Multi-medicament cleaning device
By incorporating a cleaning mechanism and a reflux mechanism into the multi-agent cleaning device, the problem of low cleaning fluid utilization rate is solved, enabling the reuse of clean water and chemicals and improving the utilization rate of the cleaning fluid.
Patent Information
- Application Number
- CN202422974963.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-03
AI Technical Summary
The utilization rate of cleaning fluid in existing multi-agent cleaning equipment is low, resulting in water waste and low utilization rate.
A multi-agent cleaning device is designed. By setting up multiple cleaning mechanisms and a return mechanism, the cleaning agents and clean water are recovered and reused, thereby improving the utilization rate of the cleaning solution.
The design of the reflux mechanism enables the reuse of clean water and chemicals, improving the utilization rate of the cleaning solution and reducing water waste.
Smart Images

Figure CN223717942U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the water bucket cleaning equipment related technical field especially, relate to a kind of multi-medicament cleaning device. BACKGROUND
[0002] Tap bucket is used to hold pure water container, it is needed to use multiple times, therefore, before secondary water filling, the inside and outside of tap bucket need to be cleaned and disinfected.And when bucket is cleaned, it is usually divided into inside and outside cleaning.
[0003] In the existing inside cleaning technology, it is usually by flushing cleaning liquid such as clean water, disinfectant into the bucket, and the cleaning liquid flows out of the bucket to complete cleaning.Most of the existing cleaning liquid after cleaning is directly discharged, and cannot be reused.When multi-medicament cleaning, most of the medicaments still have cleaning ability after cleaning.In multi-medicament cleaning equipment, each medicament is cleaned with clean water before cleaning, and then thoroughly washed with pure water.The clean water after pure water cleaning can still be used for secondary cleaning, and if it is directly discharged, it will waste water resources and reduce the utilization rate of water resources.
[0004] In summary, the utilization rate of cleaning liquid of the multi-medicament cleaning equipment at present is low. UTILITY MODEL CONTENTS
[0005] To solve the above problems, the utility model provides a kind of multi-medicament cleaning device, by setting multiple cleaning mechanisms, corresponding reflux mechanism is arranged below the cleaning mechanism, to recover cleaned medicament or clean water and reuse.
[0006] The purpose of the utility model is realized by the following technical scheme:
[0007] In the first aspect, a kind of multi-medicament cleaning device, comprising:
[0008] Frame, frame is provided with transmission mechanism, transmission mechanism is provided with cleaning direction transmission bucket;Transmission mechanism is provided with first water washing mechanism, disinfectant washing mechanism and pure water cleaning mechanism according to cleaning direction;
[0009] Reflux mechanism;It is provided with first reflux groove, second reflux groove and third reflux groove;First reflux groove is correspondingly arranged below first water washing mechanism, second reflux groove is correspondingly arranged below disinfectant washing mechanism, and third reflux groove is correspondingly arranged below pure water cleaning mechanism;
[0010] The second backflow tank is provided with a disinfecting and washing tank, and the disinfecting and washing tank is connected with a liquid outlet of the disinfecting and washing mechanism and disinfects and washes the water in the bucket; the third backflow tank is provided with a first backflow tank, the first backflow tank is connected with a liquid outlet of the first washing mechanism and washes the water in the bucket; the first backflow tank is connected with a drainage outlet; and a liquid outlet of the pure water washing mechanism is connected with a pure water source to provide pure water for washing the bucket.
[0011] The transmission mechanism is provided with a washing direction transmission bucket, and the transmission mechanism is provided with the first washing mechanism, the disinfecting and washing mechanism and the pure water washing mechanism in the washing direction; the backflow mechanism is provided, and the backflow mechanism is provided with a backflow tank below each washing mechanism, and each backflow tank is connected with a medicine tank to recover the medicine. The liquid outlet of the pure water washing mechanism is connected with a pure water source to provide pure water for washing the bucket, and the pure water is collected into the first backflow tank through the third backflow tank after the first washing, and then is washed in the first washing mechanism for the second time, so that the utilization rate of the water is improved, and the utilization rate of all washing liquids is improved through the backflow mechanism.
[0012] In some embodiments, the disinfecting and washing mechanism is provided with the hot alkali mechanism and the washing mechanism adjacent to each other in the washing direction; the third backflow tank is provided with the fourth backflow tank and the fifth backflow tank; the disinfecting and washing tank is provided with the alkali water tank and the medicine tank;
[0013] The fourth backflow tank is correspondingly arranged below the hot alkali mechanism, the fourth backflow tank is connected with the alkali water tank, and the alkali water tank is connected with the liquid outlet of the hot alkali mechanism; the fifth backflow tank is correspondingly arranged below the washing mechanism, the fifth backflow tank is connected with the medicine tank, and the medicine tank is connected with the liquid outlet of the washing mechanism.
[0014] The washing mechanism is also provided with a plurality of medicines, such as hot alkali and washing liquid medicine, and a corresponding backflow tank is arranged below each medicine; the medicine is recovered through the backflow tank for secondary utilization and washing, so as to improve the utilization rate of the washing liquid.
