Liquid preparation structure and chain type cleaning machine
By employing tank and circulation components in the chain cleaning machine, the problem of uneven mixing of the cleaning solution in the main tank is solved, improving cleaning efficiency and reducing safety risks, thus achieving full utilization and safe configuration of the cleaning solution.
Patent Information
- Application Number
- CN202421970333.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-08-14
AI Technical Summary
In existing chain cleaning machines, the chemical solution is prepared directly in the main tank, which makes it difficult for the chemical solution and water to mix evenly in the main tank. This results in the chemical solution not being able to fully exert its properties, reducing cleaning efficiency, and posing a risk of chemical solution exposure.
The design employs a tank assembly and a circulation assembly, including a main tank and a secondary tank that are integrated together. The medicine is mixed in the secondary tank and then enters the working chamber of the main tank through a drive component and an output component. Combined with a flow equalization component and a return component, the distribution and circulation of the medicine are optimized.
The mixing uniformity of the chemical solution is improved, exposure of the chemical solution is avoided, cleaning efficiency is improved and safety risks during maintenance are reduced.
Smart Images

Figure CN223439595U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wet etching cleaning equipment technical field, specifically related to a liquid preparation structure and chain type cleaning machine. BACKGROUND
[0002] Chain type cleaning machine is a kind of cleaning equipment widely used in different industries, its characteristics include high degree of automation, reduce labor intensity, ensure cleaning consistency etc., this kind of cleaning machine adopts chain transmission mode, through the automation PLC control, can realize efficient, consistent cleaning effect.
[0003] Chain type cleaning machine is mainly divided into feeding, chemicals, water washing, drying, discharging five stations, and chemicals section is the most important, its main role is to etch cleaning to the surface of component by chemical liquid, chemicals section is generally divided into main groove and auxiliary groove.In prior art, chemical liquid in chemicals section is directly prepared in main groove first, and then circulated and supplemented by auxiliary groove when producing.But, by directly preparing chemical liquid in main groove, chemical liquid is exposed when preparing, and auxiliary groove volume is small and cannot completely contain liquid in main groove, when later roller or structure in main groove needs to be maintained or replaced, part of chemical liquid is placed in main groove working area, there is risk of personnel injury, in addition, since the cross-sectional area of main groove is larger than that of auxiliary groove, chemical water and water are difficult to mix evenly in main groove, so that the property of chemical liquid is difficult to fully play, leading to the cleaning efficiency of chain type cleaning machine reduces. CONTENT OF THE UTILITY MODEL
[0004] Therefore, the technical problem to be solved by the utility model lies in overcoming the defects that chemical liquid in chemicals section of existing chain type cleaning machine is directly prepared in main groove, chemical water and water are difficult to mix evenly in main groove, so that the property of chemical liquid is difficult to fully play, leading to the cleaning efficiency of chain type cleaning machine reduces.
[0005] Therefore, the utility model provides a liquid preparation structure, which comprises:
[0006] Groove body assembly, comprising main groove body and auxiliary groove body connected, the main groove body has working cavity, the auxiliary groove body has containing cavity, the containing cavity is adapted to communicate with external water source and chemical water source, to make water and chemical water flow into the containing cavity and mix into chemical liquid respectively;
[0007] Circulation assembly, comprising driving part and output part, both ends of the output part are connected with the main groove body and the auxiliary groove body respectively, to communicate the working cavity and the containing cavity, the driving part is arranged on the output part, so that chemical liquid in the containing cavity flows into the working cavity from the containing cavity through the output part under the driving of the driving part.
[0008] Optionally, the liquid preparation structure, the circulating assembly further comprises a uniform flow member, the uniform flow member is arranged in the working cavity, and the uniform flow member has a uniform flow channel and a plurality of communication portions, any one of the communication portions is communicated with the uniform flow channel and the working cavity;
[0009] The end of the output member connected with the main groove body is connected with the uniform flow member to communicate the containing cavity and the uniform flow channel, and to make the liquid medicine flow into the uniform flow channel through the output member and flow into the working cavity through all the communication portions.
