Centralized filtering and cooling treatment system for lens production

The centralized filtration and cooling system solves the problem of high wastewater treatment costs in lens production, enabling centralized treatment and cooling reuse of wastewater from multiple polishing machines, reducing production costs and improving efficiency.

CN223592421UActive Publication Date: 2025-11-25DANYANG HENGYA OPTICAL GLASSES EQUIP CO LTD
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Patent Information

Application Number
CN202422817975.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-11-25
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

The existing wastewater treatment system in the lens production process is set up as a single unit, which results in high costs and makes it difficult to achieve cooling and reuse.

Method used

A centralized filtration and cooling system is adopted, including a washing and grinding workshop, a treatment room, a filtration mechanism, a water tank mechanism, and an automatic coarse slag extrusion and discharge device. Wastewater is filtered, cooled, and recycled through a fully automatic candle-type filter cake layer filter and an immersion multi-stage centrifugal water supply pump.

Benefits of technology

This system enables centralized treatment and recycling of wastewater from multiple grinding mills, reducing production costs and improving the efficiency of wastewater cooling and reuse.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223592421U_ABST
    Figure CN223592421U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of lens production, in particular to a centralized filtering and cooling treatment system for lens production, which comprises a washing and grinding workshop and a treatment chamber positioned on one side of the washing and grinding workshop, a plurality of washing and grinding machines are arranged in the washing and grinding workshop, and a filtering mechanism is arranged in the treatment chamber. A water tank mechanism is arranged at the position, located on one side of the filtering mechanism, in the treatment chamber, a plurality of sets of automatic coarse slag extruding and discharging devices are installed on one side of the top of the water tank mechanism, and a coarse slag receiving assembly is further arranged on one sides of the automatic coarse slag extruding and discharging devices. And a power distribution cabinet is also connected to the interior of the treatment chamber. According to the utility model, one set of filtering and cooling treatment system is adopted, so that the centralized treatment and cyclic utilization functions of wastewater are completed by one-driving multiple washing and grinding machines.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a lens production technical field, concretely is centralized filtration cooling treatment system for lens production. BACKGROUND

[0002] Lens is a piece of glass or other use one or more curved transparent material, through it observe things, make things appear clear, big or smaller, lens produces a lot of waste water in the production process, these waste water need to use treatment system when handling.

[0003] The existing waste water treatment system all is one -tow -one setting, namely one washing mill is equipped with a small -size waste water treatment system, this will lead to the cost of lens production is higher, and these waste water is difficult to realize cooling reuse function after treatment, therefore needs a kind of centralized filtration cooling treatment system for lens production. UTILITY MODEL CONTENT

[0004] The utility model is provided for centralized filtration cooling treatment system for lens production to solve the problem that the prior art is one -tow -one setting and leads to high cost and is difficult to realize cooling reuse in the above background art.

[0005] To achieve the above object, the utility model provides the following technical scheme: centralized filtration cooling treatment system for lens production, including washing mill workshop and the treatment room located at washing mill workshop one side, the inside of washing mill workshop is placed with a plurality of washing mill, and the side of every washing mill is provided with backwater groove, and backwater groove is communicated with washing mill through drain pipe;The inside of treatment room is provided with filter mechanism, and the filter mechanism is used for the filtration work of waste water;Water tank mechanism is arranged in the inside of treatment room and at the side of filter mechanism, and the top of water tank mechanism is installed with a plurality of groups of coarse residue automatic extrusion discharge device, and the coarse residue automatic extrusion discharge device is used for the solid-liquid separation treatment work of waste water;Coarse residue receiving assembly is further arranged on the side of coarse residue automatic extrusion discharge device, and the coarse residue receiving assembly is used for the coarse residue receiving work of coarse residue automatic extrusion discharge device treatment;The inside of treatment room is further connected with switch board, and the switch board is used for the control work of whole system.

[0006] Preferably, the filter mechanism includes filter cabinet, full-automatic candle type filter cake layer filter and filter receiving trolley, the filter cabinet is provided with two in parallel, and the two filter cabinets are located at the side of water tank mechanism.

