Sample bottle cleaning equipment
By designing a cleaning system, waste liquid recovery system, and circulating pressurization system for the sample bottle cleaning equipment, the problems of high water consumption and environmental pollution in polyoxymethylene sample cleaning were solved. The cleaning water was recycled and the equipment was operated intelligently, improving cleaning efficiency and safety.
Patent Information
- Application Number
- CN202422893561.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-11-26
AI Technical Summary
Existing technologies for cleaning polyoxymethylene samples consume a large amount of water, directly discharge wastewater, pollute the environment, and generate excessive levels of toxic and harmful gases during the cleaning process, posing safety hazards.
Design a sample bottle cleaning device, including a cleaning system, a waste liquid recovery system, and a circulating pressurization system. A water collection tank is used to collect cleaning water. The circulating pressurization system realizes the switching between cleaning mode and rinsing mode. Combining high-pressure cleaning and waste liquid recovery, it is equipped with a control panel to control the cleaning and waste liquid treatment system, realizing intelligent and automated operation of sample bottles.
It enables the recycling of cleaning water, reduces the amount of clean water used, avoids environmental pollution, improves cleaning efficiency and safety, and ensures intelligent and automated operation.
Smart Images

Figure CN223717937U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to laboratory equipment cleaning technical field, specifically, relate to a sample bottle cleaning equipment. BACKGROUND
[0002] Polyformaldehyde product is the extremely important link in chemical industry chain. The sample container involved in polyformaldehyde production process has big difficulty in the cleaning link, and the sample is high toxicity, volatile and easy to self-aggregation, and there are problems such as personnel poisoning, environmental pollution, water pollution, cleaning difficulty in cleaning.
[0003] There are various bottle washers in prior art, but they cannot be applied to polyformaldehyde related samples with high toxicity and easy self-aggregation, and these bottle washers have problems such as large water consumption, directly discharging waste water into sewer after cleaning, causing life sewage poison exceeding standard, toxic and harmful gas content exceeding standard in environment during cleaning process, and inconvenience in daily life.
[0004] At present, no effective solution has been proposed for the above problems. UTILITY MODEL CONTENT
[0005] The main purpose of the utility model is to provide a sample bottle cleaning equipment to solve the problems of large water consumption and direct discharge of waste water to pollute the environment in the prior art.
[0006] In order to achieve the above purpose, according to one aspect of the utility model, a sample bottle cleaning equipment is provided, which comprises: a cleaning system, the cleaning system has a cleaning cavity; a waste liquid recovery system, the waste liquid recovery system at least comprises a water collecting tank, the water collecting tank is arranged adjacent to the bottom surface of the cleaning cavity, a drain port is arranged on the water collecting tank, and the water collecting tank is used for collecting cleaning water in the cleaning cavity; a circulating pressurizing system, the circulating pressurizing system at least comprises a first water inlet, a second water inlet and a water outlet, the circulating pressurizing system has a cleaning mode that connects the first water inlet and the water outlet, and the circulating pressurizing system has a flushing mode that connects the second water inlet and the water outlet; wherein the first water inlet is arranged in communication with external clean water, the drain port is arranged in communication with the second water inlet, and the circulating pressurizing system is used for pressurizing the cleaning water and the clean water.
[0007] Further, the sample bottle cleaning equipment comprises: a circuit system, the circuit system is electrically connected with the cleaning system, the waste liquid recovery system and the circulating pressurizing system, the circuit system is provided with a control panel, the control panel is used for controlling the cleaning system to perform cleaning operation on the sample bottle, and / or the control panel is used for controlling the waste liquid recovery system to recover the cleaning water, and / or the control panel is used for controlling the circulating pressurizing system to pressurize the cleaning water and the clean water, and the control panel is used for controlling the circulating pressurizing system to switch between the cleaning mode and the flushing mode.
[0008] Further, the sample bottle cleaning device comprises a pipeline system having a plurality of liquid delivery pipelines, at least part of the liquid delivery pipelines being arranged in the sample bottle cleaning device, wherein the second water inlet is communicated with the drain through the liquid delivery pipeline, the water outlet is communicated with the cleaning cavity through the liquid delivery pipeline, and the plurality of liquid delivery pipelines are used for delivering cleaning water and clean water.
