Motor fixing plate

By designing the motor fixing plate, using a combined structure of base assembly, contact piece, slide assembly, control assembly and positioning assembly, the problem that the existing motor fixing method cannot effectively fix and adjust the motor position, realize the stable fixing and position adjustment of the motor, and simplify the disassembly and assembly and replacement process.

CN222966788UActive Publication Date: 2025-06-10CHENGDU TIANWEI TECH CO LTD
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Patent Information

Application Number
CN202421365017.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-16
Publication Date
2025-06-10
Estimated Expiration
2034-06-16

AI Technical Summary

Technical Problem

The existing motor fixing method cannot effectively fix and adjust the motor position, resulting in difficulty in disassembling and assembling the motor and cumbersome replacement of belts and chains.

Method used

A motor fixing plate is designed, adopting a combined structure of base assembly and contact piece, chute assembly and sliding assembly, so as to realize the position adjustment of the power motor through the control assembly and the positioning assembly.

Benefits of technology

The stable fixation and position adjustment of the motor are realized, and the disassembly and assembly of the power motor and the replacement of the transmission belt are simplified, avoiding the problem of jamming and difficulty in position movement.

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Abstract

The utility model provides a motor fixing plate, and relates to the technical field of motor equipment. The sliding groove assembly is arranged at the upper end of the base assembly, the sliding assembly is installed on the sliding groove assembly in a sliding mode, the bearing assembly is fixed to the sliding assembly, the sliding assembly is installed at the sliding groove assembly on the base assembly in a sliding mode, and the bearing assembly is directly fixed to the sliding assembly. The left side of the bearing assembly is connected with the positioning assembly through the control assembly, the positioning assembly is fixed to the left side of the base assembly, at the moment, a sliding assembly and a fixing bolt of the control assembly are loosened, a control rod of the control assembly can be adjusted from the left side, and position control over the bearing assembly by the control rod is achieved. And the transmission belt of the power motor can be replaced conveniently after loosening.
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Description

Technical Field

[0001] The utility model relates to the technical field of motor equipment, in particular to a motor fixing plate. Background Art

[0002] With the continuous development of technology, in order to improve people's quality of life, save as much manpower as possible, and increase production and work efficiency better, there are various transmission devices that assist people in production and work, such as hydraulic cylinders, pneumatic cylinders, and motors. Motors are the most widely used devices. After starting, a motor can transmit power to the components of the driven device.

[0003] There are many types of transmission methods used by motors. For example, gear chains and belt drives. When using belt and chain drives, since the belts and chains will wear out, the belts and chains need to be replaced regularly. Existing motors are directly fixed with bolts, and the position cannot be fixed and adjusted back and forth, resulting in difficult disassembly and assembly of the motors and overly cumbersome replacement of the belts and chains. Summary of the Utility Model

[0004] An embodiment of the present disclosure relates to a motor fixing plate. In order to ensure the stability of the power motor and a certain degree of seismic noise reduction, contact pieces are directly arranged at the bottom of the base assembly to ensure stable fixation and achieve a certain shock absorption and noise reduction effect. A sliding component is slidably installed at the chute component on the base assembly, and a bearing component is directly fixed to the sliding component. The left side position of the bearing component is connected to a positioning component through a control component. The positioning component is fixed on the left side of the base assembly. At this time, after loosening the fixing bolts of the sliding component and the control component, the control rod of the control component can be adjusted from the left side position to realize the position control of the bearing component by the control rod, which is convenient for replacing the loose drive belt of the power motor.

[0005] In the first aspect of the present disclosure, a motor fixing plate is provided, which specifically includes: a base assembly; a chute component is arranged at the upper end position of the base assembly, a sliding component is slidably installed on the chute component, a bearing component is fixed to the sliding component, a power motor is fixed to the bearing component, the outer end of the power motor is connected to a drive belt, a control component is arranged at the left side position of the bearing component, and a positioning component is snap-fitted and installed at the left side position of the chute component on the base assembly, and the positioning component is in contact with the control component.

[0006] In at least some embodiments, the base plate of the base assembly is configured as a rectangular plate structure, a concave surface is arranged on the bottom surface of the base plate, contact pieces are arranged on the concave surface of the base plate, the contact pieces are made of rubber, and outer slot openings are arranged at both side positions of the base plate. The outer slot openings are configured as structures opening towards the outer end.