[0015] In some embodiments, the disinfecting and washing mechanism further comprises a second washing mechanism; the backflow mechanism is provided with a sixth backflow tank, and the sixth backflow tank is connected with a second backflow tank; the second washing mechanism is arranged between the hot alkali mechanism and the washing mechanism;
[0016] The second backflow tank is connected with the liquid outlet of the first washing mechanism, and the first backflow tank is connected with the liquid outlet of the second washing mechanism.
[0017] The second washing mechanism is arranged between different medicines to avoid pollution between the medicines. After being washed by the pure water from the rear, the second washing mechanism enters the first backflow tank through the third backflow tank and enters the second washing mechanism for secondary washing, and then enters the second backflow tank through the sixth backflow tank and enters the second washing mechanism for third washing. The utilization rate of the water is improved.
[0018] In some embodiments, the hot alkali mechanism comprises a first hot alkali mechanism, a second hot alkali mechanism, and a rotating pressing mechanism; the rotating pressing mechanism is arranged on the frame and above the first hot alkali mechanism for rotating pressing, and the first hot alkali mechanism and the second hot alkali mechanism are arranged in sequence according to the cleaning direction.
[0019] The hot alkali mechanism further comprises two hot alkali mechanisms, wherein the first hot alkali mechanism is provided with a rotating pressing mechanism to improve the cleaning pressure so that the hot alkali can flush to the bottom of the barrel.
[0020] In some embodiments, the medicine washing mechanism comprises a first medicine washing mechanism and a second medicine washing mechanism; the medicine tank comprises a first medicine tank and a second medicine tank; the reflux mechanism comprises a seventh reflux tank and an eighth reflux tank;
[0021] The first medicine tank is connected with the seventh reflux tank, and the first medicine tank is connected with the liquid injection port of the first medicine washing mechanism; the second medicine tank is connected with the eighth reflux tank, and the second medicine tank is connected with the liquid injection port of the second medicine washing mechanism.
[0022] By arranging different medicine washing mechanisms provided with different concentrations of medicine, the cleaning effect can be improved, and different reflux tanks and medicine tanks are arranged for repeated use.
[0023] In some embodiments, the first washing mechanism, the hot alkali mechanism, the first medicine washing mechanism, the second medicine washing mechanism, and the pure water cleaning mechanism are arranged adjacent to each other in sequence.
[0024] By arranging the drip-drying mechanism, it can be avoided that the residual liquid flows into the next cleaning mechanism to cause pollution.
[0025] In some embodiments, a steam mechanism is arranged between the medicine washing mechanism and the pure water cleaning mechanism; the steam port of the steam mechanism is connected with a steam generator.
[0026] By designing the steam mechanism, the water barrel can be finally dried by the steam mechanism before entering the last pure water cleaning mechanism.
[0027] In some embodiments, the transmission mechanism is provided with a first air cylinder mechanism and a second air cylinder mechanism; the driving end of the first air cylinder mechanism is connected with the hot alkali mechanism, and the driving end of the second air cylinder mechanism is connected with the medicine washing mechanism.
[0028] By arranging the first air cylinder mechanism and the second air cylinder mechanism, the cleaning height of different cleaning mechanisms can be lifted to adapt to the pressure required for medicine cleaning.
[0029] In some embodiments, a plurality of barrel fixing seats are arranged on the transmission mechanism and move according to the cleaning direction, and the barrel opening of the water barrel is arranged on the barrel fixing seat for transmission.
[0030] The transmission mechanism is provided with a plurality of bucket fixing seats, so that the bucket is set upside down on the bucket fixing seat and is moved to different cleaning mechanisms by the transmission mechanism, liquid is sprayed through the liquid spraying port of the cleaning mechanism, and the multiple medicaments are cleaned.
[0031] In some embodiments, the device further comprises a bucket entering mechanism and a bucket exiting mechanism; the bucket entering mechanism is arranged at the inlet of the transmission mechanism, and the bucket exiting mechanism is arranged at the outlet of the transmission mechanism.
[0032] The bucket entering mechanism comprises a clamping assembly, a first pushing assembly and a first driving assembly; the clamping assembly is provided with a mechanical claw to clamp the bucket opening of the bucket and move the bucket to the first pushing assembly; the first pushing assembly is provided with a first slope, and the bottom of the first slope is provided with a first baffle; the first driving assembly comprises a first driving part, and the driving end of the first driving part is connected to the first slope, so that the first slope and the bucket arranged on the first slope are tilted, and the bucket opening is pushed to the bucket fixing seat.
[0033] The bucket exiting mechanism comprises a second pushing assembly, a bucket lowering assembly and a second driving assembly; the second pushing assembly is provided with a second slope, and the bottom of the second slope is provided with a second baffle; the second driving assembly comprises a second driving part, and the bucket lowering assembly is provided with a bucket pushing rod; the driving end of the second driving part is connected to the second slope and the bucket pushing rod, and the second driving part drives the second slope to tilt and the bucket pushing rod to push the bucket out of the bucket fixing seat.
[0034] The bucket entering mechanism and the bucket exiting mechanism are arranged, so that the bucket can be automatically put in and taken out, and the overall automation degree of the device is improved.