[0009] Further, at least one of the first water inlet and the second water inlet is provided with a water supply switch, and / or at least one of the drain and the water outlet is provided with a drain switch, the water supply switch and the drain switch are electrically connected with the circuit system, and the circuit system controls the opening and closing of the water supply switch and the drain switch.
[0010] Further, the circuit system comprises a solenoid valve, the solenoid valve is electrically connected with the control panel, and the solenoid valve is used for controlling the opening and closing of the water supply switch and the drain switch.
[0011] Further, the cleaning system comprises a plurality of cleaning nozzles, the plurality of cleaning nozzles are arranged on the bottom surface of the cleaning cavity, the plurality of cleaning nozzles are communicated with the water outlet through the liquid delivery pipeline, and the plurality of cleaning nozzles are used for high-pressure flushing of the sample bottle.
[0012] Further, the cleaning nozzle is rotatably arranged on the bottom surface of the cleaning cavity.
[0013] Further, the sample bottle cleaning device further comprises a heating system, the heating system is electrically connected with the circuit system, the heating system has a heating unit, the heating unit is arranged close to at least one of the water collecting tank, the cleaning cavity and the liquid delivery pipeline, and the heating unit is used for heating the clean water and the cleaning water.
[0014] Further, the cleaning system comprises a gas absorption device, the gas absorption device comprises an absorption groove arranged on the cavity wall of the cleaning cavity, the absorption groove is used for storing an absorption agent to absorb harmful gas in the cleaning cavity, and an air induction fan arranged on the cavity wall of the cleaning cavity close to the absorption groove, the air induction fan is used for inducing the harmful gas in the cleaning cavity into the absorption groove.
[0015] Further, the water collecting tank is further provided with a water collecting tank water outlet, the water collecting tank water outlet is communicated with an external wastewater treatment device.
[0016] The utility model discloses a technical scheme, sample bottle cleaning equipment has cleaning system and waste liquid recovery system, to the sample bottle in the cleaning cavity is cleaned, and the water collecting tank collects the cleaning water after cleaning the sample bottle, can avoid the cleaning water under the condition of not treating and is discharged into the external environment, causes environmental pollution, and the circulating pressurization system has the cleaning mode and the flushing mode, when the system is in the flushing mode, the circulating pressurization system will utilize the waste liquid in the water collecting tank and washes the sample bottle on the crystal, when the system is in the cleaning mode, the circulating pressurization system will utilize the clean water and carries out the last single cleaning to the sample bottle, through multiple washing mode and single cleaning mode, the sample bottle is washed, can realize with the minimum clean water volume and reaches the effect that the sample bottle is washed, can save the clean water amount greatly. BRIEF DESCRIPTION OF DRAWINGS
[0017] The accompanying drawings, which form a part of this specification, are included to provide a further understanding of the present application and are incorporated in and constitute a part of this specification. The embodiments of the present application, and their
[0018] Figure 1 A perspective view of an embodiment of a sample bottle cleaning apparatus according to the present application is shown.
[0019] Wherein, the above-mentioned drawing includes the following sign:
[0020] 1, pipeline system;2, circuit system;3, control panel;4, circulating pressurization system;41, first water inlet;42, second water inlet;43, water outlet;6, cleaning system;60, cleaning cavity;7, cleaning nozzle;8, waste liquid recovery system;80, water collecting tank;81, drain;82, water outlet of water collecting tank. DETAILED DESCRIPTION
[0021] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The present application will be described in detail below with reference to the drawings and in combination with the embodiments.
[0022] It should be noted that the terms used herein are only for describing specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. As used herein, the singular form is intended to include the plural form, unless the context clearly indicates otherwise, and it should also be understood that when the terms "comprise" and / or "include" are used in the specification, there is a feature, step, operation, device, component and / or combination thereof.
[0023] It is to be understood that the terms "first", "second", and the like, used in the description and the claims of the present application as well as the above description of the drawings merely refer to the resemblance of the objects, and do not necessarily imply a specific order or sequence of the objects. It is to be understood that the terms so used are interchangeable under appropriate circumstances and embodiments of the application described herein are capable of operating in other sequences than the one explicitly described or illustrated. Also, the terms "comprise", "have" and any variations thereof are intended to cover a non-exclusive inclusion, such that processes, methods, articles, or apparatuses that comprise, have or are otherwise including a list of steps or elements do not necessarily comprise, have, or are otherwise including only those steps or elements but can include additional steps or elements not expressly listed or inherent to such processes, methods, articles, or apparatuses.