[0007] Preferably, the top of filter cabinet is installed with full-automatic candle type filter cake layer filter, and the filter receiving trolley is placed below the full-automatic candle type filter cake layer filter, and the filter receiving trolley is used for the coarse residue receiving work of full-automatic candle type filter cake layer filter after filtration.

[0008] Preferably, the water tank mechanism comprises a composite water tank, a vertical wastewater pump, a fishing net filter tank and an invasive multi-stage centrifugal water supply pump, the composite water tank is located inside the treatment chamber, the inside of the composite water tank is provided with a clean water tank and a wastewater tank, and the clean water tank is connected to the water outlet end of the full-automatic candle type filter cake layer filter through a pipeline.

[0009] Preferably, two vertical wastewater pumps are arranged on one side of the composite water tank, the water inlet end of the vertical wastewater pump is connected to the wastewater tank through a pipeline, and the water outlet end of the vertical wastewater pump is connected to the water inlet end of the full-automatic candle type filter cake layer filter.

[0010] Preferably, a fishing net filter tank is arranged on the top end of the composite water tank, the water inlet end of the fishing net filter tank is connected to the wastewater tank through a pipeline, the water outlet end of the fishing net filter tank is connected to the clean water tank through a pipeline, and the fishing net filter tank is used for filtering the wastewater in the wastewater tank and flowing into the clean water tank.

[0011] Preferably, two groups of invasive multi-stage centrifugal water supply pumps are arranged on the surface of the composite water tank and above the clean water tank, the water inlet end of the invasive multi-stage centrifugal water supply pump extends to the inside of the clean water tank, the water outlet end of the invasive multi-stage centrifugal water supply pump is connected to a water supply pipe provided with an electromagnetic valve, and the other end of the water supply pipe is connected to the water inlet end of the backwater tank.

[0012] Preferably, the water inlet end of the coarse residue automatic extrusion residue discharging device is connected to a backwater pipe, the other end of the backwater pipe is connected to the water outlet end of the backwater tank, the coarse residue receiving assembly comprises a receiving hopper and a coarse residue receiving trolley, the receiving hopper is arranged on one side of the coarse residue automatic extrusion residue discharging device, and a pushable coarse residue receiving trolley is arranged below the receiving hopper.

[0013] Compared with the prior art, the beneficial effects of the utility model are: the centralized filtering and cooling treatment system for lens production is provided with the full-automatic candle type filter cake layer filter and the coarse residue automatic extrusion residue discharging device, when implemented, the wastewater discharged from the washing mill enters the backwater tank through the wastewater pipeline in the drain pipe, the backwater tank conveys the wastewater from the pump body to the coarse residue automatic extrusion residue discharging device through the backwater pipe, the coarse material after the treatment of the coarse residue automatic extrusion residue discharging device enters the coarse residue receiving trolley from the receiving hopper, the wastewater is in the wastewater tank in the composite water tank, then the vertical wastewater pump pumps the wastewater in the wastewater tank to the inside of the full-automatic candle type filter cake layer filter for filtering, the waste residue generated in the filtering is received by the filter receiving trolley, and the filtered water is sent to the inside of the clean water tank of the composite water tank, since the clean water tank is internally provided with the constant temperature refrigerator, after the refrigeration, the water is conveyed to the backwater tank through the supply pipe by the invasive multi-stage centrifugal water supply pump, and is sent back to the washing mill through the clean water pipeline in the backwater tank. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is three-dimensional appearance structure schematic diagram of the utility model;

[0015] Figure 2 It is internal structure schematic diagram of the utility model;

[0016] Figure 3 It is local enlarged structure schematic diagram of the utility model;

[0017] Figure 4 It is local explosion structure schematic diagram of the utility model;

[0018] Figure 5 It is filter mechanism enlarged structure schematic diagram of the utility model;

[0019] Figure 6 It is water tank mechanism enlarged structure schematic diagram of the utility model.

