Electric control box suitable for mechatronics equipment

By installing a support cylindrical rod, an angle adjustment cylinder, and a lifting adjustment cylinder on the outer shell of the electrical control box, the problem of fixing the tilt angle and height of the electrical control box from the ground is solved, and flexible angle and height adjustment is achieved to meet the needs of different users.

CN223898850UActive Publication Date: 2026-02-10河北雄霆建筑工程有限公司
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Patent Information

Application Number
CN202520276806.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2026-02-10
Estimated Expiration
2035-02-20

AI Technical Summary

Technical Problem

The existing control boxes of mechatronics equipment cannot adjust the tilt angle and height from the ground according to the user's needs, which makes installation inconvenient.

Method used

By installing a support cylindrical rod, an angle adjustment cylinder, and a lifting adjustment cylinder on the outer shell of the electrical control box, the tilt angle and height above the ground of the electrical control box can be adjusted using threaded engagement and bearing structure.

Benefits of technology

The tilt angle and height of the electrical control box can be flexibly adjusted to meet the needs of different users and improve the ease of installation.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides an electric control box suitable for electromechanical integrated equipment, which relates to the technical field of electric control boxes and comprises an electric control box body. The electric cabinet body is provided with an electric cabinet shell in the front-back direction, a half-round head block with a left-right through hole is arranged in the middle of the rear end of the bottom end face of the electric cabinet shell, and half-round head plates with left-right through holes are arranged on the left side and the right side in front of the bottom end face of the electric cabinet shell. A supporting cylindrical rod in the vertical direction is installed between semicircular head plates of the electric cabinet shell through a fixing shaft, threads are arranged on the outer circumference of the supporting cylindrical rod, the electric cabinet shell can be conveniently installed on the supporting cylindrical rod through the fixing shaft, and the electric cabinet shell can be conveniently overturned front and back to adjust the inclination angle to meet the requirements of users; the problems that the inclination angle of the electric control box is fixed, the inclination angle cannot be adjusted according to the requirements of users, the electric control box is inconvenient to install through overturning measures, and the inclination angle of the electric control box can be adjusted in an overturning mode are solved.
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Description

Technical Field

[0001] This utility model belongs to the field of electrical control box technology, and in particular relates to an electrical control box suitable for mechatronic equipment. Background Technology

[0002] The electrical control box of mechatronics equipment typically contains one or more low-voltage switchgear and related control, measurement, signaling, protection and regulation equipment. The electrical control box is assembled by the manufacturer using structural components and is mainly used in mechatronics systems to achieve centralized control and monitoring of the equipment. It is widely used in various scenarios that require precise control and monitoring.

[0003] Based on the above, the inventors have discovered the following shortcomings in the electrical control boxes of existing mechatronics equipment:

[0004] 1. The tilt angle of the electrical control box is fixed and cannot be adjusted according to the user's needs. It is inconvenient to install the electrical control box by flipping it over so that the tilt angle can be adjusted.

[0005] 2. The height of the electrical control box from the ground is fixed, and it cannot be adjusted according to the height of the user. It is inconvenient to install lifting and adjustment measures under the electrical control box so that the electrical control box can be raised and lowered as needed. Utility Model Content

[0006] To address the aforementioned technical problems, this utility model provides an electrical control box suitable for mechatronics equipment. This solves the problems of existing electrical control boxes having a fixed tilt angle, making it impossible to adjust the tilt angle according to user needs, and making it inconvenient to install the control box by flipping it over for tilt angle adjustment; and the control box having a fixed height from the ground, making it impossible to adjust its height according to user height, and making it inconvenient to install lifting and adjusting mechanisms below the control box to allow for height adjustment as needed.