[0024] Now, exemplary embodiments according to the present application will be described in more detail with reference to the accompanying drawings. However, these exemplary embodiments can be implemented in various different forms, and should not be construed as being limited to only the embodiments set forth herein. It is understood that the embodiments are provided so as to make the present application thoroughly and completely, and to fully convey the idea of the exemplary embodiments to one of ordinary skill in the art, and in the drawings, the thickness of layers and regions can be exaggerated for clarity, and the same reference numerals will be used to designate the same elements throughout, and thus a repeated description thereof will be omitted.
[0025] In conjunction with Figure 1 As shown, according to a specific embodiment of the present application, a sample bottle cleaning apparatus is provided.
[0026] Specifically, as Figure 1 shown, the sample bottle cleaning apparatus includes a cleaning system 6 having a cleaning cavity 60, a waste liquid recovery system 8 including at least a water collecting tank 80 disposed adjacent to a bottom surface of the cleaning cavity 60, the water collecting tank 80 having a drain 81 disposed thereon for collecting cleaning water within the cleaning cavity 60, and a circulating pressurization system 4 including at least a first water inlet 41, a second water inlet 42, and a water outlet 43, the circulating pressurization system 4 having a cleaning mode in which the first water inlet 41 is connected to the water outlet 43, and the circulating pressurization system 4 having a flushing mode in which the second water inlet 42 is connected to the water outlet 43; wherein the first water inlet 41 is disposed in communication with external clean water, the drain 81 is disposed in communication with the second water inlet 42, and the circulating pressurization system 4 is configured to pressurize the cleaning water and the clean water.
[0027] The sample bottle cleaning equipment has the cleaning system 6 and the waste liquid recycling system 8, and after the sample bottle is cleaned in the cleaning cavity 60, the water collecting tank 80 collects the cleaning water after cleaning the sample bottle, so that the cleaning water can be prevented from being discharged into the external environment without treatment, environmental pollution is avoided, and the circulating pressurizing system 4 has the cleaning mode and the flushing mode; when the system is in the flushing mode, the circulating pressurizing system flushes the sample bottle with the waste liquid in the water collecting tank 80; when the system is in the cleaning mode, the circulating pressurizing system performs the last single cleaning on the sample bottle with the clean water; the sample bottle is washed through the multiple flushing modes and the single cleaning mode, the cleaning water can be recycled, the sample bottle can be cleaned with the minimum amount of clean water, and the amount of clean water is greatly saved.
[0028] It should be noted that the circulating pressurizing system 4 is used to pressurize the cleaning water and the clean water, and in the process of cleaning the sample bottle, the sample bottle wall can be washed with high-pressure water with stronger impact force, the dirt on the surface of the sample bottle can be more completely removed, and the cleaning efficiency and effect are improved.
[0029] In an embodiment of the present application, the cleaning cavity 60 has an open position when the sample bottle is filled, and the cleaning cavity 60 has a sealed position when the sample bottle is cleaned; when the cleaning cavity 60 is in the sealed position, the cleaning system 6 can clean the sample bottle, so that the sealed state in the process of cleaning the sample bottle in the cleaning cavity 60 is ensured, the sample bottle cleaning of high-toxic, volatile, and self-aggregation medicines can be applied, harmful gas generated in the process of cleaning the sample bottle is prevented from being discharged into the external environment, pollution to the external environment and physical damage to the workers are avoided.
