Integrated intelligent assembling cabinet and refined dehydration DCS system

CN224653749UActive Publication Date: 2026-08-18施朗智能科技(江苏)有限公司
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Patent Information

Application Number
CN202521355856.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2026-08-18
Estimated Expiration
2035-06-30

AI Technical Summary

Technical Problem

[0005]本实用新型的目的在于克服现有技术的不足,适应现实需要,提供一种一体化智能拼装机柜,以解决当前机柜不便于快速实现对电器模块安装的技术问题

Benefits of technology

1、本实用新型通过设计的滑动组件、安装座和安装组件,滑动组件和安装座组成T型结构布置在安装架的第一矩形口和第二矩形口内,因此滑动组件和安装座可以稳定的在安装架内滑动,并且第一矩形口内布置了波纹槽,因此当电器模块安装到安装座的安装组件上后,当需要调节电器模块位置时,人员可以将调节电器向后推压,此时会带动滑动组件中第二矩形板向后移动,此时第一弹簧呈压缩状态,直至第二矩形板的波纹凸起段脱离第一矩形口的波纹槽,此时人员则可以将电器模块、滑动组件、安装座和安装组件一起进行左右位置,从而可以对电器模块的位置进行调节,当电器模块位置调节完成后,松开电器模块,此时在第一弹簧的复位下,带动第二矩形板复位,此时第二矩形板的波纹凸起段会再次自动卡入到对应的波纹槽内,既可以实现对滑动组件的固定,无需螺栓或者定位等组件进行固定定位,从而可以实现对电器模块的快速调节安装,解决当前机柜不便于快速实现对电器模块安装的技术问题,因此,本实用新型具备对电器模块进行快速安装的优点。

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Abstract

The utility model discloses an integrated intelligent assembly cabinet and refined dehydration DCS system relates to the technical field of cabinet, aims at solving the technical problem of current cabinet inconveniently realizing the installation of electric appliance module, including cabinet main part. The utility model discloses the sliding assembly, mounting seat and mounting assembly of design, and the sliding assembly and mounting seat constitute T type structure arrangement in the first rectangular mouth and the second rectangular mouth of mounting bracket, therefore the sliding assembly and mounting seat can stably slide in mounting bracket, and the corrugated groove is arranged in the first rectangular mouth, when the position adjustment of electric appliance module is completed, loosens electric appliance module, now under the reset of first spring, drives second rectangular plate reset, now the corrugated convex section of second rectangular plate will again automatically be clamped into corresponding corrugated groove, can realize the fixation of sliding assembly, need not bolt or positioning etc. Component fixed positioning to can realize the quick adjustment installation of electric appliance module.
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Description

Technical Field

[0001] This utility model relates to the field of cabinet technology, and more specifically, to an integrated intelligent assembly cabinet and a refined dehydration DCS system. Background Technology

[0002] The refined dehydration DCS system comprises core components such as a dehydration unit, precision filtration device, temperature control module, pressure sensing system, and intelligent control system. It is an integrated industrial dehydration solution. Through the collaborative work of its modules, the system achieves precise control, efficient separation, and quality monitoring during the material dehydration process. It is widely used in chemical, food processing, and environmental water treatment industries, achieving industrial goals such as stable dehydration efficiency, product purity compliance, and optimized energy consumption.

[0003] Centralized control and collaborative management of equipment such as dehydration unit, filtration device, and temperature control module rely on cabinet. External devices are connected to the internal control unit of the cabinet through wiring to realize intelligent control of the entire dehydration process.

[0004] Existing cabinets typically achieve intelligent control of various electrical devices through the assembly of electrical modules. These modules are usually installed on internal guide rails. To ensure the stability of the modules, after installation and adjustment, they need to be positioned using bolts or locating pins to prevent further slippage. While this method achieves stability, it is cumbersome due to the large number of modules and the need for repeated manual operation, hindering rapid installation. Therefore, we propose an integrated intelligent assembly cabinet and a refined dehydration DCS system. Utility Model Content

[0005] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide an integrated intelligent assembly cabinet to solve the technical problem that the current cabinets are not convenient for quickly installing electrical modules.

