Inspection equipment cleaning device and cleaning method
Through the use of automated nozzles and high-pressure gas cleaning devices, the problems of incomplete cleaning and secondary contamination of existing equipment have been solved, efficient and safe cleaning of inspection equipment has been achieved, and the risk of manual contact and cleaning costs have been reduced.
Patent Information
- Application Number
- CN202510936669.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-08
- Publication Date
- 2025-10-03
AI Technical Summary
Existing inspection equipment cleaning equipment cannot efficiently clean equipment of various shapes and specifications, poses a risk of secondary contamination, has poor cleaning effects, and lacks a drying process, leading to safety hazards. Manual cleaning is inefficient and wastes cleaning agents.
An automated cleaning device is designed, which includes a nozzle, a cleaning bucket, a fixing frame and an air pump. It performs comprehensive cleaning and drying by spraying cleaning liquid and high-pressure gas, avoiding manual contact. The device is combined with a heater and an insulation layer to improve the cleaning effect and safety.
It achieves cleaning without dead angles, reduces the risk of cross contamination, improves cleaning efficiency and safety, reduces the waste of detergents and water, and reduces usage costs.
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Figure CN120734019A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of product inspection, and in particular to an inspection equipment cleaning device and a cleaning method. Background Art
[0002] In the product inspection industry, post-inspection cleaning of testing equipment is crucial. Cleaning equipment requires careful attention to cleaning methods to ensure cleanliness. Maintaining cleanliness prevents residual reagents or samples from previous tests from interfering with subsequent tests. Focusing on cleaning methods maximizes cleaning effectiveness, ensuring the full potential of cleaning reagents and thorough cleaning of the equipment.
[0003] Existing product inspection equipment mostly relies on manual cleaning. During the manual cleaning process, the cleaning personnel come into direct contact with the equipment, which can easily cause secondary contamination and affect the hygiene and safety of the product. At the same time, some existing cleaning equipment has deficiencies in structural design and cannot meet the demand for efficient cleaning of product inspection equipment of various shapes and specifications. The cleaning effect is poor, and the equipment may be damaged during the cleaning process. In addition, traditional cleaning equipment also has defects in the drying process. It is unable to quickly and effectively dry the cleaned equipment. The residual moisture can easily cause secondary contamination, increasing the potential safety risks of the product. In addition, the manual cleaning method does not focus on the effectiveness of cleaning agents, resulting in waste of cleaning agents and cleaning water. Moreover, for the cleaning of some reagents with higher viscosity, oil stains and organic matter, the manual method requires repeated application of detergents, which is less efficient.
[0004] After searching, a product processing equipment cleaning tool with the publication number CN207220466U is found, which includes a handle, a drive device, a turntable, and a cleaning brush ball; the handle is arranged at the end of the tool body, and the handle is a hollow cylindrical structure, in which a drive device is arranged; the drive device includes a power supply, a motor, and a transmission, and the motor output shaft is connected to the tail end of the turntable; the front end of the turntable is provided with two twisting rods arranged at intervals, and the outer edge of the front end of the twisting rod is provided with a conical surface, so that the size of the front end of the twisting rod decreases successively from front to back; a spirally extending slag removal groove is provided on the outer wall of the twisting rod; a number of cleaning brush balls are also provided on the outer wall of the twisting rod, and the cleaning brush balls are composed of a number of nylon brush wires; the rear end of the twisting rod is inserted into the turntable.
[0005] The above device can only be used by hand to probe into the inner cavity of the instrument for cleaning, which is inconvenient to use and requires people to touch the instrument, resulting in the possibility of secondary contamination. Therefore, a testing equipment cleaning device and cleaning method are proposed. Summary of the Invention
[0006] The present application provides a cleaning device for inspection equipment. The present invention sprays cleaning liquid evenly through a nozzle, and combined with the cleaning port in the cleaning barrel and the immersion of the cleaning liquid at the bottom, can comprehensively clean all parts of the instrument and reduce cleaning dead corners; multiple cleaning ports on the fixed frame can clean the contact end between the instrument and the fixed frame, further improving the cleaning effect. The cleaning process does not require direct manual contact with the instrument, reducing the risk of cross-contamination and ensuring product hygiene and safety.