[0035] The beneficial effects of the multi-medicament cleaning device are as follows:
[0036] The transmission mechanism is arranged on the rack, and the transmission mechanism is arranged to transmit the bucket in the cleaning direction; the first washing mechanism, the disinfecting and washing mechanism and the pure water cleaning mechanism are arranged on the transmission mechanism in the cleaning direction; the backflow mechanism is arranged, and the backflow tank is arranged below each cleaning mechanism, and each backflow tank is connected to the medicament tank to recover the medicament. The liquid spraying port of the pure water cleaning mechanism is connected to the pure water source to provide pure water for cleaning the bucket, and the pure water is collected into the first backflow tank after the first cleaning, and then is cleaned in the first washing mechanism for the second time, so that the utilization rate of the pure water is improved, and the utilization rate of all cleaning liquids is improved by the backflow mechanism. BRIEF DESCRIPTION OF DRAWINGS
[0037] Figure 1 The frame of the multi-medicament cleaning device Figure 1 ;
[0038] Figure 2 A frame of the multi-medicament cleaning device Figure 2
[0039] Figure 3 A left view of the multi-medicament cleaning device.
[0040] Reference signs:
[0041] 1, rack;
[0042] 2, transmission mechanism; 22, bucket fixing seat;
[0043] 31, first water washing mechanism; 32, second water washing mechanism; 33, dripping drying mechanism; 34, steam mechanism;
[0044] 4, disinfecting and washing mechanism; 41, hot alkali mechanism; 411, first hot alkali mechanism; 412, second hot alkali mechanism; 413, rotating and pressing mechanism; 42, washing mechanism; 421, first washing mechanism; 422, second washing mechanism;
[0045] 5, pure water cleaning mechanism;
[0046] 6, reflux mechanism; 61, first reflux tank; 62, second reflux tank; 63, third reflux tank; 64, fourth reflux tank; 65, fifth reflux tank; 66, sixth reflux tank; 67, seventh reflux tank; 68, eighth reflux tank; 69, drain;
[0047] 71, first reflux box; 72, disinfecting and washing box; 721, first medicine water box; 722, second medicine water box; 73, alkali water box; 74, second reflux box; 75, steam generator;
[0048] 81, first air cylinder mechanism; 82, second air cylinder mechanism;
[0049] 91, bucket entering mechanism; 911, clamping assembly; 912, first pushing assembly; 913, first driving part; 914, first slope; 915, first baffle; 92, bucket discharging mechanism; 921, second pushing assembly; 922, lower bucket assembly; 923, second driving part; 924, bucket pushing rod; 925, second slope; 926, second baffle;
[0050] X, cleaning direction. DETAILED DESCRIPTION
[0051] It should be noted that the embodiments in the utility model and the technical features in the embodiments can be combined with each other without conflict, and the detailed description in the specific embodiment should be understood as the explanation and description of the purpose of the utility model, and should not be regarded as improper limitation on the utility model.
[0052] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the specific technical solutions of this utility model will be further described in detail below with reference to the accompanying drawings of the embodiments of this utility model. The following embodiments are used to illustrate this utility model, but are not intended to limit the scope of this utility model.
[0053] In the embodiments of this utility model, the terms "first" and "second" 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. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the embodiments of this utility model, unless otherwise stated, "a plurality of" means two or more.
[0054] Furthermore, in this embodiment of the invention, directional terms such as "upper," "lower," "left," and "right" are defined relative to the positions of the components shown in the accompanying drawings. It should be understood that these directional terms are relative concepts, used for relative description and clarification, and can change accordingly depending on the position of the components in the accompanying drawings.
[0055] 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.
[0056] 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.
[0057] 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.
[0058] Example 1:
[0059] like Figure 1 As shown, this utility model proposes a multi-agent cleaning device, comprising:
[0060] The rack 1 is provided with a transmission mechanism 2, which is provided with a cleaning direction X transmission water tank; the transmission mechanism 2 is provided with a first water washing mechanism 31, a disinfectant washing mechanism 4 and a pure water cleaning mechanism 5 in the cleaning direction X;
[0061] A backflow mechanism 6 is provided with a first backflow tank 61, a second backflow tank 62 and a third backflow tank 63; the first backflow tank 61 is correspondingly arranged below the first water washing mechanism 31, the second backflow tank 62 is correspondingly arranged below the disinfectant washing mechanism 4, and the third backflow tank 63 is correspondingly arranged below the pure water cleaning mechanism 5;
[0062] The second backflow tank 62 is provided with a disinfectant washing box 72, and the disinfectant washing box 72 is connected to the liquid injection port of the disinfectant washing mechanism 4 and washes the disinfectant in the water tank; the third backflow tank 63 is provided with a first backflow box 71, the first backflow box 71 is connected to the liquid injection port of the first water washing mechanism 31 and washes the water in the water tank; the first backflow tank 61 is connected to a drain port 69; the liquid injection port of the pure water cleaning mechanism 5 is connected to a pure water source to provide pure water cleaning in the water tank.