[0007] The purpose and function of this utility model for the electrical control box of mechatronics equipment are achieved by the following specific technical means:

[0008] An electrical control box suitable for mechatronics equipment includes an electrical control box body; the electrical control box body is provided with a front-to-back electrical control box shell, a semi-circular head block with a left-to-right through hole is provided in the middle of the rear end of the bottom end face of the electrical control box shell, and semi-circular head plates with left-to-right through holes are provided on the left and right sides of the front of the bottom end face of the electrical control box shell. A vertical support cylindrical rod is installed between the semi-circular head plates of the electrical control box shell through a fixed shaft. The outer circumference of the support cylindrical rod is threaded, the top of the support cylindrical rod is provided with a left-to-right through fixed hole, the front of the outer circumference of the support cylindrical rod is provided with a vertical strip groove, and the rear wall of the support cylindrical rod is provided with a vertical strip hole.

[0009] Furthermore, a fixed anti-rotation post is installed inside the threaded hole of the bearing cylindrical rod in the front-back direction, a threaded post is provided behind the fixed anti-rotation post, a limit ring plate is provided on the outer circumference of the front end of the threaded post of the fixed anti-rotation post, and a regular hexagonal prism is provided on the front end face of the threaded post of the fixed anti-rotation post.

[0010] Furthermore, a front-to-back bearing cylindrical rod is installed inside the bearing ring groove of the lifting adjustment cylinder via a bearing. A fixing ring plate with a fixing hole is provided on the outer circumference of the rear end of the bearing cylindrical rod. A vertical bearing cylinder is provided at the front end of the bearing cylindrical rod. A bearing ring groove is opened on the outer circumference of the top of the bearing cylinder of the bearing cylindrical rod. A threaded hole that runs through the front and rear is opened on the front wall of the bearing cylinder of the bearing cylindrical rod. A wire hole that runs through the front and rear is opened on the rear wall of the bearing cylinder of the bearing cylindrical rod.

[0011] Furthermore, the lower outer circumference of the support cylindrical rod is threaded with a vertically adjustable cylinder, the inner circumference of the adjustable cylinder is threaded, the bottom inner circumference of the adjustable cylinder is provided with a bearing ring groove, and the upper outer circumference of the adjustable cylinder is provided with handle rods on both the left and right sides.

[0012] Furthermore, an angle support rod in the vertical direction is installed on the semi-circular head block of the supporting bearing cylinder via a fixed shaft. Both ends of the angle support rod are provided with semi-circular heads with left and right through holes. A front-to-back through limiting groove is opened in the middle of the upper and lower end faces of the angle support rod. The upper end of the angle support rod is installed on the semi-circular head block of the electrical control box housing via a fixed shaft.

[0013] Furthermore, a vertically oriented support bearing cylinder is installed on the bearing ring groove of the angle adjusting cylinder via a bearing, and a semi-circular head block with left and right through holes is provided at the rear of the outer circumference of the support bearing cylinder.

[0014] Furthermore, the upper outer circumference of the support cylindrical rod is threaded with an angle adjustment cylinder in the vertical direction. The inner circumference of the angle adjustment cylinder is threaded, the top outer circumference of the angle adjustment cylinder is provided with a bearing ring groove, and the bottom outer circumference of the angle adjustment cylinder is provided with handle rods on both the left and right sides.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] The control box housing is conveniently mounted on a supporting cylindrical rod via a fixed shaft, allowing for easy tilting and adjustment of the housing to suit user needs. This solves the problem of fixed tilt angles in control boxes, which prevents adjustment based on user requirements and makes it inconvenient to install control boxes by flipping them for tilt adjustment.

[0017] The convenient lifting and adjusting cylinder is mounted on the supporting cylindrical rod through bearings to support the supporting cylindrical rod. The supporting cylindrical rod can then lift and lower the control box housing through threaded engagement. This solves the problem that the control box has a fixed height from the ground, making it impossible to adjust the height according to the user's height, and that it is inconvenient to install lifting and adjusting measures below the control box so that the control box can be raised and lowered as needed. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the main structure of this utility model.

[0019] Figure 2 This is a schematic diagram of the rear view structure of this utility model.

[0020] Figure 3 This is a cross-sectional structural diagram of the present invention.

[0021] Figure 4 This is a disassembled structural diagram of the present invention.

