Glass processing cleaning device facilitating waste water recycling
By designing a glass processing cleaning device including an ultrasonic cleaning tank, a sediment discharge mechanism, a floating discharge mechanism and a recycling box, the waste and pollution problems caused by the splash of cleaning liquid in the prior art are solved, and the effective recycling and reuse of cleaning liquid is realized.
Patent Information
- Application Number
- CN202421797016.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-29
AI Technical Summary
During the flushing process, the existing cleaning device for glass processing will splash out due to the impact of the water flow, resulting in waste of cleaning liquid and pollution to the surrounding environment, and it is difficult to recycle wastewater.
A cleaning device for glass processing including an ultrasonic cleaning tank, a sediment discharge mechanism, a floating discharge mechanism and a recycling bin is designed. Cleaning is carried out through an ultrasonic cleaning tank, the precipitates and floating matter are discharged separately, and the waste liquid is recovered to the recycling box through the filtering mechanism to form a closed loop and reuse the cleaning liquid.
It effectively avoids the splash and waste of cleaning liquid, reduces pollution to the surrounding environment, and facilitates recycling of cleaning liquid, ensuring the cleanliness and reuse of cleaning liquid.
Smart Images

Figure CN222919220U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass processing, in particular to a glass processing cleaning device which is convenient for recycling waste water. Background Technique
[0002] Glass is an amorphous inorganic non-metallic material, which is widely used in buildings to isolate wind and let light through. It belongs to a mixture. There is also colored glass that presents colors after mixing certain metal oxides or salts, and tempered glass obtained by physical or chemical methods. During the glass processing, there will be dust and debris adhering to the surface. Therefore, it needs to be cleaned. After retrieval, the patent with the publication number CN213793052U discloses a glass processing cleaning device. When in use, the glass is placed on the top of the driving seat and the fixing strip is moved. According to the size of the glass, the distance between the fixing strip and the limiting strip is adjusted. The adjusting bolt is rotated and connected to the corresponding adjusting hole to fix the glass. After the fixing is completed, the forward and reverse motor is started. Through the rotation of the output shaft of the forward and reverse motor and the meshing effect between the tooth block and the guiding gear, multiple groups of driving rollers rotate in the same direction. Further, due to the meshing of the tooth block and the tooth groove, the driving seat is driven to move. The pressurized water pump is started, and the glass cleaning liquid in the water tank is conveyed to the high-pressure nozzle by the pressurized water pump. The glass cleaning liquid is sprayed out by the high-pressure nozzle to pre-rinse the glass on the driving seat. The hydraulic telescopic rod is started, and the wiping plate is driven to move by the telescopic part of the hydraulic telescopic rod. The vertical distance between the wiping plate and the glass is adjusted to wipe the glass. At the same time, the linear motor is started, and the driving part of the linear motor drives the bearing frame to reciprocate, further driving the wiping plate to reciprocate, and wiping the glass surface multiple times until the cleaning standard is reached. However, in this way, during the flushing process, due to the impact of the water flow, water will splash out, resulting in the need to regularly add cleaning liquid for a long time. It is not convenient to recycle the waste water. Therefore, a glass processing cleaning device which is convenient for recycling waste water is designed to avoid the waste of cleaning liquid caused by the splashing of cleaning liquid during the cleaning process and the pollution of the surrounding environment, and at the same time is convenient to separately clean the floating objects and sediments washed down during the cleaning process, ensuring the cleanliness of the cleaning liquid and its repeated use. Summary of the Utility Model
[0003] (1) Technical Problems to be Solved
[0004] Aiming at the deficiencies of the prior art, the utility model provides a glass processing cleaning device which is convenient for recycling waste water, avoiding the waste of cleaning liquid caused by the splashing of cleaning liquid during the cleaning process and the pollution of the surrounding environment, and at the same time being convenient to separately clean the floating objects and sediments washed down during the cleaning process, ensuring the cleanliness of the cleaning liquid and its repeated use.
[0005] (2) Technical Solutions
[0006] To achieve the above object, the present utility model provides the following technical solutions: A glass processing cleaning device facilitating wastewater recycling and utilization, including an ultrasonic cleaning tank. A sediment discharge mechanism is provided at the bottom of the ultrasonic cleaning tank. On the left and right sides of the top of the ultrasonic cleaning tank, a cleaning liquid filling mechanism and a floating matter discharge mechanism are respectively communicated. The connection of the floating matter discharge mechanism with the ultrasonic cleaning tank is slightly lower than the connection of the cleaning liquid filling mechanism with the ultrasonic cleaning tank. A recycling box is further included. The input end of the cleaning liquid filling mechanism is communicated with the recycling box. A through hole is provided on the recycling box, and a filtering mechanism is provided at the top of the through hole. The output ends of the sediment discharge mechanism and the floating matter discharge mechanism both extend to the top of the filtering mechanism.
