Molding and cleaning device for plastic shell of computer

By dividing the internal space of the cleaning machine into flushing, cleaning and drying areas, and using shell fixing and area control mechanisms, the cleaning problem of plastic shell of special-shaped structure computers is solved, and all-round cleaning and drying is achieved, improving efficiency and reducing costs.

CN120286414APending Publication Date: 2025-07-11TAICANG YUTIAN ELECTRONICS TECH
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Patent Information

Application Number
CN202510629893.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

Existing cleaning devices are difficult to thoroughly clean the special-shaped structure of the computer plastic shell, especially the special areas inside and outside, resulting in the residue of cleaning liquid, affecting product quality and increasing drying process and costs.

Method used

A computer plastic shell forming and cleaning device is designed, and the internal space of the cleaning machine is divided into a washing area, a washing area and a drying area. The shell fixing mechanism and an area control mechanism are adopted. Through the clever design of the washing mechanism and the drying mechanism, the comprehensive cleaning and drying of the special-shaped structure is achieved, reducing the drying process and reducing processing costs.

Benefits of technology

It improves the comprehensiveness and efficiency of the cleaning of the plastic shell of the special-shaped structure computer, reduces the drying process, reduces the processing cost, and avoids the impact of equipment pressure on the stability of the shell through an internal and external compatible design.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a computer plastic shell forming and cleaning device, and relates to the field of computer plastic shell production, the computer plastic shell forming and cleaning device comprises a cleaning machine, a shell fixing mechanism and an area control mechanism, the internal space of the cleaning machine is divided into three areas including a flushing area located above the cleaning machine, a drying area and a cleaning area located below the cleaning machine; the shell fixing mechanism is used for fixing a computer plastic shell to be cleaned, the area control mechanism is used for supporting the shell fixing mechanism and controlling the shell fixing mechanism to be switched among the three areas, a washing mechanism is installed in the washing area in the cleaning machine, and a drying mechanism is installed in the drying area in the cleaning machine. By means of the computer plastic shell cleaning device, the internal and external cleaning comprehensiveness and thoroughness of a computer plastic shell of a special-shaped structure are improved, the subsequent drying procedure of the computer plastic shell is reduced, the machining cost is reduced, and meanwhile the cleaning machining efficiency of the computer plastic shell is improved through the continuous operation mode.
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Description

Technical Field

[0001] The present invention relates to the field of production and processing of computer plastic casings, and particularly to a forming and cleaning device for computer plastic casings. Background Art

[0002] As is well known, a computer plastic casing is one of the main accessories of a computer. It is used to wrap and protect the parts of the computer mainframe and also assist in dissipating heat from the components inside the mainframe. During the production and processing of computer plastic casings, cleaning is an essential step. For example, the cleaning device for a motor casing with the authorization publication number CN118305129B and the authorization publication date of September 10, 2024, includes a connecting frame, a placement rack, an ultrasonic cleaning machine, an electric guide rail 1, an electric winding device, etc. A placement rack for placing the casing is provided below the connecting frame. An ultrasonic cleaning machine is provided below the connecting frame. A water inlet pipe is provided on the left side of the ultrasonic cleaning machine, a drain pipe is provided at the bottom left side of the ultrasonic cleaning machine, and a door is provided on the right side of the ultrasonic cleaning machine. A number of electric guide rails 1 are fixedly connected inside the connecting frame. Each electric guide rail 1 is slidably connected to an electric winding device. In the present invention, the sponge block is driven by the clamp to move the casing upward to wipe and clean the inner side surface of the casing. Similar to the above application, most of the existing cleaning devices clean the surface of the plastic casing through cleaning liquid and a spraying structure or an ultrasonic cleaning machine. However, since computer plastic casings are often irregularly shaped, that is, there are generally special areas inside and outside the casing, such as concave areas, hole areas, curved surface areas, thin wall areas, etc. Traditional cleaning methods often cannot thoroughly clean all corners and crevices of the casing. And after cleaning, the cleaning liquid is likely to remain in the special areas of the casing. After subsequent drying, impurities will still adhere to the special areas after the cleaning liquid dries in the special areas, resulting in a reduction in product quality. Summary of the Invention

[0003] (I) Object of the Invention In view of this, the object of the present invention is to provide a forming and cleaning device for computer plastic casings. This device can not only improve the comprehensiveness and thoroughness of cleaning the inside and outside of the irregularly shaped casing of the computer plastic casing, but also reduce the subsequent drying process of the computer plastic casing, reducing the processing cost. At the same time, this continuous operation method improves the cleaning and processing efficiency of the computer plastic casing.

[0004] (II) Technical Solution To achieve the above technical object, the present invention provides a forming and cleaning device for computer plastic casings, which is applied to the cleaning of irregular computer plastic casings and includes: A cleaning machine, the internal space of which is divided into three areas, including a flushing area, a drying area located above the cleaning machine, and a cleaning area located below the cleaning machine; A housing fixing mechanism, which is arranged inside the cleaning machine and is used to fix the plastic housing of the computer to be cleaned; A region control mechanism, which is arranged inside the cleaning machine, is used to support the housing fixing mechanism, and control the housing fixing mechanism to switch among three regions; Among them, a flushing mechanism is installed inside the cleaning machine within the flushing area, an ultrasonic generator is installed within the cleaning area, and a drying mechanism is installed within the drying area.

