A cleaning device for general parts production

CN224794110UActive Publication Date: 2026-09-25CHINESE TEXTILE MACHINERY DALIAN SOLENOID VALVES MFG CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202522315108.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-31
Publication Date
2026-09-25
Estimated Expiration
2035-10-31

AI Technical Summary

Technical Problem

[0005]本实用新型提供了一种通用零件生产用清洗设备,通过清洗机构,能实现浸泡与高压冲洗相结合的多阶段清洗方式,能够更全面、深入地清洁零件,有效解决了传统清洗方式仅依靠清洗液简单接触,清洗效果不佳的问题,大大提高了零件的清洁度

Benefits of technology

[0012]本实用新型提供了一种通用零件生产用清洗设备。具备以下有益效果:该通用零件生产用清洗设备,通过清洗机构,能实现浸泡与高压冲洗相结合的多阶段清洗方式,能够更全面、深入地清洁零件,有效解决了传统清洗方式仅依靠清洗液简单接触,清洗效果不佳的问题,大大提高了零件的清洁度。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224794110U_ABST
    Figure CN224794110U_ABST
Patent Text Reader

Abstract

The utility model discloses a kind of cleaning equipment for general part production, it is related to part production with technical field.Use including: washing tank, rotary frame, rotate and be embedded in the inner wall of washing tank, first servo motor, through bolt installation in the outer wall side of washing tank, rotary frame is fixedly arranged in the output end of first servo motor, cleaning mechanism, be located in rotary frame, cleaning mechanism includes flushing component, three filter cartridges, driving part and three groups of opening and closing components, flushing component is located on washing tank, every filter cartridge is along circumferential direction rotation and be embedded in the inner wall of rotary frame, driving part is located on rotary frame, every group of opening and closing components is located on filter cartridge.The cleaning equipment for general part production of the utility model, through cleaning mechanism, can realize the multi-stage cleaning mode of combination of soaking and high-pressure flushing, can more comprehensive, in-depth cleaning part, effectively solve the problem that traditional cleaning mode only relies on simple contact of cleaning fluid, and cleaning effect is not good.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the technical field of parts manufacturing, specifically a general-purpose cleaning device for parts manufacturing. Background Technology

[0002] Parts are individual components used to assemble machines. During the production and processing of parts, they usually need to be cleaned. Currently, they are mostly cleaned manually or rinsed with water pipes. This not only consumes a lot of manpower, but also results in poor cleaning quality, low cleaning efficiency, and inconvenience in removing the parts after cleaning.

[0003] The patent application number "CN215997826U" describes "a general-purpose cleaning device for parts production, comprising a housing, a servo motor installed at the inner bottom of the housing, a cleaning mechanism fixedly connected to the end of the output shaft of the servo motor, a connecting mechanism rotatably connected to the inner bottom of the housing, a first conveyor belt connecting the connecting mechanism and the end of the output shaft of the servo motor, a transmission mechanism matching the connecting mechanism installed on the inner side wall of the housing, the transmission mechanism and the cleaning mechanism connected by a second conveyor belt, and a drainage mechanism penetrating through the side wall of the housing. This utility model has a reasonable structural design, which not only allows the parts to be cleaned to fully contact the cleaning liquid for cleaning, ensuring cleaning quality, but also facilitates the removal of the parts after cleaning, ensuring cleaning efficiency."

[0004] The aforementioned patent enables the parts to be cleaned to come into full contact with the cleaning solution for cleaning, ensuring cleaning quality. However, the cleaning method of the aforementioned patent is relatively simple, only relying on the cleaning solution to come into full contact with the parts to be cleaned for cleaning. The cleaning effect is poor, and the cleaning solution will gradually become dirty during the cleaning process. The impurities that are cleaned will still adhere to the parts, reducing the cleaning effect. Utility Model Content

[0005] This utility model provides a general-purpose cleaning equipment for parts production. Through the cleaning mechanism, it can realize a multi-stage cleaning method that combines soaking and high-pressure rinsing, which can clean parts more comprehensively and thoroughly. It effectively solves the problem that traditional cleaning methods rely solely on simple contact with cleaning fluid, resulting in poor cleaning effect, and greatly improves the cleanliness of parts.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a general-purpose cleaning device for parts production, comprising: Cleaning box; The rotating frame is rotatably embedded in the inner wall of the cleaning tank; The first servo motor is bolted to one side of the outer wall of the cleaning tank, and the rotating frame is fixedly set at the output end of the first servo motor. A cleaning mechanism is mounted on a rotating frame. The cleaning mechanism includes a rinsing component, three filter cartridges, a driving component, and three sets of opening and closing components. The rinsing component is mounted on the cleaning tank. Each filter cartridge is rotatably embedded in the inner wall of the rotating frame in a circumferential direction. The driving components are all mounted on the rotating frame. Each set of opening and closing components is mounted on a filter cartridge.