[0006] To solve the above technical problems, this utility model provides the following technical solution: an integrated intelligent assembly cabinet, including a cabinet body, with an installation component arranged on the rear side inside the cabinet body. The installation component includes a mounting frame, a sliding component, a mounting base, and an installation assembly. The mounting frame is arranged on the cabinet body, with a first rectangular opening inside and a second rectangular opening on the front side of the mounting frame. The first and second rectangular openings are connected. The sliding component is arranged inside the first rectangular opening, the mounting base is arranged on the sliding component, the mounting base passes through the second rectangular opening, and the installation assembly is arranged on the mounting base. The mounting base includes a rectangular base, a second spring, and a cylindrical block. The rectangular base has an inner circular cavity inside, and a circular hole is arranged at the front end of the rectangular base. The inner circular cavity communicates with the circular hole. The second spring is arranged inside the inner circular cavity, and the cylindrical block is movably arranged inside the rectangular base.

[0007] Preferably, a corrugated groove is arranged on the front side inside the first rectangular opening. The sliding assembly includes a first rectangular plate, a first spring, and a second rectangular plate. The first spring is arranged between the first rectangular plate and the second rectangular plate. Mounting posts are arranged at the four corners of the first rectangular plate. The mounting posts penetrate the second rectangular plate. Corrugated protrusions matching the corrugated groove are arranged at the top and bottom of the front side of the second rectangular plate.

[0008] Preferably, a first ball bearing is rolled on the side of the first rectangular plate facing away from the second rectangular plate, and a mating groove corresponding to the first ball bearing is opened on the rear side inside the first rectangular opening.

[0009] Preferably, the circular hole has symmetrical openings at the top and bottom, the inner circular cavity has symmetrical positioning grooves on the left and right sides of the front side, and the cylindrical block has symmetrically arranged protruding blocks at one end facing the rectangular base.

[0010] Preferably, a circular plate is arranged at one end of the second spring facing the cylindrical block, and a plurality of sets of equidistant second balls are rolled on the surface of the circular plate.

[0011] Preferably, the mounting assembly includes a mounting rod and a mounting plate. The mounting rod is equidistantly arranged around the outer end of the cylindrical block, and the mounting plate is movably arranged on the mounting rod. One end of the mounting plate is provided with a mounting screw hole.

[0012] Preferably, a T-shaped groove is provided on the front side of the mounting rod, a T-shaped slider is slidably arranged in the T-shaped groove, and the mounting plate is rotatably arranged at the front end of the T-shaped slider.

[0013] A refining and dehydration DCS system includes the aforementioned integrated intelligent assembly cabinet.

[0014] Compared with the prior art, the beneficial effects of this utility model are: 1. This utility model, through the design of a sliding component, a mounting base, and a mounting assembly, forms a T-shaped structure arranged within the first and second rectangular openings of the mounting frame. Therefore, the sliding component and mounting base can slide stably within the mounting frame. Furthermore, a corrugated groove is arranged within the first rectangular opening. Thus, when the electrical module is installed onto the mounting assembly of the mounting base, and the position of the electrical module needs to be adjusted, the operator can push the adjusting device backward. This will cause the second rectangular plate in the sliding component to move backward, compressing the first spring until the corrugated protrusion of the second rectangular plate disengages from the corrugated groove of the first rectangular opening. At this point, the operator can then move the electrical module... The block, sliding component, mounting base, and mounting assembly move left and right together to adjust the position of the electrical module. After the electrical module is adjusted, it is released. At this time, the second rectangular plate is reset by the first spring. The corrugated protrusion of the second rectangular plate will automatically snap into the corresponding corrugated groove, thus fixing the sliding component without the need for bolts or positioning components. This allows for quick adjustment and installation of the electrical module, solving the technical problem that current cabinets are not convenient for quick installation of electrical modules. Therefore, this utility model has the advantage of quick installation of electrical modules.

[0015] 2. The mounting base of this utility model is composed of a rectangular base, a second spring, and a cylindrical block. The cylindrical block and the rectangular base can be freely inserted and removed. When it is inserted for installation, first align the protrusion of the cylindrical block with the opening, and then insert the cylindrical block into the inner cavity. At this time, the second spring will be compressed until the protrusion extends into the inner cavity. Then rotate the cylindrical block 90 degrees and release the cylindrical block. At this time, under the reset of the second spring, the protrusion of the cylindrical block will be locked into the positioning groove. Thus, the cylindrical block and the rectangular base can be quickly disassembled and assembled by pressing and rotating. When the cylindrical block is pulled out, the electrical module can be disassembled. When the cylindrical block is inserted, the electrical module can be installed. Therefore, the installation effect of the electrical module can be further improved.

