A rotary cleaning machine
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-18
- Publication Date
- 2026-08-14
AI Technical Summary
[0004]然而,该类的转盘式清洗方式仅向减震器储油筒输送液体进行清洁
[0015]本实用新型的有益效果体现在,通过设置有转盘机构、清洗机构及干燥机构,实现对目标物的清洗和干燥,从而可实现清洗后的目标物直接装配,实现清洁效率和装配效率的提高;其中,转盘机构具有上件工位、清洗工位及干燥工位,清洗机构设置于清洗工位处,以对转动至清洗工位处的目标物进行清洗,去除目标物上的污物,干燥机构设置于干燥工位处,以对转动至干燥工位处且清洗后的目标物进行干燥处理,从而保证清洁后的目标物的干燥度,既避免单纯风干不彻底的问题,又克服了单纯烘干能耗高、易留水渍的缺点,实现了高效节能的彻底干燥,还能够使得清洗后的目标物能够实现直接装配,提高装配及生产效率,同时避免有水与油液混合,保证装配后的目标物的性能稳定性。
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Figure CN224629531U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cleaning equipment technology, and in particular to a rotary cleaning machine. Background Technology
[0002] As a core component of a vehicle's suspension system, the performance of the shock absorber directly affects the ride comfort and safety. The oil reservoir is a crucial part of the shock absorber. During manufacturing, its inner and outer surfaces typically accumulate various contaminants such as metal shavings, drawing oil, and rust-preventive oil. If these contaminants are not thoroughly removed before assembly, they can lead to a series of serious problems, including internal oil contamination, valve sticking, and premature wear of seals, ultimately affecting the shock absorber's damping performance and lifespan.
[0003] To improve the cleaning effectiveness of shock absorber oil reservoirs, existing technologies employ a rotary cleaning method. The equipment used in this method typically includes a rotary table and a cleaning mechanism. The rotary table is used to hold and fix the shock absorber oil reservoir, rotating to a position set by the cleaning mechanism, which then delivers liquid to the reservoir for cleaning.
[0004] However, this type of rotary cleaning method only delivers liquid to the shock absorber reservoir for cleaning. If the shock absorber reservoir needs to be assembled, it must be dried after cleaning to ensure it is completely dry. This is to prevent the liquid in the assembled reservoir from mixing with the oil, which could affect the oil and consequently the performance of the shock absorber reservoir. Utility Model Content
[0005] To address the aforementioned technical problems, this utility model provides a rotary washing machine, comprising: A turntable mechanism is provided for placing the target object and can drive the target object to rotate between the loading station, the cleaning station and the drying station; A cleaning mechanism is provided at the cleaning station and is adapted to clean the target object that has been rotated to the cleaning station in order to remove dirt from the target object; A drying mechanism is provided at the drying station and is suitable for drying the target object that has been rotated to the drying station and cleaned. With the direction of rotation of the turntable mechanism as the front, the drying mechanism includes an air-drying component and a drying component disposed in front of the air-drying component. The air-drying component is adapted to deliver compressed gas to the target object so that the liquid adhering to the target object is blown away under the action of the compressed gas. The drying component is adapted to output high-temperature gas to the target object so that the liquid on the target object is dried under the action of high temperature.
[0006] In one embodiment, the drying assembly includes a first pump body and a drying duct connected to the first pump body, the drying duct being adapted to deliver compressed gas to the target object at the drying station.
[0007] In one embodiment, the drying assembly includes a second pump body, a drying pipe connected to the second pump body, and a first heating element disposed within the drying pipe to heat the gas within the drying pipe, the drying pipe being adapted to deliver heated gas to the target object at the drying station.
[0008] In one embodiment, with the direction of rotation of the turntable mechanism as the front, the cleaning mechanism includes a first cleaning component disposed behind the air-drying component; The first cleaning assembly includes a first water tank for storing liquid at a first temperature and a first cleaning body connected to the first water tank; the first temperature is higher than room temperature.