[0007] Furthermore, the rinsing component includes a rinsing frame, a rinsing pipe, and multiple high-pressure nozzles. The rinsing frame is fixedly mounted on the top of the outer wall of the rotating frame; the rinsing pipe is installed on the top of the inner wall of the rinsing frame, and each of the high-pressure nozzles is equidistantly mounted on one side of the outer wall of the rinsing pipe in a horizontal direction.

[0008] Furthermore, the drive component includes a second servo motor and two sets of transmission components. The second servo motor is bolted to one side of the outer wall of the rotating frame. One of the filter cartridges is fixedly disposed at the output end of the second servo motor. Each set of transmission components is disposed between every two filter cartridges.

[0009] Furthermore, each of the transmission components includes two transmission wheels and a transmission belt. Each transmission wheel is fixedly sleeved on the outer wall of two filter cylinders, and each transmission wheel is driven to the other by the transmission belt.

[0010] Furthermore, each set of opening and closing components includes a shielding frame, a feed hole, and a rotating assembly. The shielding frame is movably sleeved on the outer wall of the filter cylinder, the feed hole is opened on one side of the outer wall of the filter cylinder, and the rotating assembly is disposed on the filter cylinder.

[0011] Furthermore, each set of rotating components includes a first gear, a second gear, and a forward and reverse motor. The first gear is fixedly sleeved on the outer wall of the shielding frame, the forward and reverse motor is bolted to one side of the outer wall of the filter cartridge, the second gear is fixedly sleeved on the outer wall of the forward and reverse motor, and the second gear meshes with the first gear.

[0012] This utility model provides a general-purpose cleaning equipment for parts production. It has the following advantages: This general-purpose cleaning equipment, through its cleaning mechanism, can achieve a multi-stage cleaning method combining soaking and high-pressure rinsing, enabling more comprehensive and thorough cleaning of parts. It effectively solves the problem of poor cleaning results caused by traditional cleaning methods that rely solely on simple contact with the cleaning fluid, greatly improving the cleanliness of the parts. Attached Figure Description

[0013] Figure 1 This is a perspective view of the present invention; Figure 2 This is a cross-sectional view of the cleaning box of this utility model; Figure 3 This is a cross-sectional view of the filter cartridge of this utility model; Figure 4 This is a partial structural schematic diagram of the cleaning mechanism of this utility model.

[0014] In the diagram: 1. Cleaning tank; 2. Rotating frame; 3. First servo motor; 4. Cleaning mechanism; 401. Filter cartridge; 402. Rinsing frame; 403. Rinsing pipe; 404. Second servo motor; 405. Transmission wheel; 406. Transmission belt; 407. Baffle frame; 408. Feed hole; 409. First gear; 410. Second gear; 411. Forward and reverse motor; 412. High-pressure nozzle. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0016] Please see Figure 1-4 This utility model provides a technical solution: a general-purpose cleaning device for parts production, comprising: Cleaning box 1; The rotating frame 2 is rotatably embedded in the inner wall of the cleaning tank 1; The first servo motor 3 is bolted to one side of the outer wall of the cleaning tank 1, and the rotating frame 2 is fixedly set at the output end of the first servo motor 3. The cleaning mechanism 4 is mounted on the rotating frame 2. The cleaning mechanism 4 includes a rinsing component, three filter cylinders 401, a driving component, and three sets of opening and closing components. The rinsing component is mounted on the cleaning tank 1. Each filter cylinder 401 is rotatably embedded in the inner wall of the rotating frame 2 in the circumferential direction. The driving components are all mounted on the rotating frame 2. Each set of opening and closing components is mounted on the filter cylinder 401.