[0007] In at least some embodiments, the sliding plate of the chute assembly is arranged at the upper end position of the base assembly. The sliding plate is composed of a vertically arranged T-shaped plate. A chute opening can be formed between adjacent sliding plates, and the two ends of the sliding plate are arranged in an inclined structure.

[0008] In at least some embodiments, the bearing plate of the bearing assembly is arranged in a rectangular plate structure. A bearing frame for a power motor is installed on the bearing plate, and vertical fixing studs are arranged at the positions of the holes on the bearing plate corresponding to the bearing frame.

[0009] In at least some embodiments, the connecting column of the sliding assembly is arranged in a frame structure. The top of the connecting column is arranged in a screw structure. Two sets of symmetric sliding wheels are rotatably installed at both ends of the bottom of the connecting column. The upper ends of the sliding wheels are fixed on the bearing assembly, and a bearing frame is additionally installed at the position where the connecting column is in fixed contact with the bearing assembly.

[0010] In at least some embodiments, the convex platform of the control assembly is at the left side position of the bearing assembly. A control rod is rotatably installed in the hole of the convex platform, and a fixing bolt is installed at the upper end of the position where the convex platform installs the control rod. The control rod is in a horizontal state, and the outer wall of the control rod is provided with a convex thread structure.

[0011] In at least some embodiments, the positioning frame of the positioning assembly is arranged in an L-shaped frame structure. The upper end of the positioning frame is in screw connection with the control rod, and a positioning plate is arranged at the outer end of the bottom of the positioning frame. The positioning plate is fixed on the base assembly by bolts.

[0012] The present utility model provides a motor fixing plate, which has the following beneficial effects:

[0013] In the present utility model, contact pieces are arranged on the bottom surface of the base assembly to increase the stable contact with the fixing place after the base assembly is fixed. At the same time, the contact pieces of the base assembly form a shock absorption and noise reduction effect. The structure of the chute assembly on the base assembly can stably slide and install the sliding assembly. The bearing assembly is directly fixed on the sliding assembly. The control assembly is installed at the left side position of the bearing assembly. The left side of the control assembly is connected to the positioning assembly. The positioning assembly is clamped at the left side position of the base assembly. When it is necessary to adjust the power motor on the bearing assembly, only need to loosen the sliding assembly of the bearing assembly and at the same time loosen the fixing bolt of the control assembly, and rotate the control rod extending to the outside with a tool to make the bearing assembly slide at the upper end position of the chute assembly, so as to realize the position movement of the power motor on the bearing assembly. At this time, it is convenient to disassemble and assemble the transmission belt at the position of the power motor. Compared with the existing power motor that can adjust the position, the fixed structure of the sliding assembly and the chute assembly is used to avoid jamming and the problem of difficult subsequent position movement.

[0014] In addition, contact pieces are added to the bottom of the base plate, so that the contact pieces at the bottom of the base assembly will come into contact with the installation position first, making the contact pieces have a certain stabilizing effect and also achieving a slight shock absorption and noise reduction effect. The outer notch used for installing the base plate is set to a structure that opens towards both ends. When the base assembly is fixedly installed through the outer notch, the bolts can be fixed first, and then the position of the bolts and the outer notch can be aligned for clamping. Thus, when the overall installation and fixation of the base assembly are carried out, the operation is more convenient. The structure is set to be T-shaped, so that the sliding groove formed between the sliding plates can slide the sliding assembly, and the two ends of the sliding plates are set to be inclined structures, making the installation of components such as the sliding assembly faster and more convenient.

[0015] In addition, in order to enable the bearing plate to have the function of conveniently fixing the power motor, fixing studs are directly set at the positions of the bearing brackets corresponding to the power motor on the bearing plate, so that the bearing brackets can be better installed corresponding to the fixing studs, forming the fixation of the bearing assembly and the power motor, and facilitating the subsequent adjustment of the power motor by directly controlling the bearing assembly. In order to enable the bearing assembly to be both fixed on the sliding groove assembly and able to slide on the sliding groove assembly, the bottom of the connecting column is directly set to rotatably install two sliding wheels, so that after loosening the connecting column, the bearing assembly can slide at the sliding groove assembly through the sliding wheels of the connecting column, and after tightening the nuts on the connecting column, the bearing assembly is fixed on the sliding groove assembly through the sliding assembly.