[0007] The technical solution of this application is as follows: A testing equipment cleaning device includes a body, a cleaning mechanism, and a fixing mechanism. The cleaning mechanism includes a supply assembly, a cleaning bucket, a cleaning rod, and a nozzle. The supply assembly includes an air pump and a storage tank for holding cleaning liquid. The cleaning bucket is disposed in the body, the air pump is disposed on the body, the storage tank is disposed on the body, the air pump is connected to the storage tank, the cleaning rod is disposed in the cleaning bucket, a passage for circulating cleaning liquid is provided in the cleaning rod, and the nozzle is disposed on the cleaning rod and connected to the storage tank. The fixing mechanism includes a fixing frame, and the fixing frame is arranged on the inner wall of the cleaning bucket.
[0008] As a further limitation of the present technical solution, the supply assembly also includes a debris removal tank, an air intake pipe and a connecting pipe. The debris removal tank is arranged on the machine body, the air intake pipe is arranged on the debris removal tank, the top of the debris removal tank is connected to the air inlet of the air pump, and the connecting pipe is connected to the debris removal tank.
[0009] As a further limitation of the present technical solution, the supply assembly further includes a filter element, and the filter element is arranged on the air intake pipe.
[0010] As a further limitation of the present technical solution, the supply assembly also includes a communicating vessel, which has two cavities. One of the cavities of the communicating vessel is connected to the storage tank through a conduit, and the other cavity of the communicating vessel is connected to the air pump, and the communicating vessel is connected to the cleaning rod.
[0011] As a further limitation of the present technical solution, a passage for circulating cleaning liquid is provided in the cleaning barrel, and a cleaning port is provided on the fixing frame.
[0012] As a further limitation of the present technical solution, a through net is provided on the side wall of the cleaning barrel, a heater is provided in the storage tank, and the fixing mechanism further includes a heat-insulating layer, which is provided in the body.
[0013] As a further limitation of the present technical solution, the cleaning barrel is rotatably arranged on the machine body, and a driving mechanism is also provided on the machine body. The driving mechanism includes a driving motor, a mounting plate and a driving plate. The driving motor is arranged on the mounting plate, the mounting plate is arranged on the machine body, the driving plate is arranged on the cleaning barrel, and the driving plate is transmission-connected to the output rod of the driving motor.
[0014] As a further limitation of the present technical solution, the driving mechanism further includes a roller shaft, a plurality of the roller shafts are provided, the roller shafts are arranged on the machine body, and the cleaning bucket and the roller shafts rotate within the machine body.
[0015] As a further limitation of the present technical solution, there are multiple fixing frames, each of which is provided with a clamping end. The fixing frame is made of rubber, and multiple cleaning ports are provided at the inner end and upper and lower ends of the clamping end of the fixing frame.
[0016] Due to the adoption of the above technical solution, the beneficial effects of this application are as follows: 1. This application uses a nozzle to evenly spray cleaning liquid, combined with the cleaning port in the cleaning bucket and the immersion of cleaning liquid at the bottom, to comprehensively clean all parts of the utensil and reduce cleaning dead corners; multiple cleaning ports on the fixing frame can clean the contact end of the utensil and the fixing frame, further improving the cleaning effect.
[0017] 2. This application does not require direct manual contact with the equipment during the cleaning process, reducing the risk of cross-contamination and ensuring product hygiene and safety.
[0018] 3. After cleaning, the cleaning device of the present application uses an air pump to deliver high-pressure gas to blow dry the equipment, thereby accelerating the drying speed and further discharging residual liquid, reducing the possibility of secondary pollution; when the air pump supplies air, the outside air is filtered and disinfected by the disinfectant in the impurity removal tank, thereby improving the purity of the incoming air, reducing dependence on high-cost pure gas, and reducing the cost of use; the communicating vessel realizes separate supply of gas and liquid, improves the cleaning stability, and the heater can heat the cleaning liquid to achieve high-temperature disinfection while cleaning, and can also increase the intake temperature to accelerate drying efficiency; the insulation layer keeps the cleaning liquid warm and reduces heat loss; the cleaning barrel can rotate, and the driving mechanism enables the nozzle to switch back and forth between liquid spraying and air jetting, thereby improving the cleaning effect; the cleaning barrel can be removed, which is convenient for taking out and loading equipment, protects the equipment, and reduces the possibility of secondary pollution.
