Cleaning device outside barrel
By adopting a dual-impact structure and staggered cleaning brush assembly in the bucket cleaning equipment, the problems of bucket jamming and incomplete cleaning during bucket transportation are solved, achieving efficient and low-cost bucket cleaning results.
Patent Information
- Application Number
- CN202422663808.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-10-31
AI Technical Summary
In existing bucket cleaning equipment, buckets are prone to jamming, shifting, and incomplete cleaning during transport, leading to increased equipment complexity and higher costs.
The bucket inlet mechanism, featuring a dual-impact structure and staggered cleaning brush assemblies, transports the bucket via a curved path. Combined with the bottom cleaning assembly and spray system, this ensures the bucket passes smoothly through the cleaning process.
This effectively avoids problems such as bucket jamming and tipping over during the cleaning process, improves cleaning efficiency, reduces the frequency of manual maintenance, and lowers equipment complexity and cost.
Smart Images

Figure CN223655717U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present technology belongs to the technical field of water bucket cleaning equipment, and particularly relates to a bucket outer cleaning device. BACKGROUND
[0002] Water bucket cleaning is a very important process in the filling of bottled water production, which mainly includes two processes of bucket outer cleaning and bucket inner cleaning; wherein, the bucket outer cleaning includes cleaning the side wall and bottom surface of the water bucket.
[0003] In the existing water bucket cleaning equipment, the basic process is provided with a bucket entering mechanism, a cleaning mechanism and a bucket discharging mechanism; and the flow of the water bucket in the mechanism is basically relied on the bottom conveying mechanism, such as a conveyor belt mechanism, etc., so that the existing conveyor belt equipment is usually provided with a single wave wheel structure at the bucket entering mechanism to push the water bucket, the single wave wheel structure can push the water bucket forward, but the water bucket may be stuck, and since the water bucket is cylindrical, the water bucket may rotate when pushed, thereby causing the water bucket to deviate, the water bucket to be incompletely pushed, etc.
[0004] In the existing cleaning mechanism, the cleaning brushes on both sides are usually arranged in a rolling manner, which may cause the water bucket to be unable to advance and stuck when the cleaning brushes are aligned, and if the power of the conveying belt is increased to solve the problem, the water bucket may not be completely cleaned, or the conveying belt may be too fast to cause the water bucket to overturn, thereby causing manual maintenance.
[0005] The above-mentioned transportation problems cause the existing bucket outer cleaning equipment to frequently malfunction, although some high-automation structures can be added to solve the problem, which increases the complexity of the equipment and the cost. CONTENT OF THE UTILITY MODEL
[0006] To solve the above-mentioned problems, the utility model provides a bucket outer cleaning device, which sets a double wave wheel structure in the bucket entering mechanism to avoid the problem of stuck bucket, and sets the cleaning brushes on both sides of the cleaning mechanism in a staggered manner, which cooperates with the bottom cleaning brush to make the water bucket move in a curved path, thereby avoiding the blocking of the water bucket by the cleaning brushes on both sides and the problem of water bucket overturning caused by the alignment cleaning of the cleaning brushes on both sides. The above-mentioned method can solve the problems in the transportation of the bucket outer cleaning equipment.
[0007] The utility model aims to achieve the following technical solutions:
[0008] In the first aspect, the utility model provides a bucket outer cleaning device, which comprises:
[0009] A rack is provided with a support plate, and the support plate is arranged in the middle part of the rack.
[0010] The barrel entering mechanism is arranged at one end of the support plate, and the barrel entering mechanism is provided with a first channel. Two wave wheels are arranged on both sides of the first channel, and the water barrel is driven to move forward by the rotation of the two wave wheels.
[0011] The cleaning mechanism is arranged at the middle part of the support plate, and the cleaning mechanism is provided with a second channel. A plurality of first cleaning assemblies are arranged on both sides of the second channel, and the first cleaning assemblies on both sides are arranged in a staggered manner. A plurality of second cleaning assemblies are arranged on the second channel.
[0012] The barrel entering mechanism is arranged at one end of the support plate, and the barrel entering mechanism is provided with a first channel. Two wave wheels are arranged on both sides of the first channel, and the water barrel is driven to move forward by the rotation of the two wave wheels.
[0013] The water barrel is transmitted from the first channel to the second channel, cleaned by the first cleaning assembly and the second cleaning assembly, and then transmitted from the second channel to the barrel discharging mechanism, and finally output from the third channel.
[0014] The barrel entering mechanism is arranged at one end of the support plate, and the barrel entering mechanism is provided with a first channel. Two wave wheels are arranged on both sides of the first channel, and the water barrel is driven to move forward by the rotation of the two wave wheels. A cleaning mechanism is arranged at the middle part of the support plate, and the cleaning mechanism is provided with a second channel. A plurality of first cleaning assemblies are arranged on both sides of the second channel, and the first cleaning assemblies on both sides are arranged in a staggered manner. A plurality of second cleaning assemblies are arranged on the second channel. The barrel discharging mechanism is arranged at the other end of the support plate, and the barrel discharging mechanism is provided with a third channel.