[0020] In the drawing: 1, washing mill workshop;10, supply pipe;11, backwater pipe;2, treatment room;3, washing mill;4, backwater tank;5, filtering mechanism;51, filter cabinet;52, full-automatic candle type filter cake layer filter;53, filter receiving trolley;6, water tank mechanism;61, composite water tank;611, clean water tank;612, wastewater tank;62, vertical wastewater pump;63, fishing net filter box;64, invasive multi-stage centrifugal water supply pump;7, coarse residue automatic extrusion residue discharging device;8, coarse residue receiving assembly;81, receiving hopper;82, coarse residue receiving trolley;9, power distribution cabinet. DETAILED DESCRIPTION

[0021] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.

[0022] The structure of the centralized filtering and cooling treatment system for lens production provided by the present application is shown in Figure 1 and Figure 5 The inside of the washing and grinding workshop 1 is provided with a plurality of washing and grinding machines 3, and each washing and grinding machine 3 is provided with a backwater tank 4 on one side, and the backwater tank 4 and the washing and grinding machine 3 are communicated through a drain pipe; the inside of the treatment room 2 is provided with a filtering mechanism 5, which is used for filtering wastewater, and the filtering mechanism 5 comprises a filter cabinet 51, a full-automatic candle type filter cake layer filter 52 and a filter material receiving trolley 53. The filter cabinet 51 is provided in parallel with two filter cabinets 51, and the two filter cabinets 51 are located on one side of a water tank mechanism 6. The top end of the filter cabinet 51 is provided with a full-automatic candle type filter cake layer filter 52, and the full-automatic candle type filter cake layer filter 52 is provided with a filter material receiving trolley 53 below, which is used for receiving the filtered residue of the full-automatic candle type filter cake layer filter 52.

[0023] Specifically, the backwater tank 4 comprises a wastewater area, a water outlet pipe and a clean water area, a water inlet pipe, a water supply pipe 10 communicated with the clean water area, and a backwater pipe 11 communicated with the wastewater area; the inside of the drain pipe comprises a clean water pipeline and a wastewater pipeline, the clean water pipeline and the water inlet pipe are communicated with the clean water area, and the wastewater pipeline and the water outlet pipe are communicated with the wastewater area.

[0024] In implementation, the drain pipes of a plurality of washing and grinding machines 3 are connected with the backwater tank 4 through the clean water pipeline and the wastewater pipeline, and the water outlet pipe of the backwater tank 4 is connected with the coarse residue automatic extrusion residue discharging device 7 through the backwater pipe 11.

[0025] Further, as shown in Figure 2 and Figure 6As shown, the water tank mechanism 6 is arranged inside the treatment chamber 2 and on one side of the filtering mechanism 5, and a plurality of groups of coarse residue automatic extrusion discharge devices 7 are arranged on one side of the top of the water tank mechanism 6, which are used for solid-liquid separation treatment of wastewater, and the water tank mechanism 6 comprises a composite water tank 61, a vertical wastewater pump 62, a fishing net filtering tank 63, and an invasive multi-stage centrifugal water supply pump 64. The composite water tank 61 is arranged inside the treatment chamber 2, and a clean water tank 611 and a wastewater tank 612 are arranged inside the composite water tank 61. The clean water tank 611 is in communication with the water outlet end of the full-automatic candle type filter cake layer filter 52 through a pipeline, and the inside of the clean water tank 611 is equipped with a constant temperature refrigerator, which is a semiconductor constant temperature device capable of keeping the measuring system at a constant temperature. The constant temperature refrigerator adopts semiconductor refrigeration.

[0026] In implementation, the wastewater treated by the coarse residue automatic extrusion discharge device 7 is pumped into the wastewater tank 612 in the composite water tank 61, and then the wastewater in the wastewater tank 612 is pumped into the full-automatic candle type filter cake layer filter 52 by the vertical wastewater pump 62 for filtration.