[0009] In one embodiment, the rotary washing machine further includes a first placement rack, on which the first washing component, air-drying component and drying component are mounted; The first placement rack includes a first lifting shaft, a first frame connected to the first lifting shaft, and a first driving member that drives the first lifting shaft to move up and down in the height direction to change the height of the first placement rack.
[0010] In one embodiment, the first water tank includes a first tank body, a second heating element disposed within the first tank body, and a first sensor disposed within the first tank body. The second heating element is adapted to heat the liquid within the first tank body, and the first sensor is adapted to detect the temperature of the liquid within the first tank body.
[0011] In one embodiment, the cleaning mechanism includes a second water tank for storing liquid at a second temperature and a second cleaning assembly in communication with the second water tank, the second cleaning assembly being adapted to deliver liquid to the target object for rinsing and / or brushing the target object; The second temperature is lower than the first temperature but higher than room temperature.
[0012] In one embodiment, the second cleaning component includes a first cleaning element and a second cleaning element located in front of the first cleaning element. The first cleaning element has a first spray hole arranged circumferentially along the first cleaning element, and the second cleaning element has a second spray hole arranged axially along the second cleaning element and bristles arranged outside the second spray hole.
[0013] In one embodiment, the rotary washing machine further includes a second placement rack, on which the first washing component and the second washing component are mounted; The second placement rack includes a second lifting shaft, a second frame connected to the second lifting shaft, and a second driving member that drives the second lifting shaft to move up and down in the height direction to change the height of the second placement rack.
[0014] In one embodiment, the turntable mechanism includes a turntable body, a fixing component adapted to fix the target object, a third driving member for driving the turntable body to rotate, and a fourth driving member for driving the turntable body to rise and fall. The fixing component includes a fixing member disposed on the turntable body, a clamping member disposed above the fixing member, and a fifth driving member that moves with the clamping member to cooperate with the fixing member to clamp or release the target object.
[0015] The beneficial effects of this utility model are reflected in the fact that by setting up a turntable mechanism, a cleaning mechanism, and a drying mechanism, the target object can be cleaned and dried, thereby enabling the target object to be directly assembled after cleaning, thus improving cleaning efficiency and assembly efficiency. Among them, the turntable mechanism has a loading station, a cleaning station, and a drying station. The cleaning mechanism is set at the cleaning station to clean the target object that rotates to the cleaning station and remove dirt from the target object. The drying mechanism is set at the drying station to dry the target object that has rotated to the drying station and been cleaned, thereby ensuring the dryness of the target object after cleaning. This avoids the problem of incomplete air drying and overcomes the disadvantages of high energy consumption and easy water stains left by simple drying. It achieves efficient and energy-saving thorough drying, and also enables the target object to be directly assembled after cleaning, improving assembly and production efficiency. At the same time, it avoids the mixing of water and oil, ensuring the performance stability of the target object after assembly. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the rotary cleaning machine provided by this utility model; Figure 2 for Figure 1 Partial structural diagram; Figure 3 This is a schematic diagram of the turntable mechanism; Figure 4 This is a schematic diagram of the cleaning mechanism; Figure 5 for Figure 4 Partial structural diagram; Figure 6 for Figure 1 Another part of the structural diagram.
[0017] Figure label: 100 - Target object; 1-Frame; 2-Turntable mechanism; 21-Turntable body; 22-Fixing component; 221-Fixing element; 222-Clamping element; 223-Fifth driving element; 23-Fourth driving element; 24-Third driving element; 3-Cleaning mechanism; 31-First cleaning assembly; 311-First cleaning body; 312-First housing; 32-Second cleaning assembly; 321-First cleaning component; 3211-First spray nozzle; 322-Second cleaning component; 3221-Second spray nozzle; 3222-Bristles; 323-Sixth driving component; 324-Second driving component; 325-Second placement rack; 326-Second housing; 4-Drying mechanism; 41-Air drying assembly; 411-Air drying duct; 42-Drying assembly; 421-Second pump body; 422-Drying duct; A - Loading station; B - Cleaning station; C - Drying station. Detailed Implementation
[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0019] Example 1: Reference Figures 1-6 A preferred embodiment of this utility model provides a rotary washing machine suitable for cleaning and drying a target object 100, ensuring that the cleaned target object 100 is free of water residue and can directly proceed to the assembly stage. This avoids the mixing of water and oil after assembly, thus preventing performance degradation of the target object 100. In this embodiment, the target object 100 is a shock absorber oil reservoir. In other embodiments, the target object 100 may be other types, such as a shock absorber, etc., without specific limitations, depending on the actual situation.