[0063] Specifically, the rack 1 is provided with a conveying mechanism 2, which can be in the form of a conveying belt, a conveying chain belt, a hanging mechanical claw, etc. The conveying mechanism 2 can move the water bucket to different cleaning mechanisms for cleaning. Preferably, the water bucket is inverted and fixed on the conveying belt for transmission, so that the rinsed liquid can flow out of the bucket by gravity. The water bucket mouth can be fixed on the conveying mechanism 2 by clamping, clamping, etc. for transmission. The liquid injection port of the different cleaning mechanisms is arranged in the conveying mechanism 2, so that the bucket mouth can be moved to different liquid injection ports for cleaning in the cleaning direction X. Specifically, it includes a first water cleaning mechanism 31, a disinfectant cleaning mechanism 4, and a pure water cleaning mechanism 5 arranged in the cleaning direction X. The first water cleaning mechanism 31 is mainly for preliminary cleaning before disinfectant cleaning; the disinfectant cleaning mechanism 4 is mainly for disinfecting and disinfecting in the bucket, and multiple disinfectant cleaning can be realized by multiple disinfectant injection ports; the pure water cleaning mechanism 5 is the final pure water cleaning to avoid the residue of disinfectant. In order to improve the utilization rate of disinfectant, different reflux tanks are arranged below each cleaning mechanism, and each reflux tank is provided with a corresponding liquid recovery tank. The liquid recovery tank can perform secondary flushing on the recovered liquid. In some optional embodiments, if the disinfectant cleaning mechanism 4 is provided with multiple disinfectants, a reflux tank and a corresponding disinfectant reflux tank need to be arranged for each disinfectant to avoid mutual contamination of disinfectants. At the same time, since pure water can be used for multiple cleaning, the clean water after pure water cleaning with the least pollution can be connected to the front first water cleaning mechanism 31 for secondary flushing to improve the utilization rate of clean water. That is, the third reflux tank 63 is provided with the first reflux tank 71, the first reflux tank 71 is connected to the liquid injection port of the first water cleaning mechanism 31 and performs clean water flushing in the water bucket; the first reflux tank 61 is connected to the drain 69; and the liquid injection port of the pure water cleaning mechanism 5 is connected to a pure water source to provide pure water cleaning in the water bucket.
[0064] By arranging the conveying mechanism 2 on the rack 1, the conveying mechanism 2 is arranged to convey the water bucket in the cleaning direction X; the first water cleaning mechanism 31, the disinfectant cleaning mechanism 4, and the pure water cleaning mechanism 5 are arranged on the conveying mechanism 2 in the cleaning direction X; and the reflux mechanism 6 is arranged below each cleaning mechanism to form a reflux tank, and each reflux tank is connected to a disinfectant tank to recover disinfectant. The liquid injection port of the pure water cleaning mechanism 5 is connected to a pure water source to provide pure water cleaning in the water bucket, and the pure water is collected into the first reflux tank 71 by the third reflux tank 63 after the first cleaning, and then cleaned in the first water cleaning mechanism 31 for the second time, thereby improving the utilization rate of clean water and the utilization rate of all cleaning liquids by the reflux mechanism 6.
[0065] Embodiment 2:
[0066] As Figure 2As shown, the present embodiment further illustrates and optimizes the partial structure proposed in Embodiment 1, which is different in that:
[0067] In some embodiments, the disinfecting and washing mechanism 4 is provided with the hot alkali mechanism 41 and the washing mechanism 42 adjacent to each other in the washing direction X; the third backflow tank 63 is provided with the fourth backflow tank 64 and the fifth backflow tank 65; the disinfecting and washing tank 72 is provided with the alkali water tank 73 and the washing agent tank;
[0068] The fourth backflow tank 64 is correspondingly arranged below the hot alkali mechanism 41, and the fourth backflow tank 64 is connected to the alkali water tank 73, and the alkali water tank 73 is connected to the liquid injection port of the hot alkali mechanism 41; the fifth backflow tank 65 is correspondingly arranged below the washing mechanism 42, and the fifth backflow tank 65 is connected to the washing agent tank, and the washing agent tank is connected to the liquid injection port of the washing mechanism 42.
[0069] Specifically, the hot alkali mechanism 41 and the washing mechanism 42 are arranged adjacent to each other, the water bucket can be disinfected by the hot alkali mechanism 41, and the water bucket can be washed by the washing mechanism 42, especially by a specific cleaning liquid. It can be specifically manifested that a plurality of hot alkali liquid injection ports are arranged on the transmission mechanism 2 in the washing direction X, so that the cleaning process can be subjected to multiple hot alkali disinfections, and the hot alkali liquid is collected by the fourth backflow tank 64 and flows into the alkali water tank 73, and the alkali water tank 73 provides hot alkali for secondary flushing. And the washing mechanism 42 is arranged after the hot alkali liquid injection port on the transmission mechanism 2 in the washing direction X, and a plurality of washing liquid injection ports of the washing mechanism 42 are arranged, so as to wash the bucket, and the washing agent is collected by the fifth backflow tank 65 and flows into the washing agent tank, and the washing agent tank provides the washing agent for flushing. More specifically, the alkali water tank 73 maintains 55-65 DEG C, and is provided with four hot alkali liquid injection ports to realize multi-station hot alkali cleaning. The washing mechanism 42 can be provided with six liquid injection ports of the washing mechanism 42 to perform washing cleaning.
[0070] The washing mechanism 42 is also provided with a plurality of washing agents such as hot alkali, cleaning liquid, and corresponding backflow tanks are arranged for each washing agent; the washing agent is recovered by the backflow tank for secondary utilization and flushing to improve the utilization rate of the cleaning liquid.