[0015] In some embodiments, the barrel entering mechanism is provided with a first wave wheel assembly, a second wave wheel assembly, and a first driving assembly. The wave wheel includes a first wave wheel and a second wave wheel. The first wave wheel is arranged to rotate on the first wave wheel assembly, and the second wave wheel is arranged to rotate on the second wave wheel assembly. The first wave wheel assembly and the second wave wheel assembly are arranged on both sides of the first channel, respectively. The first driving assembly is arranged at the top end of the rack.
[0016] The first driving assembly is provided with a first gear, the second wave wheel assembly is provided with a second gear, and the first driving assembly is provided with a third gear and a driving motor. The third gear is arranged at the driving end of the driving motor, the third gear engages the first gear, and the first gear engages the second gear, so that the first driving assembly drives the first wave wheel assembly and the second wave wheel assembly to rotate.
[0017] The third gear drives the single first gear or the second gear, and the first gear and the second gear are engaged, so that the first gear and the second gear are driven by the single motor at the same time, and the first impeller assembly and the second impeller assembly rotate in opposite directions, so that the two impellers push the water bucket when the water bucket passes through the impellers.
[0018] In some embodiments, the length of the blades of the first impeller and the second impeller is half of the first channel, and one side of the blades of the first impeller and the second impeller is provided with a curved surface, and the other side is provided with a flat surface, so that when the first impeller and the second impeller rotate, a pushing space is formed.
[0019] In some embodiments, one side of the blades of the first impeller and the second impeller is provided with a curved surface, so that when the two impellers rotate, the curved surface of the first impeller and the second impeller can better push the water bucket to prevent the water bucket from overturning, and the other side is provided with a flat surface, which can prevent the water bucket from overturning when entering the bucket.
[0020] In some embodiments, the first impeller assembly is provided with a first rotating shaft, one end of the first rotating shaft is arranged on the support plate, the other end of the first rotating shaft is arranged on the upper part of the rack, and the first rotating shaft is rotatable, the first gear is arranged on the first rotating shaft and at the top end of the rack, and the first impeller is arranged on the first rotating shaft and rotates above the first channel.
[0021] The first impeller assembly is arranged on one side of the first channel and rotates through the first rotating shaft to achieve the pushing effect on the water bucket.
[0022] In some embodiments, the second impeller assembly is provided with a second rotating shaft, one end of the second rotating shaft is arranged on the support plate, the other end of the second rotating shaft is arranged on the upper part of the rack, and the second rotating shaft is rotatable, the second gear is arranged on the second rotating shaft and at the top end of the rack, and the second impeller is arranged on the second rotating shaft and rotates above the first channel.
[0023] The second impeller assembly is arranged on the other side of the second channel and rotates through the second rotating shaft to achieve the pushing effect on the water bucket.
[0024] In some embodiments, the first cleaning assembly includes a third rotating shaft and a first cleaning part, one end of the third rotating shaft is arranged on the top of the rack, the other end of the third rotating shaft is arranged on the support plate, and the third rotating shaft is rotatable, the first cleaning part is arranged on the third rotating shaft, and the second channel is further provided with a second driving assembly on both sides, and the two second driving assemblies drive the third rotating shaft on both sides of the second channel to rotate.
[0025] The first cleaning assembly drives the first cleaning part to rotate to clean the outside of the barrel, and the second driving assembly drives the first cleaning assembly on both sides of the second channel to clean, so that the first cleaning assembly is staggered and differential control is achieved.
[0026] In some embodiments, the second cleaning assembly comprises a second cleaning part, a fourth gear and a fourth rotating shaft; one end of the fourth rotating shaft is arranged on the second channel, the other end is arranged at the bottom of the second channel, and the fourth rotating shaft is rotatably arranged; the fourth gear is arranged on the fourth rotating shaft and below the second channel, and the fourth gears of multiple second cleaning assemblies are engaged; the third driving assembly is further arranged at the bottom of the second channel, and the third driving assembly drives the fourth gear to rotate.
[0027] The second cleaning assembly is arranged on the second channel to clean the bottom of the barrel, and through the mutual engagement of the fourth gears, the rotation directions of adjacent second cleaning assemblies are opposite, and the staggered arrangement of the first cleaning assembly is matched to realize the curve advancement of the barrel.
[0028] In some embodiments, the third rotating shaft and the fourth rotating shaft are internally provided with a liquid delivery channel, and the third rotating shaft is provided with a plurality of first liquid injection ports on the side surface.
[0029] The fourth rotating shaft is provided with a second liquid injection port at one end of the second channel.
[0030] The first liquid injection port is arranged on the third rotating shaft to spray and clean the side wall of the barrel, and the second liquid injection port is arranged at the end of the fourth rotating shaft arranged on the second channel to spray and clean the bottom.
