Aluminum automobile part cleaning device
Through the design of the cleaning mechanism and drive components, the aluminum automotive parts cleaning device achieves continuous and multi-size adaptable cleaning, solving the problem of low efficiency in existing devices and improving work efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHOUKOU JINTAI METAL MATERIALS CO LTD
- Filing Date
- 2025-03-28
- Publication Date
- 2026-05-01
AI Technical Summary
Existing aluminum automotive parts cleaning equipment cannot operate continuously, resulting in low work efficiency and an inability to meet the cleaning needs of parts of different sizes.
By employing a cleaning mechanism, drive components, and drive mechanism in coordination, and through the design of rotating cylinder, guide rail, sliding plate, and nozzle, comprehensive cleaning of aluminum automotive parts can be achieved. The drive components can adjust the spacing of the sliding plates to accommodate different sizes, and combined with motor drive, continuous cleaning can be achieved.
It enables continuous cleaning of aluminum automotive parts, improves work efficiency, and can adapt to the cleaning needs of parts of different sizes.
Smart Images

Figure CN224181629U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of aluminum automotive parts, and specifically relates to a cleaning device for aluminum automotive parts. Background Technology
[0002] Aluminum automotive parts refer to automotive parts made of aluminum alloy materials. They are widely used in the automotive industry. These parts not only help reduce vehicle weight and improve fuel efficiency, but also enhance vehicle safety and performance. Currently, in the production process of aluminum automotive parts, special aluminum automotive parts cleaning equipment is required to tilt the aluminum automotive parts.
[0003] Existing aluminum automotive parts cleaning devices typically clean parts by placing them in a container and using multiple nozzles to spray cleaning fluid. While this method can achieve basic cleaning functions, it has some problems in actual operation. Specifically, after each cleaning, the cleaned parts need to be manually removed and new parts to be cleaned need to be placed in, which makes continuous operation impossible and reduces work efficiency. Utility Model Content
[0004] In view of this, the present invention provides a cleaning device for aluminum automotive parts, which can achieve comprehensive cleaning of aluminum automotive parts through the cooperation of a cleaning mechanism, a drive assembly and a drive mechanism. It can continuously clean aluminum automotive parts, greatly improve work efficiency, and meet the cleaning needs of aluminum automotive parts of different sizes.
[0005] To solve the above-mentioned technical problems, this utility model provides a cleaning device for aluminum automotive parts, including a mounting cover and a cleaning mechanism disposed thereon. The cleaning mechanism is used to clean aluminum automotive parts. The cleaning mechanism includes a rotating cylinder disposed on the upper end of the mounting cover. The lower end of the outer arc surface of the rotating cylinder is provided with symmetrically distributed guide rails. Sliding plates are slidably connected inside the guide rails. A transmission channel is provided inside the sliding plate. Multiple water inlets evenly arranged on the inner side of the sliding plate are provided with nozzles. The transmission channel is connected to the nozzles located on the same sliding plate. A driving component for driving the sliding plate to move is also provided between the rotating cylinder and the guide rails. Thus, comprehensive cleaning of aluminum automotive parts is achieved, and continuous cleaning of aluminum automotive parts is possible, which greatly improves work efficiency.
[0006] The cleaning mechanism also includes connecting pipes respectively set on one side of the upper end of the sliding plate. The liquid outlet end of the connecting pipe is connected to the adjacent transmission channel on the same side. The upper end of the rotating cylinder is provided with a diversion channel. The liquid inlet end of the connecting pipe is connected to the diversion channel. An annular plate is rotatably connected in the diversion channel. The outer arc surface of the annular plate is provided with a liquid inlet pipe, thus realizing the cleaning operation of aluminum automotive parts.
[0007] The drive assembly includes lead screws that are rotatably connected to the guide rails. The lead screws are threadedly connected to the threaded holes provided on the adjacent sliding plates on the same side. The lead screws pass through the corresponding openings at the lower end of the rotating cylinder and extend into them, thus meeting the cleaning needs of aluminum automotive parts of different sizes.
[0008] The drive assembly also includes a bevel gear 1 located on the inner end of the lead screw, an operating lever rotatably connected to the upper end of the rotating cylinder, and a bevel gear 2 located at the lower end of the operating lever. Both bevel gear 1 and bevel gear 2 are meshed and connected, thus achieving the purpose of synchronous drive.
[0009] The drive assembly also includes a locking bolt threaded to the upper end of the operating lever. The lower end of the locking bolt is in contact with the upper end of the rotating cylinder, thus ensuring the stability and reliability of the operating lever.