[0005] As a further description of the above technical solution: The region control mechanism includes a main body frame, the main body frame adopts a triangular structure, and there are three housing fixing mechanisms in total, which are respectively installed at three corner positions of the main body frame; The middle part of the main body frame is rotatably installed on the inner wall of the cleaning machine through a main shaft, a toothed ring is sleeved on the main shaft, a gear meshed with the toothed ring is also rotatably installed on the inner wall of the cleaning machine, and a region adjustment motor for controlling the rotation of the gear is installed outside the cleaning machine.

[0006] As a further description of the above technical solution: The housing fixing mechanism includes a rear frame installed on the surface of the main body frame and a front frame movably connected to the rear frame, and an adsorption fixing component for fixing the plastic housing of the computer is installed on the front surface of the front frame.

[0007] As a further description of the above technical solution: The housing fixing mechanism further includes a self-rotation motor, the self-rotation motor is installed on one side of the main body frame, and the output shaft of the self-rotation motor is connected to the center of the rear frame, so that when the self-rotation motor operates, it can drive the rear frame and the front frame to rotate.

[0008] As a further description of the above technical solution: A balance support plate is installed at the edge of the rear frame, a balance sliding groove is opened at the same horizontal position of the edge of the front frame as that of the balance support plate, the balance support plate is slidably inserted into the balance sliding groove, and an electric push rod C is installed in the middle of one side of the front frame, and the piston rod of the electric push rod C passes through the front frame and is connected to the center of the rear frame.

[0009] As a further description of the above technical solution: The flushing mechanism includes A flushing component, which includes a fixed liquid frame and a movable liquid frame, the fixed liquid frame is installed on the inner wall of the cleaning machine, corresponding to the outer side of the back of the plastic housing of the computer, the movable liquid frame is movably installed inside the cleaning machine through a control component, a plurality of cleaning liquid spray heads are equidistantly installed on one side of the fixed liquid frame and the movable liquid frame relative to the plastic housing of the computer, and channels for the cleaning liquid to flow are provided in the fixed liquid frame and the movable liquid frame; A pump is installed at the bottom of the cleaning machine. The pump is connected to the fixed liquid rack through a main liquid path, and is connected to the movable liquid rack through the main liquid path and a liquid path hose.

[0010] As a further description of the above technical solution: The movable liquid rack includes an inner rack and an outer rack. Among them, both the inner rack and the outer rack adopt an L-shaped structure. The outer rack is connected to one end of the inner rack, so that a section where the inner rack is connected to the outer rack and the outer rack form a U-shaped structure, enclosing one side wall of the computer plastic shell. The other section of the inner rack corresponds to the inner side of the back of the computer plastic shell.

[0011] As a further description of the above technical solution: The drying mechanism includes: A movable air rack that is movably installed inside the cleaning machine through a control component; A fixed air rack installed on the inner wall of the cleaning machine; An air hood installed on the inner wall of the cleaning machine; A hot air blower installed outside the cleaning machine for supplying air to the air hood; Among them, air paths are provided in both the movable air rack and the fixed air rack. A plurality of air nozzles are equidistantly installed on one side of the movable air rack and the fixed air rack relative to the computer plastic shell. The air path in the movable air rack is connected to the air hood through an air path hose, and the air path connection in the fixed air rack is connected to the air hood through a main air path; The movable air rack includes an inner air rack and an outer air rack. Among them, both the inner air rack and the outer air rack adopt an L-shaped structure. The outer air rack is connected to one end of the inner air rack, so that a section where the inner air rack is connected to the outer air rack and the outer air rack form a U-shaped structure, enclosing one side wall of the computer plastic shell. The other section of the inner air rack corresponds to the inner side of the back of the computer plastic shell.

[0012] As a further description of the above technical solution: The control component includes: A bearing plate welded to the inner wall of the cleaning machine, and a second guide groove is provided on the upper surface of the bearing plate; A sliding table is arranged above the bearing plate. A second slider pair is installed at the bottom of the sliding table, and the second slider pair is slidably assembled in the second guide groove, so that the sliding table can slide along the direction of the second guide groove; An electric push rod A is installed outside the cleaning machine, and the piston rod of the electric push rod A penetrates into the cleaning machine and is connected to the sliding table; A connecting rod frame, and a first slider pair is installed on one side thereof; Among them, a first guide groove is formed in one side of the sliding table along the length direction relative to the computer plastic shell. The first slider pair is slidably installed in the first guide groove. One end of the sliding table is provided with an electric push rod B, and the piston rod of the electric push rod B is inserted into the first guide groove and connected to the first slider pair.