[0016] 3. The installation assembly of this utility model is formed by combining an installation rod and an installation plate. The installation rod is equidistantly arranged around the outer end of the cylindrical block of the mounting base, and the installation plate is movably arranged on the installation rod. The installation plate can move on the installation rod and rotate around one end. Then, according to the different screw hole positions on the electrical module, the position of the installation plate can be adjusted so that the screw holes on the installation plate match the screw holes on the electrical module. This allows it to adapt to the installation of electrical modules with different shapes and appearances without the need for targeted drilling, further improving the convenience of electrical module installation. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the mounting component structure of this utility model; Figure 3 This is a schematic diagram of the sliding component, mounting base, and mounting component installation structure of this utility model; Figure 4 This is a schematic diagram of the first structure of the sliding component of this utility model; Figure 5 This is a schematic diagram of the second structure of the sliding component of this utility model; Figure 6 This is a schematic diagram of the mounting base structure of this utility model; Figure 7 This is a schematic diagram of the rectangular base structure of this utility model; Figure 8 This is a schematic diagram of the circular plate structure of this utility model; Figure 9 This is a schematic diagram of the installation component structure of this utility model; Figure 10 This is a schematic diagram of the mounting rod structure of this utility model.

[0018] Explanation of the labels in the diagram: 1. Cabinet body; 2. Mounting components; 3. Mounting bracket; 301. First rectangular opening; 302. Second rectangular opening; 303. Mating groove; 304. Corrugated groove; 4. Sliding assembly; 401. First rectangular plate; 402. Mounting post; 403. First spring; 404. Second rectangular plate; 405. Corrugated protrusion; 406. First ball bearing; 5. Mounting base; 501. Rectangular base; 502. Inner cavity; 503. Circular hole; 504. Opening; 505. Positioning groove; 506. Second spring; 507. Cylindrical block; 508. Protrusion; 509. Circular plate; 5010. Second ball bearing; 6. Mounting assembly; 601. Mounting rod; 602. Mounting plate; 603. Mounting screw hole; 604. T-shaped slide groove; 605. T-shaped slider. Detailed Implementation

[0019] like Figures 1 to 10As shown, this utility model relates to an integrated intelligent assembly cabinet, including a cabinet body 1. An installation component 2 is arranged on the rear side of the cabinet body 1. The installation component 2 includes a mounting frame 3, a sliding assembly 4, a mounting base 5, and an installation component 6. The mounting frame 3 is arranged on the cabinet body 1, with a first rectangular opening 301 inside and a second rectangular opening 302 on the front side of the mounting frame 3. The first rectangular opening 301 and the second rectangular opening 302 are connected. The sliding assembly 4 is arranged within the first rectangular opening 301, and the mounting base 5 is arranged on the sliding assembly 4. The mounting base 5 passes through... The second rectangular opening 302 is used to install the component 6 on the mounting base 5; a corrugated groove 304 is arranged on the front side inside the first rectangular opening 301; the sliding component 4 includes a first rectangular plate 401, a first spring 403 and a second rectangular plate 404; the first spring 403 is arranged between the first rectangular plate 401 and the second rectangular plate 404; mounting posts 402 are arranged at the four corners of the first rectangular plate 401; the mounting posts 402 penetrate the second rectangular plate 404; corrugated protrusions 405 matching the corrugated groove 304 are arranged on the top and bottom of the front side of the second rectangular plate 404. The electrical module is installed on the mounting component 6. When the position of the electrical module needs to be adjusted, the operator can push the adjusting component backward. This will cause the second rectangular plate 404 in the sliding component 4 to move backward. At this time, the first spring 403 is compressed until the corrugated protrusion 405 of the second rectangular plate 404 disengages from the corrugated groove 304 of the first rectangular opening 301. Then, the operator can move the electrical module, the sliding component 4, the mounting base 5, and the mounting component 6 together left and right to adjust the position of the electrical module. After the position of the electrical module is adjusted, the electrical module is released. At this time, the first spring 403 resets, causing the second rectangular plate 404 to reset. The corrugated protrusion 405 of the second rectangular plate 404 will automatically snap back into the corresponding corrugated groove 304, thus fixing the sliding component 4 without the need for bolts or positioning components. This allows for quick adjustment and installation of the electrical module.

[0020] Specifically, a first ball bearing 406 is rolled on the side of the first rectangular plate 401 facing away from the second rectangular plate 404, and a mating groove 303 corresponding to the first ball bearing 406 is opened on the rear side inside the first rectangular opening 301; the first ball bearing 406 and the mating groove 303 cooperate to realize the rolling friction between the first rectangular plate 401 and the first rectangular opening 301, which facilitates left and right sliding.