[0010] Optionally, the liquid preparation structure further comprises at least two partition members, the two partition members are arranged in the working cavity to divide the working cavity into a working area and two shunt areas, the working area is connected with the end of the output member away from the auxiliary groove body, and any one of the shunt areas is adapted to receive the liquid medicine overflowing the partition member from the working area.
[0011] Optionally, the liquid preparation structure, the circulating assembly further comprises at least two return flow members, one end of any one of the return flow members is connected with the main groove body, and the other end is connected with the auxiliary groove body to communicate the shunt area and the containing cavity, and to make the liquid medicine in the shunt area flow into the containing cavity through the return flow member.
[0012] Optionally, the liquid preparation structure further comprises a liquid inlet assembly, the liquid inlet assembly comprises a first liquid inlet member and a second liquid inlet member, two ends of the first liquid inlet member are respectively communicated with the external water source and the auxiliary groove body, and two ends of the second liquid inlet member are respectively communicated with the external liquid medicine source and the auxiliary groove body.
[0013] Optionally, the liquid preparation structure further comprises a detection assembly adapted to detect the liquid level information of the liquid medicine in the containing cavity, the detection assembly is arranged in the containing cavity and / or arranged outside the containing cavity, the detection assembly arranged in the containing cavity comprises a first detection member and a second detection member arranged close to the top and the bottom of the containing cavity respectively, and the detection assembly arranged outside the containing cavity comprises a third detection member and a communication member, two ends of the communication member are respectively connected with the auxiliary groove body and the third detection member.
[0014] Optionally, the liquid preparation structure further comprises an overflow member, one end of the overflow member is connected with the auxiliary groove body, and the other end is connected with an external container, so that when the liquid medicine in the containing cavity overflows the first detection member, the liquid medicine flows into the external container through the overflow member.
[0015] Optionally, the liquid preparation structure further comprises a plurality of volume reduction members, any one of the volume reduction members is arranged in the working area.
[0016] A chain type cleaning machine comprises the liquid preparation structure.
[0017] Optionally, the chain cleaning machine further comprises a plurality of rollers arranged along the transmission direction of the cleaning object, each roller is rotatably arranged in the working cavity and has a height greater than the liquid height in the working cavity, and each roller is adapted to carry the cleaning object and to drive the liquid in the working cavity to contact the cleaning object when the roller rotates.
[0018] The technical scheme provided by the utility model has the following advantages:
[0019] 1. The liquid preparation structure comprises a circulation assembly connected with the tank assembly, the tank assembly specifically comprises a main tank body and a secondary tank body connected together, the main tank body has a working cavity, and the secondary tank body has a containing cavity which is in communication with the water source and the medicine water source outside, so that the water and the medicine water outside can flow into the containing cavity and mix into medicine liquid in the containing cavity, the medicine liquid can clean the cleaning object, the circulation assembly specifically comprises a driving member and an output member, the two ends of the output member are connected with the main tank body and the secondary tank body respectively, so that the output member can connect the working cavity and the containing cavity, and the driving member is arranged on the output member, so that the medicine liquid in the containing cavity can be drawn into the output member by the driving member, and the medicine liquid can also flow into the working cavity in the output member, thereby the medicine liquid can clean the cleaning object arranged in the working cavity, in addition, the water and the medicine water are first input into the containing cavity, so that the water and the medicine water can mix in the containing cavity, and when the water and the medicine water mixed in the containing cavity continue to flow into the working cavity under the action of the circulation assembly, the properties of the medicine liquid flowing into the working cavity can be fully exerted due to the sufficient mixing of the water and the medicine water in the containing cavity and the output member, so that the water and the medicine water cannot be mixed in the working cavity of the main tank body, thereby the cleaning efficiency of the chain cleaning machine is improved, and the medicine liquid in the main tank body can flow into the secondary tank body when the machine is stopped or operated, so that the workers can not be injured by the medicine liquid. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or the prior art, the drawings needed in the embodiment or the prior art description will be briefly introduced as follows, and obviously, the drawings in the following description are some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to the drawings without creating labor.