[0010] It also includes a drive mechanism, which is used to drive the rotating cylinder and its auxiliary mechanisms to rotate. The drive mechanism includes a mounting cavity set at the upper end of the mounting cover. The rotating cylinder is provided with a toothed ring on the outer arc surface of the inner cavity of the mounting cavity. A gear is rotatably connected to the upper end of the mounting cavity. The gear meshes with the toothed ring, which achieves the purpose of rapid driving.
[0011] The drive mechanism also includes a motor located on the upper end of the mounting cover. The output shaft of the motor is fixedly connected to the upper end of the gear, thus providing a drive source for the gear.
[0012] The beneficial effects of the above-mentioned technical solution of this utility model are as follows:
[0013] 1. The mounting cover and its auxiliary mechanisms are fixedly installed on the external aluminum automotive parts conveyor line. Then, the external water supply pipe is connected to the liquid inlet pipe. The external aluminum automotive parts conveyor line then operates, moving the aluminum automotive parts between two sliding plates. Subsequently, the external aluminum automotive parts conveyor line stops operating, and the external water supply pipe pumps the cleaning fluid through the liquid inlet pipe into the space between the diversion channel and the annular plate. The cleaning fluid entering the space between the diversion channel and the annular plate is then pumped into the transmission channel through connecting pipes and finally sprayed out by multiple nozzles. During this process, the motor starts, and its output shaft drives the gear to rotate. The gear drives the rotating cylinder and its auxiliary mechanisms to rotate synchronously through the toothed ring, thereby achieving comprehensive cleaning of the aluminum automotive parts. After cleaning, the motor stops operating, causing the sliding plates to approach the inner sides of the mounting cover. Then, the external aluminum automotive parts conveyor line operates again, transporting the next aluminum automotive parts to be cleaned between the two sliding plates. The above operation is repeated to achieve comprehensive cleaning of the aluminum automotive parts. This continuous cleaning of aluminum automotive parts greatly improves work efficiency.
[0014] 2. When aluminum automotive parts of different sizes are needed, rotate the operating lever, which will drive the second bevel gear at its lower end to rotate synchronously. When the second bevel gear rotates, it will drive the lead screw to rotate synchronously through the first bevel gear. As the lead screw rotates, it will drive the sliding plate to move along the guide rail, thereby adjusting the distance between the two sliding plates to meet the cleaning needs of aluminum automotive parts of different sizes. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the main structure of an aluminum automotive parts cleaning device according to the present invention;
[0016] Figure 2 This is a cross-sectional structural diagram of the present invention;
[0017] Figure 3 This is an enlarged structural diagram of point A in this utility model;
[0018] Figure 4 This is an enlarged structural diagram of section B of this utility model.
[0019] Explanation of reference numerals in the attached drawings: 100, mounting cover; 200, rotating cylinder; 201, guide rail; 202, sliding plate; 203, transmission channel; 204, nozzle; 205, connecting pipe; 206, diversion channel; 207, annular plate; 300, lead screw; 301, bevel gear one; 302, operating lever; 303, bevel gear two; 304, locking bolt; 400, mounting cavity; 401, toothed ring; 402, gear; 403, motor. Detailed Implementation
[0020] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the following will be described in conjunction with the accompanying drawings of the embodiments of this utility model. Figure 1-4 The technical solutions of the embodiments of this utility model are clearly and completely described herein. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the described embodiments of this utility model are within the protection scope of this utility model.
[0021] This embodiment provides a cleaning device for aluminum automotive parts, such as... Figure 1-4As shown: It includes a mounting cover 100 and a cleaning mechanism mounted thereon. The cleaning mechanism is used to clean aluminum automotive parts. The cleaning mechanism includes a rotating cylinder 200 mounted on the upper end of the mounting cover 100. The lower end of the outer arc surface of the rotating cylinder 200 is provided with symmetrically distributed guide rails 201. Each guide rail 201 is slidably connected to a sliding plate 202. Each sliding plate 202 is provided with a transmission channel 203. Multiple water inlets evenly arranged on the inner side of the sliding plate 202 are provided with nozzles 204. The transmission channel 203 is connected to the nozzles 204 located on the same sliding plate 202. A drive assembly for driving the sliding plate 202 to move is also provided between the rotating cylinder 200 and the guide rail 201.
[0022] First, the mounting cover 100 and its auxiliary mechanisms are fixedly installed on the external aluminum automotive parts conveyor line. Then, the external aluminum automotive parts conveyor line operates, moving the aluminum automotive parts between two sliding plates 202. Afterward, the external aluminum automotive parts conveyor line stops operating, and the cleaning fluid is pumped into the transmission channel 203 through the connecting pipe 205, and finally sprayed out by multiple nozzles 204. During this process, the drive mechanism drives the rotating cylinder 200 and its auxiliary mechanisms to rotate synchronously, thereby achieving comprehensive cleaning of the aluminum automotive parts. After cleaning, the drive mechanism stops operating, causing the sliding plates 202 to approach the inner sides of the mounting cover 100. Then, the external aluminum automotive parts conveyor line operates again, transporting the next aluminum automotive part to be cleaned between the two sliding plates 202. This process is repeated to achieve comprehensive cleaning of the aluminum automotive parts, enabling continuous cleaning and greatly improving work efficiency.