[0016] In addition, the control rod is set to a convex threaded structure, so that when the control rod rotates, it has a better control and adjustment effect on the bearing assembly, enabling the control rod to stably control the sliding position of the bearing assembly. The fixing bolt installed at the position of the control rod on the convex platform will prevent the control rod from rotating when the fixing bolt is tightened, thus realizing the final position fixation of the bearing assembly.

[0017] In addition, the positioning assembly is set to a structure for external positioning. First, the outer end of the control rod is screwed onto the positioning frame, enabling the control rod to rotate at the upper end of the positioning frame to realize the control of the bearing assembly. The positioning frame is set to an L-shaped structure, making it convenient to be clamped and installed on the left side of the sliding groove assembly on the base assembly. The positioning plate is fixed by bolts, enabling the positioning plate to abut against the outer end position of the positioning frame to realize the stable fixation of the positioning frame, thereby making the control of the bearing assembly by the control assembly more stable. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.

[0019] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0020] In the accompanying drawings:

[0021] Figure 1 A schematic diagram of the overall structure of the present application is shown;

[0022] Figure 2 A schematic diagram of the base assembly structure of the present application is shown;

[0023] Figure 3 A schematic diagram of the position structure of the power motor of the present application is shown;

[0024] Figure 4 A schematic diagram of the chute assembly structure of the present application is shown;

[0025] Figure 5 A schematic diagram of the bearing assembly structure of the present application is shown;

[0026] Figure 6 A schematic diagram of the Figure 3 locally enlarged structure at position A in the present application is shown;

[0027] List of reference numerals

[0028] 1. Base assembly; 101. Base plate; 102. Outer notch; 103. Contact piece;

[0029] 2. Chute assembly; 201. Sliding plate; 202. Chute opening;

[0030] 3. Bearing assembly; 301. Bearing plate; 302. Fixed stud; 303. Bearing frame;

[0031] 4. Sliding assembly; 401. Connecting column; 402. Sliding wheel;

[0032] 5. Control assembly; 501. Raised platform; 502. Control rod; 503. Fixed bolt;

[0033] 6. Positioning assembly; 601. Positioning frame; 602. Positioning plate;

[0034] 7. Power motor;

[0035] 8. Transmission belt. Detailed implementation manners

[0036] To make the objectives, technical solutions, and advantages of the embodiments of the present utility model clearer, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0037] Example 1: Please refer to Figures 1 to 6 :

[0038] This embodiment provides a motor fixing plate, including: a base assembly 1; a chute assembly 2 is arranged at the upper end position of the base assembly 1, a sliding assembly 4 is slidably installed on the chute assembly 2, a bearing assembly 3 is fixed on the sliding assembly 4, a power motor 7 is fixed on the bearing assembly 3, the outer end of the power motor 7 is connected to a transmission belt 8, a control assembly 5 is arranged at the left side position of the bearing assembly 3, and a positioning assembly 6 is clamped and installed at the left side position of the chute assembly 2 on the base assembly 1, and the positioning assembly 6 is in contact with the control assembly 5.

[0039] In the embodiment of the present disclosure, as Figure 2 shown, the base plate 101 of the base assembly 1 is set to the structure of a rectangular plate, the bottom surface of the base plate 101 is provided with a concave surface, a contact piece 103 is arranged on the concave surface of the base plate 101, the contact piece 103 is made of rubber, the contact piece 103 is added to the bottom of the base plate 101, so that the contact piece 103 at the bottom of the base assembly 1 will contact the installation position first, so that the contact piece 103 not only has a certain stabilizing effect, but also the contact piece 103 realizes a slight shock absorption and noise reduction effect. Outer notch openings 102 are arranged at both side positions of the base plate 101, and the outer notch openings 102 are set to the structure with openings facing outwards. The outer notch openings 102 used for installing and using the base plate 101 are set to the structure with openings facing both ends, so that when the base assembly 1 is fixedly installed through the outer notch openings 102, the bolts can be fixed first, and then the bolts can be clamped according to the positions of the bolts and the outer notch openings 102, so that the overall installation and fixation of the base assembly 1 is more convenient.