[0013] As a further description of the above technical solution: Two symmetric filter plates are installed below the interior of the cleaning machine. The filter plates adopt an inclined structure with a gradually decreasing height from both sides to the middle of the cleaning machine. A sedimentation tank is installed below the interior of the cleaning machine. The inner bottom plate of the cleaning machine above the sedimentation tank adopts a porous structure, so that the sediment during cleaning can pass through the holes and precipitate into the sedimentation tank. A drain pipe is arranged below one side of the cleaning machine.

[0014] In the above technical solution, a computer plastic shell forming and cleaning device provided by the present invention divides the internal space of the cleaning machine into a flushing area, a cleaning area, and a drying area. The three areas can continuously perform two types of cleaning and drying on the computer plastic shell. This not only improves the comprehensiveness and thoroughness of the internal and external cleaning of the special-shaped structure shell of the computer plastic shell, but also reduces the subsequent drying process of the computer plastic shell, reduces the processing cost. At the same time, this continuous operation method improves the cleaning and processing efficiency of the computer plastic shell; Through the ingenious design of the structures of the flushing mechanism, the drying mechanism, and the shell fixing mechanism, the computer plastic shell can rotate during the flushing and drying processes, making the flushing and drying more thorough and comprehensive. The flushing and drying adopt an internal and external compatible method, so that there are no dead corners in the flushing and drying. For the cleaning and drying of special-shaped structural parts with many special areas such as computer shells, it is more thorough. At the same time, for the structural design of the flushing mechanism and the drying mechanism, the forces exerted on the computer plastic shell during the internal and external spraying and blowing processes can cancel each other out, so that the influence of the internal and external impact difference on the stability of the computer plastic shell can be avoided, and the equipment pressure can be reduced. Brief Description of the Drawings

[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained according to the provided drawings without creative efforts.

[0016] Figure 1 It is a schematic diagram of the overall structure of a computer plastic shell forming and cleaning device provided by the present invention; Figure 2Another perspective structural diagram of a computer plastic shell forming and cleaning device provided by the present invention; Figure 3 Structural diagram when a computer plastic shell is installed inside a computer plastic shell forming and cleaning device provided by the present invention; Figure 4 Structural diagram when no computer plastic shell is installed inside a computer plastic shell forming and cleaning device provided by the present invention; Figure 5 Schematic diagram of a flushing mechanism in a computer plastic shell forming and cleaning device provided by the present invention; Figure 6 Another perspective structural diagram of a flushing mechanism in a computer plastic shell forming and cleaning device provided by the present invention; Figure 7 Schematic diagram of a drying mechanism in a computer plastic shell forming and cleaning device provided by the present invention; Figure 8 Installation structural diagram of a shell fixing mechanism in a computer plastic shell forming and cleaning device provided by the present invention; Figure 9 Schematic diagram of a shell fixing mechanism in a computer plastic shell forming and cleaning device provided by the present invention; Figure 10 Schematic diagram of a water baffle curtain mechanism in a computer plastic shell forming and cleaning device provided by the present invention.

[0017] Description of the drawings: 1. Cleaning machine; 100. Pick-and-place opening; 101. Drain pipe; 102. Sedimentation tank; 103. Ultrasonic generator; 104. Filter plate; 2. Area control mechanism; 200. Area adjustment motor; 201. Main shaft; 202. Gear; 203. Main body frame; 204. Tooth ring; 3. Flushing mechanism; 30. Control component; 300. Electric push rod A; 301. Linkage frame; 3010. First slider pair; 302. Slide table; 3020. Electric push rod B; 3021. Second slider pair; 3022. First guide groove; 303. Carrier plate; 3030. Second guide groove; 3031. Triangular support plate; 31. Flushing component; 310. Fixed liquid rack; 311. Movable liquid rack; 3110. Inner rack; 3111. Outer rack; 312. Cleaning liquid spray head; 313. Liquid path main pipe; 314. Pump; 315. Liquid path hose; 4. Drying mechanism; 400. Hot air blower; 401. Movable air rack; 4010. Inner air rack; 4011. Outer air rack; 402. Air nozzle; 403. Fixed air rack; 404. Air path main pipe; 405. Air hood; 406. Air path hose; 5. Computer plastic shell; 6. Housing fixing mechanism; 600. Spin motor; 601. Rear frame; 6010. Balance support plate; 602. Front frame; 6020. Balance chute; 603. Adsorption fixing component; 604. Electric push rod C; 7. Water baffle curtain mechanism; 700. Baffle curtain control motor; 701. Slide carriage; 7010. Chute; 702. Foldable baffle curtain; 7020. Hanging buckle. Detailed implementation mode

[0018] The following description is essentially exemplary only and is not intended to limit the present disclosure, application, and uses. It should be understood that in all these drawings, the same or similar reference numerals indicate the same or similar parts and features. Each drawing only schematically shows the concept and principle of the implementation mode of the present disclosure, and does not necessarily show the specific dimensions and their ratios of each implementation mode of the present disclosure. Specific parts in a specific drawing may adopt an exaggerated way to illustrate the relevant details or structures of the implementation mode of the present disclosure.