[0031] In some embodiments, the cleaning mechanism further comprises a liquid supply assembly, and the liquid supply assembly comprises a liquid pump and a plurality of liquid delivery pipes; the liquid pump is arranged at the bottom of the support plate, the liquid delivery pipes extend from the outlet of the liquid pump to above the second channel, and the liquid delivery pipes are fixed on the top of the rack. The liquid delivery pipes are provided with a plurality of third liquid injection ports, the third liquid injection ports face the second channel, and the outlet of the liquid pump is connected to one end of the third rotating shaft and one end of the fourth rotating shaft.
[0032] The liquid supply assembly provides cleaning liquid and sets up a liquid injection channel to deliver liquid, and the third liquid injection ports are arranged on the liquid delivery pipes to further enable the cleaning liquid to completely cover the outer wall to make the cleaning more complete.
[0033] In some embodiments, the first channel is provided with a first roller and a fourth driving assembly; the fourth driving assembly is arranged on one side of the first channel and drives the first roller to roll;
[0034] The third channel is provided with a second roller and a fifth driving assembly; the fifth driving assembly is arranged on one side of the third channel and drives the second roller to roll.
[0035] By setting the over roller at the bottom of the first channel and the second three-channel, the pushing capacity of the water bucket can be further improved, the water bucket can be prevented from being stuck or turned over during the equipment flow process, and frequent manual intervention can be avoided.
[0036] The barrel external cleaning device has the following beneficial effects:
[0037] The barrel entering mechanism is arranged at one end of the support plate, the barrel entering mechanism is provided with a first channel, two wave wheels are arranged on the two sides of the first channel, and the water bucket is driven to advance through the rotation of the two wave wheels; the cleaning mechanism is arranged at the middle part of the support plate, the cleaning mechanism is provided with a second channel, a plurality of first cleaning assemblies are arranged on the two sides of the second channel, the first cleaning assemblies on the two sides are arranged in a staggered manner, a plurality of second cleaning assemblies are arranged on the second channel; and the barrel discharging mechanism is arranged to discharge the water bucket; the double wave wheels of the barrel entering mechanism can solve the incomplete pushing problem caused by the single wave wheel, the water bucket is further advanced in a curved manner through the first cleaning assembly, the water bucket is prevented from being stuck or turned over during cleaning, the problems occurring during the transportation of the barrel external cleaning device are solved, and frequent manual maintenance is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0038] Figure 1 The barrel external cleaning device of the utility model removes the shell Figure 1 ;
[0039] Figure 2 The barrel external cleaning device of the utility model is a wave wheel plan view
[0040] Figure 3 The barrel external cleaning device of the utility model is a side view
[0041] Figure 4 The barrel external cleaning device of the utility model removes the shell Figure 2 ;
[0042] Figure 5 The barrel external cleaning device of the utility model is a front view
[0043] Figure 6 The barrel external cleaning device of the utility model is a part a enlarged view Figure 5
[0044] Reference signs:
[0045] 100, rack; 110, support plate
[0046] 200, barrel entering mechanism; 210, impeller; 211, first impeller; 212, second impeller; 213, arc surface; 214, plane; 220, first channel; 221, first passing roller; 223, fourth driving assembly; 231, first gear; 232, second gear; 233, third gear; 241, first rotating shaft; 242, second rotating shaft;
[0047] 300, cleaning mechanism; 310, second channel; 320, first cleaning assembly; 321, third rotating shaft; 322, first cleaning part; 330, second cleaning assembly; 331, second cleaning part; 332, fourth gear; 333, fourth rotating shaft;
[0048] 400, barrel discharging mechanism; 410, third channel; 412, fifth driving assembly;
[0049] 500, liquid pump. DETAILED DESCRIPTION
[0050] It should be noted that the embodiments in the present application and the technical features in the embodiments can be combined with each other without conflict, and the detailed description in the specific embodiments should be understood as the explanation and description of the purpose of the present application, and should not be regarded as improper limitation of the present application.
[0051] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the specific technical scheme of the present application will be further described in detail below with reference to the drawings in the embodiments of the present application. The following embodiments are used to illustrate the present application, but not to limit the scope of the present application.
[0052] In the embodiments of the present application, the terms "first" and "second" are only used for description purpose, and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first" and "second" can explicitly or implicitly include one or more features. In the description of the embodiments of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.
[0053] In addition, in the embodiments of the present application, the orientation terms such as "upper", "lower", "left" and "right" are defined relative to the orientation of the components shown in the drawings, and it should be understood that these directional terms are relative concepts, which are used for relative description and clarification, and can be changed accordingly according to the change of the orientation of the components placed in the drawings.
[0054] In the embodiments of this utility model, unless otherwise explicitly specified and limited, the term "connection" should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral part; it can be a direct connection or an indirect connection through an intermediate medium.