[0030] Specifically, the sample bottle cleaning device comprises circuit system 2, which is electrically connected with the cleaning system 6, the waste liquid recovery system 8 and the circulating pressurization system 4. The circuit system 2 is provided with a control panel 3, which is used to control the cleaning system 6 to clean the sample bottle; and / or, the control panel 3 is used to control the waste liquid recovery system 8 to recover the cleaning water; and / or, the control panel 3 is used to control the circulating pressurization system 4 to pressurize the cleaning water and the clean water, and the control panel 3 is used to control the circulating pressurization system 4 to switch between the cleaning mode and the flushing mode. The circuit system 2 is electrically connected with each system in the sample bottle cleaning device, and the circuit control of each system is integrated on the circuit system 2, so as to realize the control of each system by the circuit system 2. On the basis, the control panel 3 is arranged on the circuit system 2, and the control operation of each system in the sample bottle cleaning device can be realized through the control panel 3, that is, the intelligence and automation of the control of the sample bottle cleaning device are realized, so that the operation and control of the sample bottle cleaning device are more simple, for example, the water cleaning of the sample bottle by the cleaning system 6, the switching of the cleaning mode and the pressurization of the cleaning water or the clean water by the circulating pressurization system 4 can be realized through the operation of the control panel 3, so as to improve the work efficiency, reduce the complexity of the personnel operation, and also ensure the accuracy and consistency of the cleaning.
[0031] The skilled in the art should understand that the control panel 3 is arranged on the shell of the sample bottle cleaning device, and the control panel 3 is a man-machine interaction terminal with a man-machine interaction interface. The working conditions of the circuit system 2 and each system connected with the circuit system can be controlled by manually operating the control panel 3, so as to realize the cleaning operation of the sample bottle.
[0032] Further, the sample bottle cleaning device comprises a pipeline system 1, which has a plurality of infusion pipelines, and at least part of the infusion pipelines is arranged in the sample bottle cleaning device. In this embodiment, the second water inlet 42 is connected with the drain port 81 through the infusion pipeline, and the water outlet 43 is communicated with the cleaning cavity 60 through the infusion pipeline. The plurality of infusion pipelines are used to transport the cleaning water and the clean water. In this embodiment, the infusion pipeline is arranged separately from the circuit, so as to avoid the mutual interference between the infusion pipeline and the circuit, ensure the efficient transmission of the cleaning water and the clean water, avoid the blockage and leakage of the pipeline, and ensure the smooth progress of the cleaning process.
[0033] In one embodiment of the present application, the pipeline system 1 is electrically connected with the circuit system 2, and the communication and closing state of the pipeline system 1 can be controlled through the circuit system 2. Meanwhile, the state of the pipeline system 1 can also be adjusted through the control panel 3, that is, the communication and closing of the infusion pipeline can be realized by controlling the pipeline system 1.
[0034] Further, as shown in FIG. 1, the sample bottle cleaning device comprises a pipeline system 1, which has a plurality of infusion pipelines, and at least part of the infusion pipelines is arranged in the sample bottle cleaning device. In this embodiment, the second water inlet 42 is connected with the drain port 81 through the infusion pipeline, and the water outlet 43 is communicated with the cleaning cavity 60 through the infusion pipeline. The plurality of infusion pipelines are used to transport the cleaning water and the clean water. In this embodiment, the infusion pipeline is arranged separately from the circuit, so as to avoid the mutual interference between the infusion pipeline and the circuit, ensure the efficient transmission of the cleaning water and the clean water, avoid the blockage and leakage of the pipeline, and ensure the smooth progress of the cleaning process. Figure 1As shown, at least one of the first water inlet 41 and the second water inlet 42 is provided with a water supply switch, and / or at least one of the water outlet 81 and the water outlet 43 is provided with a water discharge switch, the water supply switch and the water discharge switch are electrically connected with the circuit system 2, and the circuit system 2 controls the opening and closing of the water supply switch and the water discharge switch. The circuit system 2 can control the clean water to enter the circulating pressurization system 4 through the first water inlet 41 and control the cleaning water to enter the circulating pressurization system through the second water inlet 42 by the opening and closing of the water supply switch; the circuit system 2 can also control the clean water or cleaning water to discharge from the circulating pressurization system through the water outlet 43 and control the cleaning water to discharge from the water collecting tank 80 through the water outlet 81 by the water discharge switch, and the water discharge switch and the water supply switch can accurately control the flow of clean water and cleaning water, so that the system can perform corresponding water supply and discharge according to the preset instructions to achieve corresponding cleaning work, and the management of water is more efficient, and the waste of clean water resources is reduced.
[0035] It should be noted that the water supply switch and the water discharge switch can be set as automatic control switches, that is, the water supply switch and the water discharge switch can be adjusted in the opening and closing state according to the preset instructions, and the water supply switch and the water discharge switch can also be controlled in the opening and closing state by the circuit system 2, so that the automation and intelligentization of the sample bottle cleaning equipment for cleaning the sample bottle can be realized according to the needs, and the tedious operation of personnel is reduced.