[0022] Figure 5 This is an assembly diagram of the support bearing cylinder and angle support rod of this utility model.

[0023] Figure 6 This is an assembly diagram of the lifting and adjusting cylinder and the supporting cylindrical rod of this utility model.

[0024] In the diagram: 1. Electrical control box body; 2. Electrical control box outer shell; 3. Supporting cylindrical rod; 4. Angle adjusting cylinder; 5. Support bearing cylinder; 6. Angle support rod; 7. Lifting adjusting cylinder; 8. Bearing cylindrical rod; 9. Fixed anti-rotation column. Detailed Implementation

[0025] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples.

[0026] Example 1:

[0027] As attached Figure 1 To be continued Figure 6 As shown:

[0028] This utility model provides an electrical control box suitable for mechatronics equipment, including an electrical control box body 1; the electrical control box body 1 is provided with a front-to-back electrical control box shell 2 for convenient control of the mechatronics equipment; a semi-circular head block with left and right through holes is provided in the middle of the rear end of the bottom end face of the electrical control box shell 2, which facilitates the installation of the angle support rod 6 through a fixed shaft; semi-circular head plates with left and right through holes are provided on the left and right sides of the front of the bottom end face of the electrical control box shell 2, which facilitates the installation of the support cylindrical rod 3 through a fixed shaft; the vertical support cylindrical rod 3 is installed between the semi-circular head plates of the electrical control box shell 2 through a fixed shaft, which facilitates the flipping of the electrical control box shell 2; the outer circumference of the support cylindrical rod 3 is threaded, which facilitates the installation of the angle adjustment cylinder 4 and the lifting adjustment cylinder 7 through the thread; the top of the support cylindrical rod 3 is provided with a left and right through fixed hole, which facilitates the installation of the electrical control box shell 2 through a fixed shaft; the front of the outer circumference of the support cylindrical rod 3 is provided with a top and bottom through fixed hole. The support cylindrical rod 3 has a grooved section for fixing the anti-rotation post 9, which is inserted into the groove to prevent rotation. A vertically oriented grooved hole is provided on the rear wall of the support cylindrical rod 3 to facilitate the passage of wires. An angle adjusting cylinder 4 is threaded onto the upper outer circumference of the support cylindrical rod 3, allowing for easy raising and lowering via threaded engagement. The inner circumference of the angle adjusting cylinder 4 is also threaded, facilitating threaded installation of the support cylindrical rod 3. A bearing ring groove is provided on the top outer circumference of the angle adjusting cylinder 4, allowing for the installation of the support bearing cylinder 5 via bearings. Handles are provided on both sides of the bottom outer circumference of the angle adjusting cylinder 4 for easy gripping. The bearing ring groove of the angle adjusting cylinder 4 is fitted with a vertically oriented support bearing cylinder 5 via bearings, allowing the angle adjusting cylinder 4 to move the support bearing cylinder 5 via bearings. A semi-circular head block with left and right through holes is provided at the rear of the outer circumference of the support bearing cylinder 5, facilitating the installation of the angle support rod 6 via a fixed shaft.