[0055] In embodiments of this invention, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.
[0056] In this embodiment of the invention, the terms "exemplary" or "for example" are used to indicate that something is an example, illustration, or description. Any embodiment or design described as "exemplary" or "for example" in this embodiment of the invention should not be construed as being more preferred or advantageous than other embodiments or designs. Specifically, the use of the terms "exemplary" or "for example" is intended to present the relevant information in a specific manner.
[0057] Example 1:
[0058] like Figure 1 As shown, this embodiment proposes an external cleaning device for a tub, comprising:
[0059] The frame 100 is provided with a support plate 110, which is located in the middle of the frame 100.
[0060] The bucket inlet mechanism 200 is located at one end of the support plate 110. The bucket inlet mechanism 200 is provided with a first channel 220. Two impellers 210 are provided on both sides of the first channel 220. The bucket is driven forward by the rotation of the impellers 210.
[0061] The cleaning mechanism 300 is located in the middle of the support plate 110. The cleaning mechanism 300 is provided with a second channel 310. Multiple first cleaning components 320 are provided on both sides of the second channel 310 and the first cleaning components 320 on both sides are staggered. Multiple second cleaning components 330 are provided on the second channel 310.
[0062] And a bucket dispensing mechanism 400; the other end of the support plate 110 is provided with a third channel 410;
[0063] The water bucket is fed into the second channel 310 through the first channel 220, and after being cleaned by the first cleaning component 320 and the second cleaning component 330, it is sent out through the second channel 310 to the bucket discharge mechanism 400, and then output through the third channel 410.
[0064] Specifically, the middle part of the rack 100 is provided with a support plate 110, and the rack 100 is provided with a barrel entering mechanism 200, a cleaning mechanism 300, and a barrel discharging mechanism 400 arranged in sequence from one side to the other side of the rack 100. The water barrels are transferred through the first channel 220, the second channel 310, and the third channel 410. The first channel 220 of the barrel entering mechanism 200 is provided with two impellers 210 on both sides, and the two impellers 210 are arranged in opposite directions and can push the water barrels from the barrel entering direction to the cleaning mechanism 300. The two impellers 210 are arranged on the upper surface of the first channel 220, and the blade length of the impeller 210 is less than the width of the first channel 220.
[0065] The cleaning mechanism 300 is also provided, and the cleaning mechanism 300 is provided with a first cleaning assembly 320 on both sides, and the first cleaning assemblies 320 on both sides are arranged in a staggered manner, so that the water barrels advance in a curve when being transferred, and the curve transmission can avoid the problems of barrel jamming and overturning of the water barrels, and at the same time, the curve transmission can also increase the cleaning stroke and make the cleaning more clean. Further, a second cleaning assembly 330 is arranged at the bottom to clean the bottom of the water barrel. At the same time, a third channel 410 is arranged to enable the third channel 410 to output the water barrels.
[0066] The barrel entering mechanism 200 is arranged at one end of the support plate 110 of the rack 100, and the barrel entering mechanism 200 is provided with a first channel 220, two impellers 210 are arranged on both sides of the first channel 220, and the two impellers 210 are driven to advance the water barrels by rotating; and the cleaning mechanism 300 is arranged in the middle of the support plate 110, and the cleaning mechanism 300 is provided with a second channel 310, a plurality of first cleaning assemblies 320 are arranged on both sides of the second channel 310, and the first cleaning assemblies 320 on both sides are arranged in a staggered manner, and a plurality of second cleaning assemblies 330 are arranged on the second channel 310; and the barrel discharging mechanism 400 is arranged to flow out the water barrels; the double impellers 210 of the barrel entering mechanism 200 can solve the problem of incomplete barrel pushing caused by the single impeller 210, and the first cleaning assembly 320 further realizes the curve advancement of the water barrels, avoids the barrel jamming and overturning of the water barrels during cleaning, solves the problems occurring in the transportation of the barrel cleaning equipment outside the barrel, and avoids frequent manual maintenance.
[0067] Embodiment 2:
[0068] As shown in Figures 2-6 based on embodiment 1, this embodiment further describes and optimizes the structure of embodiment 1.
[0069] In some embodiments, the bucket entering mechanism 200 is provided with a first impeller assembly, a second impeller assembly, and a first driving assembly; the impeller 210 includes a first impeller 211 and a second impeller 212; the first impeller 211 is arranged to rotate on the first impeller assembly, and the second impeller 212 is arranged to rotate on the second impeller assembly; the first impeller assembly and the second impeller assembly are respectively arranged on both sides of the first channel 220; and the first driving assembly is arranged at the top end of the frame 100.
[0070] The first driving assembly is provided with a first gear 231, the second impeller assembly is provided with a second gear 232, the first driving assembly is provided with a third gear 233 and a driving motor; the third gear 233 is arranged at the driving end of the driving motor, the third gear 233 engages the first gear 231, and the first gear 231 engages the second gear 232, so that the first driving assembly drives the first impeller assembly and the second impeller assembly to rotate.