[0036] Specifically, the circuit system 2 includes a solenoid valve, the solenoid valve is electrically connected with the control panel 3, and the solenoid valve is used to control the opening and closing of the water supply switch and the water discharge switch. By using the solenoid valve, the automation degree of the equipment is further improved, and functions such as remote control and timing cleaning of the equipment can be realized, and the continuous operation of the equipment can be ensured by the setting of the solenoid valve, so that the high demand operation of the laboratory can be met.
[0037] Further, as shown, Figure 1 The cleaning system 6 includes a plurality of cleaning nozzles 7, the plurality of cleaning nozzles 7 are arranged on the bottom surface of the cleaning cavity 60, the plurality of cleaning nozzles 7 are communicated with the water outlet 43 through the liquid conveying pipeline, and the plurality of cleaning nozzles 7 are used for high-pressure flushing of the sample bottle. The cleaning nozzles 7 are arranged at the bottom end of the cleaning cavity 60, based on the structure of the sample bottle, the bottle opening of the sample bottle can be inverted and placed on the cleaning nozzles 7, then the water is sprayed from the bottom surface, so that the inside of the sample bottle can be effectively flushed and cleaned, and the cleaning water or clean water can easily reach each part and corner of the inside of the sample bottle in the high-pressure state, so that the inside of the sample bottle can be deeply cleaned even for the sample bottle with complex shape, the crystal stains inside and outside the sample bottle can be effectively removed, and the cleaning effect is improved.
[0038] In an embodiment of the present application, the sample bottles are arranged one-to-one with the cleaning nozzles 7, and the plurality of cleaning nozzles 7 are evenly arranged on the bottom surface of the cleaning cavity 60. Each cleaning nozzle 7 can clean one sample bottle, so that a plurality of sample bottles can be cleaned in one cleaning operation, improving the cleaning efficiency.
[0039] Optionally, the cleaning nozzle 7 is rotatably arranged on the bottom surface of the cleaning cavity 60. Based on the structural shape of the sample bottles, the sample bottles can be irregularly shaped. The cleaning nozzle 7 is rotatably arranged. During the cleaning process of the sample bottles, the cleaning nozzle 7 rotates to clean the sample bottles, so that the cleaning water or clean water can cover the sample bottles in all directions, improving the uniformity and completeness of the cleaning, and ensuring the cleanliness of the sample bottles.
[0040] Further, the sample bottle cleaning device further comprises a heating system electrically connected with the circuit system 2. The heating system has a heating unit arranged at least close to one of the water collecting tank 80, the cleaning cavity 60, and the liquid conveying pipeline. The heating unit is used for heating the clean water and the cleaning water. By arranging the heating system, the cleaning water and the clean water are heated, so that high-temperature and high-pressure water flow is used for cleaning the sample bottles in the cleaning cavity 60. The decomposition of the crystals and stains on the sample bottle wall can be accelerated, and the cleaning efficiency is further improved. Especially for organic crystal stains that can be dissolved only at high temperature, using high-temperature water flow for cleaning can ensure that the cleaning effect meets the requirements.
[0041] It should be noted that the heating system, the circuit system 2, the cleaning system 6, the circulating and pressurizing system 4, the waste liquid recovery system 8, and the electrical components and electrical equipment controlled by the circuit system, such as the electromagnetic valve and the heating unit, are all designed to be explosion-proof, meeting the national explosion-proof standard, so as to ensure that all kinds of electrical equipment in the sample bottle cleaning device will not cause explosion and fire accidents due to flammable gas during operation, improving the safety and stability of the operation of the sample bottle cleaning device.
[0042] Further, the cleaning system 6 comprises a gas absorption device. The gas absorption device comprises an absorption groove arranged on the cavity wall of the cleaning cavity 60 and an air blower. The absorption groove is used for storing absorption reagents to absorb harmful gases in the cleaning cavity 60. The air blower is arranged close to the absorption groove on the cavity wall of the cleaning cavity 60, and is used for introducing the harmful gases in the cleaning cavity 60 into the absorption groove. During the cleaning process of the sample bottles containing toxic samples with high storage height, high volatility, and easy self-aggregation, toxic gas will be generated with the increase of temperature. Therefore, the gas absorption device is arranged inside the cleaning cavity 60. The air blower is used to gather the toxic gas, and the absorption groove is arranged at the gathering place of the toxic gas. The absorption reagents are placed in the absorption groove to absorb the toxic gas, avoiding the damage to the environment and personnel caused by the discharge of the toxic gas outside the cleaning cavity 60.