[0020] Specifically, the rotary cleaning machine includes a rotary mechanism 2 and a cleaning mechanism 3. The rotary mechanism 2 is used to place the target object 100 and drives the target object 100 to rotate, so that the target object 100 can switch between different workstations, thereby realizing the automated cleaning of the target object 100.
[0021] The turntable mechanism 2 includes a turntable body 21, which can rotate clockwise under the drive of an external force, and thus has multiple workstations such as the first, second, third, and fourth. In this embodiment, the first workstation is the loading workstation A, that is, at the loading workstation A, the target object 100 can be placed on the turntable body 21, and then the turntable body 21 can drive the target object 100 to rotate to the subsequent multiple workstations.
[0022] In this embodiment, at the loading station A, the target object 100 can be placed manually on the turntable body 21, or a robotic arm can be provided to pick up the target object 100 and place it on the turntable body 21. No specific limitation is made here, and it depends on the actual situation.
[0023] The turntable mechanism 2 also includes a fixing component 22 suitable for fixing the target object 100, a third driving component 24 for driving the turntable body 21 to rotate, and a fourth driving component 23 for driving the turntable body 21 to rise and fall. As mentioned above, the target object 100 is a shock absorber oil reservoir. The shock absorber oil reservoir is a workpiece with a deep and long tubular shape and a closed structure at one end. Therefore, when it is placed on the turntable body 21, since the turntable body 21 will rotate clockwise at a relatively fast speed, in order to prevent the target object 100 from being thrown out of the turntable body 21 under the action of centrifugal force, it is necessary to fix the target object 100 by a fixing mechanism.
[0024] The fixing assembly 22 includes a fixing member 221 disposed on the turntable body 21, a clamping member 222 disposed above the fixing member 221, and a fifth driving member 223 that moves with the clamping member 222 to cooperate with the fixing member 221 to clamp or release the target object 100. When the target object 100 needs to be placed on the turntable body 21, the target object 100 needs to be fixedly installed with the fixing member 221. In this embodiment, the fixing member 221 is a fixing seat, and the target object 100 is inserted into the fixing seat so that the target object 100 is vertically fixed on the fixing member 221 along the height direction.
[0025] The clamping member 222 is connected to the fifth driving member 223. The fifth driving member 223 drives the clamping member 222 to move along the height direction, so that the clamping member 222 can move toward or away from the fixing member 221, thereby cooperating with the fixing member 221 to clamp or release the target object 100, thus achieving the effect of fixing the target object 100 to prevent it from detaching from the turntable body 21 during rotation. Furthermore, the fifth driving member 223 can drive the clamping member 222 to move along the height direction, making the distance between the clamping member 222 and the fixing member 221 variable. This allows target objects 100 of different heights to be placed between the clamping member 222 and the fixing member 221, enabling one device to clean multiple target objects 100 of different heights, saving cleaning costs and improving cleaning efficiency.
[0026] Furthermore, by setting up a height-adjustable placement rack and a height-adjustable turntable, the distance between the washing head, air-drying head, and drying head and the workpiece can be easily adjusted, and even the angle of the workpiece itself can be adjusted, greatly enhancing the equipment's adaptability to workpieces of different sizes and shapes.
[0027] In this embodiment, the fourth driving component 23 is a servo motor. In other embodiments, the fourth driving component 23 may also be a cylinder or the like, which are conventional structures and will not be described in detail here.