[0071] Specifically, the bucket entering mechanism 200 is provided with a first impeller assembly, a second impeller assembly, and a first driving assembly for driving the first impeller assembly and the second impeller assembly; so that the first impeller 211 sleeved on the first impeller assembly and the second impeller 212 sleeved on the second impeller assembly can rotate and push the water bucket to the cleaning mechanism 300, and the first impeller assembly and the second impeller assembly are respectively arranged on both sides of the first channel 220. In actual application, the blades of the first impeller 211 and the second impeller 212 can be arranged to be half the length of the first channel 220, so that the two impellers 210 do not interfere with each other when rotating, and can exactly push the water bucket. At the same time, the first driving assembly is provided with a third gear 233 and a driving motor, a first fixed support can be arranged above the first channel 220 and close to the top of the frame 100, the driving motor is fixed on the first fixed support, and the third gear 233 is rotatably arranged at the driving end of the driving motor and above the first fixed support. At the same time, the first impeller assembly and the second impeller assembly are partially fixed on the first fixed support, and the first gear 231 of the first impeller assembly and the second gear 232 of the second impeller assembly are rotatably arranged above the first fixed support, and the first gear 231 and the third gear 233 are engaged, and the first gear 231 and the second gear 232 are engaged, so that the third gear 233 drives the first gear 231 and the second gear 232 to rotate. Further, in order to avoid the longitudinal arrangement of the driving motor occupying the bottom water bucket transportation space, a transfer gear can be arranged, so that the driving motor is arranged transversely on the first fixed support, and the driving motor and the third gear 233 are arranged at a 90° angle through the transfer gear.
[0072] The single first gear 231 or the second gear 232 is driven by the third gear 233, and the first gear 231 and the second gear 232 are engaged, so that the first gear 231 and the second gear 232 are driven by the single motor at the same time, and the rotating directions of the first impeller assembly and the second impeller assembly are opposite, so that the two impellers 210 push the water bucket when the water bucket passes through the impellers 210.
[0073] In some embodiments, the length of the blades of the first impeller 211 and the second impeller 212 is half of the first channel 220, and one side of the blades of the first impeller 211 and the second impeller 212 is provided with the arc surface 213, and the other side is provided with the flat surface 214, so that the first impeller 211 and the second impeller 212 form a pushing space when rotating.
[0074] Specifically, the length of the blades of the first impeller 211 and the second impeller 212 is half of the first channel 220, and one side is provided with the arc surface 213, specifically, the side of the first impeller 211 and the second impeller 212 that pushes the water bucket when rotating is provided with the arc surface 213, and the curvature of the arc surface 213 can be set according to the curvature of the outside of the water bucket. The arc surface 213 also enables the water bucket wall to slide between the blades of the two impellers 210 when pushing the water bucket, so that the water bucket can be pushed from the middle to the cleaning mechanism 300, preventing the water bucket from tipping over. The flat surface 214 prevents the water bucket from tipping over due to the large force when entering the water bucket from the outside. When rotating, a pushing space is formed, which is similar to a rhombus space, which can correct the water bucket and prevent the water bucket from deviating when entering the cleaning mechanism 300.
[0075] One side of the blades of the first impeller 211 and the second impeller 212 is provided with the arc surface 213, so that the two impellers 210 can better push the water bucket and prevent the water bucket from tipping over when rotating. The other side is provided with the flat surface 214, which can prevent the water bucket from tipping over when entering the water bucket.
[0076] In some embodiments, the first impeller assembly is provided with a first rotating shaft 241; one end of the first rotating shaft 241 is arranged on the support plate 110, the other end of the first rotating shaft 241 is arranged on the upper part of the rack 100, and the first rotating shaft 241 is rotatable; the first gear 231 is arranged on the first rotating shaft 241 and at the top end of the rack 100; the first impeller 211 is arranged on the first rotating shaft 241 and rotates above the first channel 220.
[0077] Specifically, the first wave wheel assembly is provided with a first rotating shaft 241, one end of the first rotating shaft 241 is arranged on the support plate 110, the other end is arranged on the upper part of the rack 100, and the first rotating shaft 241 can be further arranged on the first fixed support, and both sides are rotatably arranged, and further, a connecting portion is arranged on both sides of the first rotating shaft 241, the radius of the connecting portion is smaller than the body radius of the first rotating shaft 241, and a clamping base is arranged on the first fixed support and the support plate 110, a through hole with the same radius as the connecting portion is arranged in the middle of the clamping base, the connecting portion is inserted into the clamping base, so that the first rotating shaft 241 is rotatably arranged between the support plate 110 and the first fixed support, and the end arranged on the first fixed support extends to the top of the rack 100, so that the first gear 231 can be fixed on the part, and the whole first rotating shaft 241 is driven to rotate by the gear, and the first wave wheel 211 is arranged on the first rotating shaft 241 and above the first channel 220, so that the first wave wheel 211 is driven to rotate by the first rotating shaft 241. The first wave wheel assembly is arranged on one side of the first channel 220 and rotates through the first rotating shaft 241, so as to realize the pushing effect on the water bucket.