[0007] Preferably, a glass support mechanism is further included. The glass support mechanism includes a glass support frame. Driving cylinders are vertically and fixedly installed on both sides of the ultrasonic cleaning tank. The top output end of the driving cylinder is fixedly connected with the glass support frame through an L-shaped connecting plate.
[0008] Preferably, the cleaning liquid filling mechanism and the floating matter discharge mechanism are respectively fixedly communicated with the ultrasonic cleaning tank through a flow expansion cover and a floating matter suction cover. The height of the floating matter suction cover is slightly lower than the height of the flow expansion cover.
[0009] Preferably, the bottom of the ultrasonic cleaning tank is set to be arc-shaped and the ultrasonic cleaning tank is fixedly installed above the recycling box. The cleaning liquid filling mechanism includes a water pump fixedly installed on the recycling box. The input end of the water pump extends into the inner bottom of the recycling box through a conduit, and the input end of the water pump is fixedly communicated with the flow expansion cover through a pressure pipe.
[0010] Preferably, the sediment discharge mechanism includes a chip discharge pipe fixedly communicated with the bottom of the ultrasonic cleaning tank. The floating matter discharge mechanism includes an overflow pipe fixedly communicated with the floating matter suction cover. The bottoms of the chip discharge pipe and the overflow pipe are fixedly communicated with a confluence pipe. The confluence pipe is located directly above the through hole. Valves are installed on both the chip discharge pipe and the overflow pipe.
[0011] Preferably, the filtering mechanism includes an embedded groove provided at the top of the ultrasonic cleaning tank. The through hole is opened at the middle position of the embedded groove. Two fixedly connected filter hoppers are slidably fitted in the embedded groove.
[0012] (III) Beneficial effects
[0013] Compared with the prior art, the present utility model provides a glass processing cleaning device facilitating wastewater recycling and utilization, having the following beneficial effects:
[0014] The glass processing cleaning device facilitating wastewater recycling and utilization uses an ultrasonic cleaning tank to facilitate ultrasonic cleaning of the glass immersed in the ultrasonic cleaning tank by ultrasonic waves. Ultrasonic cleaning avoids the problems of wasting cleaning liquid and polluting the surrounding environment caused by flushing the glass with water flow. The sediment discharge mechanism facilitates the discharge of the cleaned sediment. The cleaning liquid filling mechanism and the floating matter discharge mechanism separately arranged on the left and right sides facilitate adding cleaning liquid to the ultrasonic cleaning tank once and discharging the cleaned floating matter on the other side. The filtering mechanism facilitates filtering the waste liquid discharged from the sediment discharge mechanism and the floating matter discharge mechanism, and sending it back to the recycling tank through the through hole to form a closed loop with the cleaning liquid filling mechanism, and recycling the cleaning liquid. The glass processing cleaning device facilitating wastewater recycling and utilization avoids the waste of cleaning liquid and the pollution of the surrounding environment caused by the splashing of cleaning liquid during the cleaning process. At the same time, it facilitates separately cleaning the floating matter and sediment cleaned during the cleaning process, ensuring the cleanliness and recycling of the cleaning liquid, and avoiding the problem of the glass re-adhering to the floating matter when taken out of the ultrasonic cleaning tank. Description of the Drawings
[0015] Figure 1 It is a schematic structural diagram of the whole of the present utility model;
[0016] Figure 2 It is a schematic structural diagram of the whole of the present utility model from other perspectives;
[0017] Figure 3 It is a schematic structural diagram of the whole of the present utility model from another perspective;
[0018] Figure 4 It is a schematic structural diagram of the cooperation and decomposition of the recycling tank and the filtering mechanism of the present utility model.
[0019] Reference numerals in the drawings: 1. Ultrasonic cleaning tank; 2. Recycling tank; 3. Chip removal pipe; 4. Overflow pipe; 5. Water pump; 6. Pressurizing pipe; 7. Floating suction hood; 8. Diffuser hood; 9. Confluence pipe; 10. Valve; 11. Embedded groove; 12. Through hole; 13. Filter hopper; 14. Glass support frame; 15. Driving cylinder; 16. L-shaped connecting plate. Detailed Embodiment
[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.
[0021] Embodiment:
[0022] Please refer to Figures 1-4 , a glass processing cleaning device facilitating wastewater recycling, including an ultrasonic cleaning tank 1. A sediment discharge mechanism is arranged at the bottom of the ultrasonic cleaning tank 1. The left and right sides of the top of the ultrasonic cleaning tank 1 are respectively communicated with a cleaning liquid filling mechanism and a floating matter discharge mechanism. The connection of the floating matter discharge mechanism with the ultrasonic cleaning tank 1 is slightly lower than the connection of the cleaning liquid filling mechanism with the ultrasonic cleaning tank 1. It further includes a recycling tank 2. The input end of the cleaning liquid filling mechanism is communicated with the recycling tank 2. A through hole 12 is opened on the recycling tank 2. A filtering mechanism is arranged at the top of the through hole 12. The output ends of the sediment discharge mechanism and the floating matter discharge mechanism both extend to the top of the filtering mechanism.