[0028] The third driving component 24 is connected to the turntable body 21 and drives the turntable body 21 to rotate at a set speed. In this embodiment, the set speed is not specifically limited and can be determined according to actual conditions. Furthermore, the third driving component 24 can be a drive motor or similar conventional structure, and will not be described in detail here.
[0029] The second, third, and fourth workstations are all cleaning workstations B. Correspondingly, the cleaning mechanism 3 is located at cleaning workstation B. As the name suggests, when the turntable body 21 rotates the target object 100 to cleaning workstation B, the cleaning mechanism 3 cleans the target object 100. As mentioned above, the target object 100 is a shock absorber oil reservoir; therefore, in this embodiment, the cleaning mechanism 3 cleans the inner wall of the target object 100.
[0030] The turntable body 21 also includes a fifth station, which is also a cleaning station B. Unlike the second, third, and fourth stations mentioned above, the cleaning temperature of this fifth station is higher than that of the other stations.
[0031] Specifically, the cleaning mechanism 3 includes a first cleaning component 31 and a second cleaning component 32. With the rotation direction of the turntable body 21 as the front, the first cleaning component 31 is located in front of the second cleaning component 32. That is, the second cleaning component 32 first cleans the target object 100, then rotates to the first cleaning component 31, and then the first cleaning component 31 cleans the target object 100.
[0032] The first cleaning assembly 31 includes a first water tank for storing liquid at a first temperature and a first cleaning body 311 connected to the first water tank; the first temperature is higher than room temperature. The cleaning mechanism 3 includes a second water tank for storing liquid at a second temperature, and a second cleaning assembly 32 connected to the second water tank, so that the second cleaning assembly 32 delivers liquid to the target object 100 to rinse and / or scrub the target object 100. The second temperature is lower than the first temperature but higher than room temperature.
[0033] In this embodiment, the second temperature is 50°C, and the first temperature is 80°C. This configuration aims to ensure that the second cleaning component 32 first cleans the target object 100 by rinsing its inner wall with 50°C warm water. This allows the oil stains on the inner wall of the target object 100 to be washed away by the 50°C warm water, improving cleaning efficiency. Then, further cleaning and rinsing are performed at the third and fourth stations, further enhancing the cleaning efficiency of the target object 100.
[0034] Then the target object 100 rotates to the first cleaning component 31, which delivers hot water at a temperature of 80°C. This hot water can rapidly heat up the inner wall of the target object 100, thereby allowing the liquid on the inner wall to evaporate under high temperature, thus preventing water residue on the inner wall of the target object 100.
[0035] In other embodiments, the first temperature value and the second temperature value may also be other values, such as 85°C, 55°C, etc., which can be determined according to the actual situation to adjust the temperature of the water in the first water tank and the second water tank.
[0036] Specifically, the first water tank includes a first tank body 312, a second heating element disposed within the first tank body 312, and a first sensor disposed within the first tank body 312. The second heating element is adapted to heat the liquid within the first tank body 312, and the first sensor is adapted to detect the temperature of the liquid within the first tank body 312. In this embodiment, the first sensor is a temperature sensor, and the second heating element can be a PTC heating element, etc.
[0037] Accordingly, the second water tank includes a second tank body 326, a third heating element disposed within the second tank body 326, and a second sensor disposed within the first tank body 312. The third heating element is adapted to heat the liquid within the second tank body 326, and the second sensor is adapted to detect the temperature of the liquid within the second tank body 326. The configuration of the second water tank is the same as that of the first water tank described above, and will not be repeated here.
[0038] The first sensor, the second sensor, the second heating element, and the third heating element are connected to the control mechanism so that the user can set the corresponding target temperature value in the control mechanism according to the actual situation, and the second heating element and the third heating element can heat according to the set target temperature value.
[0039] The first cleaning body 311 has a third spray hole arranged circumferentially along the first cleaning body 311, and liquid at the first temperature can be sprayed onto the inner wall of the target object 100 through the third spray hole.