[0027] Further, as shown in Figure 3 and Figure 6 , two vertical wastewater pumps 62 are arranged on one side of the composite water tank 61, and the water inlet end of the vertical wastewater pump 62 is in communication with the wastewater tank 612 through a pipeline, and the water outlet end of the vertical wastewater pump 62 is in communication with the water inlet end of the full-automatic candle type filter cake layer filter 52. The fishing net filtering tank 63 is arranged on the top end of the composite water tank 61, and the water inlet end of the fishing net filtering tank 63 is in communication with the wastewater tank 612 through a pipeline, and the water outlet end of the fishing net filtering tank 63 after filtration is in communication with the clean water tank 611 through a pipeline. The fishing net filtering tank 63 is used for filtering the wastewater in the wastewater tank 612 and flowing into the inside of the clean water tank 611. Two groups of invasive multi-stage centrifugal water supply pumps 64 are arranged on the surface of the composite water tank 61 and above the clean water tank 611, and the water inlet end of the invasive multi-stage centrifugal water supply pump 64 extends into the inside of the clean water tank 611. The water outlet end of the invasive multi-stage centrifugal water supply pump 64 is connected with a water supply pipe 10 with an electromagnetic valve, and the other end of the water supply pipe 10 is in communication with the water inlet end of the backwater tank 4.

[0028] In implementation, the coarse residue automatic extrusion discharge device 7 is connected with the wastewater tank 612 through a pipeline, the wastewater tank 612 is connected with the full-automatic candle type filter cake layer filter 52, the full-automatic candle type filter cake layer filter 52 is connected with the clean water tank 611 through a pipeline, and the clean water tank 611 is connected with the water inlet pipe of the backwater tank 4 through the water supply pipe 10.

[0029] Further, as shown in Figure 3 and Figure 4As shown, the coarse residue automatic extrusion residue discharging device 7 is further provided with a coarse residue receiving assembly 8 on one side, which is used for receiving the coarse residue processed by the coarse residue automatic extrusion residue discharging device 7; the water inlet end of the coarse residue automatic extrusion residue discharging device 7 is communicated with a backwater pipe 11, and the other end of the backwater pipe 11 is respectively communicated with the water outlet end of the backwater tank 4; the coarse residue receiving assembly 8 comprises a receiving hopper 81 and a coarse residue receiving trolley 82; the receiving hopper 81 is placed on one side of the coarse residue automatic extrusion residue discharging device 7, and the coarse residue receiving trolley 82 is placed below the receiving hopper 81 and can be pushed and pulled; the inside of the processing chamber 2 is further connected with a power distribution cabinet 9, which is used for the control work of the whole system.

[0030] The utility model still includes fish -net filter box 63, waste water tank 612 is connected with fish -net filter box 63, fish -net filter box 63 is equipped with clean water drain pipe and waste water drain pipe, clean water drain pipe is connected with clean water tank 611 through pipeline and water pump, waste water drain pipe is connected with waste water tank 612 through pipeline and water pump, and a part of the water after fish -net filter plate is extracted by waste water pump and enters clean water tank 611, and a part of the water with particulate matter is refluxed to waste water tank 612, so that the water amount of clean water tank 611 is ensured to be sufficient.

[0031] Working principle: when in use, the waste water discharged from the washing and grinding machine 3 enters the backwater tank 4 through the waste water pipeline in the drain pipe, the outlet pipe of the backwater tank 4 delivers the waste water to the coarse residue automatic extrusion residue discharging device 7 through the backwater pipe 11, the coarse residue processed by the coarse residue automatic extrusion residue discharging device 7 enters the coarse residue receiving trolley 82 from the receiving hopper 81, and the waste water enters the waste water tank 612 in the composite water tank 61, then the vertical waste water pump 62 pumps the waste water in the waste water tank 612 to the inside of the full-automatic candle type filter cake layer filter 52 for filtration, the waste residue generated in the filtration is received by the filter receiving trolley 53, and the filtered water is sent to the inside of the clean water tank 611 of the composite water tank 61, since the clean water tank 611 is internally provided with a constant-temperature refrigerator, the water is delivered to the backwater tank 4 through the invasive multi-stage centrifugal water supply pump 64 through the water supply pipe 10 after refrigeration, and then is delivered back to the washing and grinding machine 3 through the clean water pipeline in the backwater tank 4.

[0032] It is apparent for those skilled in the art that the utility model is not limited to the details of the above-mentioned exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or basic features of the utility model. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-restrictive, the scope of the utility model is defined by the appended claims instead of the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims should be included in the utility model. