Mechatronics equipment rack convenient to maintain

By designing a mechatronic equipment rack suitable for multi-spec equipment, the maintenance inconvenience and cost increase caused by a single model of existing equipment racks is solved, and the equipment is conveniently installed and vibration noise reduction is achieved.

CN223153213UActive Publication Date: 2025-07-25王丹
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Patent Information

Application Number
CN202422602296.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-07-25
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

The existing mechatronic equipment racks can only be used in one model, resulting in inconvenient replacement and maintenance and increasing the cost of using multiple mounting racks.

Method used

A mechatronic equipment rack including the main body of the equipment rack, a two-way threaded rod, an adjustment mechanism, an auxiliary mechanism, etc. is designed. The installation and adaptation of multi-special equipment is achieved through the two-way threaded rod and an adjustment mechanism, and vibration noise is reduced through the auxiliary mechanism.

Benefits of technology

It realizes convenient replacement and maintenance of mechatronic equipment of different specifications, reduces the cost of replacement and maintenance, and reduces vibration noise during equipment operation through auxiliary mechanisms.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mechatronics equipment, and discloses a mechatronics equipment rack convenient to maintain, which comprises an equipment rack main body, two-way threaded rods are rotatably connected to the inner walls of the two sides of the equipment rack main body through bearings, and adjusting mechanisms are arranged on the two-way threaded rods. The device frame comprises a device frame body and an adjusting mechanism arranged on the device frame body, the adjusting mechanism is used for adapting to installation of multi-specification mechatronics devices, an auxiliary mechanism is arranged on the device frame body and used for reducing vibration noise when the mechatronics devices operate, the adjusting mechanism comprises a support, and the support is slidably connected to the inner wall of the top of the device frame body. A T-shaped groove is formed in the inner wall of the side face of the support, and T-shaped frames are slidably connected to the inner walls of the two sides of the T-shaped groove. According to the utility model, by arranging the bracket, the T-shaped frame and other structures, the problems that the equipment frame is inconvenient to adjust and maintain according to different integrated equipment, a certain trouble is caused to a user, and the cost is increased when various mounting frames are used are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of mechatronic equipment, in particular to a mechatronic equipment rack which is convenient for maintenance. Background Technique

[0002] Mechatronic equipment is a device that organically combines various devices such as machinery and electricity. After the mechatronic equipment is produced, it needs to be transported to a designated location for fixed installation. When installing mechatronic equipment, it is often necessary to install and fix the equipment through an installation base.

[0003] With the development of science and technology, mechanical equipment is constantly improved and innovated nowadays. The use of mechanical equipment has improved the working efficiency of production and processing and liberated people's labor force. Mechatronic equipment is one of the commonly used equipment, and an installation rack is often used when installing mechatronic equipment.

[0004] The above device has the following defects: the installation racks are all matched with the models of mechatronic equipment and can only be applicable to one model of mechatronic equipment, which is not convenient for replacement and maintenance according to different integrated equipment, causing certain troubles to users and increasing costs by using multiple installation racks. Therefore, a mechatronic equipment rack which is convenient for maintenance is proposed to solve the above problems. Content of the Utility Model

[0005] In order to make up for the above deficiencies, the utility model provides a mechatronic equipment rack which is convenient for maintenance, aiming to improve the problem that in the prior art, the installation racks are all matched with the models of mechatronic equipment and can only be applicable to one model of mechatronic equipment.

[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme: a mechatronic equipment rack which is convenient for maintenance, including a main body of the equipment rack. The inner walls on both sides of the main body of the equipment rack are rotatably connected with a bidirectional threaded rod through bearings. An adjusting mechanism is arranged on the bidirectional threaded rod, and the adjusting mechanism is used to adapt to the installation of mechatronic equipment of multiple specifications. An auxiliary mechanism is arranged on the main body of the equipment rack, and the auxiliary mechanism is used to reduce vibration and noise during the operation of mechatronic equipment. The adjusting mechanism includes a bracket, the bracket is slidably connected to the inner wall of the top of the main body of the equipment rack. A T-shaped groove is opened on the inner wall of the side surface of the bracket. The inner walls on both sides of the T-shaped groove are slidably connected with a T-shaped frame. The outer wall of the top of the T-shaped frame is fixedly connected with a mounting plate. An adjusting plate is slidably connected to the inner wall of one side of the T-shaped frame. The outer wall of one side of the adjusting plate is fixedly connected with a positioning plate. A scale opening is opened on the outer wall of one side of the bracket. A small spring is fixedly connected to the outer wall of the side of the adjusting plate away from the positioning plate.