[0023] like Figure 1-4 As shown, the cleaning mechanism also includes connecting pipes 205 respectively disposed on one side of the upper end of the sliding plate 202. The liquid outlet end of the connecting pipe 205 is connected to the adjacent transmission channel 203 on the same side. The upper end of the rotating cylinder 200 is provided with a diversion channel 206. The liquid inlet end of the connecting pipe 205 is connected to the diversion channel 206. An annular plate 207 is rotatably connected inside the diversion channel 206. The outer arc surface of the annular plate 207 is provided with a liquid inlet pipe.
[0024] The external water supply pipe is connected to the liquid inlet pipe. The external water supply pipe pumps the cleaning fluid into the space between the diversion channel 206 and the annular plate 207 through the liquid inlet pipe. The cleaning fluid entering the space between the diversion channel 206 and the annular plate 207 is then pumped into the transmission channel 203 through the connecting pipe 205, and finally sprayed out by multiple nozzles 204, thereby realizing the cleaning operation of aluminum automotive parts.
[0025] like Figure 2-3As shown, the drive assembly includes lead screws 300 that are rotatably connected to the guide rail 201. The two lead screws 300 have opposite thread directions. The lead screws 300 are respectively threaded to the threaded holes provided on the adjacent sliding plates 202 on the same side. The lead screws 300 pass through the corresponding openings provided at the lower end of the rotating cylinder 200 and extend into its interior.
[0026] The rotation of the lead screw 300 drives the sliding plate 202 to move along the guide rail 201, thereby adjusting the distance between the two sliding plates 202 to meet the cleaning needs of aluminum automotive parts of different sizes.
[0027] like Figure 1-3 As shown, the drive assembly also includes a first bevel gear 301 respectively disposed on the inner end of the lead screw 300, an operating rod 302 rotatably connected to the upper end of the rotating cylinder 200, and a second bevel gear 303 disposed at the lower end of the operating rod 302, with the first bevel gear 301 meshing with the second bevel gear 303.
[0028] Rotate the operating lever 302, thereby driving the bevel gear 303 at its lower end to rotate synchronously. When the bevel gear 303 rotates, it drives the lead screw 300 to rotate synchronously through the bevel gear 301, thus achieving the purpose of synchronous driving.
[0029] like Figure 1-3 As shown, the drive assembly also includes a locking bolt 304 threaded to the upper end of the operating lever 302, and the lower end of the locking bolt 304 is in contact with the upper end of the rotating cylinder 200.
[0030] Tighten the locking bolt 304 to ensure the stability and reliability of the operating lever 302.
[0031] like Figure 2-3 As shown, it also includes a drive mechanism for driving the rotating cylinder 200 and its auxiliary mechanisms to rotate. The drive mechanism includes a mounting cavity 400 disposed on the upper end of the mounting cover 100. The rotating cylinder 200 is provided with a toothed ring 401 on the outer arc surface of the inner cavity of the mounting cavity 400. A gear 402 is rotatably connected to the upper end of the mounting cavity 400, and the gear 402 meshes with the toothed ring 401.
[0032] The rotation of gear 402 drives the rotating cylinder 200 and its auxiliary mechanisms to rotate synchronously through toothed ring 401, thus achieving the purpose of rapid driving.
[0033] like Figure 1-3 As shown, the drive mechanism also includes a motor 403 disposed on the upper end of the mounting cover 100. The output shaft of the motor 403 is fixedly connected to the upper end of the gear 402. The rotation of the output shaft of the motor 403 drives the gear 402 and its auxiliary mechanism to rotate synchronously, thereby providing a drive source for the gear 402.