[0023] Specifically, it further includes a glass support mechanism. The glass support mechanism includes a glass support frame 14. Driving cylinders 15 are vertically and fixedly installed on both sides of the ultrasonic cleaning tank 1. The top output end of the driving cylinder 15 is fixedly connected with the glass support frame 14 through an L-shaped connecting plate 16. Through the glass support frame 14, it is convenient to hold the glass and immerse it in the cleaning liquid in the ultrasonic cleaning tank 1. By making the output shaft of the driving cylinder 15 extend or shorten, the glass support frame 14 can be lifted out of the cleaning liquid in the ultrasonic cleaning tank 1 or immersed in the cleaning liquid in the ultrasonic cleaning tank 1. Further, grasping grooves are opened on the left, right, front and rear sides of the glass support frame 14. Through the grasping grooves, it is convenient to clamp the glass out of the glass support frame 14. Further, the glass support frame 14 is arranged as a mesh structure.
[0024] Specifically, the cleaning liquid filling mechanism and the floating matter discharge mechanism are respectively fixedly communicated with the ultrasonic cleaning tank 1 through a flow expansion cover 8 and a floating suction cover 7. The height of the floating suction cover 7 is slightly lower than that of the flow expansion cover 8. Through the setting of the floating suction cover 7, the width of floating matter discharge is increased. Through the setting of the flow expansion cover 8, the width of cleaning liquid filling is increased, thereby increasing the width of floating blowing of floating matter and improving the comprehensiveness of floating matter discharge, avoiding dead corners.
[0025] Specifically, the bottom of the ultrasonic cleaning tank 1 is arranged in an arc shape and the ultrasonic cleaning tank 1 is fixedly installed above the recycling tank 2. The cleaning liquid filling mechanism includes a water pump 5 fixedly installed on the recycling tank 2. The input end of the water pump 5 extends into the inner bottom of the recycling tank 2 through a conduit. The input end of the water pump 5 is fixedly communicated with the flow expansion cover 8 through a pressure pipe 6. Starting the water pump 5 is convenient to send the cleaning liquid in the recycling tank 2 into the ultrasonic cleaning tank 1 through the pressure pipe 6 and the flow expansion cover 8.
[0026] Specifically, the sediment discharging mechanism includes a chip discharging pipe 3 fixedly communicated with the bottom of the ultrasonic cleaning tank 1, the floating matter discharging mechanism includes an overflow pipe 4 fixedly communicated with the suction floating cover 7, the bottoms of the chip discharging pipe 3 and the overflow pipe 4 are fixedly communicated with a confluence pipe 9, the confluence pipe 9 is located directly above the through hole 12, valves 10 are installed on both the chip discharging pipe 3 and the overflow pipe 4. Through the chip discharging pipe 3 and the overflow pipe 4, it is convenient to discharge the sediment at the bottom of the ultrasonic cleaning tank 1 respectively and to discharge the floating matter in the ultrasonic cleaning tank 1 conveniently. Through the two valves 10, it is convenient to control the discharging speeds of the sediment and the floating matter.
[0027] Specifically, the filtering mechanism includes an embedded groove 11 arranged at the top of the ultrasonic cleaning tank 1, the through hole 12 is opened at the middle position of the embedded groove 11, and two groups of fixedly connected filter hoppers 13 are slidably fitted in the embedded groove 11. Through the two groups of filter hoppers 13, the through hole 12 is always located below one of the filter hoppers 13, avoiding the through hole 12 being directly communicated with the outside. By providing two filter hoppers 13, it is convenient to use one of them for filtering while the other is used for cleaning sundries.
[0028] During use, the glass is placed in the ultrasonic cleaning tank 1, and the glass is cleaned by ultrasonic waves. The sediment generated by the cleaning is discharged through the sediment discharging mechanism. At the same time, the cleaning liquid filling mechanism is started to introduce the cleaning liquid in the recovery tank 2 from one side of the top of the ultrasonic cleaning tank 1. The floating matter generated by the cleaning is discharged on the other side. The waste liquid discharged through the sediment discharging mechanism and the floating matter discharging mechanism is filtered by the filtering mechanism and then sent back to the recovery tank 2 through the through hole 12, forming a closed loop with the cleaning liquid filling mechanism to reuse the cleaning liquid, ensuring the cleanliness of the cleaning liquid in the ultrasonic cleaning tank 1 and at the same time avoiding the cleanliness of the glass taken out of the cleaning liquid in the ultrasonic cleaning tank 1.