[0019] 4. The cleaning method provided in the present application improves the activity of the cleaning agent by increasing the temperature, thereby improving the cleaning efficiency and cleaning effect. In the present application, the cleaning liquid is first heated and then sprayed out. When the cleaning liquid adheres to the equipment, the temperature will not drop too much due to temperature exchange, and the cleaning liquid can still maintain a high activity. By rotating the cleaning barrel and spraying heated gas, it can not only ensure that the cleaning liquid adheres to the inner and outer surfaces of the equipment evenly and comprehensively, but also significantly increase the fluidity of the cleaning liquid on the inner and outer surfaces of the equipment, so that the cleaning liquid and the stains are fully integrated and rubbed, thereby removing the stains. The cleaning process of the present application continuously adds clean water to the storage tank. The clean water has two functions, one is to rinse the inside of the cleaning device, and the other is to rinse the equipment. Only after the pipes inside the cleaning device are cleaned can the cleanliness of the inspection equipment be guaranteed. If necessary, the present application can repeat the process of adding clean water and heating air drying. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The drawings described herein are used to provide further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute improper limitations on the present application.
[0021] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present application; Figure 2 A schematic cross-sectional view of an embodiment of the present application; Figure 3 This application includes a schematic cross-sectional view of a cleaning rod; Figure 4 for Figure 2 A partial enlarged schematic diagram of part A; In the attached figure: 100. Machine body; 200. Cleaning mechanism; 210. Supply assembly; 211. Air pump; 212. Storage tank; 213. De-impurity tank; 214. Air inlet pipe; 215. Connecting pipe; 216. Filter element; 217. Connecting vessel; 220. Cleaning barrel; 230. Cleaning rod; 240. Nozzle; 250. Cleaning port; 260. Net; 270. Heater; 300. Fixing mechanism; 310. Fixing frame; 320. Insulation layer; 400. Driving mechanism; 410. Driving motor; 420. Mounting plate; 430. Driving plate; 440. Roller. DETAILED DESCRIPTION
[0022] The following is combined with Figure 1-Figure 4 The present invention is further described with reference to the accompanying drawings and embodiments.
[0023] The specific embodiments of the present invention are: A cleaning device for inspection equipment. Figure 1A testing equipment cleaning device mainly includes a body 100, a cleaning mechanism 200 and a fixing mechanism 300. The cleaning mechanism 200 includes a supply component 210, a cleaning bucket 220, a cleaning rod 230 and a nozzle 240. The supply component 210 includes an air pump 211 and a storage tank 212 for holding cleaning liquid. The cleaning bucket 220 is arranged in the body 100, the air pump 211 is arranged on the body 100, the storage tank 212 is arranged on the body 100, the air pump 211 is connected to the storage tank 212, the cleaning rod 230 is arranged in the cleaning bucket 220, and a passage for circulating cleaning liquid is provided in the cleaning rod 230. The nozzle 240 is arranged on the cleaning rod 230, and the nozzle 240 is connected to the storage tank 212.
[0024] The supply assembly 210 further includes a de-impurity tank 213 , an air intake pipe 214 and a connecting pipe 215 . The de-impurity tank 213 is disposed on the machine body 100 , the air intake pipe 214 is disposed on the de-impurity tank 213 , the top end of the de-impurity tank 213 is communicated with the air intake of the air pump 211 , and the connecting pipe 215 is communicated with the de-impurity tank 213 .