[0040] The second cleaning assembly 32 includes a first cleaning element 321 and a second cleaning element 322 located in front of the first cleaning element 321. The first cleaning element 321 has a first spray hole 3211 arranged circumferentially along the first cleaning element 321, and the second cleaning element 322 has a second spray hole 3221 arranged axially along the second cleaning element 322 and bristles 3222 arranged outside the second spray hole 3221. That is, the first cleaning element 321 rinses the inner wall of the target object 100, and the second cleaning element 322 brushes the inner wall of the target object 100, thereby ensuring the cleanliness of the inner wall of the target object 100. The second cleaning assembly 32 also includes a sixth driving element 323 connected to the second cleaning element 322. The sixth driving element 323 drives the second cleaning element 322 to rotate, thereby improving the cleaning cleanliness. The sixth driving element can be a drive motor, etc.
[0041] The rotary washing machine also includes a second placement frame 325, on which the first washing component 321 and the second washing component 322 are mounted. The second placement frame 325 includes a second lifting shaft, a second frame 1 connected to the second lifting shaft, and a second drive component 324 that drives the second lifting shaft to move up and down in the height direction to change the height of the second placement frame 325. In this embodiment, the second drive component 324 is a servo motor or the like.
[0042] By setting the second placement rack 325 to be height-adjustable, the second cleaning assembly 32 can rinse the inner wall of the target object 100 of different heights and models.
[0043] In the prior art, this type of rotary cleaning method only delivers liquid to the target object 100 for cleaning. If the target object 100 needs to be assembled, it also needs to be dried after cleaning to ensure that the target object 100 is completely dry, so as to prevent the liquid in the target object 100 from mixing with the oil after assembly and affecting the oil, thereby affecting the performance of the target object 100.
[0044] To prevent the aforementioned technical problems, the rotary washing machine in this embodiment further includes a drying mechanism 4, which is located at the sixth and seventh workstations. That is, in this embodiment, the sixth and seventh workstations are drying workstations C. When the rotary mechanism 2 rotates to the drying workstation C, the drying mechanism 4 dries the cleaned target object 100.
[0045] That is, the turntable mechanism 2 in this embodiment has multiple stations such as loading station A, cleaning station B, and drying station C. By integrating multiple processes such as loading, cleaning, and drying at one station, the turntable mechanism 2 significantly reduces the equipment footprint and realizes continuous automated processing of workpieces, thereby improving overall efficiency.
[0046] With the direction of rotation of the turntable mechanism 2 as the front, the drying mechanism 4 includes an air-drying component 41 and a drying component 42 disposed in front of the air-drying component 41. The air-drying component 41 is adapted to deliver compressed gas to the target object 100 so that the liquid adhering to the target object 100 is blown away under the action of the compressed gas. The drying component 42 is adapted to output high-temperature gas to the target object 100 so that the liquid on the target object 100 is dried under the action of high temperature.
[0047] The air-drying assembly 41 includes a first pump body and an air-drying pipe 411 connected to the first pump body. The air-drying pipe 411 is adapted to deliver compressed gas to the target object 100 at the drying station C. The compressed gas has a high flow rate and can blow away the liquid on the inner wall of the target object 100 after entering the interior of the target object 100, thereby achieving the air-drying of the inner wall of the target object 100.
[0048] The drying assembly 42 includes a second pump body 421, a drying pipe 422 connected to the second pump body 421, and a first heating element disposed within the drying pipe 422 to heat the gas within the drying pipe 422. The drying pipe 422 is adapted to deliver heated gas to the target object 100 at the drying station C. In this embodiment, the first heating element is a PTC heating element or the like.
[0049] By providing a first heating element, the gas entering the inner wall of the target object 100 is heated, so that the liquid on the inner wall of the target object 100 can evaporate rapidly under the high temperature gas, thereby further enhancing the drying effect on the target object 100.