[0019] Embodiment 1 As Figures 1 - 10 shown: This embodiment provides a technical solution: A computer plastic housing forming and cleaning device is applied to the cleaning of special-shaped computer plastic housings. It includes a cleaning machine 1, a housing fixing mechanism 6, and a regional control mechanism 2. Among them, the internal space of the cleaning machine 1 is divided into three regions, including a flushing region, a drying region located above the cleaning machine 1, and a cleaning region located below the cleaning machine 1. The housing fixing mechanism 6 is arranged inside the cleaning machine 1 and is used to fix the computer plastic housing 5 to be cleaned. The regional control mechanism 2 is arranged inside the cleaning machine 1 and is used to support the housing fixing mechanism 6 and control the housing fixing mechanism 6 to switch among the three regions; Inside the cleaning machine 1, a flushing mechanism 3 is installed in the flushing region, an ultrasonic generator 103 is installed in the cleaning region, and a drying mechanism 4 is installed in the drying region; Working principle: When this device is actually applied, an external manipulator grabs the computer plastic housing 5 to be cleaned into the flushing region, fixes it in the flushing region through the housing fixing mechanism 6, and then the flushing mechanism 3 in the flushing region flushes the computer plastic housing 5. After flushing is completed, the regional control mechanism 2 controls the housing fixing mechanism 6 that fixes the computer plastic housing 5 to switch to the cleaning region. The ultrasonic generator 103 cooperates with the cleaning liquid in the cleaning region to achieve double cleaning of the computer plastic housing 5. After two cleanings, the regional control mechanism 2 controls the housing fixing mechanism 6 that fixes the computer plastic housing 5 to switch to the drying region again. In the drying region, the drying mechanism 4 blows dry the surface of the computer plastic housing 5 in all directions, and then the external manipulator grabs out the computer plastic housing 5 to complete the cleaning process; By adopting the above technical solution: the device divides the internal space of the cleaning machine 1 into a flushing area, a cleaning area, and a drying area. The three areas can continuously clean and dry the computer plastic shell 5 twice. This not only improves the comprehensiveness of the cleaning of the computer plastic shell 5 but also reduces the subsequent drying process for the computer plastic shell 5, lowering the processing cost. At the same time, this continuous operation method improves the cleaning and processing efficiency of the computer plastic shell 5.

[0020] Embodiment 2 As Figure 8 、 Figure 9 shown, in order to achieve the regional conversion of the housing fixing mechanism 6, this embodiment provides a technical solution. On the basis of Embodiment 1, in this embodiment, the area control mechanism 2 includes a main body frame 203. The main body frame 203 adopts a triangular structure. There are three housing fixing mechanisms 6 in total, which are respectively installed at the three corner positions of the main body frame 203; The middle part of the main body frame 203 is rotatably installed on the inner wall of the cleaning machine 1 through a main shaft 201. A toothed ring 204 is sleeved on the main shaft 201. A gear 202 meshed with the toothed ring 204 is also rotatably installed on the inner wall of the cleaning machine 1. An area adjustment motor 200 for controlling the rotation of the gear 202 is installed outside the cleaning machine 1. When the area adjustment motor 200 is running, through the meshing action of the gear 202 and the toothed ring 204, the entire main body frame 203 is driven to rotate through the main shaft 201, so that the housing fixing mechanism 6 on the main body frame 203 performs regional conversion.

[0021] Specifically, as Figure 8 、 Figure 9 shown, in order to fix the computer plastic shell 5, in this embodiment, the housing fixing mechanism 6 includes a rear frame 601 installed on the surface of the main body frame 203 and a front frame 602 movably connected to the rear frame 601. An adsorption fixing component 603 for fixing the computer plastic shell 5 is installed on the front surface of the front frame 602.

[0022] Specifically, as Figure 8 、 Figure 9 shown, in order to improve the comprehensiveness and thoroughness of the cleaning of the computer plastic shell 5, in this embodiment, the housing fixing mechanism 6 further includes a self-rotation motor 600. The self-rotation motor 600 is installed on one side of the main body frame 203. The output shaft of the self-rotation motor 600 is connected to the center of the rear frame 601, so that when the self-rotation motor 600 is running, it can drive the rear frame 601 and the front frame 602 to rotate, thereby making the computer plastic shell 5 rotate, and further improving the comprehensiveness and thoroughness of the cleaning.