[0025] By adopting the above technical solution, the utensil is fixed in the cleaning bucket 220 through the fixing frame 310, and the active end of the utensil is facing downward and fixed on the fixing frame 310; then the storage tank 212 is pressurized by the air pump 211, and the pressurized cleaning liquid, which can also be a disinfectant, is evenly sprayed onto the utensil through the nozzle 240 after being pressurized, so that each part of the utensil is precisely cleaned, thereby improving the cleaning effect and avoiding direct manual contact; after the cleaning is completed, the waste water is discharged by opening the conduit, and the air pump 211 is continued to work. At this time, there is no cleaning liquid in the storage tank 212, and the high-pressure gas enters the cleaning bucket 220, and the utensil is blown dry by the nozzle 240. At the same time, the cleaning bucket 220 is further drained, thereby reducing the possibility of secondary contamination of the utensil by residual liquid, improving the cleaning effect, further reducing the possibility of contamination of the utensil, and improving the disinfection effect of the utensil.
[0026] During the air supply process of the air pump 211, the outside air is pumped into the impurity removal tank 213 through the air inlet pipe 214. The outside air is first filtered by the disinfectant in the impurity removal tank 213. The outside air is disinfected and filtered first, which improves the purity of the intake air, reduces the device's dependence on pure gas, reduces the cost of use, and further improves the safety of the device. The disinfectant in the impurity removal tank 213 is replaced and discharged through the connecting pipe 215.
[0027] When it is necessary to disinfect and clean the testing equipment: First, secure the testing equipment within the cleaning bucket 220 using the fixing bracket 310. For testing equipment in the form of containers, to ensure that the cleaning fluid can flow smoothly through the equipment, the equipment can be mounted on the fixing bracket 310. This ensures that both the inner and outer surfaces of the equipment are exposed to the cleaning fluid, improving cleaning uniformity and effectiveness.
[0028] Next, the cleaning liquid is sprayed. During operation, the air pump 211 is started to pressurize the storage tank 212. The storage tank 212 is filled with a pre-prepared cleaning liquid or disinfectant. When the air pump 211 is started, the cleaning liquid will be transported to the nozzle 240 in the cleaning barrel 220 through a pipe under high pressure. The nozzle 240 is designed to spray back and forth. Under the action of centrifugal force, the cleaning agent can be thrown to the bottom of the equipment, thereby ensuring that every part of the equipment can be fully cleaned. This method not only improves the fineness of cleaning, but also avoids the risk of cross-contamination caused by direct manual contact with the equipment.
[0029] After cleaning is complete, wastewater is drained and the equipment is dried. The wastewater is removed by opening the conduit at the bottom of cleaning bucket 220. At this point, air pump 211 continues to operate, but there is no cleaning liquid in storage tank 212. High-pressure gas, after being heated, enters cleaning bucket 220 and purges the equipment through nozzle 240. This process not only ensures that the detergent fully contacts and rubs against the interior and exterior surfaces of the equipment, but also helps the cleaning bucket 220 drain any residual liquid, reducing the possibility of secondary contamination caused by residual liquid, thereby improving the cleaning effect and further reducing the risk of equipment contamination.
[0030] While air pump 211 is supplying air, outside air is pumped into impurity removal tank 213 via air intake pipe 214. The outside air is first filtered and disinfected by the disinfectant in tank 213. This improves the purity of the incoming air, reduces the system's reliance on costly pure air, lowers operating costs, and further enhances the safety of the device. Furthermore, regular replacement and removal of the disinfectant in tank 213 via connecting pipe 215 ensures the system's continued effective operation.
[0031] In some embodiments, the supply assembly 210 further includes a filter 216 , which is disposed on the air inlet pipe 214 ; During the intake process, the gas is filtered by the filter element 216, thereby further improving the purity of the intake air.
[0032] In some embodiments, the supply assembly 210 further includes a manifold 217 having two chambers therein: one chamber of the manifold 217 is connected to the storage tank 212 via a conduit, and the other chamber of the manifold 217 is connected to the air pump 211. The manifold 217 is also connected to the cleaning rod 230. The manifold 217 enables separate supply of gas and liquid, thereby improving cleaning stability.