[0021] Figure 1 A schematic view of a liquid preparation structure provided in an embodiment of the present application is shown in the figure;
[0022] Figure 2 A structural schematic view of a main groove body provided in an embodiment of the present application is shown in the figure;
[0023] Figure 3 A top view of the main groove body provided in an embodiment of the present application is shown in the figure;
[0024] Explanation of reference signs:
[0025] 1-groove assembly; 11-main groove body; 111-working area; 112-flow dividing area; 12-secondary groove body;
[0026] 2-circulation assembly; 21-driving member; 22-output member; 23-flow uniforming member; 24-backflow member;
[0027] 3-separating member; 4-overflow member; 5-volume reducing member; 6-roller;
[0028] 7-liquid inlet assembly; 71-first liquid inlet member; 72-second liquid inlet member;
[0029] 81-first detection member; 82-second detection member; 83-third detection member; 84-communication member. DETAILED DESCRIPTION
[0030] The technical solutions of the present application will be described clearly and completely below in conjunction with the drawings. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0031] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first" and "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0032] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.
[0033] In addition, the technical features involved in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.
[0034] Example 1
[0035] This embodiment provides a liquid distribution structure, such as Figures 1 to 3 As shown, it includes a tank body component 1 and a circulation component 2. The tank body component 1 includes a main tank body 11 and a sub-tank body 12 which are arranged in a connected body. The main tank body 11 has a working chamber, and the sub-tank body 12 has a accommodating chamber. The accommodating chamber is suitable for communicating with an external water source and a liquid medicine source so that water and liquid medicine flow into the accommodating chamber respectively and are mixed into liquid medicine; the circulation component 2 includes a driving member 21 and an output member 22. The two ends of the output member 22 are respectively connected to the main tank body 11 and the sub-tank body 12 to connect the working chamber and the accommodating chamber. The driving member 21 is arranged on the output member 22, so that under the drive of the driving member 21, the liquid medicine in the accommodating chamber flows from the accommodating chamber into the working chamber through the output member 22.
[0036] The liquid distribution structure of the above structure is connected to the tank assembly 1 through the circulation assembly 2. The tank assembly 1 specifically includes a main tank body 11 and a sub-tank body 12 that are connected together. The sub-tank body 12 is specifically arranged in the middle of the main tank body 11 near the ground. The main tank body 11 has a working chamber, and the sub-tank body 12 has a receiving chamber, and the receiving chamber is connected to the external water source and the liquid medicine source, so that the external water and the liquid medicine can flow into the receiving chamber and can be mixed into the liquid medicine in the receiving chamber. The liquid medicine can clean the parts to be cleaned and circulate. The component 2 specifically includes a driving member 21 and an output member 22. In this embodiment, the driving member 21 and the output member 22 are a pump and an output pipe, respectively, wherein the two ends of the output member 22 are respectively connected to the main tank body 11 and the auxiliary tank body 12, so that the output member 22 can connect the working chamber and the accommodating chamber. The driving member 21 is arranged on the output member 22, so that under the action of the driving member 21, the medical liquid in the accommodating chamber will be drawn into the output member 22 by the driving member 21, and the medical liquid can also flow into the working chamber in the output member 22.
[0037] In addition, by inputting the water and the medicine water into the accommodating cavity first, the water and the medicine water can be mixed in the accommodating cavity, and when the water and the medicine water mixed in the accommodating cavity continue to flow into the working cavity under the action of the circulating assembly 2, since the water and the medicine water are fully mixed in the accommodating cavity and the output member 22, the properties of the medicine liquid flowing into the working cavity can be fully exerted, thereby avoiding the case that the water and the medicine water are directly mixed in the working cavity of the main tank body 11, so that the water and the medicine water cannot be fully mixed, thereby being beneficial to improving the cleaning efficiency of the chain cleaning machine. In addition, the medicine liquid is arranged in the main tank body 11, so that the medicine liquid is exposed to the air, and the worker repairing the chain cleaning machine may be injured by contacting the medicine liquid. Arranging the medicine liquid in the auxiliary tank body 12 can make the medicine liquid in the main tank body 11 flow into the auxiliary tank body 12 during subsequent shutdown or operation, so as to avoid the worker from being injured by contacting the medicine liquid.