[0078] In some embodiments, the second wave wheel assembly is provided with a second rotating shaft 242; one end of the second rotating shaft 242 is arranged on the support plate 110, the other end of the second rotating shaft 242 is arranged on the upper part of the rack 100, and the second rotating shaft 242 is rotatable; the second gear 232 is arranged on the second rotating shaft 242 and at the top end of the rack 100; the second wave wheel 212 is arranged on the second rotating shaft 242 and above the first channel 220.
[0079] Specifically, the structure and connection method of the second wave wheel assembly are consistent with those of the first wave wheel assembly, and the second wave wheel assembly is arranged on the other side of the first channel 220 and the first wave wheel assembly. The second wave wheel assembly is arranged on the other side of the second channel 310 and rotates through the second rotating shaft 242, so as to realize the pushing effect on the water bucket.
[0080] In some embodiments, the first cleaning assembly 320 includes a third rotating shaft 321 and a first cleaning portion 322; one end of the third rotating shaft 321 is arranged on the top of the rack 100, the other end of the third rotating shaft 321 is arranged on the support plate 110, and the third rotating shaft 321 is rotatable; the first cleaning portion 322 is arranged on the third rotating shaft 321; the second channel 310 is further provided with a second driving assembly on both sides, and the second driving assemblies on both sides drive the third rotating shaft 321 on both sides of the second channel 310 to rotate.
[0081] Specifically, the first cleaning assembly 320 comprises a third rotating shaft 321 and a first cleaning part 322. The first cleaning part 322 is sleeved on the third rotating shaft 321. The third rotating shaft 321 can be arranged in the same way as the first rotating shaft 241. A second fixed support is arranged above the second channel 310. One end of the third rotating shaft 321 is arranged on the second fixed support, and the other end is arranged on the support plate 110. A fifth gear is arranged at one end of each third rotating shaft 321 on the second fixed support. Two second driving assemblies are arranged on the second fixed support. The fifth gears on one side of the second channel 310 form a group. Each group of fifth gears is controlled by the second driving assembly. The first cleaning assemblies 320 arranged on both sides of the second channel 310 can be controlled respectively or at different speeds.
[0082] The first cleaning assembly 320 rotates the first cleaning part 322 to clean the outside of the bucket through the third rotating shaft 321. The first cleaning assemblies 320 on both sides of the second channel 310 are driven by the second driving assemblies to clean, which realizes the staggered arrangement and differential speed control.
[0083] In some embodiments, the second cleaning assembly 330 comprises a second cleaning part 331, a fourth gear 332, and a fourth rotating shaft 333. One end of the fourth rotating shaft 333 is arranged on the second channel 310, and the other end is arranged at the bottom of the second channel 310. The fourth rotating shaft 333 is rotatably arranged. The fourth gear 332 is arranged on the fourth rotating shaft 333 and below the second channel 310. The fourth gears 332 of multiple second cleaning assemblies 330 are engaged. A third driving assembly is arranged at the bottom of the second channel 310 to drive the fourth gear 332 to rotate.
[0084] Specifically, the second cleaning assembly 330 can be provided with the second cleaning part 331. The second cleaning part 331 can also be a brush. Unlike the first cleaning part 322, the second cleaning part 331 is arranged in a disc shape, and the brush is erected on the disc to clean the bottom of the bucket when it passes. The second cleaning part 331 is arranged at one end of the fourth rotating shaft 333, and the fourth gear 332 is arranged at the other end. The fourth gear 332 is arranged at the bottom of the second channel 310 and engaged with multiple fourth gears 332. The third driving assembly is consistent with the first driving assembly. The third driving assembly is fixed at the bottom of the second channel 310 and can also be provided with a gear to provide driving force and engage the fourth gear 332 to rotate. The fourth gears 332 are arranged in opposite directions to make the second cleaning part 331 operate in the opposite direction. In combination with the staggered arrangement of the first cleaning assembly 320, the bucket can move in a curve.
[0085] The second cleaning assembly 330 is arranged on the second channel 310 to clean the bottom of the water bucket. Through the mutual engagement of the fourth gears 332, the adjacent second cleaning assemblies 330 can rotate in opposite directions, which is matched with the staggered arrangement of the first cleaning assembly 320 to realize the curve advancement of the water bucket.
[0086] In some embodiments, the third rotating shaft 321 and the fourth rotating shaft 333 are internally provided with infusion channels, and the third rotating shaft 321 is provided with a plurality of first liquid injection ports on the side surface.