[0023] Specifically, as Figure 8 、 Figure 9As shown, since the computer plastic shell 5 has a hollow interior and an open structure with one side open, in order to enable the subsequent flushing mechanism 3 and drying mechanism 4 to fully flush and dry its interior, in this embodiment, a balance support plate 6010 is installed at the edge of the rear frame 601. A balance chute 6020 is provided at the edge of the front frame 602 at the same horizontal position as the balance support plate 6010. The balance support plate 6010 is slidably inserted into the balance chute 6020. An electric push rod C604 is installed in the middle of one side of the front frame 602. The piston rod of the electric push rod C604 passes through the front frame 602 and is connected to the center of the rear frame 601. Such a structural arrangement enables the front frame 602 to move horizontally when the electric push rod C604 is operating, thereby changing the horizontal position of the computer plastic shell 5, and cooperating with some flushing and drying structures of the flushing mechanism 3 and drying mechanism 4 to enter the interior of the computer plastic shell 5, realizing flushing and drying from the inside to the outside. The setting of the balance support plate 6010 can share the pressure borne by the electric push rod C604, avoid damage to the piston rod of the electric push rod C604 due to compression, and improve the service life of the equipment.

[0024] Specifically, as Figures 5 - 6 shown, in order to achieve a full flush of the computer plastic shell 5 in the flushing area, in this embodiment, the flushing mechanism 3 includes a flushing assembly 31 and a pump 314. Among them, the flushing assembly 31 includes a fixed liquid rack 310 and a movable liquid rack 311. The fixed liquid rack 310 is installed on the inner wall of the cleaning machine 1, corresponding to the outer side of the back of the computer plastic shell 5. The movable liquid rack 311 is movably installed inside the cleaning machine 1 through a control assembly 30. A number of cleaning liquid spray nozzles 312 are equidistantly installed on one side of the fixed liquid rack 310 and the movable liquid rack 311 relative to the computer plastic shell 5. Channels for the cleaning liquid to flow are provided inside the fixed liquid rack 310 and the movable liquid rack 311; The pump 314 is installed at the bottom of the cleaning machine 1. The pump 314 is connected to the fixed liquid rack 310 through a liquid main pipe 313 and is connected to the movable liquid rack 311 through the liquid main pipe 313 and a liquid hose 315. Based on this, when the pump 314 operates, the cleaning liquid inside the cleaning machine 1 is supplied to the cleaning liquid spray nozzles 312 through the liquid main pipe 313 and the liquid hose 315, and the inside and outside of the computer plastic shell 5 are fully flushed through the cleaning liquid spray nozzles 312.

[0025] Specifically, as Figures 5 - 6As shown in the figure, in order to reduce the damage caused by the local force on the plastic computer housing 5 during flushing, which may lead to an increase in pressure and damage to the housing fixing mechanism 6 or cause the plastic computer housing 5 to become loose. In this embodiment, the movable liquid rack 311 includes an inner rack 3110 and an outer rack 3111. Among them, both the inner rack 3110 and the outer rack 3111 adopt an L-shaped structure. The outer rack 3111 is connected to one end of the inner rack 3110, so that the section where the inner rack 3110 is connected to the outer rack 3111 and the outer rack 3111 form a U-shaped structure, enclosing one side wall of the plastic computer housing 5, and the other section of the inner rack 3110 corresponds to the inner side of the back of the plastic computer housing 5.

[0026] It should be noted that the inner rack 3110 and the outer rack 3111 are on the same horizontal plane, and the distances between the section where the inner rack 3110 is connected to the outer rack 3111, the outer rack 3111 and the side wall of the plastic computer housing 5 are the same. Therefore, during flushing, the impact forces generated by the cleaning liquid nozzles 312 on the corresponding sections of the inner rack 3110 and the outer rack 3111 spraying water on the plastic computer housing 5 can cancel each other out and be reduced. Moreover, the impact forces generated by the cleaning liquid nozzles 312 on the other section of the inner rack 3110 and the movable liquid rack 311 spraying water on the plastic computer housing 5 can also cancel each other out and be reduced. In this way, the impact force difference on the plastic computer housing 5 is relatively small, thus achieving the effect of protecting the plastic computer housing 5 and improving its fixing stability.

[0027] Specifically, as Figures 6 - 7 shown, in order to achieve the full drying of the plastic computer housing 5 in the drying area, in this embodiment, the drying mechanism 4 includes: A movable air rack 401 that is movably installed inside the cleaning machine 1 through a control component 30; A fixed air rack 403 installed on the inner wall of the cleaning machine 1; An air hood 405 installed on the inner wall of the cleaning machine 1; A hot air blower 400 installed outside the cleaning machine 1 for supplying air to the air hood 405; Among them, air paths are provided inside both the movable air rack 401 and the fixed air rack 403. A plurality of air nozzles 402 are equidistantly installed on the side of the movable air rack 401 and the fixed air rack 403 facing the plastic computer housing 5. The air path inside the movable air rack 401 is connected to the air hood 405 through an air path hose 406, and the air path inside the fixed air rack 403 is connected to the air hood 405 through an air path main pipe 404; The movable air rack 401 includes an inner air rack 4010 and an outer air rack 4011. Among them, both the inner air rack 4010 and the outer air rack 4011 adopt an L-shaped structure. The outer air rack 4011 is connected to one end of the inner air rack 4010, so that the section where the inner air rack 4010 is connected to the outer air rack 4011 and the outer air rack 4011 form a U-shaped structure, enclosing one side wall of the plastic computer housing 5, and the other section of the inner air rack 4010 corresponds to the inner side of the back of the plastic computer housing 5.