[0021] In an embodiment of this utility model, the mounting base 5 includes a rectangular base 501, a second spring 506, and a cylindrical block 507. The rectangular base 501 has an inner circular cavity 502 inside. A circular hole 503 is arranged at the front end of the rectangular base 501, and the inner circular cavity 502 communicates with the circular hole 503. The second spring 506 is arranged in the inner circular cavity 502, and the cylindrical block 507 is movably arranged in the rectangular base 501. The circular hole 503 has openings 504 symmetrically opened at the top and bottom. The inner circular cavity 502 has positioning grooves 505 symmetrically opened on the left and right sides of the front side. The cylindrical block 507 has protrusions 508 symmetrically arranged at one end facing the rectangular base 501. The cylindrical block 507 and the rectangular base 501 can be freely inserted and removed. When inserting and installing, first align the protrusion 508 of the cylindrical block 507 with the opening 504, then insert the cylindrical block 507 into the inner cavity 502. At this time, the second spring 506 will be compressed until the protrusion 508 extends into the inner cavity 502. Then rotate the cylindrical block 507 ninety degrees and release the cylindrical block 507. At this time, under the reset of the second spring 506, the protrusion 508 of the cylindrical block 507 will be locked into the positioning groove 505. Thus, the cylindrical block 507 and the rectangular base 501 can be quickly disassembled and assembled through this pressing and rotating method. When the cylindrical block 507 is pulled out, the electrical module can be disassembled. When the cylindrical block 507 is inserted, the electrical module can be installed. Therefore, the installation effect of the electrical module can be further improved.

[0022] Specifically, a circular plate 509 is arranged at one end of the second spring 506 facing the cylindrical block 507, and several sets of equidistant second balls 5010 are rolled on the surface of the circular plate 509; with the cooperation of the circular plate 509 and the second balls 5010, rolling friction is achieved with the cylindrical block 507, which makes it convenient for personnel to rotate the cylindrical block 507.

[0023] In an embodiment of this utility model, the mounting component 6 includes a mounting rod 601 and a mounting plate 602. The mounting rod 601 is equidistantly arranged around the outer end of the cylindrical block 507, and the mounting plate 602 is movably arranged on the mounting rod 601. One end of the mounting plate 602 is provided with a mounting screw hole 603. A T-shaped groove 604 is provided on the front side of the mounting rod 601, and a T-shaped slider 605 is slidably arranged in the T-shaped groove 604. The mounting plate 602 is rotatably arranged at the front end of the T-shaped slider 605. With the cooperation of the T-shaped groove 604 and the T-shaped slider 605, the mounting plate 602 can move on the mounting rod 601 and rotate around one end of the T-shaped slider 605. Then, depending on the different screw hole positions on the electrical module, the position of the mounting plate 602 can be adjusted so that the mounting screw holes 603 of the mounting plate 602 match the screw holes on the electrical module. This allows for the installation of electrical modules with different shapes and appearances without the need for targeted drilling, further improving the convenience of electrical module installation.

[0024] Working Principle: This embodiment provides an integrated intelligent assembly cabinet and a refined dehydration DCS system. First, the electrical module is installed on the mounting component 6. When the position of the electrical module needs to be adjusted, the operator can push the adjusting electrical module backward. This will cause the second rectangular plate 404 in the sliding component 4 to move backward. At this time, the first spring 403 is compressed until the corrugated protrusion 405 of the second rectangular plate 404 disengages from the corrugated groove 304 of the first rectangular opening 301. Then, the operator can move the electrical module, the sliding component 4, the mounting base 5, and the mounting component 6 together left and right to adjust the position of the electrical module. After the position of the electrical module is adjusted, the electrical module is released. At this time, the second rectangular plate 404 is reset under the reset of the first spring 403. The corrugated protrusion 405 of the second rectangular plate 404 will automatically snap into the corresponding corrugated groove 304 again, which can realize the fixation of the sliding component 4 without the need for bolts or positioning components, thus realizing the quick adjustment and installation of the electrical module. Secondly, the cylindrical block 507 and the rectangular base 501 can be freely inserted and removed. When they are inserted for installation, first align the protrusion 508 of the cylindrical block 507 with the opening 504, and then insert the cylindrical block 507 into the inner cavity 502. At this time, the second spring 506 will be compressed until the protrusion 508 extends into the inner cavity 502. Then rotate the cylindrical block 507 ninety degrees and release the cylindrical block 507. At this time, under the reset of the second spring 506, the protrusion 508 of the cylindrical block 507 will be locked into the positioning groove 505. Thus, the cylindrical block 507 and the rectangular base 501 can be quickly disassembled and assembled by pressing and rotating. When the cylindrical block 507 is pulled out, the electrical module can be disassembled. When the cylindrical block 507 is inserted, the electrical module can be installed. Therefore, the installation effect of the electrical module can be further improved. Finally, with the cooperation of the T-shaped groove 604 and the T-shaped slider 605, the mounting plate 602 can move on the mounting rod 601 and rotate around one end of the T-shaped slider 605. Then, depending on the different screw hole positions on the electrical module, the position of the mounting plate 602 can be adjusted so that the mounting screw holes 603 of the mounting plate 602 match the screw holes on the electrical module. This allows for the installation of electrical modules with different shapes and appearances without the need for targeted drilling, further improving the convenience of electrical module installation.