[0038] The liquid preparation structure provided by the embodiment includes a circulating assembly 2, as shown in the figure. Figures 1 to 3 The circulating assembly 2 further includes a uniform flow member 23, the uniform flow member 23 is arranged in the working cavity, and the uniform flow member 23 has a uniform flow channel and a plurality of communication parts, any communication part communicates the uniform flow channel and the working cavity; one end of the output member 22 connected with the main tank body 11 is connected with the uniform flow member 23, so as to communicate the accommodating cavity and the uniform flow channel, and make the medicine liquid flow into the uniform flow channel through the output member 22, and flow into the working cavity through all the communication parts.
[0039] The liquid preparation structure has the following advantages. The circulating assembly 2 further includes the uniform flow member 23, the uniform flow member 23 is a uniform flow pipe in the embodiment, the uniform flow member 23 is arranged in the working cavity, and the uniform flow member 23 has the uniform flow channel and the plurality of communication parts, the communication parts are communication holes in the embodiment, the communication parts can communicate the uniform flow channel and the working cavity. In addition, one end of the output member 22 connected with the main tank body 11 is connected with the uniform flow member 23, so as to communicate the accommodating cavity and the uniform flow channel, and make the medicine liquid in the accommodating cavity flow into the uniform flow channel through the output member 21 under the action of the driving member 21, and flow into the working cavity through the communication parts, so as to make the medicine liquid clean the to-be-cleaned member arranged in the working cavity. Since the uniform flow member 23 has the communication parts at each part, the medicine liquid flowing into the working cavity through the communication parts can be uniformly distributed in the working cavity, thereby being beneficial to improving the flow stability of the medicine liquid.
[0040] The liquid preparation structure provided by the embodiment includes a circulating assembly 2, as shown in the figure. Figures 1 to 3 The liquid preparation structure further includes at least two partition members 3, the two partition members 3 are arranged in the working cavity and are arranged on the two sides of the uniform flow member 23 respectively, so as to divide the working cavity into a working area 111 and two shunt areas 112, the working area 111 is connected with one end of the output member 22 away from the auxiliary tank body 12, and any shunt area 112 is adapted to receive the medicine liquid overflowing the partition member 3 from the working area 111.
[0041] The liquid preparation structure has the two separators 3 arranged in the working cavity, the two separators 3 are the separating plates in the embodiment, the two separators 3 are arranged at two sides of the flow uniformizing piece 23 respectively, so that the two separators 3 divide the working cavity into one working area 111 and two flow dividing areas 112, the working area 111 is connected to the output piece 22 away from one end of the auxiliary groove body 12, so that the liquid in the containing cavity can flow into the working area 111 through the output piece 22, and the two flow dividing areas 112 can receive the liquid overflowing the separators 3 from the working area 111, so as to avoid the liquid overflowing the separators 3 from flowing to the outside, thereby avoiding waste.
[0042] The liquid preparation structure provided in the embodiment has the circulating assembly 2, as shown in Figure 1 The circulating assembly 2 further includes at least two reflux pieces 24, one end of any reflux piece 24 is connected to the main groove body 11 and the other end is connected to the auxiliary groove body 12, so as to communicate the flow dividing area 112 and the containing cavity, and make the liquid in the flow dividing area 112 flow into the containing cavity through the reflux piece 24.
[0043] The liquid preparation structure has the two separators 3 arranged in the working cavity, the two separators 3 are the separating plates in the embodiment, the two separators 3 are arranged at two sides of the flow uniformizing piece 23 respectively, so that the two separators 3 divide the working cavity into one working area 111 and two flow dividing areas 112, the working area 111 is connected to the output piece 22 away from one end of the auxiliary groove body 12, so that the liquid in the containing cavity can flow into the working area 111 through the output piece 22, and the two flow dividing areas 112 can receive the liquid overflowing the separators 3 from the working area 111, so as to avoid the liquid overflowing the separators 3 from flowing to the outside, thereby avoiding waste.
[0044] Specifically, the reflux piece 24 is arranged between the main groove body 11 and the auxiliary groove body 12, and the auxiliary groove body 12 is arranged at the middle part of the main groove body 11 close to the ground, so that the space on both sides of the auxiliary groove body 12 is relatively abundant, and the reflux piece 24 is arranged on both sides of the auxiliary groove body 12, so that the pipeline distribution of the whole liquid preparation structure is relatively reasonable, the space utilization rate is relatively high, and the subsequent maintenance space of the reflux piece 24 is relatively large.
