expansion and can return to their original shape after the external force is removed. The clamping plates 63 expand outward, so that the fourth serrated portions 64 on both sides are engaged with the third serrated portions 51. During the process of tightening the motor, the position of the mounting block 6 is fixed, which provides convenience for the installation process and at the same time provides necessary support for the stable operation of the motor.

[0032] The heat dissipation component includes a mounting rod and a ventilation fan 71. The mounting rod is fixedly arranged in the ventilation hole 7, and the ventilation fan 71 is fixedly installed on the ventilation rod. It avoids the problem of inconvenient heat dissipation of the motor caused by the close distance between the traditional base and the motor. At the same time, the ventilation fan 71 is provided, further improving the heat dissipation efficiency of the motor and enabling the motor to work more efficiently.

[0033] Working principle: When in use, first adjust the distance between the sliding seats 3 according to the specifications of the motor. The sliding seats 3 drive the crossbeam 4 to move, so that the crossbeam 4 drives the mounting block 6 to move to a suitable position. Then tighten the screw 35, so that the screw 35 pushes the push plate 34 towards the groove, so that the push plate 34 pushes the two clamping blocks 31 to move outwards of the sliding seat 3 through the arc surfaces on both sides. The movement of the clamping blocks 31 compresses the spring 32, and at the same time drives the second serrated part 33 to engage with the first serrated part 21, making the fixing of the sliding seat 3 more firm. It can prevent the position of the sliding seat 3 from being changed by the vibration during the high-speed operation of the motor, and further improve the stability of the base.

[0034] Then, again according to the specifications of the motor, adjust the position of the mounting block 6 along the direction of the second chute 5. This process only needs to push the mounting block 6 to a suitable position. Then place the motor on the mounting block 6, and align the mounting holes of the motor with the threaded holes 61. Then, pass a suitable bolt through the mounting hole of the motor and the threaded hole 61, and then tighten the bolt. After the bolt enters the threaded hole 61, it gradually presses the top block 62, so that the top block 62 moves downwards, and the arc surfaces on both sides of the top block 62 push the lower ends of the respective corresponding clamping plates 63 to expand outwards. The clamping plates 63 expand outwards, so that the fourth serrated parts 64 on both sides engage with the third serrated part 51. During the process of fastening the motor, the position of the mounting block 6 is fixed, which provides convenience for the installation process and at the same time provides necessary support for the stable operation of the motor.

[0035] If it is necessary to replace the motor with other specifications, just remove the bolt that fixes the motor. After the bolt is removed, the thrust of the top block 62 on the clamping plate 63 disappears, so that the clamping plate 63 returns under its own elastic force. The restoration of the clamping plate 63 separates the third serrated part 51 from the fourth serrated part 64, and then the mounting block 6 can be moved in the direction of the second chute 5 to replace the motor with other sizes.

[0036] Then loosen the screw 35, so that the screw 35 drives the push plate 34 away from the clamping block 31, and the thrust of the push plate 34 on the clamping block 31 disappears, so that the clamping block 31 returns to the sliding seat 3 under the pulling force of the spring 32, so that the first serrated part 21 is disengaged from the second serrated part 33. Then the sliding seat 3 can be moved, and the sliding seat 3 drives the crossbeam 4 to move, so as to complete the movement of the mounting block 6 in the direction of the first chute 2. Until it matches the size of the motor to be installed, then fix the sliding seat 3 again.

[0037] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. An efficient motor base, characterized in that, Comprising: A bottom plate (1), on which two first sliding grooves (2) are symmetrically formed. In each of the first sliding grooves (2), two sliding seats (3) are slidably arranged, and a locking component is fixedly arranged inside the sliding seat (3); on two sliding seats (3) on the same side of the two first sliding grooves (2), a cross beam (4) is fixedly arranged. A second sliding groove (5) is formed on the cross beam (4), and a mounting block (6) is slidably arranged in the second sliding groove (5). A threaded hole (61) is formed in the middle of the mounting block (6), and a ventilation hole (7) is formed in the middle of the bottom plate (1). A heat dissipation component is fixedly arranged in the ventilation hole (7). The locking component includes a clamping block (31), a spring (32), a push plate (34), and a screw (35); a groove is formed at the lower part of the sliding seat (3), the clamping block (31) is slidably arranged in the groove, a protrusion is fixedly arranged on the upper part of the clamping block (31), one end of the spring (32) is fixedly connected to the protrusion, and the other end of the spring (32) is fixedly connected to the inner wall of the groove; a vertical groove is formed inside the sliding seat (3), the vertical groove is perpendicular to the groove and communicates with the middle of the groove. The push plate (34) is slidably arranged in the vertical groove, the push plate (34) cooperates with the clamping block (31), a screw (35) is rotatably arranged at one end of the push plate (34) away from the clamping block (31), a through hole is formed on the sliding seat (3), the through hole communicates with the inside of the vertical groove, and the screw (35) passes through the through hole and extends to the outside of the sliding seat (3).

2. The efficient motor base according to claim 1, wherein: There are two clamping blocks (31), the two clamping blocks (31) are symmetrically arranged in the groove, and both of the two clamping blocks (31) cooperate with the push plate (34); the surfaces of the clamping block (31) and the push plate (34) that cooperate are both arc surfaces protruding outwards.

3. The efficient motor base according to claim 2, wherein: A bearing is fixedly embedded at one end of the push plate (34) away from the clamping block (31). The inner ring of the bearing is fixedly connected to the screw (35), and the outer ring of the bearing is fixedly connected to the push plate (34).

4. An efficient motor base according to claim 3, characterized in that: First serrated portions (21) are symmetrically formed in the first sliding groove (2), and second serrated portions (33) are formed at the ends of the two clamping blocks (31) away from each other. The first serrated portions (21) cooperate with the second serrated portions (33).

5. An efficient motor base according to claim 1, characterized in that: Two clamping plates (63) are symmetrically arranged at the lower part of the mounting block (6). A top block groove is formed between the clamping plate (63) and the mounting block (6), and the top block groove communicates with the threaded hole (61); a top block (62) is slidably arranged inside the top block groove. The intersection of the top block groove and the two clamping plates (63) is an inward concave arc surface, and the shape of the top block (62) is complementary to the shape of the top block groove.

6. An efficient motor base according to claim 5, characterized in that: Third serrated portions (51) are symmetrically arranged inside the second sliding groove (5), and fourth serrated portions (64) are arranged at the ends of the clamping plates (63) away from the top block (62). The third serrated portions (51) cooperate with the fourth serrated portions (64).

7. An efficient motor base according to claim 1, characterized in that: The heat dissipation component includes a mounting rod and a ventilation fan (71). The mounting rod is fixedly arranged in the ventilation hole (7), and the ventilation fan (71) is fixedly installed on the ventilation rod.

Citation Information

Patent Citations

  • Adjustable motor strengthening base

    CN105406638A

  • Motor base for installing hybrid stepping motor

    CN108418337A

  • An electric motor that is easy to install

    CN109038915A