[0033] In some embodiments, passages for circulating cleaning liquid are provided in the cleaning bucket 220 and the fixing frame 310, and a cleaning port 250 is provided on the fixing frame 310, which is connected to the passage in the fixing frame 310, and one of the cavities of the communicating vessel 217 is also connected to the passage in the cleaning bucket 220. The fixing frame 310 is set on the inner wall of the cleaning bucket 220. During the cleaning process of the utensil, the cleaning liquid can flow out from the cleaning port 250 through the communicating vessel 217, the passage inside the cleaning bucket 220 and the passage inside the fixing frame 310 to clean the utensil, further improving the cleaning effect and making the utensil cleaning more comprehensive.
[0034] In some embodiments, a through net 260 is provided on the side wall of the cleaning barrel 220, and a heater 270 is provided in the storage tank 212. During the cleaning process, the through net 260 has a certain degree of permeability, and at the same time, some cleaning liquid can be stored at the bottom of the cleaning barrel 220. The cleaning liquid at the bottom can fully contact and soak with the working end of the instrument, thereby achieving the cleaning of the more difficult-to-clean parts of the instrument, reducing cleaning dead corners, and improving the cleaning effect; at the same time, the heater 270 heats the cleaning liquid, which can achieve high-temperature disinfection while cleaning, further improving the cleaning effect; at the same time, it can increase the intake temperature when taking in air.
[0035] In some embodiments, the fixing mechanism 300 further includes a heat-insulating layer 320, which is disposed within the housing 100. The heat-insulating layer 320 can keep the cleaning liquid in the cleaning tank warm, thereby reducing heat loss and ensuring the activity of the cleaning agent.
[0036] In some embodiments, the cleaning barrel 220 is rotatably arranged on the body 100, and a driving mechanism 400 is also arranged on the body 100. The driving mechanism 400 includes a driving motor 410, a mounting plate 420 and a driving plate 430. The driving motor 410 is arranged on the mounting plate 420, the mounting plate 420 is arranged on the body 100, and the driving plate 430 is arranged on the cleaning barrel 220. The driving plate 430 is transmission-connected to the output rod of the driving motor 410.
[0037] During the cleaning process, the cleaning barrel 220 is driven to rotate by the driving motor 410, and the cleaning barrel 220 drives the fixing frame 310 and the cleaning port 250 set on the fixing frame 310 to rotate. At the same time, the communicating vessel 217 is used to supply air and liquid, so that the nozzle 240 switches back and forth between spraying liquid and spraying air during the cleaning process, thereby improving the cleaning effect. At the same time, when removing and loading utensils, all utensils can be taken out by taking out the cleaning barrel 220. The cleaning barrel 220 protects the utensils and reduces the possibility of secondary contamination. When replacing, it is more convenient to install and fix the utensils. You only need to take out the cleaning barrel 220 and fix it on the fixing frame 310 separately, and then fix the cleaning barrel 220 on the body 100; it is fixed to the body 100 by the mounting plate 420.
[0038] In some embodiments, the driving mechanism 400 further includes a plurality of rollers 440, which are disposed on the machine body 100. The washing tub 220 and the rollers 440 rotate within the machine body 100. During the rotary washing process, the washing tub 220 is rotated by the rollers 440, thereby improving the rotational stability of the washing tub 220.
[0039] In some embodiments, there are multiple fixing frames 310, and the fixing frames 310 are provided with clamping ends. The fixing frames 310 are made of rubber, and the inner end and the upper and lower ends of the clamping ends of the fixing frames 310 are provided with multiple cleaning ports 250. During the cleaning process, the multiple cleaning ports 250 can simultaneously clean the inner and outer surfaces of multiple utensils, and the multiple clamping ends can cooperate with each other to clamp long strips of equipment or flat equipment with a larger diameter. This can increase the applicable equipment range of the cleaning device, avoid functional singularity, and improve practicality.