[0029] The support cylinder 5 has a vertically oriented angle support rod 6 mounted on its semi-circular head block via a fixed shaft. This facilitates support for the electrical control box housing 2. Both ends of the angle support rod 6 have semi-circular heads with through holes for easy installation via the fixed shaft. The upper and lower end faces of the angle support rod 6 have through-grooves for easy insertion of the electrical control box housing 2 and the semi-circular head block of the support cylinder 5. The upper end of the angle support rod 6 is mounted on the semi-circular head block of the electrical control box housing 2 via a fixed shaft, allowing for easy rotation of the angle support rod 6. A vertically adjustable cylinder 7 is threadedly installed on the lower outer circumference of the support cylinder 3 to facilitate load bearing on the support cylinder 3. The inner circumference of the adjustable cylinder 7 is threaded for easy threaded installation of the support cylinder 3. A bearing ring groove is formed on the bottom inner circumference of the adjustable cylinder 7 to facilitate bearing installation of the support cylinder 8. Handles are provided on both sides of the upper outer circumference of the adjustable cylinder 7 for easy gripping. The bearing ring groove of the adjustable cylinder 7 is fitted with a bearing for the front-to-back load bearing cylinder 8. Each component bears the load. The outer circumference of the rear end of the supporting cylindrical rod 8 is provided with a fixing ring plate with fixing holes, facilitating the bolt installation of the supporting cylindrical rod 8 onto the mechatronic equipment. The front end of the supporting cylindrical rod 8 is provided with a vertically oriented supporting cylinder, facilitating the support of the lifting and adjusting cylinder 7 and the fixed anti-rotation column 9. A bearing ring groove is formed on the outer circumference of the top of the supporting cylinder of the supporting cylindrical rod 8, facilitating the installation of the lifting and adjusting cylinder 7 via bearings. A through-hole threaded hole is formed on the front wall of the supporting cylinder of the supporting cylindrical rod 8, facilitating the installation of the fixed anti-rotation column 9 via threads. The support cylindrical rod 8 has a through-hole on its rear wall, allowing electrical wiring to pass through the control box housing 2. A front-to-back anti-rotation post 9 is installed inside the threaded hole of the support cylindrical rod 8 to prevent rotation of the support cylindrical rod 3. A threaded post is located behind the anti-rotation post 9 for easy threaded installation. A limit ring is provided on the outer circumference of the front end of the threaded post 9 for easy installation and positioning. A regular hexagonal prism is provided on the front end face of the threaded post 9 for easy rotation and disassembly using tools.

[0030] The specific usage and function of this embodiment are as follows:

[0031] In this utility model, such as Figure 1 As shown, the electrical control box body 1 is installed on the mechatronics equipment. The rear end of the supporting cylindrical rod 8 is a section of the mechatronics equipment. The supporting cylindrical rod 8 is bolted to the section of the mechatronics equipment. The electrical connection wires at the bottom of the electrical control box housing 2 pass through the supporting cylindrical rod 3 and the supporting cylindrical rod 8 to connect with the external mechatronics equipment, as shown in the diagram. Figure 3 As shown, the mechatronics equipment is controlled and operated through the electrical control box housing 2. Figure 1As shown, when adjusting the height of the electrical control box housing 2, rotating the lifting adjustment cylinder 7 engages with the threaded support cylindrical rod 3, causing the support cylindrical rod 3 to move upward or downward through the threaded engagement. The support cylindrical rod 3 carries the electrical control box housing 2, moving it upward or downward synchronously, thus achieving the height adjustment of the electrical control box housing 2. This adapts to different user heights, facilitating operation of the electrical control box housing 2. Figure 1 As shown, when adjusting the tilt angle of the electrical control box housing 2, the rotating angle adjusting cylinder 4 engages with the threaded support cylindrical rod 3, causing the angle adjusting cylinder 4 to move upward or downward through the threaded engagement. This causes the angle adjusting cylinder 4 to drive the support bearing cylinder 5 to move upward or downward synchronously through the bearing. The support bearing cylinder 5 then drives the lower end of the angle support rod 6 to move upward or downward synchronously, thereby causing the upper end of the angle support rod 6 to move upward or downward synchronously. This, in turn, causes the electrical control box housing 2 to flip upward or downward synchronously through the upper end of the angle support rod 6. This achieves the tilt angle adjustment of the electrical control box housing 2, making it suitable for the needs of different users and facilitating the operation of the electrical control box housing 2.

[0032] Example 2:

[0033] The difference from Embodiment 1 is that the outer circumferential surface of the handle of the angle adjustment cylinder 4 can also be set as a frosted surface, thereby increasing the friction between the outer circumferential surface of the handle of the angle adjustment cylinder 4 and the hand, and preventing the slippage of the hand on the outer circumferential surface of the handle of the angle adjustment cylinder 4.