[0071] In some embodiments, the disinfecting and washing mechanism 4 further comprises a second water washing mechanism 32; the backflow mechanism 6 is provided with a sixth backflow tank 66 connected with a second backflow tank 74; the second water washing mechanism 32 is arranged between the hot alkali mechanism 41 and the washing mechanism 42;
[0072] The second backflow tank 74 is connected to the liquid injection port of the first water washing mechanism 31, and the first backflow tank 71 is connected to the liquid injection port of the second water washing mechanism 32.
[0073] Specifically, the disinfectant washing mechanism 4 further comprises a second water washing mechanism 32, which is arranged between the hot alkali mechanism 41 and the disinfectant washing mechanism 42 to prevent residual pollution between disinfectants. Meanwhile, the sixth reflux tank 66 is arranged to recover the cleaning liquid and flow into the second reflux tank 74 to provide the water washing liquid of the first water washing mechanism 31.
[0074] The beneficial effect of this mode is that the second water washing mechanism 32 is arranged between different disinfectants to avoid pollution between disinfectants. After the second water washing mechanism 32 is cleaned by the pure water from the rear, it enters the first reflux tank 71 through the third reflux tank 63 and enters the second water washing mechanism 32 for secondary water washing, and then enters the second reflux tank 74 through the sixth reflux tank 66 for collection and enters the second water washing mechanism 32 for tertiary water washing, thereby improving the utilization rate of clean water.
[0075] Further, if there are more different disinfectants, multiple water washing mechanisms can be arranged according to the cleaning direction X, starting from the pure water cleaning mechanism 5, the recovered clean water can be used for water washing of the liquid outlet of the adjacent previous water washing mechanism to improve the utilization rate. In some preferred cases, clean water is only used three times, so after the third cleaning, a drain port 69 can be connected below the reflux tank of the third cleaning water washing mechanism to drain, thereby avoiding pollution caused by multiple uses.
[0076] In some embodiments, the hot alkali mechanism 41 comprises a first hot alkali mechanism 411, a second hot alkali mechanism 412, and a rotating pressing mechanism 413; the rotating pressing mechanism 413 is arranged on the rack 1 and arranged above the first hot alkali mechanism 411 to rotate and press, and the first hot alkali mechanism 411 and the second hot alkali mechanism 412 are arranged in sequence according to the cleaning direction X.
[0077] Specifically, the hot alkali mechanism 41 can be divided into a first hot alkali mechanism 411 and a second hot alkali mechanism 412. The first hot alkali mechanism 411 is provided with a rotating pressing mechanism 413, which can be a pressing cylinder, a pressing seat, a rotating motor, and a connecting plate. The pressing cylinder is fixed to the upper end of the rack 1, and the driving end of the pressing cylinder is connected to the pressing seat to realize the lifting in the vertical cleaning direction X, so as to realize the approach or departure of the pressing seat to the bottom of the water bucket. At the same time, a rotating motor is fixed on the pressing seat in parallel with the lifting direction, and the driving end of the rotating motor faces the bottom of the water bucket. The driving end of the rotating motor is provided with a connecting plate, which abuts against the water bucket and is rotated and pressed by the rotating motor and the pressing cylinder. Preferably, the first hot alkali mechanism 411 can be provided with two hot alkali liquid injection ports, which are pressed and rotated by the rotating pressing mechanism 413, so that the hot alkali sprayed by the liquid injection ports can be sprayed on the bottom of the water bucket, realizing medium-pressure disinfection. The second hot alkali mechanism 412 can also be provided with two liquid injection ports, which can be further improved. The pressure of the liquid injection port of the first hot alkali mechanism 411 can be set to 2 MPa, and the pressure of the liquid injection port of the second hot alkali mechanism 412 can be set to 0.3 MPa.
[0078] Further, the rotating pressing mechanism 413 with the same structure can also be arranged on the first water washing mechanism 31, so that the clean water can clearly clean the bottom of the bucket, and the pressure of the liquid injection port of the first water washing mechanism 31 can be set to 5.5-7 MPa.
[0079] The hot alkali mechanism 41 also includes two hot alkali mechanisms 41, wherein the first hot alkali mechanism 411 is provided with a rotating pressing mechanism 413 to improve the cleaning pressure, so that the hot alkali can be washed to the bottom of the bucket.
[0080] In some embodiments, the medicine washing mechanism 42 includes a first medicine washing mechanism 421 and a second medicine washing mechanism 422; the medicine tank includes a first medicine tank 721 and a second medicine tank 722; the reflux mechanism 6 includes a seventh reflux tank 67 and an eighth reflux tank 68.
[0081] The first medicine tank 721 is connected with the seventh reflux tank 67, and the first medicine tank 721 is connected with the liquid injection port of the first medicine washing mechanism 421. The second medicine tank 722 is connected with the eighth reflux tank 68, and the second medicine tank 722 is connected with the liquid injection port of the second medicine washing mechanism 422.