[0045] The liquid preparation structure provided in the embodiment has the circulating assembly 2, as shown in Figure 1 The liquid preparation structure further includes the liquid inlet assembly 7, the liquid inlet assembly 7 includes the first liquid inlet piece 71 and the second liquid inlet piece 72, two ends of the first liquid inlet piece 71 are communicated with the external water source and the auxiliary groove body 12 respectively, two ends of the second liquid inlet piece 72 are communicated with the external liquid source and the auxiliary groove body 12 respectively, so as to input water and liquid into the containing cavity respectively.
[0046] The liquid distribution structure of the above structure is connected to the auxiliary tank body 12 through the liquid inlet component 7. The liquid inlet component 7 specifically includes a first liquid inlet component 71 and a second liquid inlet component 72. The first liquid inlet component 71 and the second liquid inlet component 72 are respectively the first liquid inlet pipe and the second liquid inlet pipe in this embodiment, wherein the two ends of the first liquid inlet component 71 are respectively connected to the external water source and the auxiliary tank body 12, so that the water in the external water source can flow into the accommodating chamber through the first liquid inlet component 71, and the two ends of the second liquid inlet component 72 are respectively connected to the external liquid source and the auxiliary tank body 12, so that the liquid medicine in the external liquid source can flow into the accommodating chamber through the second liquid inlet component 72, thereby allowing the water and liquid medicine to be mixed into liquid medicine in the accommodating chamber.
[0047] The liquid dispensing structure provided in this embodiment is as follows: Figure 1 As shown, it also includes a detection component suitable for detecting the liquid level information of the medicinal liquid in the accommodating chamber. The detection component is arranged in the accommodating chamber, and / or, is arranged outside the accommodating chamber. The detection component arranged in the accommodating chamber includes a first detection member 81 and a second detection member 82 arranged near the top and bottom of the accommodating chamber, respectively. The detection component arranged outside the accommodating chamber includes a third detection member 83 and a connecting member 84. The two ends of the connecting member 84 are respectively connected to the auxiliary tank body 12 and the third detection member 83.
[0048] The liquid distribution structure of the above structure is achieved through detection components arranged inside and outside the accommodating chamber. The detection components specifically include a first detection member 81 and a second detection member 82 arranged in the accommodating chamber, and a third detection member 83 and a connecting member 84 arranged outside the accommodating chamber. The third detection member 83 and the connecting member 84 are respectively a liquid level detector and a connecting pipe in this embodiment. The third detection member 83 is arranged on one side of the auxiliary tank body 12, and the two ends of the connecting member 84 are connected to the auxiliary tank body 12 and the third detection member 83, respectively, so that the medicinal liquid in the accommodating chamber can flow into the third detection member 83 through the connection, and then the third detection member 83 can detect the water level information of the medicinal liquid in the accommodating chamber in real time, so that the staff can judge whether it is necessary to continue to add water and medicinal liquid to the accommodating chamber based on the water level information.
[0049] In addition, the first detection member 81 and the second detection member 82 are respectively a first detection switch and a second detection switch in the embodiment, wherein the first detection member 81 and the second detection member 82 are arranged at intervals, and the first detection member 81 is arranged close to the top of the accommodating cavity, and the second detection member 82 is arranged close to the bottom of the accommodating cavity, so that the first detection member 81 is mainly used for detecting the high water level information of the liquid medicine in the accommodating cavity, and the second detection member 82 is mainly used for detecting the low water level information of the liquid medicine in the accommodating cavity, that is, when the liquid medicine in the accommodating cavity exceeds the first detection member 81, the first detection member 81 transmits information to the external system, so that the external system disconnects the first liquid inlet member 71 and the second liquid inlet member 72, and does not inject water and medicine into the accommodating cavity, and when the liquid medicine in the accommodating cavity is lower than the second detection member 82, the second detection member 82 transmits information to the external system, so that the external system connects the first liquid inlet member 71 and the second liquid inlet member 72, and injects water and medicine into the accommodating cavity, so that when the third detection member 83 fails, the first detection member 81 and the second detection member 82 can cooperate to detect the liquid level information of the liquid medicine in the accommodating cavity, so as to avoid detection failure.