[0017] In this implementation scheme: the cleaning tank 1 contains cleaning fluid. The rotating frame 2 is driven by the first servo motor 3 to rotate inside the cleaning tank 1, which can sequentially change the position of each filter cylinder 401, realizing the soaking and rinsing of the parts inside the filter cylinder 401, thereby improving cleaning efficiency and avoiding the shortcomings of simple cleaning methods that only rely on the cleaning fluid to fully contact the parts to be cleaned, resulting in poor cleaning effect. The cleaning fluid will gradually become dirty during the cleaning process, and the impurities washed off will still adhere to the parts. The filter cylinder 401 is used to place the parts to be cleaned and can rotate under the action of the driving component, so that the parts will continuously roll during the cleaning process, increasing the contact area with the cleaning fluid. The rinsing component provides a high-pressure rinsing water flow to powerfully rinse the surface of the parts and remove stains. The opening and closing component facilitates the insertion and removal of parts, improving the ease of operation of the equipment. The filter cylinder 401 and the shielding frame 407 have a certain porous structure, which allows the cleaning fluid to freely enter and exit, while preventing parts from falling off.

[0018] Specifically, the rinsing components include a rinsing frame 402, a rinsing pipe 403, and multiple high-pressure nozzles 412. The rinsing frame 402 is fixedly installed on the top of the outer wall of the rotating frame 2; the rinsing pipe 403 is installed on the top of the inner wall of the rinsing frame 402, and each high-pressure nozzle 412 is installed equidistantly on one side of the outer wall of the rinsing pipe 403 in the horizontal direction.

[0019] In this embodiment: the rinsing frame 402 provides support for the rinsing pipe 403. One end of the rinsing pipe 403 is connected to an external water source through a pipe. The high-pressure water flow generated by the high-pressure nozzle 412 strongly impacts the surface of the parts, effectively removing impurities such as oil and debris from the surface of the parts, thus improving the cleaning effect. Multiple high-pressure nozzles 412 are evenly distributed to ensure that the parts in all positions inside the filter cartridge 401 are rinsed evenly.

[0020] Specifically, the drive components include a second servo motor 404 and two sets of transmission components. The second servo motor 404 is bolted to one side of the outer wall of the rotating frame 2. One of the filter cartridges 401 is fixedly installed at the output end of the second servo motor 404. Each set of transmission components is located between every two filter cartridges 401.

[0021] In this embodiment, the second servo motor 404 drives one of the filter cylinders 401 to rotate on the rotating frame 2, and with the help of multiple sets of transmission components, the other filter cylinders 401 can rotate synchronously.

[0022] Specifically, each transmission assembly includes two transmission wheels 405 and a transmission belt 406. Each transmission wheel 405 is fixedly sleeved on the outer wall of two filter cylinders 401, and each transmission wheel 405 is driven by the transmission belt 406.

[0023] In this embodiment: when the second servo motor 404 drives one of the filter cylinders 401 to rotate, the transmission wheel 405 and the transmission belt 406 drive the other filter cylinders 401 to rotate synchronously. Through the rotation of the filter cylinders 401 themselves, the parts continuously tumble during the cleaning process, increasing the contact area with the cleaning liquid and improving the cleaning efficiency. A tensioning device can be set on the transmission belt 406 according to actual use needs.

[0024] Specifically, each set of opening and closing components includes a shielding frame 407, a feed hole 408, and a rotating assembly. The shielding frame 407 is movably sleeved on the outer wall of the filter cylinder 401, the feed hole 408 is opened on one side of the outer wall of the filter cylinder 401, and the rotating assembly is located on the filter cylinder 401.

[0025] In this embodiment: the shield 407 is used to control the opening and closing of the feed hole 408. The feed hole 408 is the channel for putting parts into and taking out the filter cylinder 401. The rotating component is used to drive the shield 407 to rotate, thereby realizing the opening and closing control of the feed hole 408.

[0026] Specifically, each rotating assembly includes a first gear 409, a second gear 410, and a forward / reverse motor 411. The first gear 409 is fixedly sleeved on the outer wall of the shield 407. The forward / reverse motor 411 is bolted to one side of the outer wall of the filter cartridge 401. The second gear 410 is fixedly sleeved on the outer wall of the forward / reverse motor 411, and the second gear 410 meshes with the first gear 409.

[0027] In this embodiment: when the forward and reverse motor 411 is started, the meshing transmission between the second gear 410 and the first gear 409 drives the shield 407 to rotate, thereby realizing the opening and closing of the feed hole 408. A reciprocating platform is provided on the cleaning box 1 for placing the cleaned parts. The power of the first servo motor 3, the second servo motor 404 and the forward and reverse motor 411 comes from an external power source, and they should be electrically connected to the external power source. The internal circuit principle and structure are common knowledge to those skilled in the art and will not be described in detail here. Their models can be selected according to the actual use.