[0087] The fourth rotating shaft 333 is arranged at one end of the second channel 310 and is provided with a second liquid injection port.
[0088] Specifically, the infusion channels are arranged between the third rotating shaft 321 and the fourth rotating shaft 333, and the first liquid injection ports are arranged on one side of the rotating shaft. Through the liquid injection ports, the cleaning liquid can be sprayed out to clean the side wall of the water bucket. Through the fourth rotating shaft 333, the cleaning liquid can be output from one end of the fourth rotating shaft 333 to clean the bottom of the water bucket.
[0089] Through the first liquid injection ports arranged on the third rotating shaft 321, the side wall of the bucket is sprayed and cleaned. Through the second liquid injection port arranged at the end of the fourth rotating shaft 333 arranged on the second channel 310, the bottom is sprayed and cleaned.
[0090] Embodiment 3:
[0091] As shown in the figure, this embodiment further describes and optimizes some mechanisms other than the cleaning mechanism 300 and the bucket entering mechanism 200. Figure 5
[0092] In some embodiments, the cleaning mechanism 300 is further provided with a liquid supply assembly. The liquid supply assembly includes a liquid pump 500 and a plurality of infusion tubes. The liquid pump 500 is arranged at the bottom of the support plate 110. The infusion tubes extend from the outlet of the liquid pump 500 to above the second channel 310, and are fixed to the top of the rack 100. The infusion tubes are provided with a plurality of third liquid injection ports, which are directed towards the second channel 310. The outlet of the liquid pump 500 is connected to one end of the third rotating shaft 321 and one end of the fourth rotating shaft 333.
[0093] Specifically, the liquid supply assembly includes a liquid pump 500 and a plurality of infusion tubes. The liquid pump 500 is arranged at the bottom of the support plate 110 and extends from the outlet of the liquid pump 500 to above the second channel 310. Further, it can be on the second fixed support, and the infusion tubes on the second fixed support are provided with third liquid injection ports, so that the cleaning liquid is sprayed from above the water bucket.
[0094] The liquid supply assembly supplies cleaning liquid and sets a liquid injection channel to inject liquid, and a third liquid injection port is arranged on the liquid injection pipe, so that the cleaning liquid can completely cover the outer wall to make the cleaning more complete.
[0095] In some embodiments, the first channel 220 is provided with a first roller 221 and a fourth driving assembly 223; the fourth driving assembly 223 is arranged on one side of the first channel 220 and drives the first roller 221 to roll.
[0096] The third channel 410 is provided with a second roller and a fifth driving assembly 412; the fifth driving assembly 412 is arranged on one side of the third channel 410 and drives the second roller to roll.
[0097] Specifically, the fourth driving assembly 223 and the fifth driving assembly 412 can be provided with a rolling motor, a belt sleeve can be arranged between the plurality of first rollers 221, the first roller can be driven by the rolling motor of the fourth driving assembly 223, and the fourth driving assembly 223 can drive the first roller 221. A belt sleeve can be arranged between the plurality of second rollers, and the first roller can be driven by the rolling motor of the fifth driving assembly 412, and the fifth driving assembly 412 can drive the second roller.
[0098] By arranging the rollers at the bottom of the first channel 220 and the second channel, the pushing capacity of the water bucket can be further improved, the problems of the water bucket being stuck, overturned and the like during the equipment flow process can be prevented, and frequent manual intervention can be avoided.
[0099] The utility model embodiment serial number only for description, not represent the pros and cons of the embodiment. The above is only the preferred embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent device or equivalent process conversion using the utility model specification and drawing contents, or direct or indirect application in other related technical fields, are also included in the patent protection range of the utility model.
Claims
1. An external barrel cleaning device, characterized by, Include: Rack (100); provided with support plate (110), the support plate (110) is arranged in the middle of the rack (100); Into the barrel mechanism (200) is arranged at one end of the support plate (110), the barrel mechanism (200) is provided with a first channel (220), the first channel (220) is provided with two wave wheels (210) on both sides, the two wave wheels (210) are driven to advance the water bucket by rotating; The cleaning mechanism (300) is arranged in the middle of the support plate (110), the cleaning mechanism (300) is provided with a second channel (310), the second channel (310) is provided with a plurality of first cleaning components (320) on both sides and the first cleaning components (320) on both sides are arranged staggered, a plurality of second cleaning components (330) are arranged on the second channel (310); And the barrel mechanism (400) is arranged at the other end of the support plate (110), the barrel mechanism (400) is provided with a third channel (410); The water bucket is transmitted into the second channel (310) by the first channel (220), and is transmitted out to the barrel mechanism (400) by the second channel (310) after being cleaned by the first cleaning component (320) and the second cleaning component (330), and is output by the third channel (410).