[0043] Optionally, the absorption medicine can select chemical reagents according to different sample bottles storing samples, and active carbon and other reagents can be added to simultaneously utilize physical adsorption and chemical adsorption to absorb toxic gas.
[0044] Further, as shown in the drawings, Figure 1 The water collecting tank 80 is used for collecting the cleaning water after the sample bottle is cleaned in the cleaning cavity 60, and the setting of the water collecting tank 80 can avoid that the cleaning water in the sample bottle cleaning equipment is directly discharged out of the equipment to pollute the environment, and after the cleaning of the sample bottle is completed, the sewage and waste water in the water collecting tank 80 can be introduced into the corresponding waste water treatment device to treat the waste water before being discharged, so as to meet the sewage discharge standard.
[0045] The application also provides a preferred embodiment of the sample bottle cleaning equipment, which can realize the purposes of not polluting the environment and water body and not causing harm to the human body, effectively improve the work efficiency, and reduce the personnel investment.
[0046] Specifically, the sample bottle cleaning equipment is composed of a circuit system 2, a heating system, a circulating pressurization system 4, a gas absorption device and a waste liquid recovery system 8, the above-mentioned circuit system and electrical equipment are all designed to be explosion-proof, the circuit system 2 mainly controls the heating of the cleaning water, the temperature control, the start and stop of the circulating pressurization system 4, the gas absorption, the control of the automatic switch of water supply and drainage, the water supply and drainage of the system are realized through the electromagnetic valve switch, the waterway part is connected by the metal pipe with a designed specification, the spraying part is composed of a small rotary nozzle, the exhaust is avoided during the cleaning process, the harmful gas remaining in the tank is absorbed through the gas absorption part after multiple cleaning, and the cleaning water is recovered in the waste liquid recovery system 8 after the absorption is completed.
[0047] From the above description, it can be seen that the above-mentioned embodiments of the utility model realize the following technical effects: compared with the prior art, the sample bottle cleaning equipment of the application has the advantages of saving water and realizing complete recovery of the cleaning liquid, has the environmental protection advantage of not causing harm to the environment, has the advantages of saving water and less required electric energy, has lower power consumption than the existing equipment, has a lower requirement for the use place, can meet the cleaning use under any space condition, does not need to consider the placement position too much, and is more suitable for the cleaning of the sample bottle of toxic substances.
[0048] For purposes of the description hereinafter, the terms "upper", "lower", "right", "left", "rear", "front", "vertical" and "horizontal" as can be perceived herein relative to the accompanying drawings refer to the orientation of the components being described. However, it is to be understood that the spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the figures. For example, if the device described herein is turned over, elements described as "above" or "below" other elements would then be oriented "below" or "above" other elements, respectively. Thus, the exemplary term "above" can encompass both an orientation of above and below. The device can be otherwise oriented (rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein interpreted accordingly. The terms "first", "second", "third", etc. do not necessarily denote different or separate embodiments, or that any claim limitation can function or be used in only a single claimed embodiment. Such terms can be used interchangeably to distinguish or identify different embodiments.
[0049] In addition, it should be noted that throughout this application descriptions using the terms "one embodiment", "another embodiment", "an embodiment", "some embodiments", and / or the like mean that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment. The appearances of the phrases "in one embodiment" or "in some embodiments" in various places in the specification are not necessarily all referring to the same embodiment, nor are the various embodiments necessarily mutually exclusive, as can be understood by one of ordinary skill in the art. Furthermore, the described features, structures, or characteristics can be combined in any suitable manner in one or more embodiments.
[0050] In the above embodiments, the description of each embodiment has its own emphasis, and the parts not described in detail in a certain embodiment can be referred to the related description of other embodiments.
[0051] The preferred embodiments of the present application have been described above with the specific details. Obviously, the present application can be modified and altered in various ways by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall fall within the scope of the present application.