[0028] In use, first start the forward / reverse motor 411. Through the meshing transmission of the second gear 410 and the first gear 409, the shielding frame 407 is driven to rotate, opening the feed hole 408. The general-purpose parts to be cleaned are placed into the filter cartridge 401 through the feed hole 408. Then, start the forward / reverse motor 411 again to close the feed hole 408. Next, start the first servo motor 3. The first servo motor 3 drives the rotating frame 2 to rotate, moving the filter cartridge 401 with the parts to be cleaned into the cleaning liquid in the cleaning tank 1. Then, start the second servo motor 404. When the second servo motor 404 drives one of the filter cartridges 401 to rotate, it drives the transmission wheel 405 to rotate. The transmission action of the drive belt 406 drives the other filter cylinders 401 to rotate synchronously. Through the rotation of the filter cylinders 401 themselves, the parts are constantly tumbling during the cleaning process, increasing the contact area with the cleaning liquid and improving the cleaning efficiency. The first servo motor 3 is started again to move the soaked filter cylinders 401 to the underside of the high-pressure nozzle 412. The high-pressure nozzle 412 sprays high-pressure water jets onto the parts in the filter cylinders 401, which powerfully impacts the surface of the parts, effectively removing impurities such as oil and debris from the surface of the parts and improving the cleaning effect. After cleaning is completed, the forward and reverse motors 411 are started again to open the feed hole 408 and the cleaned parts can be taken out.

[0029] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A general-purpose cleaning device for parts production, characterized in that, include: Cleaning box (1); The rotating frame (2) is rotatably embedded in the inner wall of the cleaning tank (1); The first servo motor (3) is bolted to one side of the outer wall of the cleaning tank (1), and the rotating frame (2) is fixedly set at the output end of the first servo motor (3); The cleaning mechanism (4) is located on the rotating frame (2). The cleaning mechanism (4) includes a rinsing component, three filter cylinders (401), a driving component, and three sets of opening and closing components. The rinsing component is located on the cleaning tank (1). Each filter cylinder (401) is rotatably embedded in the inner wall of the rotating frame (2) along the circumferential direction. The driving components are all located on the rotating frame (2). Each set of opening and closing components is located on the filter cylinder (401).

2. The cleaning equipment for general parts production according to claim 1, characterized in that: The rinsing components include a rinsing frame (402), a rinsing pipe (403), and multiple high-pressure nozzles (412). The rinsing frame (402) is fixedly installed on the top of the outer wall of the rotating frame (2). The rinsing pipe (403) is installed on the top of the inner wall of the rinsing frame (402). Each of the high-pressure nozzles (412) is installed equidistantly on one side of the outer wall of the rinsing pipe (403) in the horizontal direction.

3. The cleaning equipment for general parts production according to claim 2, characterized in that: The drive component includes a second servo motor (404) and two sets of transmission components. The second servo motor (404) is bolted to one side of the outer wall of the rotating frame (2). One of the filter cartridges (401) is fixedly disposed at the output end of the second servo motor (404). Each set of transmission components is disposed between every two filter cartridges (401).

4. The cleaning equipment for general parts production according to claim 3, characterized in that: Each of the transmission components includes two transmission wheels (405) and a transmission belt (406). Each transmission wheel (405) is fixedly sleeved on the outer wall of two filter cylinders (401), and each transmission wheel (405) is driven by the transmission belt (406).

5. A cleaning device for general parts production according to claim 4, characterized in that: Each set of opening and closing components includes a shield (407), a feed hole (408), and a rotating assembly. The shield (407) is movably sleeved on the outer wall of the filter cylinder (401), the feed hole (408) is opened on one side of the outer wall of the filter cylinder (401), and the rotating assembly is located on the filter cylinder (401).

6. The cleaning equipment for general parts production according to claim 5, characterized in that: Each set of rotating components includes a first gear (409), a second gear (410), and a forward / reverse motor (411). The first gear (409) is fixedly sleeved on the outer wall of the shield (407). The forward / reverse motor (411) is bolted to one side of the outer wall of the filter cartridge (401). The second gear (410) is fixedly sleeved on the outer wall of the forward / reverse motor (411), and the second gear (410) meshes with the first gear (409).

Citation Information

Patent Citations

  • Cleaning equipment for universal part production

    CN215997826U