Motor positioning device

By designing the base and adjusting components, the problem of assembly errors in traditional motors is solved, enabling precise adjustment and stable transmission of the motor output shaft, and ensuring smooth operation of the transmission mechanism.

CN224218204UActive Publication Date: 2026-05-08何建泽
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
何建泽
Filing Date
2025-01-22
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Traditional motor assembly methods are prone to assembly errors, resulting in inaccurate positioning of the output shaft and other linkage components, causing wear on transmission components and machine malfunctions.

Method used

The design incorporates a base and adjustment components. The adjustment components are movably mounted on the base to adjust the position and angle of the motor, ensuring precise connection of the output shaft with other linkage components. Screws are used as adjustment components to provide stable support.

Benefits of technology

It enables precise adjustment of the motor output shaft, ensuring stable operation of the transmission mechanism, reducing wear and malfunctions, and extending machine uptime.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a motor positioning device which comprises a base and at least one adjusting piece. The at least one adjusting piece is movably arranged on the base to be linked with a motor, so that the relative position of the motor and the base can be precisely adjusted to ensure that the output shaft of the motor is located at a better position. Therefore, the problem that hole positions are easily misaligned when a traditional motor is positioned can be effectively solved, the traditional method is that a plurality of screws penetrate through a plurality of through holes of a motor body and then are screwed and positioned in screw holes of a base, and as the through holes and the screw holes are not processed at the same time, the hole position alignment is very easy to deviate, so that the positioning accuracy of the motor is improved. Therefore, the motor cannot be located at the correct position indeed.
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Description

Technical Field

[0001] This utility model relates to positioning devices, and in particular to a motor positioning device. Background Technology

[0002] Traditional motor assembly methods typically involve threading multiple screws through multiple through holes in the motor body and then screwing them into the screw holes of the base. While this method securely fixes the motor to the base, it is prone to assembly errors, such as misalignment between the through holes and screw holes, variations in the dimensions of different motors, etc. These errors can cause the output shaft of the motor to be misaligned with other linkage components (such as gears) after assembly. Consequently, during repeated continuous operation, the transmission components are easily worn and damaged, leading to malfunctions in the entire machine (such as a vending machine) and requiring frequent maintenance.

[0003] Therefore, it is necessary to provide a novel and progressive motor positioning device to solve the above-mentioned problems. Utility Model Content

[0004] The main purpose of this utility model is to provide a motor positioning device, which allows the motor to be precisely moved, tilted, and adjusted relative to the base, thereby ensuring that the output shaft of the motor is in a better position and angle to connect with other linkage components, and ensuring stable and smooth operation of the transmission mechanism.

[0005] To achieve the above objectives, the present invention provides a motor positioning device, comprising: a base and at least one adjusting member. The at least one adjusting member is movably disposed on the base for connection with a motor; wherein the base includes two first sidewalls and two second sidewalls, the two first sidewalls being spaced apart and clamping the motor in the extension direction of an output shaft of the motor, the two second sidewalls being laterally connected to the two first sidewalls respectively, the at least one adjusting member being disposed on at least one of the two second sidewalls, and the at least one of the two second sidewalls being spaced apart from the motor; wherein the at least one adjusting member is movably screwed to the base, and there are multiple at least one adjusting member, with the multiple adjusting members disposed on opposite sides of the motor.

[0006] The multiple adjusting components are equally distributed on opposite sides of the motor.

[0007] The multiple adjustment components are symmetrically provided on opposite sides of the motor.

[0008] The adjustment components are disposed on the two second side walls, and the two second side walls are spaced apart from the motor.

[0009] A plurality of adjusting members are equally and symmetrically arranged on opposite sides of the motor; a plurality of adjusting members are disposed on two second sidewalls, both of which are spaced apart from the motor; the base is made of metal; each adjusting member is a screw; the length of each adjusting member is less than the radius of the motor; the length of each adjusting member is more than twice the thickness of the second sidewall; the positions of the plurality of adjusting members located on each second sidewall in the extension direction of the motor's output shaft are not entirely the same.

[0010] The beneficial effects of this utility model are: the motor can be precisely moved and tilted relative to the base, thereby ensuring that the output shaft of the motor is in a better position and angle to connect with other linkage components, and ensuring stable and smooth operation of the transmission mechanism. Attached Figure Description

[0011] Figure 1 This is a perspective view of an embodiment of the present utility model.

[0012] Figure 2 for Figure 1 The front view.

[0013] 1: Base

[0014] 11: First sidewall

[0015] 12: Second sidewall

[0016] 2: Adjustment parts

[0017] 3: Motor

[0018] 31: Output shaft Detailed Implementation

[0019] The following examples illustrate possible implementations of this utility model, but are not intended to limit the scope of protection of this utility model. The prefixes "a" or "at least one" before the terms mentioned herein are not intended to limit the quantity. Depending on the requirements, there may also be "multiple" items. Such variations in quantity are also within the scope of protection, and are therefore stated in advance.