[0040] In the embodiment of the present disclosure, as Figure 4 shown, the sliding plate 201 of the chute assembly 2 is arranged at the upper end position of the base assembly 1, the sliding plate 201 is composed of a vertical T-shaped plate, a chute opening 202 can be formed between adjacent sliding plates 201, and the two end positions of the sliding plate 201 are set to the structure of inclined surfaces. By setting the structure to be T-shaped, the chute opening 202 formed between the sliding plates 201 can slide the sliding assembly 4, and by setting the two end positions of the sliding plate 201 to the structure of inclined surfaces, the installation of components such as the sliding assembly 4 is made faster.

[0041] In the embodiment of the present disclosure, as Figure 5As shown, the bearing plate 301 of the bearing component 3 is arranged in a rectangular plate structure. A bearing frame 303 of the power motor 7 is installed on the bearing plate 301. Vertical fixing studs 302 are arranged at the hole positions of the bearing plate 301 corresponding to the bearing frame 303. In order to enable the bearing plate 301 to conveniently fix the power motor 7, the fixing studs 302 are directly arranged at the position of the bearing frame 303 of the power motor 7 on the bearing plate 301, so that the bearing frame 303 can be better installed corresponding to the fixing studs 302, forming the fixation between the bearing component 3 and the power motor 7, and facilitating the subsequent adjustment of the power motor 7 by directly controlling the bearing component 3.

[0042] In the embodiment of the present disclosure, as Figure 5 shown, the connecting column 401 of the sliding component 4 is arranged in a frame structure. The top of the connecting column 401 is arranged in a screw structure. Two sets of symmetric sliding wheels 402 are rotatably installed at both ends of the bottom of the connecting column 401. The upper ends of the sliding wheels 402 are fixed on the bearing component 3. A bearing frame 303 is additionally installed at the position where the connecting column 401 is in fixed contact with the bearing component 3. In order to enable the bearing component 3 to be both fixed on the chute component 2 and slide on the chute component 2, the bottom of the connecting column 401 is directly arranged to rotatably install two sets of sliding wheels 402, so that after the connecting column 401 is loosened, the bearing component 3 can slide at the chute component 2 through the sliding wheels 402 of the connecting column 401, and after the nuts on the connecting column 401 are tightened, the bearing component 3 is fixed on the chute component 2 through the sliding component 4.

[0043] Embodiment 2, on the basis of Embodiment 1, as Figure 3 shown, the convex platform 501 of the control component 5 is at the left side position of the bearing component 3. A control rod 502 is rotatably installed in the hole of the convex platform 501. A fixing bolt 503 is installed at the upper end of the position where the convex platform 501 installs the control rod 502. The control rod 502 is in a horizontal state. The outer wall of the control rod 502 is provided with a convex thread structure. First, the control rod 502 is arranged in a convex thread structure, so that when the control rod 502 rotates, it has a better control and adjustment effect on the bearing component 3, enabling the control rod 502 to stably control the sliding position of the bearing component 3. And the fixing bolt 503 installed at the position of the control rod 502 at the convex platform 501 makes the control rod 502 not rotate when the fixing bolt 503 is tightened, thereby realizing the final position fixation of the bearing component 3.

[0044] In the embodiment of the present disclosure, as Figure 4As shown in the figure, the positioning frame 601 of the positioning component 6 is set as an L-shaped frame structure. The upper end of the positioning frame 601 is in screw contact with the control rod 502. A positioning plate 602 is provided at the outer end of the bottom of the positioning frame 601. The positioning plate 602 is fixed to the base component 1 by bolts. The positioning component 6 is set as a structure for external positioning. First, the outer end of the control rod 502 is screwed onto the positioning frame 601, so that the control rod 502 can rotate at the upper end of the positioning frame 601 to realize the control of the bearing component 3. The positioning frame 601 is set as an L-shaped structure, so that the positioning frame 601 can be conveniently clamped and installed on the left side of the chute component 2 of the base component 1. The positioning plate 602 is fixed by bolts, so that the positioning plate 602 can abut against the outer end position of the positioning frame 601 to realize the stable fixation of the positioning frame 601, thereby making the control of the bearing component 3 by the control component 5 more stable during replacement.