[0034] Example 3:

[0035] The difference from Embodiment 1 is that the regular hexagonal prism of the fixed anti-rotation column 9 can also be set as a regular heptagonal prism, thereby requiring a special tool that works with the regular heptagonal prism to rotate the fixed anti-rotation column 9, preventing non-staff members from rotating or disassembling the fixed anti-rotation column 9.

Claims

1. An electrical control box suitable for mechatronics equipment, characterized in that: The device includes an electrical control box body (1); the electrical control box body (1) is provided with an electrical control box shell (2), and a semi-circular head block with a left and right through hole is provided in the middle of the rear end of the bottom end face of the electrical control box shell (2). Semi-circular head plates with left and right through holes are provided on the left and right sides in front of the bottom end face of the electrical control box shell (2). A support cylindrical rod (3) is installed between the semi-circular head plates of the electrical control box shell (2) through a fixed shaft. The outer circumference of the support cylindrical rod (3) is threaded. The top of the support cylindrical rod (3) is provided with a left and right through fixed hole. The front of the outer circumference of the support cylindrical rod (3) is provided with a vertical groove. The rear wall of the support cylindrical rod (3) is provided with a vertical groove.

2. The electrical control box for mechatronics equipment as described in claim 1, characterized in that: An angle adjusting cylinder (4) is threadedly installed on the upper outer circumference of the support cylindrical rod (3). The inner circumference of the angle adjusting cylinder (4) is threaded, the top outer circumference of the angle adjusting cylinder (4) is provided with a bearing ring groove, and the bottom outer circumference of the angle adjusting cylinder (4) is provided with handle rods on both the left and right sides.

3. The electrical control box for mechatronics equipment as described in claim 2, characterized in that: The bearing ring groove of the angle adjusting cylinder (4) is equipped with a support bearing cylinder (5) through a bearing, and a semi-circular head block with left and right through holes is provided behind the outer circumference of the support bearing cylinder (5).

4. The electrical control box for mechatronics equipment as described in claim 3, characterized in that: An angle support rod (6) is installed on the semi-circular head block of the support bearing cylinder (5) via a fixed shaft. Both ends of the angle support rod (6) are provided with semi-circular heads with left and right through holes. The upper and lower end faces of the angle support rod (6) are provided with front and rear through limit grooves. The upper end of the angle support rod (6) is installed on the semi-circular head block of the outer shell (2) of the electrical control box via a fixed shaft.

5. The electrical control box for mechatronics equipment as described in claim 2, characterized in that: The lower outer circumference of the support cylindrical rod (3) is threaded with a lifting adjustment cylinder (7), the inner circumference of the lifting adjustment cylinder (7) is threaded, the bottom inner circumference of the lifting adjustment cylinder (7) is provided with a bearing ring groove, and the upper outer circumference of the lifting adjustment cylinder (7) is provided with handle rods on both the left and right sides.

6. The electrical control box for mechatronics equipment as described in claim 5, characterized in that: The bearing ring groove of the lifting adjustment cylinder (7) is fitted with a bearing cylindrical rod (8) through a bearing. The outer circumference of the rear end of the bearing cylindrical rod (8) is provided with a fixing ring plate with a fixing hole. The front end of the bearing cylindrical rod (8) is provided with a bearing cylinder in the up and down direction. The outer circumference of the top of the bearing cylinder of the bearing cylindrical rod (8) is provided with a bearing ring groove. The front wall of the bearing cylinder of the bearing cylindrical rod (8) is provided with a threaded hole that runs through the front and back. The rear wall of the bearing cylinder of the bearing cylindrical rod (8) is provided with a wire hole that runs through the front and back.

7. The electrical control box for mechatronics equipment as described in claim 6, characterized in that: A fixed anti-rotation column (9) is installed inside the threaded hole of the bearing cylindrical rod (8). A threaded column is provided behind the fixed anti-rotation column (9). A limit ring plate is provided on the outer circumference of the front end of the threaded column of the fixed anti-rotation column (9). A regular hexagonal prism is provided on the front end face of the threaded column of the fixed anti-rotation column (9).