[0040] The implementation principle of a testing equipment cleaning device according to an embodiment of the present invention is as follows: Fix the inspection equipment in the cleaning bucket 220 through the fixing frame 310, ensure that the active end (working end) of the instrument is facing downward, ensure that the cleaning liquid can flow smoothly through the inside of the instrument, and improve the cleaning uniformity. Start the air pump 211 to pressurize the storage tank 212, so that the pre-prepared cleaning liquid or disinfectant in the storage tank 212 is transported to the nozzle 240 through the pipeline under the action of high pressure. The nozzle 240 evenly sprays the cleaning liquid to clean the instrument. After the cleaning is completed, open the conduit at the bottom of the cleaning bucket 220 to discharge the waste water; the air pump 211 continues to work, and the high-pressure gas directly enters the cleaning bucket 220 and blows the instrument dry through the nozzle 240.
[0041] During the air supply process of the air pump 211, the outside air is pumped into the impurity removal tank 213 through the air inlet pipe 214, filtered and disinfected by the disinfectant; the disinfectant in the impurity removal tank 213 is regularly replaced and discharged through the connecting pipe 215 to ensure the continuous and effective operation of the system.
[0042] The present application further provides a cleaning method based on the above-mentioned cleaning device, which specifically includes the following steps: Step 1: Heat the prepared cleaning agent to a temperature between 90°C and 100°C in a storage tank. The tank contains a heater that preheats the cleaning water before adding the cleaning ingredients to quickly heat the cleaning agent.
[0043] Step 2: Turn on the air pump and manifold, and rotate the cleaning bucket to spray the cleaning agent through the nozzle and cleaning port until it is completely discharged. Because cleaning agents have a specific solubility ratio, the volume ratio of cleaning agent to cleaning water can be controlled in the storage tank, and after mixing, the entire cleaning agent is discharged. After the cleaning agent is discharged, a small amount of residue will remain in the storage tank, which will be rinsed away in subsequent steps.
[0044] Step 3: Close the manifold, turn on the heater, and heat the air in the tank to a temperature between 60°C and 70°C. The purpose of heating the air is to ensure that the heat exchange between the air and the cleaning agent on the equipment surface does not lower the temperature of the cleaning agent, thereby maintaining the cleaning agent's activity. The air in Step 3 should be moist due to residual cleaning agent in the tank. Moisturized heated air prevents drying out any cleaning agent adhering to the equipment surface, which could affect cleaning effectiveness.
[0045] Step 4: Open the connecting tube and rotate the cleaning bucket to allow the gas in the storage tank to spray into the cleaning bucket through the nozzle and cleaning port for three minutes. The heated air can fully flow over the surface of the equipment, removing stains through friction, which is especially effective for cleaning oily and viscous stains.
[0046] Step 5: Add clean water to the storage tank and spray it into the cleaning bucket. After three minutes, open the pipe at the bottom of the cleaning bucket to drain the waste water. The clean water has two functions: one is to rinse the inside of the cleaning device, and the other is to rinse the equipment. Only when the pipes inside the cleaning device are clean can the cleanliness of the inspection equipment be guaranteed.
[0047] Step 6: Repeat steps 3 and 4 for at least one more cycle. In the final cycle, repeat only steps 3 and 4 to verify that the equipment is clean. This application requires repeating the addition of clean water and heated air drying to ensure a more thorough cleaning. In the final cycle, to avoid residual moisture, only steps 3 and 4 are performed.
[0048] Anything not described in this application can be achieved by adopting or drawing on existing technologies.
[0049] The foregoing is merely an embodiment of the present application and is not intended to limit the present application. For those skilled in the art, the present application may have various changes and variations. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application should all be included within the scope of the claims of the present application.
Claims
1. A cleaning device for testing equipment, characterized in that: The invention comprises a machine body (100), a cleaning mechanism (200) and a fixing mechanism (300), wherein the cleaning mechanism (200) comprises a supply assembly (210), a cleaning barrel (220), a cleaning rod (230) and a nozzle (240), wherein the supply assembly (210) comprises an air pump (211) and a storage tank (212) for containing cleaning liquid, wherein the cleaning barrel (220) is arranged in the machine body (100), the air pump (211) is arranged on the machine body (100), the storage tank (212) is arranged on the machine body (100), the air pump (211) is communicated with the storage tank (212), the cleaning rod (230) is arranged in the cleaning barrel (220), a passage for circulating the cleaning liquid is arranged in the cleaning rod (230), and the nozzle (240) is arranged on the cleaning rod (230), and the nozzle (240) is communicated with the storage tank (212); The fixing mechanism (300) comprises a fixing frame (310), and the fixing frame (310) is arranged on the inner wall of the cleaning bucket (220).