[0045] The working principle of this embodiment: During installation, first observe the position of the contact piece 103 at the bottom of the base component 1. Place the base component 1 according to requirements so that the outer slot 102 corresponds to the position of the screw hole, and use bolts to fix the base component 1. A chute component 2 is provided at the top position of the base component 1. At this time, first install the sliding component 4 corresponding to the position of the chute component 2 on the bearing component 3, reinforce the position of the sliding component 4 corresponding to the chute component 2, slide and install the sliding wheel 402 of the sliding component 4 at the position of the chute opening 202, and snap and install the positioning component 6 on the left side of the chute component 2 on the base component 1, so that the positioning component 6 corresponds to the control component 5 on the left side of the bearing component 3. Install and fix the power motor 7 on the bearing component 3, and then wind and install the transmission belt 8 of the power motor 7 in the corresponding position. At this time, align the control rod 502 of the control component 5 with the position on the positioning frame 601, and rotate the control rod 502. Rotating the control rod 502 makes the bearing component 3 slide on the chute component 2 through the sliding component 4, and makes the power motor 7 tighten the transmission belt 8. At this time, tighten the sliding component 4 on the bearing component 3, and then tighten the fixing bolt 503 at the control component 5 to ensure the overall stable operation of the power motor 7;

[0046] If the transmission belt 8 is severely damaged or worn and needs to be replaced, simply loosen the sliding component 4 slightly, and then loosen the fixing bolt 503 of the control component 5. Rotate the protruding control rod 502 directly from the outside to realize the position movement of the bearing component 3 and the power motor 7, thus facilitating the subsequent replacement of the transmission belt 8.

[0047] In this article, the following points need to be noted:

[0048] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure. Other structures can refer to the general design.

[0049] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments may be combined with each other to obtain new embodiments.

[0050] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure shall be subject to the protection scope of the claims.

Claims

1. A motor fixing plate, comprising: A base assembly (1); a slide assembly (2) is arranged at the upper end of the base assembly (1), characterized in that a sliding assembly (4) is slidably installed on the slide assembly (2), a bearing assembly (3) is fixed on the sliding assembly (4), a power motor (7) is fixed on the bearing assembly (3), the outer end of the power motor (7) is connected to a transmission belt (8), a control assembly (5) is arranged at the left side of the bearing assembly (3), and a positioning assembly (6) is clamped and installed at the left side of the slide assembly (2) on the base assembly (1), and the positioning assembly (6) and the control assembly (5) are in contact with each other.

2. The motor fixing plate according to claim 1, characterized in that: The bottom surface of the base plate (101) of the base assembly (1) is provided with a concave surface, the concave surface of the base plate (101) is provided with a contact sheet (103), and external notches (102) are provided at positions on both sides of the base plate (101), and the external notches (102) are provided with a structure that opens toward the outer ends.

3. The motor fixing plate according to claim 1, characterized in that: The sliding plate (201) of the sliding groove assembly (2) is arranged at the upper end of the base assembly (1), and a sliding groove opening (202) can be formed between adjacent sliding plates (201), and the two end positions of the sliding plate (201) are arranged as an inclined surface structure.

4. The motor fixing plate according to claim 1, characterized in that: A bearing frame (303) of a power motor (7) is mounted on the bearing plate (301) of the bearing assembly (3), and vertical fixing studs (302) are arranged on the bearing plate (301) at positions corresponding to holes of the bearing frame (303).

5. The motor fixing plate according to claim 1, characterized in that: The top of the connecting column (401) of the sliding component (4) is arranged as a screw structure, and two symmetrical sets of sliding wheels (402) are rotatably mounted at both ends of the bottom of the connecting column (401), and the upper ends of the sliding wheels (402) are fixed on the bearing component (3), and a bearing frame (303) is additionally installed at the fixed contact position between the connecting column (401) and the bearing component (3).

6. The motor fixing plate according to any one of claims 1 to 5, characterized in that: The raised platform (501) of the control component (5) is located on the left side of the bearing component (3); a control rod (502) is rotatably mounted on a hole of the raised platform (501); a fixing bolt (503) is mounted on the upper end of the raised platform (501) where the control rod (502) is mounted; the control rod (502) is in a horizontal state; and a raised threaded structure is arranged on the outer wall of the control rod (502).

7. The motor fixing plate according to claim 6, characterized in that: The upper end of the positioning frame (601) of the positioning assembly (6) is threadedly connected to the control rod (502), and a positioning plate (602) is provided at the outer end of the bottom of the positioning frame (601), and the positioning plate (602) is fixed to the base assembly (1) by bolts.