[0020] Please refer to Figures 1 to 2 This shows an embodiment of the present invention. The motor positioning device of the present invention includes: a base 1 and at least one adjusting member 2.

[0021] At least one adjusting member 2 is movably mounted on the base 1 for linkage with a motor 3. By moving the at least one adjusting member 2, the user can adjust the position of the motor 3, thereby precisely adjusting the position of an output shaft 31 of the motor 3 so that it can be in a better position to connect with other transmission components. For example, but not limited to, when the transmission component is a geared disc, by adjusting the angle and position of the output shaft 31 relative to the base 1, it can be effectively ensured that the output shaft 31 and the geared disc have a more appropriate meshing relationship, such as sufficient meshing depth, meshing angle, etc., so that the entire transmission mechanism can operate stably and smoothly, allowing the entire machine (such as a vending machine) to run for a long time without easily experiencing transmission failures.

[0022] Preferably, the at least one adjusting member 2 is movably screwed to the base 1 so that the stroke of the adjusting member 2 during the movement remains continuous and uninterrupted.

[0023] In this embodiment, the base 1 is made of metal, and there are multiple adjustment members 2. The multiple adjustment members 2 are provided on the outer periphery of the motor 3 so that the user can quickly operate and adjust them from the outside. Each adjustment member 2 is a screw, and the length of each adjustment member 2 is less than the radius of the motor 3.

[0024] Preferably, a plurality of the adjusting members 2 are provided on opposite sides of the motor 3 so as to provide additional lateral support force to the motor 3 on opposite sides of the output shaft 31, thereby effectively eliminating torque and allowing the motor 3 to be stably positioned on the base 1.

[0025] Alternatively, a plurality of the adjusting members 2 are equally distributed on opposite sides of the motor 3 to ensure that the supporting force on opposite sides of the motor 3 is the same.

[0026] In this embodiment, the plurality of adjustment members 2 are symmetrically provided on opposite sides of the motor 3, thereby achieving a better adjustment and support effect.

[0027] More specifically, the base 1 includes two first sidewalls 11, which are spaced apart and clamp the motor 3 in the extension direction of the output shaft 31 of the motor 3, thereby providing a larger contact area to securely restrain the motor 3. More specifically, the base 1 also includes two second sidewalls 12, which are laterally connected to the two first sidewalls 11. A plurality of adjusting members 2 are disposed on the two second sidewalls 12, and both second sidewalls 12 are spaced apart from the motor 3 to allow for displacement of the motor 3 in the transverse direction of the output shaft 31.

[0028] In this embodiment, the length of each adjustment member 2 is more than twice the thickness of the second sidewall 12, thus providing a greater adjustment range in the direction transverse to the output shaft 31. Furthermore, the positions of the plurality of adjustment members 2 located on each of the second sidewalls 12 in the extension direction of the output shaft 31 of the motor 3 are not entirely the same, allowing the adjustment members 2 to laterally abut against the motor 3 at different depths for adjustment and support, enabling the motor 3 to have more placement angles relative to the base 1, such as being placed at an angle.

Claims

1. A motor positioning device, characterized in that: include: A base; and At least one adjusting element is movably disposed on the base for connection with a motor; The base includes two first sidewalls and two second sidewalls. The two first sidewalls are spaced apart and clamp the motor in the extension direction of an output shaft of the motor. The two second sidewalls are laterally connected to the two first sidewalls respectively. The at least one adjusting member is provided on at least one of the two second sidewalls. The at least one of the two second sidewalls is spaced apart from the motor. The at least one adjusting member is movably screwed to the base, and the number of the at least one adjusting member is multiple, with the multiple adjusting members provided on opposite sides of the motor.

2. The motor positioning device as described in claim 1, characterized in that: The multiple adjusting components are equally distributed on opposite sides of the motor.

3. The motor positioning device as described in claim 1, characterized in that: The adjustment components are symmetrically provided on opposite sides of the motor.

4. The motor positioning device as described in claim 1, characterized in that: The adjustment components are disposed on the two second side walls, and the two second side walls are spaced apart from the motor.

5. The motor positioning device as described in claim 1, characterized in that: A plurality of adjusting members are equally and symmetrically arranged on opposite sides of the motor; a plurality of adjusting members are disposed on two second sidewalls, each of which is spaced apart from the motor; the base is made of metal; each adjusting member is a screw; the length of each adjusting member is less than the radius of the motor; the length of each adjusting member is more than twice the thickness of the second sidewall; the positions of the plurality of adjusting members located on each second sidewall in the extension direction of the output shaft of the motor are not exactly the same.