[0050] As described above, the drying mechanism 4 is suitable for drying the cleaned target object 100. Therefore, with the direction of rotation of the turntable mechanism 2 as the front, the first cleaning component 31 is located in front of the air drying component 41.
[0051] To facilitate control of the first cleaning assembly 31, the air-drying assembly 41, and the drying assembly 42, the rotary washing machine also includes a first placement frame, on which the first cleaning assembly 31, the air-drying assembly 41, and the drying assembly 42 are mounted. The first placement frame includes a first lifting shaft, a first frame body 1 connected to the first lifting shaft, and a first driving component that drives the first lifting shaft to move up and down in the height direction to change the height of the first placement frame. In this embodiment, the first driving component is a servo motor, etc.
[0052] The rotary washing machine also includes a frame 1, on which the rotary mechanism 2, the washing mechanism 3, and the drying mechanism 4 are all mounted. A control mechanism is also provided on the frame 1, which is connected to the rotary mechanism 2, the washing mechanism 3, and the drying mechanism 4 by signal, thereby controlling the rotary mechanism 2, the washing mechanism 3, and the drying mechanism 4.
[0053] The control mechanism can be controlled using control circuitry. Control circuitry may include storage and processing circuitry for controlling system operations. Circuitry may include storage devices such as hard disk drive storage devices, non-volatile memory (e.g., electrically programmable read-only memory configured to form a solid-state drive), volatile memory (e.g., static or dynamic random access memory), etc. The circuitry in the control circuitry may be based on one or more microprocessors, microcontrollers, digital signal processors, baseband processors, power management units, audio chips, graphics processing units, application-specific integrated circuits (ASICs), and other integrated circuits. Software code (instructions) may be stored in the circuitry's memory and run on the processing circuitry in the circuitry to perform system operations (e.g., data collection operations, operations involving adjusting components using control signals, image rendering operations generating image content to be displayed to the user, etc.).
[0054] The system may include wireless circuitry and / or other circuitry, if needed, to support communication with a computer or other external devices (e.g., providing displayable computer and image content). During operation, the control circuitry can provide the image content to be displayed. The content may be remotely received (e.g., from a computer or other content sources coupled to the system) and / or may be generated by the control circuitry (e.g., text, other computer-generated content, etc.). The displayed content is provided by the control circuitry so that the viewer can view it in a window.
[0055] In summary, by incorporating a turntable mechanism 2, a cleaning mechanism 3, and a drying mechanism 4, the target object 100 is cleaned and dried, enabling direct assembly of the cleaned object 100 and improving both cleaning and assembly efficiency. The turntable mechanism 2 includes a loading station A, a cleaning station B, and a drying station C. The cleaning mechanism 3 is located at cleaning station B to clean the target object 100 as it rotates to that station, removing contaminants. The drying mechanism 4 is located at drying station C to dry the cleaned target object 100 as it rotates to that station, ensuring the dryness of the cleaned object 100. This avoids the problem of incomplete air drying and overcomes the drawbacks of high energy consumption and water stains associated with traditional drying methods, achieving highly efficient and energy-saving drying. Furthermore, it allows for direct assembly of the cleaned target object 100, improving assembly and production efficiency.
[0056] In the description of the embodiments of this utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "center," "top," "bottom," "top," "bottom," "inner," "outer," "inner side," and "outer side," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. "Inner side" refers to the interior or enclosed area or space. "Outer perimeter" refers to the area surrounding a specific component or specific area.
[0057] In the description of embodiments of this utility model, the terms "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first," "second," "third," or "fourth" may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.
[0058] In the description of the embodiments of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "assembly" 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 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 based on the specific circumstances.
[0059] In the description of the embodiments of this utility model, specific features, structures, materials or characteristics may be combined in any suitable manner in one or more embodiments or examples.
[0060] In the description of the embodiments of this utility model, it should be understood that "-" and "~" represent a range of two values, and this range includes the endpoints. For example, "AB" represents a range greater than or equal to A and less than or equal to B. "A~B" represents a range greater than or equal to A and less than or equal to B.