[0034] The working principle of the aluminum automotive parts cleaning device provided by this utility model is as follows: First, the mounting cover 100 and its auxiliary mechanisms are fixedly installed on the external aluminum automotive parts conveyor line. Then, the external water supply pipe is connected to the liquid inlet pipe. Subsequently, the external aluminum automotive parts conveyor line operates, moving the aluminum automotive parts between two sliding plates 202. Then, the external aluminum automotive parts conveyor line stops operating, and the external water supply pipe pumps the cleaning liquid into the space between the diversion channel 206 and the annular plate 207 through the liquid inlet pipe. The cleaning liquid entering the space between the diversion channel 206 and the annular plate 207 is then pumped into the transmission channel 203 through the connecting pipe 205, and finally sprayed out by multiple nozzles 204. During this process, the motor 403 starts, and its output shaft drives the gear 402 to rotate. The gear 402 drives the rotating cylinder 200 and its auxiliary mechanisms to rotate synchronously through the toothed ring 401, thereby achieving comprehensive cleaning of the aluminum automotive parts. After cleaning is completed... Afterwards, the motor 403 stops operating, causing the sliding plate 202 to approach the inner sides of the mounting cover 100. Then, the external aluminum automotive parts conveyor line starts operating again, transporting the next aluminum automotive parts to be cleaned between the two sliding plates 202. The above operation is repeated to achieve comprehensive cleaning of aluminum automotive parts. This continuous cleaning of aluminum automotive parts greatly improves work efficiency. When aluminum automotive parts of different sizes are needed, the operating lever 302 is rotated, thereby driving the bevel gear 303 at its lower end to rotate synchronously. When the bevel gear 303 rotates, it drives the lead screw 300 to rotate synchronously through the bevel gear 301. As the lead screw 300 rotates, it drives the sliding plate 202 to move along the guide rail 201, thereby adjusting the distance between the two sliding plates 202 to meet the cleaning needs of aluminum automotive parts of different sizes. Then, the locking bolt 304 is tightened to ensure the stability and reliability of the operating lever 302.
[0035] Furthermore, it should be noted that, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0036] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.
Claims
1. An apparatus for cleaning aluminum automotive parts, characterized by: The device includes a mounting cover (100) and a cleaning mechanism mounted thereon. The cleaning mechanism is used to clean aluminum automotive parts. The cleaning mechanism includes a rotating cylinder (200) mounted on the upper end of the mounting cover (100). The lower end of the outer arc surface of the rotating cylinder (200) is provided with symmetrically distributed guide rails (201). Each guide rail (201) is slidably connected to a sliding plate (202). Each sliding plate (202) is provided with a transmission channel (203). Multiple water inlets evenly arranged on the inner side of the sliding plate (202) are provided with nozzles (204). The transmission channel (203) is connected to the nozzles (204) located on the same sliding plate (202). A driving component for driving the sliding plate (202) to move is also provided between the rotating cylinder (200) and the guide rail (201).
2. The aluminum automobile parts cleaning apparatus as set forth in claim 1, characterized by: The cleaning mechanism also includes connecting pipes (205) respectively disposed on one side of the upper end of the sliding plate (202). The liquid outlet end of the connecting pipe (205) is connected to the adjacent transmission channel (203) on the same side. The upper end of the rotating cylinder (200) is provided with a diversion channel (206). The liquid inlet end of the connecting pipe (205) is connected to the diversion channel (206). An annular plate (207) is rotatably connected inside the diversion channel (206). The outer arc surface of the annular plate (207) is provided with a liquid inlet pipe.
3. The aluminum automotive parts cleaning device as described in claim 1, characterized in that: The drive assembly includes lead screws (300) rotatably connected to the guide rails (201). The lead screws (300) are threadedly connected to the threaded holes provided on the adjacent sliding plates (202) on the same side. The lead screws (300) pass through the openings provided at the lower end of the rotating cylinder (200) and extend into its interior.
4. The aluminum automotive parts cleaning apparatus of claim 3, wherein: The drive assembly also includes a first bevel gear (301) respectively disposed on the inner end of the lead screw (300), an operating rod (302) is rotatably connected to the upper end of the rotating cylinder (200), and a second bevel gear (303) is provided at the lower end of the operating rod (302), and the first bevel gear (301) is meshed with the second bevel gear (303).
5. The apparatus for cleaning aluminum automobile parts as set forth in claim 4, wherein: The drive assembly also includes a locking bolt (304) threaded to the upper end of the operating lever (302), the lower end of which is in contact with the upper end of the rotating cylinder (200).
6. The aluminum automotive parts cleaning apparatus of claim 1, wherein: It also includes a drive mechanism for driving the rotating cylinder (200) and its auxiliary mechanisms to rotate. The drive mechanism includes a mounting cavity (400) disposed on the upper end of the mounting cover (100). The rotating cylinder (200) is provided with a toothed ring (401) on the outer arc surface of the inner cavity of the mounting cavity (400). A gear (402) is rotatably connected to the upper end of the mounting cavity (400). The gear (402) meshes with the toothed ring (401).
7. The aluminum automotive parts cleaning apparatus of claim 6, wherein: The drive mechanism also includes a motor (403) disposed on the upper end of the mounting cover (100), and the output shaft of the motor (403) is fixedly connected to the upper end of the gear (402).