[0028] It should be noted that the inner air rack 4010 and the outer air rack 4011 are on the same horizontal plane, and the distance between the section where the inner air rack 4010 is connected to the outer air rack 4011 and the side wall of the computer plastic shell 5 is the same as that between the outer air rack 4011 and the side wall of the computer plastic shell 5. Therefore, when flushing, the impact forces generated by the air nozzles 402 on the corresponding sections of the inner air rack 4010 and the outer air rack 4011 against the computer plastic shell 5 can cancel each other out and be reduced. In addition, the impact forces generated by the air nozzles 402 on the other section of the inner air rack 4010 and the moving air rack 401 against the computer plastic shell 5 can also cancel each other out and be reduced. In this way, the difference in the impact force on the computer plastic shell 5 is relatively small, thus achieving the effect of protecting the computer plastic shell 5 and improving its fixing stability.

[0029] Specifically, as Figures 5 - 7 shown, in order to control the moving liquid rack 311 and the moving air rack 401 and ensure the stability of the computer plastic shell 5 during cleaning and drying, in this embodiment, the control component 30 includes a carrier plate 303, a sliding table 302, an electric push rod A300 and a link frame 301. Among them, the carrier plate 303 is welded to the inner wall of the cleaning machine 1, and a triangular support plate 3031 is installed at the bottom of the carrier plate 303 to increase the support strength of the carrier plate 303. A second guide groove 3030 is formed on the upper surface of the carrier plate 303. The sliding table 302 is arranged above the carrier plate 303, and a second slider pair 3021 is installed at the bottom of the sliding table 302. The second slider pair 3021 is slidably assembled in the second guide groove 3030, enabling the sliding table 302 to slide along the direction of the second guide groove 3030. The electric push rod A300 is installed outside the cleaning machine 1, and the piston rod of the electric push rod A300 penetrates into the cleaning machine 1 and is connected to the sliding table 302. A first slider pair 3010 is installed on one side of the link frame 301. A first guide groove 3022 is formed along the length direction on the side of the sliding table 302 relative to the computer plastic shell 5. The first slider pair 3010 is slidably installed in the first guide groove 3022. An electric push rod B3020 is installed at one end of the sliding table 302, and the piston rod of the electric push rod B3020 is inserted into the first guide groove 3022 and is connected to the first slider pair 3010.

[0030] It should be noted that: The connecting rod frame 301 is used to connect the movable liquid frame 311 and the movable gas frame 401 with the corresponding first slider pair 3010. During the operation of the device, when it is necessary to pick up or install the computer plastic shell 5 in the flushing area or the drying area, or when it is necessary to change the position of the computer plastic shell 5, the electric push rod A300 controls the slide table 302 to move backward, and the electric push rod C604 controls the front frame 602 to move backward, so that the overall distance between the movable liquid frame 311 and the movable gas frame 401 and the front frame 602 increases until the distance between the movable liquid frame 311 and the movable gas frame 401 and the adsorption and fixing component 603 on the front frame 602 is sufficient to accommodate the computer plastic shell 5, and then stop. At this time, the computer plastic shell 5 can be picked up, installed, or the area where the computer plastic shell 5 is located can be changed. After picking up, installing, or changing the position in place, reverse control is used to move the movable liquid frame 311 and the movable gas frame 401 to the predetermined position for flushing and drying. During the flushing and drying process, since the computer plastic shell 5 will rotate, and the computer plastic shell 5 is a non-circular structure, when the computer plastic shell 5 rotates, the relative position interval between the movable liquid frame 311 and the movable gas frame 401 and the computer plastic shell 5 will change. At this time, the electric push rod B3020 makes the lateral position of the movable liquid frame 311 and the movable gas frame 401 change by pushing the first slider pair 3010, so that the relative position interval between the movable liquid frame 311 and the movable gas frame 401 and the computer plastic shell 5 can always be kept fixed, thereby ensuring that the computer plastic shell 5 can always be relatively evenly stressed during the process of rotating flushing and drying, and thus improving the stability of the flushing and drying process.

[0031] Specifically, as Figures 2 - 3 shown, in order to reduce the cleanliness of the cleaning liquid during reuse, in this embodiment, two symmetric filter plates 104 are installed below the inside of the cleaning machine 1. The filter plates 104 adopt an inclined structure with a gradually decreasing height from both sides of the cleaning machine 1 to the middle. A sedimentation tank 102 is installed below the inside of the cleaning machine 1. The inner bottom plate of the cleaning machine 1 above the sedimentation tank 102 adopts a porous structure, so that the sediment during cleaning can pass through the holes and precipitate into the sedimentation tank 102, which is convenient for subsequent cleaning. A drain pipe 101 is provided below one side of the cleaning machine 1. It should be noted that: The sedimentation tank 102 can be drawn out from below one side of the cleaning machine 1. An observation lens capable of observing the internal conditions of the flushing area, the drying area, and the cleaning area is provided on the front surface of the cleaning machine 1.