[0007] As a further description of the above technical solution: The auxiliary mechanism includes a support plate, the support plate is slidably connected to the bottom inner wall of the equipment rack body, a base is fixedly connected to the outer wall of the bottom of the support plate, a movable plate is hinged to the bottom inner wall of the equipment rack body, a sliding rack is hinged to the outer wall of the side of the movable plate away from the equipment rack body, and a spring damper is fixedly connected to the outer wall of one side of the sliding rack.

[0008] As a further description of the above technical solution: A wear-resistant pad is fixedly connected to the outer wall of the top of the mounting plate, a mounting hole is provided in the inner wall of the top of the mounting plate, and the bracket is threadedly connected to the bidirectional threaded rod.

[0009] As a further description of the above technical solution: The positioning plate penetrates through the inner wall of one side of the T-shaped frame and extends to the outer wall of the side of the T-shaped frame, and one end of the small spring away from the adjusting plate is fixedly connected to the inner wall of one side of the T-shaped frame.

[0010] As a further description of the above technical solution: The inner diameter of the scale opening is adapted to the outer diameter of the positioning plate, and the positioning plate is slidably connected to the inner walls of both sides of the scale opening.

[0011] As a further description of the above technical solution: A silica gel pad is fixedly connected to the outer wall of the bottom of the base. There are two movable plates, and the two movable plates are symmetrically arranged.

[0012] As a further description of the above technical solution: There are two sliding racks, and the two sliding racks are respectively slidably connected to the inner wall of the top of the support plate. Both ends of the spring damper are fixedly connected to the outer walls of one sides of the two sliding racks.

[0013] As a further description of the above technical solution: A chute is provided in the inner wall of the top of the equipment rack body, and a self-locking component is fixedly connected to one end of the bidirectional threaded rod away from the equipment rack body. The self-locking component includes an adjusting disk, a plug pin, and a limiting hole.

[0014] The utility model has the following beneficial effects:

[0015] 1. In the utility model, by setting structures such as brackets, T-shaped frames, and mounting plates, the mechatronic equipment of different specifications can be replaced and maintained, and the damaged T-shaped frames can be conveniently pulled out and replaced, improving the problem that the equipment rack is not convenient to adjust and maintain according to different integrated equipment, causing certain troubles to users and increasing the cost by using multiple mounting racks.

[0016] 2. In the utility model, by setting structures such as support plates, movable plates, and sliding racks, the integrated equipment installed on the equipment rack body can be simply buffered, improving the problem that the traditional shock absorption setting has more spring dampers, increasing the overall installation cost of the equipment rack. Description of the Drawings

[0017] Figure 1 This is the overall front view schematic diagram of a mechatronics equipment rack that is convenient for maintenance proposed by the present utility model;

[0018] Figure 2 This is the overall side view schematic diagram of a mechatronics equipment rack that is convenient for maintenance proposed by the present utility model;

[0019] Figure 3 This is the schematic diagram of the adjustment mechanism of a mechatronics equipment rack that is convenient for maintenance proposed by the present utility model;

[0020] Figure 4 This is the schematic diagram of the auxiliary mechanism of a mechatronics equipment rack that is convenient for maintenance proposed by the present utility model.

[0021] Legend description:

[0022] 1. Equipment rack main body; 2. Slide groove; 3. Bidirectional threaded rod; 4. Self-locking component; 5. Adjustment mechanism; 51. Bracket; 52. T-shaped groove; 53. T-shaped frame; 54. Mounting plate; 55. Adjusting plate; 56. Positioning plate; 57. Scale notch; 58. Small spring; 6. Auxiliary mechanism; 61. Support plate; 62. Base; 63. Movable plate; 64. Sliding frame; 65. Spring damper. Specific implementation manners