[0050] The liquid preparation structure provided by the embodiment also includes overflow members 4, one end of each overflow member 4 is connected with the auxiliary groove body 12, and the other end is connected with an external container, so that when the liquid medicine in the accommodating cavity overflows the first detection member 81, the liquid medicine flows into the external container through the overflow member 4. Figure 1 The liquid preparation structure provided by the embodiment also includes overflow members 4, one end of each overflow member 4 is connected with the auxiliary groove body 12, and the other end is connected with an external container, so that when the liquid medicine in the accommodating cavity overflows the first detection member 81, the liquid medicine flows into the external container through the overflow member 4.
[0051] The liquid preparation structure provided by the embodiment also includes overflow members 4, one end of each overflow member 4 is connected with the auxiliary groove body 12, and the other end is connected with an external container, so that when the liquid medicine in the accommodating cavity overflows the first detection member 81, the liquid medicine flows into the external container through the overflow member 4.
[0052] The liquid preparation structure provided by the embodiment also includes overflow members 4, one end of each overflow member 4 is connected with the auxiliary groove body 12, and the other end is connected with an external container, so that when the liquid medicine in the accommodating cavity overflows the first detection member 81, the liquid medicine flows into the external container through the overflow member 4. Figures 1 to 3 The liquid preparation structure provided by the embodiment also includes overflow members 4, one end of each overflow member 4 is connected with the auxiliary groove body 12, and the other end is connected with an external container, so that when the liquid medicine in the accommodating cavity overflows the first detection member 81, the liquid medicine flows into the external container through the overflow member 4.
[0053] The liquid preparation structure has the working area 111, the plurality of volume reduction members 5 arranged in the working area 111, and the output member 22 arranged in the working area 111 and connected with the volume reduction members 5, so that the working area 111 can only accommodate a small amount of liquid, the small amount of liquid in the working area 111 can directly flow into the accommodating cavity through the output member 22 when the device fails, and the liquid in the working area 111 does not need to be discharged to the outside, thereby reducing the waste of the liquid.
[0054] The liquid preparation structure is connected with the trough assembly 1, the trough assembly 1 specifically includes the main trough body 11 and the auxiliary trough body 12 connected with each other, the main trough body 11 has the working cavity, the auxiliary trough body 12 has the accommodating cavity, and the accommodating cavity is in communication with the water source and the medicine water source outside, so that the water and the medicine water outside can flow into the accommodating cavity and be mixed into the liquid medicine in the accommodating cavity, and the liquid medicine can clean the cleaning object, the circulating assembly 2 specifically includes the driving member 21 and the output member 22, the two ends of the output member 22 are connected with the main trough body 11 and the auxiliary trough body 12 respectively, so that the output member 22 can communicate the working cavity and the accommodating cavity, and the driving member 21 is arranged on the output member 22, so that the liquid medicine in the accommodating cavity is drawn into the output member 22 under the action of the driving member 21, and the liquid medicine can flow into the working cavity in the output member 22, so that the liquid medicine can clean the cleaning object arranged in the working cavity, and the water and the medicine water are first input into the accommodating cavity, so that the water and the medicine water can be mixed in the accommodating cavity, and the water and the medicine water mixed in the accommodating cavity continue to flow into the working cavity under the action of the circulating assembly 2, so that the properties of the liquid medicine flowing into the working cavity can be fully utilized, thereby avoiding the water and the medicine water directly mixed in the working cavity of the main trough body 11, so that the water and the medicine water cannot be fully mixed, thereby improving the cleaning efficiency of the chain cleaning machine, and the liquid medicine is arranged in the main trough body 11, so that the liquid medicine is exposed to the air, and the worker repairing the chain cleaning machine can be injured by contacting the liquid medicine, and the liquid medicine in the main trough body 11 can flow into the auxiliary trough body 12 when the chain cleaning machine is stopped or operated, so that the worker is prevented from being injured by contacting the liquid medicine.