[0082] Specifically, the medicine washing mechanism 42 can set the first medicine washing mechanism 421 and the second medicine washing mechanism 422 by setting different concentrations of the medicine, and correspondingly set the seventh reflux tank 67 and the eighth reflux tank 68 to recover the medicine. Preferably, the first medicine washing mechanism 421 is set as a high-concentration medicine tank, and the first medicine washing mechanism 421 can be provided with three liquid injection ports, while the second medicine washing mechanism 422 is set as a low-concentration medicine tank, and the second medicine washing mechanism 422 can be provided with three liquid injection ports. Further, the medicine in the medicine washing mechanism 42 can be chlorine dioxide, peracetic acid, and the like, and cleaning is performed by configuring different concentrations of the medicine. Further, according to the cleaning direction X, the first medicine washing mechanism 421 with a higher concentration is cleaned before the second medicine washing mechanism 422 with a lower concentration.
[0083] By setting different medicine washing mechanisms 42, different concentrations of the medicine are set in the different medicine washing mechanisms 42, which can improve the cleaning effect, and different recovery tanks and medicine tanks are set to be repeatedly used.
[0084] In some embodiments, the first water washing mechanism 31, the hot alkali mechanism 41, the first medicine washing mechanism 421, the second medicine washing mechanism 422, and the pure water cleaning mechanism 5 are provided with the drip drying mechanism 33 in front and back.
[0085] Specifically, the drip drying mechanism 33 is provided, and the drip drying mechanism 33 is arranged in front of and behind each cleaning mechanism. The drip drying mechanism 33 can be provided with a liquid containing tank to avoid pollution of the equipment caused by scattering of the liquid.
[0086] By setting the drip drying mechanism 33, it can be avoided that the residual liquid flows into the next cleaning mechanism to cause pollution.
[0087] In some embodiments, the medicine washing mechanism 42 and the pure water cleaning mechanism 5 are provided with the steam mechanism 34, and the steam port of the steam mechanism 34 is connected with the steam generator 75.
[0088] By designing the steam mechanism 34, the last steam drying is performed by the steam mechanism 34 before the water bucket enters the last pure water cleaning mechanism 5.
[0089] In some embodiments, the transmission mechanism 2 is provided with the first air cylinder mechanism 81 and the second air cylinder mechanism 82, the driving end of the first air cylinder mechanism 81 is connected with the hot alkali mechanism 41, and the driving end of the second air cylinder mechanism 82 is connected with the medicine washing mechanism 42.
[0090] Specifically, the conveying mechanism 2 can be provided in two sections, the first section being the hot alkali mechanism 41, the first water washing mechanism 31, the first water washing mechanism 31, the second water washing mechanism 32, and the drip drying mechanism 33 provided between the hot alkali mechanism 41, the first water washing mechanism 31, the first water washing mechanism 31, and the second water washing mechanism 32; the second section being the chemical washing mechanism 42, the pure water cleaning mechanism 5, and the drip drying mechanism 33 and the steam mechanism 34 provided between the chemical washing mechanism 42 and the pure water cleaning mechanism 5. Through the first air cylinder mechanism 81, the first section of the conveying mechanism 2 can be lifted, specifically by 380-420 mm, to indirectly increase the pressure of the liquid injection port of the cleaning mechanism on the first section of the conveying mechanism 2. Through the second air cylinder mechanism 82, the second section of the conveying mechanism 2 can be lifted, specifically by 130-170 mm, to indirectly increase the pressure of the liquid injection port of the cleaning mechanism on the second section of the conveying mechanism 2. Further, the first air cylinder mechanism 81 and the second air cylinder mechanism 82 are each provided with a lifting air cylinder, which can be arranged at the liquid injection port of each cleaning mechanism to increase the height of the liquid injection port.
[0091] By providing the first air cylinder mechanism 81 and the second air cylinder mechanism 82, the cleaning height of different cleaning mechanisms can be lifted, thereby adapting to the pressure required during chemical cleaning.
[0092] Embodiment 3:
[0093] As shown in Figure 3 the embodiment further illustrates and optimizes the conveying mechanism 2 mentioned in Embodiment 1 and Embodiment 2, and the difference lies in that:
[0094] In some embodiments, the conveying mechanism 2 is provided with a plurality of water bucket fixing seats 22 and moves in the cleaning direction X, and the water bucket opening is arranged on the water bucket fixing seat 22 for transmission.
[0095] Specifically, a plurality of water bucket fixing seats 22 are provided and move in the cleaning direction X, and the water bucket opening is arranged upside down on the water bucket fixing seat 22 for transmission. The water bucket fixing seat 22 is provided with a clamping part clamped with the water bucket opening, so that the water bucket is arranged upside down on the conveying mechanism 2 and moves.
[0096] The conveying mechanism 2 is provided with a plurality of water bucket fixing seats 22, so that the water bucket is arranged upside down on the water bucket fixing seat 22 and moves on the conveying mechanism 2 to different cleaning mechanisms, and sprays liquid through the liquid injection port of the cleaning mechanism, thereby achieving cleaning of multiple chemicals.
[0097] In some embodiments, the conveying mechanism 2 is provided with a plurality of water bucket fixing seats 22 and moves in the cleaning direction X, and the water bucket opening is arranged on the water bucket fixing seat 22 for transmission.