2. The outside barrel washing apparatus according to claim 1, characterized by The barrel mechanism (200) is provided with a first wave wheel assembly, a second wave wheel assembly and a first driving assembly; the wave wheel (210) includes a first wave wheel (211) and a second wave wheel (212); the first wave wheel (211) is arranged on the first wave wheel assembly and rotates, the second wave wheel (212) is arranged on the second wave wheel assembly and rotates; and the first wave wheel assembly and the second wave wheel assembly are arranged on both sides of the first channel (220) respectively; the first driving assembly is arranged at the top end of the rack (100); The first driving assembly is provided with a first gear (231), the second wave wheel assembly is provided with a second gear (232), the first driving assembly is provided with a third gear (233) and a driving motor; the third gear (233) is arranged on the driving end of the driving motor, the third gear (233) engages the first gear (231), the first gear (231) engages the second gear (232), so that the first driving assembly drives the first wave wheel assembly and the second wave wheel assembly to rotate.
3. The outside barrel washing apparatus according to claim 2, characterized by The length of the blade of the first wave wheel (211) and the second wave wheel (212) is half of the first channel (220), and one side of the blade of the first wave wheel (211) and the second wave wheel (212) is provided with a curved surface (213), and the other side is provided with a flat surface (214), so that the first wave wheel (211) and the second wave wheel (212) form a pushing space when rotating.
4. The outside barrel washing apparatus according to claim 2, characterized by The first wave wheel assembly is provided with a first rotating shaft (241); one end of the first rotating shaft (241) is arranged on the support plate (110), the other end of the first rotating shaft (241) is arranged on the upper part of the rack (100), and the first rotating shaft (241) is rotatable; the first gear (231) is arranged on the first rotating shaft (241) and at the top end of the rack (100); the first wave wheel (211) is arranged on the first rotating shaft (241) and rotates above the first channel (220).
5. The outside-the-barrel cleaning apparatus of claim 2, wherein The second wave wheel assembly is provided with a second rotating shaft (242); one end of the second rotating shaft (242) is arranged on the support plate (110), the other end of the second rotating shaft (242) is arranged on the upper part of the rack (100), and the second rotating shaft (242) is rotatable; the second gear (232) is arranged on the second rotating shaft (242) and at the top end of the rack (100); the second wave wheel (212) is arranged on the second rotating shaft (242) and rotates above the first channel (220).
6. The outside-the-barrel cleaning apparatus of claim 1, wherein The first cleaning assembly (320) includes a third rotating shaft (321), a first cleaning part (322); one end of the third rotating shaft (321) is arranged on the top of the rack (100), the other end of the third rotating shaft (321) is arranged on the support plate (110), and the third rotating shaft (321) is rotatable; the first cleaning part (322) is arranged on the third rotating shaft (321); both sides of the second channel (310) are also provided with a second driving assembly, and the second driving assembly on both sides drives the third rotating shaft (321) on both sides of the second channel (310) to rotate.
7. The outside barrel washing apparatus according to claim 6, characterized by The second cleaning assembly (330) includes a second cleaning part (331), a fourth gear (332), and a fourth rotating shaft (333); one end of the fourth rotating shaft (333) is arranged on the second channel (310), and the other end is arranged on the bottom of the second channel (310), and the fourth rotating shaft (333) is rotatably arranged; the fourth gear (332) is arranged on the fourth rotating shaft (333) and below the second channel (310), and the fourth gears (332) of multiple second cleaning assemblies (330) are engaged; the third driving assembly is further arranged on the bottom of the second channel (310), and the third driving assembly drives the fourth gear (332) to rotate.
8. The outside barrel washing apparatus according to claim 7, characterized by The third rotating shaft (321) and the fourth rotating shaft (333) are provided with a liquid delivery channel inside, and the third rotating shaft (321) is provided with a plurality of first liquid injection ports on the side surface; The fourth rotating shaft (333) is arranged on one end of the second channel (310) and is provided with a second liquid injection port.
9. The outside barrel washing apparatus according to claim 8, characterized by The cleaning mechanism (300) is further provided with a liquid supply assembly, which comprises a liquid pump (500) and a plurality of liquid supply pipes; the liquid pump (500) is arranged at the bottom of the support plate (110), the liquid supply pipes extend from the outlet of the liquid pump (500) to above the second channel (310), and the liquid supply pipes are fixed at the top of the rack (100); the liquid supply pipes are provided with a plurality of third liquid injection ports, the third liquid injection ports are directed to the second channel (310), and the outlet of the liquid pump (500) is connected to one end of the third rotating shaft (321) and one end of the fourth rotating shaft (333).
10. The outside-the-barrel cleaning apparatus of claim 1, wherein, The first channel (220) is provided with a first passing roller (221) and a fourth driving assembly (223); the fourth driving assembly (223) is arranged on one side of the first channel (220) and drives the first passing roller (221) to roll; The third channel (410) is provided with a second passing roller and a fifth driving assembly (412); the fifth driving assembly (412) is arranged on one side of the third channel (410) and drives the second passing roller to roll.