[0029] It should be noted that the phrases such as "one embodiment", "embodiment", "exemplary embodiment", "some embodiments", etc. mentioned in the specification indicate that the described embodiments may include specific features, structures or characteristics, but not necessarily every embodiment includes such specific features, structures or characteristics. In addition, such phrases do not necessarily refer to the same embodiment. Moreover, when combining specific features, structures or characteristics with an embodiment, it is within the knowledge scope of those skilled in the art to implement such features, structures or characteristics in combination with other embodiments, whether explicitly or implicitly described.
[0030] It should be readily understood that the terms "on", "above", and "over" in this disclosure should be interpreted in the broadest possible manner, such that "on" not only means "directly on something", but also includes the meaning of "on something" with intermediate features or layers therebetween, and "above" or "over" not only includes the meaning of "above" or "over something", but may also include the meaning of "above" or "over something" with no intermediate features or layers therebetween (i.e., directly on something).
[0031] In addition, for ease of description, spatial relative terms may be used herein, such as "below", "beneath", "under", "above", "over", etc., to describe the relationship of one element or feature to another element or feature as shown in the figures. Spatial relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation shown in the figures. The device may have other orientations (rotated 90 degrees or at other orientations), and the spatial relative descriptors used herein may be interpreted accordingly as well.
[0032] It should be noted that, in this document, relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprise", "include" or any other variation thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the phrase "comprising a..." does not exclude the presence of additional identical elements in the process, method, article or device comprising the element.
[0033] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and are not intended to limit the same; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they may still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A glass processing cleaning device that is convenient for recycling waste water, characterized in that: The ultrasonic cleaning tank (1) comprises an ultrasonic cleaning tank (1), wherein a sediment discharge mechanism is arranged at the bottom of the ultrasonic cleaning tank (1), and the top left and right sides of the ultrasonic cleaning tank (1) are respectively connected with a cleaning liquid filling mechanism and a floating object discharge mechanism, wherein the connection point between the floating object discharge mechanism and the ultrasonic cleaning tank (1) is slightly lower than the connection point between the cleaning liquid filling mechanism and the ultrasonic cleaning tank (1), and further comprises a recovery box (2), wherein the input end of the cleaning liquid filling mechanism is connected with the recovery box (2), a through hole (12) is provided on the recovery box (2), a filtering mechanism is arranged at the top of the through hole (12), and the output end of the sediment discharge mechanism and the output end of the floating object discharge mechanism both extend to the top of the filtering mechanism.
2. The glass processing cleaning device for facilitating wastewater recycling according to claim 1, characterized in that: It also comprises a glass support mechanism, the glass support mechanism comprising a glass support frame (14), driving cylinders (15) are vertically fixedly installed on both sides of the ultrasonic cleaning tank (1), and the top output end of the driving cylinder (15) is fixedly connected to the glass support frame (14) via an L-shaped connecting plate (16).
3. The glass processing cleaning device for facilitating wastewater recycling according to claim 2, characterized in that: The cleaning liquid filling mechanism and the floating object discharge mechanism are fixedly connected to the ultrasonic cleaning tank (1) through a diffuser cover (8) and a suction cover (7), respectively. The height of the suction cover (7) is slightly lower than that of the diffuser cover (8).
4. The glass processing cleaning device for facilitating wastewater recycling according to claim 3 is characterized in that: The bottom of the ultrasonic cleaning tank (1) is arranged in an arc shape and the ultrasonic cleaning tank (1) is fixedly mounted above the recovery tank (2). The cleaning liquid filling mechanism comprises a water pump (5) fixedly mounted on the recovery tank (2). The input end of the water pump (5) extends into the inner bottom of the recovery tank (2) through a conduit. The input end of the water pump (5) is fixedly connected to a diffuser cover (8) through a pressurized pipe (6).
5. The glass processing cleaning device for facilitating wastewater recycling according to claim 4 is characterized in that: The sediment discharge mechanism comprises a chip discharge pipe (3) fixedly connected to the bottom of the ultrasonic cleaning tank (1), and the floating material discharge mechanism comprises an overflow pipe (4) fixedly connected to the floating hood (7). The bottoms of the chip discharge pipe (3) and the overflow pipe (4) are fixedly connected to a confluence pipe (9), and the confluence pipe (9) is located directly above the through hole (12). Valves (10) are installed on both the chip discharge pipe (3) and the overflow pipe (4).
6. The glass processing cleaning device for facilitating wastewater recycling according to claim 5, characterized in that: The filtering mechanism comprises an embedded groove (11) arranged at the top of the ultrasonic cleaning tank (1), the through hole (12) is opened in the middle position of the embedded groove (11), and two groups of fixedly connected filter buckets (13) are slidably matched in the embedded groove (11).
Citation Information
Patent Citations
Cleaning device for glass processing
CN213793052U