[0098] The bucket entering mechanism 91 comprises a clamping assembly 911, a first pushing assembly 912, and a first driving assembly; the clamping assembly 911 is provided with mechanical claws to clamp the bucket opening and move to the first pushing assembly 912; the first pushing assembly 912 is provided with a first slope 914, and the bottom of the first slope 914 is provided with a first baffle 915; the first driving assembly comprises a first driving part 913, and the driving end of the first driving part 913 is connected with the first slope 914, so that the first slope 914 and the water bucket arranged on the first slope 914 are tilted, and the water bucket opening is pushed to move to the water bucket fixing seat 22.
[0099] The bucket discharging mechanism 92 comprises a second pushing assembly 921, a lower bucket assembly 922, and a second driving assembly; the second pushing assembly 921 is provided with a second slope 925, and the bottom of the second slope 925 is provided with a second baffle 926; the second driving assembly comprises a second driving part 923, so that the lower bucket assembly 922 is provided with a bucket pushing rod 924, the driving end of the second driving part 923 is connected with the second slope 925 and the bucket pushing rod 924, the second driving part 923 drives the second slope 925 to tilt and makes the bucket pushing rod 924 push the water bucket to move out of the water bucket fixing seat 22.
[0100] Specifically, the bucket entering mechanism 91 is arranged at the inlet of the conveying mechanism 2 and is provided with a clamping assembly 911, and a plurality of clamping assemblies 911 are arranged; the clamping assembly 911 is provided with mechanical claws, the bucket opening is clamped by the mechanical claws, and the bucket opening is moved to the first pushing assembly 912; the first pushing assembly 912 has a first slope 914, and the bottom of the first slope 914 is provided with a first baffle 915; the first baffle 915 can be arranged in a movable manner on the first slope 914; the first baffle 915 is driven by a motor or a pneumatic cylinder to move on the first slope 914, so as to push the water bucket arranged on the first slope 914 to enter the water bucket fixing seat 22; and the first driving assembly is arranged, the first driving assembly comprises a first driving part 913, and the driving end of the first driving part 913 is connected with the first slope 914, so that the first slope 914 and the water bucket arranged on the first slope 914 are tilted, and the water bucket opening is pushed to move to the water bucket fixing seat 22.
[0101] The bucket discharging mechanism 92 is arranged at the outlet of the conveying mechanism 2 and is provided with a second pushing assembly 921, a lower bucket assembly 922, and a second driving assembly; the second pushing assembly 921 is provided with a second slope 925, and the bottom of the second slope 925 is provided with a second baffle 926; the second driving assembly comprises a second driving part 923, so that the lower bucket assembly 922 is provided with a bucket pushing rod 924, the driving end of the second driving part 923 is connected with the second slope 925 and the bucket pushing rod 924, the second driving part 923 drives the second slope 925 to tilt and makes the bucket pushing rod 924 push the water bucket to move out of the water bucket fixing seat 22.
[0102] By setting the barrel entering mechanism 91 and the barrel exiting mechanism 92, the automatic barrel entering and the automatic barrel exiting of the water bucket are realized, and the overall automation degree of the equipment is improved.
[0103] Embodiment 4:
[0104] Please refer to the drawings as shown in Figures 1-3 The embodiment proposes a 21 cleaning station multi-medicament cleaning device for the structure mentioned in Embodiments 1, 2 and 3. The spray liquid port of the cleaning mechanism is arranged according to the cleaning direction X.
[0105] The sequence is the barrel entering mechanism 91, the dripping dry mechanism 33, the first water washing mechanism 31, the four hot alkali mechanisms 41, the dripping dry mechanism 33, the second water washing mechanism 32, the dripping dry mechanism 33, the three high-concentration medicament washing mechanisms 42, the dripping dry mechanism 33, the three low-concentration medicament washing mechanisms 42, the steam mechanism 34, the two pure water cleaning mechanisms 5, the dripping dry mechanism 33 and the barrel entering mechanism 91.
[0106] The embodiment serial number of the utility model is only for description, and does not represent the advantages and disadvantages of the embodiments. The above is only the preferred embodiment of the utility model, and does not limit the patent range of the utility model. Any equivalent device or equivalent process conversion according to the content of the utility model specification and drawings, or direct or indirect application in other related technical fields, is also included in the patent protection range of the utility model.
Claims
1. A multi-agent cleaning device, characterized in that, include: A frame (1) is provided with a transmission mechanism (2), which is provided with a water tank for conveying water in the cleaning direction (X); the transmission mechanism (2) is provided with a first water washing mechanism (31), a disinfectant washing mechanism (4), and a pure water washing mechanism (5) in accordance with the cleaning direction (X); and The reflux mechanism (6) is provided with a first reflux trough (61), a second reflux trough (62), and a third reflux trough (63); the first reflux trough (61) is located below the first water washing mechanism (31), the second reflux trough (62) is located below the disinfectant washing mechanism (4), and the third reflux trough (63) is located below the pure water cleaning mechanism (5). The second return tank (62) is equipped with a disinfectant washing tank (72), and the disinfectant washing tank (72) is connected to the spray nozzle of the disinfectant washing mechanism (4) to disinfect the water bucket; the third return tank (63) is equipped with a first return box (71), and the first return box (71) is connected to the spray nozzle of the first water washing mechanism (31) to rinse the water bucket with clean water; the first return tank (61) is connected to a drain outlet (69); the spray nozzle of the pure water cleaning mechanism (5) is connected to a pure water source to provide pure water cleaning for the water bucket.