[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0024] Refer to Figures 1 - 3, an embodiment provided by the present utility model: a mechatronics equipment rack that is convenient for maintenance, including a main body 1 of the equipment rack. The inner walls on both sides of the main body 1 of the equipment rack are rotatably connected by a bidirectional threaded rod 3. By setting the rotation of the bidirectional threaded rod 3 to drive two brackets 51 to approach and expand each other, an adjustment mechanism 5 is arranged on the bidirectional threaded rod 3. The adjustment mechanism 5 is used to adapt to the installation of mechatronics equipment of multiple specifications. An auxiliary mechanism 6 is arranged on the main body 1 of the equipment rack. The auxiliary mechanism 6 is used to reduce vibration and noise during the operation of the mechatronics equipment. The adjustment mechanism 5 includes a bracket 51. The bracket 51 is slidably connected to the top inner wall of the main body 1 of the equipment rack. A T-shaped groove 52 is opened on the side inner wall of the bracket 51. The inner walls on both sides of the T-shaped groove 52 are slidably connected to a T-shaped frame 53. A mounting plate 54 is fixedly connected to the top outer wall of the T-shaped frame 53. An adjustment plate 55 is slidably connected to one side inner wall of the T-shaped frame 53. A positioning plate 56 is fixedly connected to the outer wall of one side of the adjustment plate 55. A scale opening 57 is opened on the outer wall of one side of the bracket 51. By setting the scale opening 57, it is convenient to limit the positioning plate 56. A small spring 58 is fixedly connected to the outer wall of the side of the adjustment plate 55 away from the positioning plate 56. By setting the small spring 58, a continuous thrust is generated on the adjustment plate 55.

[0025] Refer to Figures 2 - 4 , a wear-resistant pad is fixedly connected to the top outer wall of the mounting plate 54. Mounting holes are opened on the top inner wall of the mounting plate 54. By setting the cooperation of the mounting plate 54 and the mounting holes, the bottom of mechatronics equipment of different specifications is fixedly installed and separated. The positioning plate 56 penetrates through one side inner wall of the T-shaped frame 53 and extends to the side outer wall of the T-shaped frame 53. One end of the small spring 58 away from the adjustment plate 55 is fixedly connected to one side inner wall of the T-shaped frame 53. The inner diameter of the scale opening 57 is adapted to the outer diameter of the positioning plate 56. The positioning plate 56 is slidably connected to the inner walls on both sides of the scale opening 57. A chute 2 is opened on the top inner wall of the main body 1 of the equipment rack. One end of the bidirectional threaded rod 3 away from the main body 1 of the equipment rack is fixedly connected to a self-locking assembly 4. The self-locking assembly 4 includes an adjustment disk, a plug pin, and a limit hole. The bracket 51 is threadedly connected to the bidirectional threaded rod 3. By setting the self-locking assembly 4, the bidirectional threaded rod 3 is rotated and limited. The above structures are prior arts, so no more details are described.

[0026] Refer to Figures 3 - 4, the auxiliary mechanism 6 includes a support plate 61 which is slidably connected to the bottom inner wall of the main body 1 of the equipment rack. A base 62 is fixedly connected to the outer wall of the bottom of the support plate 61. A movable plate 63 is hinged to the bottom inner wall of the main body 1 of the equipment rack. By setting the movable plate 63 to move up and down in the main body 1 of the equipment rack, the movable plate 63 is squeezed to generate an angular change. One side outer wall of the movable plate 63 away from the main body 1 of the equipment rack is hinged with a sliding rack 64. A spring damper 65 is fixedly connected to one side outer wall of the sliding rack 64. By setting the spring damper 65, the main body 1 of the equipment rack is buffered and shock-absorbed. A silica gel pad is fixedly connected to the outer wall of the bottom of the base 62. There are two movable plates 63 in total, and the two movable plates 63 are symmetrically arranged respectively. There are two sliding racks 64 in total, and the two sliding racks 64 are respectively slidably connected to the top inner wall of the support plate 61. Both ends of the spring damper 65 are respectively fixedly connected to one side outer walls of the two sliding racks 64.

[0027] Working principle: According to the specifications of the integrated equipment to be installed, when the bidirectional threaded rod 3 is rotated, the two brackets 51 expand outwards and align with the horizontal mounting holes at the bottom of the integrated equipment. Subsequently, the adjusting plate 55 is pulled to squeeze the small spring 58, and then the T-shaped frame 53 is inserted into the T-shaped groove 52, so that the T-shaped frame 53 aligns with the vertical mounting holes at the bottom of the integrated equipment for adjustment. The positioning plate 56 on the T-shaped frame 53 is inserted into the corresponding scale notch 57 for positioning. It is suitable for fixing and installing different specifications of integrated equipment, the mounting plate 54 and the mounting holes with existing bolts, and the T-shaped frame 53 can be conveniently pulled out for replacement and maintenance. When the mechatronic equipment and the main body 1 of the equipment rack are fixed to each other, the vibration generated during the operation of the equipment causes the main body 1 of the equipment rack to shake up and down. When the main body 1 of the equipment rack shakes, it drives the movable plate 63 to change its angle. The change in the angle of the movable plate 63 pushes the sliding rack 64 to move. The sliding rack 64 moves to squeeze the spring damper 65, buffering and shock-absorbing the equipment on the main body 1 of the equipment rack, and reducing the vibration and noise generated around.