[0025] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.

Claims

1. An integrated intelligent assembly cabinet, characterized in that, The system includes a cabinet body (1), and an installation component (2) is arranged on the rear side of the cabinet body (1). The installation component (2) includes a mounting bracket (3), a sliding component (4), a mounting base (5), and an installation component (6). The mounting bracket (3) is arranged on the cabinet body (1). The mounting bracket (3) has a first rectangular opening (301) inside and a second rectangular opening (302) on the front side of the mounting bracket (3). The first rectangular opening (301) and the second rectangular opening (302) are connected. The sliding component (4) is arranged inside the first rectangular opening (301). The mounting base (5) is arranged on the sliding component (4) and passes through the second rectangular opening (302). The installation component (6) is arranged on the mounting base (5). The mounting base (5) includes a rectangular base (501), a second spring (506), and a cylindrical block (507). The rectangular base (501) has an inner circular cavity (502) inside. A circular hole (503) is arranged at the front end of the rectangular base (501), and the inner circular cavity (502) is connected to the circular hole (503). The second spring (506) is arranged in the inner circular cavity (502), and the cylindrical block (507) is movably arranged in the rectangular base (501).

2. The integrated intelligent assembly cabinet according to claim 1, characterized in that, The first rectangular opening (301) has a corrugated groove (304) arranged on the front side inside. The sliding component (4) includes a first rectangular plate (401), a first spring (403) and a second rectangular plate (404). The first spring (403) is arranged between the first rectangular plate (401) and the second rectangular plate (404). The first rectangular plate (401) has mounting posts (402) arranged at its four corners. The mounting posts (402) penetrate the second rectangular plate (404). The second rectangular plate (404) has corrugated protrusions (405) matching the corrugated groove (304) arranged on its front top and bottom sides.

3. The integrated intelligent assembly cabinet according to claim 2, characterized in that, The first rectangular plate (401) has a first ball bearing (406) rolling on the side opposite to the second rectangular plate (404), and a mating groove (303) corresponding to the first ball bearing (406) is opened on the rear side inside the first rectangular opening (301).

4. The integrated intelligent assembly cabinet according to claim 1, characterized in that, The circular hole (503) has openings (504) symmetrically opened at the top and bottom, and the inner circular cavity (502) has positioning grooves (505) symmetrically opened on the left and right sides of the front side. The cylindrical block (507) has protrusions (508) symmetrically arranged at one end facing the rectangular base (501).

5. The integrated intelligent assembly cabinet according to claim 1, characterized in that, The second spring (506) has a circular plate (509) arranged at one end facing the cylindrical block (507), and a number of sets of equidistant second balls (5010) are rolled on the surface of the circular plate (509).

6. The integrated intelligent assembly cabinet according to claim 1, characterized in that, The mounting assembly (6) includes a mounting rod (601) and a mounting plate (602). The mounting rod (601) is equidistantly arranged around the outer end of the cylindrical block (507). The mounting plate (602) is movably arranged on the mounting rod (601). One end of the mounting plate (602) is provided with a mounting screw hole (603).

7. The integrated intelligent assembly cabinet according to claim 6, characterized in that, The mounting rod (601) has a T-shaped groove (604) on its front side, and a T-shaped slider (605) is slidably arranged in the T-shaped groove (604). The mounting plate (602) is rotatably arranged at the front end of the T-shaped slider (605).

8. A refining and dehydration DCS system, characterized in that, The intelligent electrical control cabinet includes any one of claims 1 to 7.