[0061] In the description of the embodiments of this utility model, the term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, and B existing alone. Additionally, the character " / " generally indicates that the preceding and following related objects have an "or" relationship.
[0062] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A rotary disk type cleaning machine, characterized by, include: A turntable mechanism is provided for placing the target object and can drive the target object to rotate between the loading station, the cleaning station and the drying station; A cleaning mechanism is provided at the cleaning station and is adapted to clean the target object that has been rotated to the cleaning station in order to remove dirt from the target object; A drying mechanism is provided at the drying station and is suitable for drying the target object that has been rotated to the drying station and cleaned. With the direction of rotation of the turntable mechanism as the front, the drying mechanism includes an air-drying component and a drying component disposed in front of the air-drying component. The air-drying component is adapted to deliver compressed gas to the target object so that the liquid adhering to the target object is blown away under the action of the compressed gas. The drying component is adapted to output high-temperature gas to the target object so that the liquid on the target object is dried under the action of high temperature.
2. The rotary cleaning machine according to claim 1, characterized in that The air-drying assembly includes a first pump body and an air-drying duct connected to the first pump body, the air-drying duct being adapted to deliver compressed gas to the target object at the drying station.
3. The rotary cleaning machine of claim 1, wherein, The drying assembly includes a second pump body, a drying pipe connected to the second pump body, and a first heating element disposed in the drying pipe to heat the gas in the drying pipe. The drying pipe is adapted to deliver heated gas to the target object at the drying station.
4. The rotary cleaning machine according to any one of claims 1 to 3, characterized in that With the direction of rotation of the turntable mechanism as the front, the cleaning mechanism includes a first cleaning component disposed on the rear side of the drying component; The first cleaning assembly includes a first water tank for storing liquid at a first temperature and a first cleaning body connected to the first water tank; the first temperature is higher than room temperature.
5. The rotary cleaning machine of claim 4, wherein The rotary washing machine also includes a first placement frame, on which the first washing component, air drying component and drying component are installed; The first placement rack includes a first lifting shaft, a first frame connected to the first lifting shaft, and a first driving member that drives the first lifting shaft to move up and down in the height direction to change the height of the first placement rack.
6. The rotary cleaning machine of claim 4, wherein The first water tank includes a first tank body, a second heating element disposed within the first tank body, and a first sensor disposed within the first tank body. The second heating element is adapted to heat the liquid within the first tank body, and the first sensor is adapted to detect the temperature of the liquid within the first tank body.
7. The rotary washing machine according to claim 4, characterized in that, The cleaning mechanism includes a second water tank for storing liquid at a second temperature and a second cleaning assembly connected to the second water tank. The second cleaning assembly is adapted to deliver liquid to the target object to rinse and / or scrub the target object. The second temperature is lower than the first temperature but higher than room temperature.
8. The rotary cleaning machine of claim 7, wherein, The second cleaning component includes a first cleaning element and a second cleaning element located in front of the first cleaning element. The first cleaning element has a first spray hole arranged circumferentially along the first cleaning element, and the second cleaning element has a second spray hole arranged axially along the second cleaning element and bristles arranged outside the second spray hole.
9. The rotary cleaning machine of claim 8, wherein, The rotary cleaning machine also includes a second placement frame, on which the first cleaning component and the second cleaning component are mounted; The second placement rack includes a second lifting shaft, a second frame connected to the second lifting shaft, and a second driving member that drives the second lifting shaft to move up and down in the height direction to change the height of the second placement rack.
10. The rotary cleaning machine according to any one of claims 1 to 3, characterized in that The turntable mechanism includes a turntable body, a fixing component suitable for fixing the target object, a third driving component for driving the turntable body to rotate, and a fourth driving component for driving the turntable body to rise and fall. The fixing component includes a fixing member disposed on the turntable body, a clamping member disposed above the fixing member, and a fifth driving member that moves with the clamping member to cooperate with the fixing member to clamp or release the target object.