[0028] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded 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 in the protection scope of the present invention.

Claims

1. An electromechanical integration equipment rack that is convenient for maintenance, comprising a main body (1) of the equipment rack, and is characterized in that: On both inner walls of the main body (1) of the equipment rack, a bidirectional threaded rod (3) is rotatably connected through bearings. An adjusting mechanism (5) is arranged on the bidirectional threaded rod (3), and the adjusting mechanism (5) is used to adapt to the installation of mechatronic equipment of multiple specifications. An auxiliary mechanism (6) is arranged on the main body (1) of the equipment rack, and the auxiliary mechanism (6) is used to reduce vibration and noise during the operation of the mechatronic equipment. The adjusting mechanism (5) includes a bracket (51), and the bracket (51) is slidably connected to the top inner wall of the main body (1) of the equipment rack. A T-shaped groove (52) is formed in the side inner wall of the bracket (51), and T-shaped frames (53) are slidably connected to both inner walls of the T-shaped groove (52). A mounting plate (54) is fixedly connected to the top outer wall of the T-shaped frame (53). An adjusting plate (55) is slidably connected to one inner wall of the T-shaped frame (53). A positioning plate (56) is fixedly connected to the outer wall of one side of the adjusting plate (55). A scale opening (57) is formed in the outer wall of one side of the bracket (51). A small spring (58) is fixedly connected to the outer wall of the adjusting plate (55) away from the positioning plate (56).

2. The mechatronic equipment rack that is easy to maintain according to claim 1, wherein: The auxiliary mechanism (6) includes a support plate (61), and the support plate (61) is slidably connected to the bottom inner wall of the main body (1) of the equipment rack. A base (62) is fixedly connected to the bottom outer wall of the support plate (61). A movable plate (63) is hinged to the bottom inner wall of the main body (1) of the equipment rack. A sliding frame (64) is hinged to the outer wall of one side of the movable plate (63) away from the main body (1) of the equipment rack. A spring damper (65) is fixedly connected to the outer wall of one side of the sliding frame (64).

3. A mechatronic equipment rack that is easy to maintain according to claim 1, characterized in that: A wear-resistant pad is fixedly connected to the top outer wall of the mounting plate (54). Mounting holes are formed in the top inner wall of the mounting plate (54). The bracket (51) is threadedly connected to the bidirectional threaded rod (3).

4. The mechatronic equipment rack that is easy to maintain according to claim 1, wherein: The positioning plate (56) penetrates through one inner wall of the T-shaped frame (53) and extends to the side outer wall of the T-shaped frame (53). One end of the small spring (58) away from the adjusting plate (55) is fixedly connected to one inner wall of the T-shaped frame (53).

5. A mechatronic equipment rack that is easy to maintain according to claim 1, characterized in that: The inner diameter of the scale opening (57) is adapted to the outer diameter of the positioning plate (56), and the positioning plate (56) is slidably connected to both inner walls of the scale opening (57).

6. The electromechanical integration equipment rack according to claim 2, characterized in that: A silica gel pad is fixedly connected to the bottom outer wall of the base (62). There are two movable plates (63), and the two movable plates (63) are symmetrically arranged respectively.

7. An electromechanical integration equipment rack that is easy to maintain according to claim 2, characterized in that: There are two sliding frames (64), and the two sliding frames (64) are respectively slidably connected to the top inner wall of the support plate (61). Both ends of the spring damper (65) are respectively fixedly connected to the outer walls of one side of the two sliding frames (64).

8. The mechatronic equipment rack according to claim 1, which is characterized in that: A chute (2) is formed in the top inner wall of the main body (1) of the equipment rack. One end of the bidirectional threaded rod (3) away from the main body (1) of the equipment rack is fixedly connected to a self-locking component (4), and the self-locking component (4) includes an adjusting disc, a bolt, and a limiting hole.