[0032] Specifically, in order to facilitate the picking up and placing of the computer plastic shell 5, pick-up and placement openings 100 are provided at the top of the cleaning machine 1 in the flushing area and the drying area. A door controlled by a motor is installed on the pick-up and placement openings 100. The pick-up and placement openings 100 are opened when it is necessary to pick up or place the computer plastic shell 5, and the pick-up and placement openings 100 are closed after picking up and placing are completed. In addition, a vent hole structure is provided above the cleaning machine 1.

[0033] Furthermore, as Figure 3, Figure 4 and Figure 10 In order to prevent water from splashing into the drying area during rinsing and affecting drying, in the present embodiment, a water retaining curtain mechanism 7 is provided between the rinsing area and the drying area inside the cleaning machine 1. The water retaining curtain mechanism 7 includes a slide 701 installed on the upper part of the cleaning machine 1 and a foldable curtain 702 suspended under the slide 701. The foldable curtain 702 can slide open along the slide 701 to block the rinsing area and the drying area (applied when rinsing is turned on), or be folded to one end of the slide 701 to connect the rinsing area and the drying area (applied when the computer plastic shell 5 needs to be converted).

[0034] Furthermore, in order to achieve the folding of the foldable curtain 702, in the present embodiment, a slide groove 7010 is provided at the bottom of the slide frame 701 along the length direction, and a plurality of hooks 7020 are slidably installed inside the slide groove 7010, and the hooks 7020 are connected to the top of the foldable curtain 702. Curtain control motors 700 are provided on both sides of the cleaning machine 1, and the output shafts of the two curtain control motors 700 pull the hooks 7020 to move through the traction rope structure to achieve the folding or opening of the foldable curtain 702. Specifically, the hook 7020 at one end is fixed, and two traction ropes are respectively connected to the hook 7020 at the other end, and the other ends of the two traction ropes are respectively wrapped around the output shafts of the two curtain control motors 700. When one of the curtain control motors 700 retracts the rope and the other curtain control motor 700 releases the rope, the end movable hook 7020 can be pulled to fold or open the foldable curtain 702.

[0035] The exemplary implementation scheme of the present disclosure is described in detail above with reference to the preferred embodiments. However, it can be understood by those skilled in the art that, without departing from the concept of the present disclosure, various modifications and variations can be made to the above-mentioned specific embodiments, and various technical features and structures proposed in the present disclosure can be combined in various ways without exceeding the protection scope of the present disclosure, which is determined by the attached claims.

Claims

1. A computer plastic shell forming and cleaning device is applied to the cleaning of special-shaped computer plastic shells, and is characterized in that, It includes: A cleaning machine (1), the internal space of which is divided into three areas, including a flushing area, a drying area located above the cleaning machine (1), and a cleaning area located below the cleaning machine (1); A housing fixing mechanism (6), which is arranged inside the cleaning machine (1) and is used to fix the computer plastic housing (5) to be cleaned; An area control mechanism (2), which is arranged inside the cleaning machine (1), is used to support the housing fixing mechanism (6), and controls the housing fixing mechanism (6) to be converted among the three areas; Among them, a flushing mechanism (3) is installed inside the cleaning machine (1) in the flushing area, an ultrasonic generator (103) is installed in the cleaning area, and a drying mechanism (4) is installed in the drying area. The flushing mechanism (3) includes a flushing component (31). The flushing component is composed of a fixed liquid rack (310) fixedly installed on the inner wall of the cleaning machine (1) and a movable liquid rack (311) movably installed inside the cleaning machine (1) through a control component (30). The movable liquid rack (311) includes an inner rack (3110) and an outer rack (3111). Both the inner rack (3110) and the outer rack (3111) adopt an L-shaped structure. One end of the outer rack (3111) is connected to the inner rack (3110), so that a section where the inner rack (3110) is connected to the outer rack (3111) and the outer rack (3111) form a U-shaped structure to enclose one side wall of the computer plastic housing (5), and the other section of the inner rack (3110) corresponds to the inner side of the back of the computer plastic housing (5).

2. The forming and cleaning device for a computer plastic shell according to claim 1, characterized in that, The area control mechanism (2) includes a main body frame (203). The main body frame (203) adopts a triangular structure. There are three housing fixing mechanisms (6) in total, which are respectively installed at three corner positions of the main body frame (203); The middle part of the main body frame (203) is rotatably installed on the inner wall of the cleaning machine (1) through a main shaft (201). A toothed ring (204) is sleeved and installed on the main shaft (201). A gear (202) meshed with the toothed ring (204) is also rotatably installed on the inner wall of the cleaning machine (1). An area adjustment motor (200) for controlling the rotation of the gear (202) is installed outside the cleaning machine (1).