[0055] Embodiment 2
[0056] The chain cleaning machine is arranged in the working area 111, the plurality of volume reduction members 5 arranged in the working area 111, and the output member 22 arranged in the working area 111 and connected with the volume reduction members 5, so that the working area 111 can only accommodate a small amount of liquid, the small amount of liquid in the working area 111 can directly flow into the accommodating cavity through the output member 22 when the device fails, and the liquid in the working area 111 does not need to be discharged to the outside, thereby reducing the waste of the liquid. Figures 1 to 3As shown, it includes the above-mentioned liquid distribution structure. The chain cleaning machine of the above-mentioned structure, by using the above-mentioned liquid distribution structure, that is, through the circulation component 2 connected to the tank body component 1, the tank body component 1 specifically includes a main tank body 11 and a sub-tank body 12 arranged in a connected manner, the main tank body 11 has a working chamber, and the sub-tank body 12 has a receiving chamber, and the receiving chamber is connected to the external water source and the medicine source, so that the external water and medicine can flow into the receiving chamber and can be mixed into medicine liquid in the receiving chamber, and the medicine liquid can clean the parts to be cleaned, the circulation component 2 specifically includes a driving member 21 and an output member 22, wherein the two ends of the output member 22 are respectively connected to the main tank body 11 and the sub-tank body 12, so that the output member 22 can connect the working chamber and the receiving chamber, the driving member 21 is set on the output member 22, so that under the action of the driving member 21, the medicine liquid in the receiving chamber will be drawn into the output member 22 by the driving member 21, and the medicine liquid can also flow into the working chamber in the output member 22, so that the medicine liquid can clean the parts to be cleaned. The parts to be cleaned in the working chamber are cleaned. In addition, by first inputting water and liquid medicine into the accommodating chamber, the water and liquid medicine can be mixed in the accommodating chamber, and when the water and liquid medicine mixed in the accommodating chamber continue to flow into the working chamber under the action of the circulation component 2, the water and liquid medicine are fully mixed in the accommodating chamber and the output member 22, so that the properties of the liquid medicine flowing into the working chamber can be fully exerted, thereby avoiding the situation where the water and liquid medicine are directly mixed in the working chamber of the main tank body 11, so that the water and liquid medicine cannot be fully mixed, which is beneficial to improving the cleaning efficiency of the chain cleaning machine. At the same time, configuring liquid medicine in the main tank body 11 will cause the liquid medicine to be exposed to the air, so that the staff may be damaged by contact with the liquid medicine when repairing the chain cleaning machine. Configuring liquid medicine in the auxiliary tank body 12 allows the liquid medicine in the main tank body 11 to flow into the auxiliary tank body 12 during subsequent shutdown or operation, so as to avoid the staff from being injured by contact with the liquid medicine.
[0057] The chain cleaning machine provided in this embodiment is as follows: Figure 1 As shown, it also includes a plurality of rollers 6 arranged at intervals along the transmission direction of the workpiece to be cleaned. Any roller 6 is rotatably set in the working chamber and the height of the roller 6 is greater than the height of the liquid in the working chamber. Any roller 6 is suitable for carrying the workpiece to be cleaned and is suitable for driving the liquid in the working chamber to contact the workpiece to be cleaned when the roller 6 rotates.
[0058] The chain cleaning machine with the above structure drives the plurality of rollers 6 arranged in the working area 111 to rotate, the rollers 6 are arranged at intervals, and the height of each roller 6 is greater than the height of the liquid medicine in the working cavity, so that each roller 6 is partially arranged in the liquid medicine, and each roller 6 can also carry the cleaning object, so that the roller 6 can drive the liquid medicine to rotate when the roller 6 rotates in the working area 111, and the liquid medicine can contact the surface of the cleaning object placed on the roller 6 to clean the surface of the cleaning object.
[0059] Obviously, the above embodiments are only examples for clearly illustrating, but not limitation to the embodiments. Other different forms of changes or variations can be made on the basis of the above description for those skilled in the art. Here, all the embodiments need not and cannot be exhausted. The obvious changes or variations derived therefrom are still within the protection scope of the utility model.