Claims
1. A sample bottle cleaning apparatus characterized by comprising: The sample bottle cleaning device comprises: a cleaning system (6) having a cleaning cavity (60); a waste liquid recovery system (8) comprising at least a water collecting tank (80) disposed adjacent to the bottom surface of the cleaning cavity (60), the water collecting tank (80) being provided with a water outlet (81), and the water collecting tank (80) being used for collecting cleaning water in the cleaning cavity (60); a circulating pressurization system (4) comprising at least a first water inlet (41), a second water inlet (42) and a water outlet (43), the circulating pressurization system (4) having a cleaning mode in which the first water inlet (41) and the water outlet (43) are connected, and the circulating pressurization system (4) having a flushing mode in which the second water inlet (42) and the water outlet (43) are connected; wherein the first water inlet (41) is connected to clean water outside, the water outlet (81) is connected to the second water inlet (42), and the circulating pressurization system (4) is used for pressurizing the cleaning water and the clean water.
2. The vial washing apparatus of claim 1, wherein, The sample bottle cleaning device comprises: circuit system (2) electrically connected with the cleaning system (6), the waste liquid recovery system (8) and the circulating pressurization system (4), the circuit system (2) being provided with a control panel (3) used for controlling the cleaning system (6) to clean the sample bottle; and / or, the control panel (3) is used for controlling the waste liquid recovery system (8) to recover the cleaning water; and / or, the control panel (3) is used for controlling the circulating pressurization system (4) to pressurize the cleaning water and the clean water, and the control panel (3) is used for controlling the circulating pressurization system (4) to switch between the cleaning mode and the flushing mode.
3. The vial washing apparatus of claim 2, wherein, The sample bottle cleaning device comprises: a pipeline system (1) having a plurality of infusion pipelines, at least part of the infusion pipelines being arranged in the sample bottle cleaning device, wherein the second water inlet (42) is connected to the water outlet (81) through the infusion pipelines, the water outlet (43) is connected to the cleaning cavity (60) through the infusion pipelines, and the plurality of infusion pipelines are used for conveying the cleaning water and the clean water.
4. The vial washing apparatus of claim 2, wherein, At least one of the first water inlet (41) and the second water inlet (42) is provided with a water supply switch, and / or at least one of the water outlet (81) and the water outlet (43) is provided with a water discharge switch, the water supply switch and the water discharge switch being electrically connected with the circuit system (2), and the circuit system (2) controls the opening and closing of the water supply switch and the water discharge switch.
5. The vial washing apparatus of claim 4, wherein, The circuit system (2) comprises a solenoid valve electrically connected with the control panel (3), and the solenoid valve is used for controlling the opening and closing of the water supply switch and the water discharge switch.
6. The vial washing apparatus of claim 3, wherein The cleaning system (6) comprises cleaning nozzles (7), the cleaning nozzles (7) are multiple, the multiple cleaning nozzles (7) are arranged on the bottom surface of the cleaning cavity (60), the multiple cleaning nozzles (7) are communicated with the water outlet (43) through the liquid conveying pipeline, and the multiple cleaning nozzles (7) are used for high-pressure flushing of the sample bottle.
7. The vial washing apparatus of claim 6, wherein, The cleaning nozzle (7) is rotatably arranged on the bottom surface of the cleaning cavity (60).
8. The vial washing apparatus of claim 3, wherein, The sample bottle cleaning equipment further comprises a heating system electrically connected with the circuit system (2), the heating system has a heating unit, the heating unit is arranged at least close to one of the water collecting tank (80), the cleaning cavity (60) and the liquid conveying pipeline, and the heating unit is used for heating the clean water and the cleaning water.
9. The vial washing apparatus of claim 8, wherein, The cleaning system (6) comprises a gas absorption device, the gas absorption device comprises: An absorption groove is arranged on the cavity wall of the cleaning cavity (60), and the absorption groove is used for storing absorption reagents to absorb harmful gases in the cleaning cavity (60); An air blower is arranged on the cavity wall of the cleaning cavity (60) close to the absorption groove, and the air blower is used for introducing the harmful gases in the cleaning cavity (60) into the absorption groove.
10. The vial washing apparatus of claim 1, wherein, The water collecting tank (80) is further provided with a water collecting tank water outlet (82), and the water collecting tank water outlet (82) is communicated with an external wastewater treatment device.