2. The inspection equipment cleaning device according to claim 1, characterized in that: The supply assembly (210) further comprises a de-dusting tank (213), an air intake pipe (214), and a connecting pipe (215); the de-dusting tank (213) is arranged on the machine body (100); the air intake pipe (214) is arranged on the de-dusting tank (213); the top end of the de-dusting tank (213) is communicated with the air intake of the air pump (211); and the connecting pipe (215) is communicated with the de-dusting tank (213).
3. The inspection equipment cleaning device according to claim 2, characterized in that: The supply assembly (210) further includes a filter element (216), and the filter element (216) is arranged on the air inlet pipe (214).
4. The inspection equipment cleaning device according to claim 1, characterized in that: The supply assembly (210) further includes a communicating vessel (217), wherein two cavities are provided in the communicating vessel (217), one of the cavities of the communicating vessel (217) is connected to the storage tank (212) via a conduit, and the other cavity of the communicating vessel (217) is connected to the air pump (211), and the communicating vessel (217) is connected to the cleaning rod (230).
5. The inspection equipment cleaning device according to claim 1, characterized in that: A passage for circulating cleaning liquid is provided in the cleaning barrel (220), and a cleaning port (250) is provided on the fixing frame (310).
6. The inspection equipment cleaning device according to any one of claims 1 to 5, characterized in that: A through net (260) is provided on the side wall of the cleaning barrel (220), a heater (270) is provided in the storage tank (212), and the fixing mechanism (300) further comprises a heat-insulating layer (320), which is provided in the machine body (100).
7. The inspection equipment cleaning device according to claim 6, characterized in that: The washing barrel (220) is rotatably mounted on the machine body (100). A driving mechanism (400) is further mounted on the machine body (100). The driving mechanism (400) comprises a driving motor (410), a mounting plate (420), and a driving plate (430). The driving motor (410) is mounted on the mounting plate (420). The mounting plate (420) is mounted on the machine body (100). The driving plate (430) is mounted on the washing barrel (220). The driving plate (430) is in transmission connection with an output rod of the driving motor (410).
8. The inspection equipment cleaning device according to claim 7, characterized in that: The driving mechanism (400) further comprises a roller shaft (440), a plurality of the roller shafts (440) are provided, the roller shafts (440) are arranged on the machine body (100), and the cleaning barrel (220) and the roller shafts (440) rotate in the machine body (100).
9. The inspection equipment cleaning device according to claim 8, characterized in that: A plurality of the fixing frames (310) are provided, and the fixing frames (310) are provided with a clamping end. The fixing frames (310) are made of rubber, and a plurality of cleaning ports (250) are provided at the inner end and the upper and lower ends of the clamping end of the fixing frames (310).
10. A method for cleaning inspection equipment according to the cleaning device of claim 9, characterized in that: The following steps are involved: Step 1: Heat the prepared cleaning agent to a temperature between 60°C and 70°C in the storage tank; Step 2: Turn on the air pump and the connecting vessel and rotate the cleaning barrel so that the cleaning agent is sprayed into the cleaning barrel through the nozzle and the cleaning port until all the cleaning agent is sprayed out; Step 3: Close the connecting vessel, turn on the heater and heat the gas in the storage tank to a temperature between 200°C and 300°C; Step 4: Open the communicating vessel and rotate the cleaning barrel so that the gas in the storage tank is sprayed into the cleaning barrel through the nozzle and the cleaning port for three minutes; Step 5: Add clean water to the storage tank and continue spraying it into the cleaning bucket for three minutes. Then, open the conduit at the bottom of the cleaning bucket to drain the waste water. Step 6: Repeat steps 3 and 5 again for at least one cycle, and in the last cycle, only repeat steps 3 and 4 to complete the cleaning of the inspection equipment.
Citation Information
Patent Citations
Food processing equipment burnisher
CN207220466U