2. The multi-agent cleaning device according to claim 1, characterized in that, The disinfection and washing mechanism (4) is provided with a hot alkali mechanism (41) and a washing mechanism (42) adjacent to each other in the washing direction (X); the third return tank (63) is provided with a fourth return tank (64) and a fifth return tank (65); the disinfection and washing box (72) is provided with an alkali water tank (73) and a medicine water tank; The fourth reflux trough (64) is located below the hot alkali mechanism (41) and is connected to the alkali water tank (73), which is connected to the spray port of the hot alkali mechanism (41). The fifth reflux trough (65) is located below the chemical washing mechanism (42) and is connected to the chemical water tank, which is connected to the spray port of the chemical washing mechanism (42).
3. The multi-agent cleaning device according to claim 2, characterized in that, The disinfection and washing mechanism (4) further includes a second water washing mechanism (32); the second water washing mechanism (32) is located between the hot alkali mechanism (41) and the washing mechanism (42); the reflux mechanism (6) is provided with a sixth reflux tank (66), and the sixth reflux tank (66) is connected to a second reflux box (74); The second return box (74) is connected to the spray port of the first water washing mechanism (31), and the first return box (71) is connected to the spray port of the second water washing mechanism (32).
4. The multi-agent cleaning device according to claim 2, characterized in that, The hot alkali mechanism (41) includes a first hot alkali mechanism (411), a second hot alkali mechanism (412), and a rotating pressing mechanism (413); the rotating pressing mechanism (413) is mounted on the frame (1) and positioned above the first hot alkali mechanism (411) for rotating pressing, and the first hot alkali mechanism (411) and the second hot alkali mechanism (412) are arranged sequentially according to the cleaning direction (X).
5. The multi-agent cleaning device according to claim 2, characterized in that, The medicated washing mechanism (42) includes a first medicated washing mechanism (421) and a second medicated washing mechanism (422); the medicated water tank includes a first medicated water tank (721) and a second medicated water tank (722); the reflux mechanism (6) includes a seventh reflux tank (67) and an eighth reflux tank (68); The first medicine tank (721) is connected to the seventh return channel (67), and the first medicine tank (721) is connected to the spray port of the first medicine washing mechanism (421); the second medicine tank (722) is connected to the eighth return channel (68), and the second medicine tank (722) is connected to the spray port of the second medicine washing mechanism (422).
6. The multi-agent cleaning device according to claim 5, characterized in that, The first water washing mechanism (31), the hot alkali mechanism (41), the first chemical washing mechanism (421), the second chemical washing mechanism (422), and the pure water washing mechanism (5) are all provided with a drip drying mechanism (33) in front of and behind each other.
7. The multi-agent cleaning device according to claim 2, characterized in that, A steam mechanism (34) is provided between the medicated washing mechanism (42) and the pure water cleaning mechanism (5); the steam port of the steam mechanism (34) is connected to a steam generator (75).
8. The multi-agent cleaning device according to claim 2, characterized in that, The transmission mechanism (2) is provided with a first cylinder mechanism (81) and a second cylinder mechanism (82); the driving end of the first cylinder mechanism (81) is connected to the hot alkali mechanism (41), and the driving end of the second cylinder mechanism (82) is connected to the medicine washing mechanism (42).
9. The multi-agent cleaning device according to claim 1, characterized in that, The transmission mechanism (2) is provided with multiple bucket fixing seats (22) and moves in the washing direction (X). The bucket opening is set on the bucket fixing seat (22) for transmission.
10. The multi-agent cleaning device according to claim 9, characterized in that, It also includes a bucket inlet mechanism (91) and a bucket outlet mechanism (92); the bucket inlet mechanism (91) is located at the entrance of the transmission mechanism (2), and the bucket outlet mechanism (92) is located at the exit of the transmission mechanism (2); The bucket-feeding mechanism (91) includes a clamping assembly (911), a first pushing assembly (912), and a first driving assembly; the clamping assembly (911) is provided with a mechanical claw to clamp the opening of the bucket and move it onto the first pushing assembly (912); the first pushing assembly (912) is provided with a first ramp (914), and a first baffle (915) is provided at the bottom of the first ramp (914); the first driving assembly includes a first driving part (913), the driving end of the first driving part (913) is connected to the first ramp (914) to tilt the first ramp (914) and the bucket disposed on the first ramp (914), and to push the bucket opening onto the bucket fixing seat (22); The bucket dispensing mechanism (92) includes a second pushing component (921), a bucket lowering component (922), and a second driving component; the second pushing component (921) is provided with a second ramp (925), and a second baffle (926) is provided at the bottom of the second ramp (925); the second driving component includes a second driving part (923) so that the bucket lowering component (922) is provided with a bucket pushing rod (924), the driving end of the second driving part (923) is connected to the second ramp (925) and the bucket pushing rod (924), the second driving part (923) drives the second ramp (925) to tilt and causes the bucket pushing rod (924) to push the bucket out of the bucket fixing seat (22).