Claims
1. A liquid dispensing structure, characterized in that: include: A tank assembly (1) comprises a main tank (11) and a sub-tank (12) which are arranged in a connected manner, wherein the main tank (11) has a working chamber, and the sub-tank (12) has a receiving chamber, wherein the receiving chamber is adapted to be in communication with an external water source and a liquid medicine source, so that water and liquid medicine flow into the receiving chamber and are mixed into a liquid medicine; A circulation component (2) comprises a driving member (21) and an output member (22), wherein both ends of the output member (22) are respectively connected to the main tank body (11) and the auxiliary tank body (12) to connect the working chamber and the accommodating chamber, and the driving member (21) is arranged on the output member (22) so that under the drive of the driving member (21), the liquid medicine in the accommodating chamber flows from the accommodating chamber into the working chamber through the output member (22).
2. The liquid dispensing structure according to claim 1, characterized in that: The circulation assembly (2) further comprises a flow equalizer (23), the flow equalizer (23) being arranged in the working chamber, and the flow equalizer (23) having a flow equalizer channel and a plurality of communication parts, any of the communication parts being in communication with the flow equalizer channel and the working chamber; One end of the output member (22) connected to the main tank body (11) is connected to the flow-uniform member (23) to connect the accommodating chamber and the flow-uniform channel, and allows the liquid medicine to flow into the flow-uniform channel through the output member (22) and into the working chamber through all the connecting parts.
3. The liquid dispensing structure according to claim 1, characterized in that: The invention also comprises at least two partitions (3), both of which are arranged in the working chamber to divide the working chamber into a working area (111) and two diversion areas (112), the working area (111) being connected to an end of the output member (22) away from the auxiliary tank body (12), and any of the diversion areas (112) being suitable for receiving the liquid medicine overflowing from the partition (3) in the working area (111).
4. The liquid dispensing structure according to claim 3, characterized in that: The circulation component (2) further comprises at least two reflux members (24), one end of each reflux member (24) being connected to the main tank body (11) and the other end being connected to the auxiliary tank body (12), so as to connect the diversion area (112) and the accommodating chamber, and to allow the liquid medicine in the diversion area (112) to flow into the accommodating chamber through the reflux member (24).
5. The liquid dispensing structure according to any one of claims 1 to 4, characterized in that: The invention also includes a liquid inlet assembly (7), wherein the liquid inlet assembly (7) includes a first liquid inlet member (71) and a second liquid inlet member (72), wherein the two ends of the first liquid inlet member (71) are respectively connected to the external water source and the auxiliary tank body (12), and the two ends of the second liquid inlet member (72) are respectively connected to the external liquid medicine source and the auxiliary tank body (12).
6. The liquid dispensing structure according to claim 1, characterized in that: The invention also includes a detection component suitable for detecting the liquid level information of the medicinal liquid in the accommodating chamber. The detection component is arranged in the accommodating chamber and / or arranged outside the accommodating chamber. The detection component arranged in the accommodating chamber includes a first detection member (81) and a second detection member (82) respectively arranged near the top and bottom of the accommodating chamber. The detection component arranged outside the accommodating chamber includes a third detection member (83) and a connecting member (84). The two ends of the connecting member (84) are respectively connected to the auxiliary tank body (12) and the third detection member (83).
7. The liquid dispensing structure according to claim 6, characterized in that: The device further comprises an overflow member (4), one end of which is connected to the auxiliary tank body (12) and the other end of which is connected to an external container, so that when the liquid medicine in the accommodating cavity overflows the first detection member (81), the liquid medicine flows into the external container through the overflow member (4).
8. The liquid dispensing structure according to claim 4, characterized in that: It also includes a plurality of volume reducing parts (5), and any of the volume reducing parts (5) is arranged in the working area (111).
9. A chain cleaning machine, characterized in that: The invention comprises the liquid dispensing structure according to any one of claims 1 to 8.
10. The chain cleaning machine according to claim 9, characterized in that: The invention also includes a plurality of rollers (6) arranged at intervals along the transmission direction of the workpiece to be cleaned, wherein any of the rollers (6) is rotatably arranged in the working chamber and the height of the rollers (6) is greater than the height of the liquid medicine in the working chamber, and any of the rollers (6) is suitable for carrying the workpiece to be cleaned and is suitable for driving the liquid medicine in the working chamber to contact the workpiece to be cleaned when the rollers (6) rotate.