3. The forming and cleaning device for a computer plastic shell according to claim 2, characterized in that, The housing fixing mechanism (6) includes a rear frame (601) installed on the surface of the main body frame (203) and a front frame (602) movably connected to the rear frame (601). An adsorption fixing component (603) for fixing the computer plastic housing (5) is installed on the front surface of the front frame (602).

4. A computer plastic shell forming and cleaning device according to claim 3, characterized in that, The housing fixing mechanism (6) further includes a self-rotation motor (600). The self-rotation motor (600) is installed on one side of the main body frame (203). The output shaft of the self-rotation motor (600) is connected to the center of the rear frame (601), so that when the self-rotation motor (600) operates, it can drive the rear frame (601) and the front frame (602) to rotate.

5. A computer plastic shell molding and cleaning device according to claim 4, wherein, A balance support plate (6010) is installed at the edge of the rear frame (601). A balance sliding groove (6020) is provided at the edge of the front frame (602) at the same horizontal position as the balance support plate (6010). The balance support plate (6010) is slidably inserted into the balance sliding groove (6020). An electric push rod C (604) is installed in the middle of one side of the front frame (602). The piston rod of the electric push rod C (604) passes through the front frame (602) and is connected to the center of the rear frame (601).

6. The forming and cleaning device for a computer plastic housing according to claim 5, wherein, The fixed liquid rack (310) corresponds to the outer side of the back of the computer plastic shell (5). A number of cleaning liquid spray nozzles (312) are equidistantly installed on one side of the fixed liquid rack (310) and the movable liquid rack (311) relative to the computer plastic shell (5). Channels for the cleaning liquid to flow are provided in the fixed liquid rack (310) and the movable liquid rack (311). The flushing mechanism further includes a pump (314) installed at the bottom of the cleaning machine (1). The pump (314) is connected to the fixed liquid rack (310) through a liquid path main pipe (313), and is connected to the movable liquid rack (311) through the liquid path main pipe (313) and a liquid path hose (315).

7. A computer plastic shell molding cleaning device according to claim 5, wherein The drying mechanism (4) includes: A movable air rack (401) movably installed inside the cleaning machine (1) through a control component (30); A fixed air rack (403) installed on the inner wall of the cleaning machine (1); An air hood (405) installed on the inner wall of the cleaning machine (1); A hot air blower (400) installed outside the cleaning machine (1) for supplying air to the air hood (405); Wherein, air paths are provided in both the movable air rack (401) and the fixed air rack (403). A plurality of air nozzles (402) are equidistantly installed on one side of the movable air rack (401) and the fixed air rack (403) relative to the computer plastic shell (5). The air path in the movable air rack (401) is connected to the air hood (405) through an air path hose (406). The air path connection in the fixed air rack (403) is connected to the air hood (405) through an air path main pipe (404); The movable air rack (401) includes an inner air rack (4010) and an outer air rack (4011). Among them, both the inner air rack (4010) and the outer air rack (4011) adopt an L-shaped structure. The outer air rack (4011) is connected to one end of the inner air rack (4010), so that a section where the inner air rack (4010) is connected to the outer air rack (4011) and the outer air rack (4011) form a U-shaped structure to enclose one side wall of the computer plastic shell (5). The other section of the inner air rack (4010) corresponds to the inner side of the back of the computer plastic shell (5).

8. A computer plastic shell molding cleaning device according to any one of claims 6-7, characterized in that, The control component (30) includes: A bearing plate (303) welded to the inner wall of the cleaning machine (1). A second guide groove (3030) is provided on the upper surface of the bearing plate (303); A slide table (302) is arranged above the bearing plate (303). A second slider pair (3021) is installed at the bottom of the slide table (302). The second slider pair (3021) is slidably assembled in the second guide groove (3030), enabling the slide table (302) to slide along the direction of the second guide groove (3030). An electric push rod A (300) is installed outside the cleaning machine (1). The piston rod of the electric push rod A (300) penetrates into the interior of the cleaning machine (1) and is connected to the slide table (302). A connecting rod frame (301) has a first slider pair (3010) installed on one side thereof. Among them, a first guide groove (3022) is formed along the length direction on one side of the slide table (302) relative to the computer plastic shell (5). The first slider pair (3010) is slidably installed in the first guide groove (3022). An electric push rod B (3020) is installed at one end of the slide table (302). The piston rod of the electric push rod B (3020) is inserted into the first guide groove (3022) and is connected to the first slider pair (3010).

9. A computer plastic shell molding cleaning device according to claim 1, wherein, Two symmetrical filter plates (104) are installed below the interior of the cleaning machine (1). The filter plates (104) adopt an inclined structure with a gradually decreasing height from both sides to the middle of the cleaning machine (1). A sedimentation tank (102) is installed below the interior of the cleaning machine (1). The inner bottom plate of the cleaning machine (1) above the sedimentation tank (102) adopts a porous structure, enabling the sediment during cleaning to precipitate into the sedimentation tank (102) through the holes. A drain pipe (101) is arranged below one side of the cleaning machine (1).

Citation Information

Patent Citations

  • A cleaning device for motor housing

    CN118305129B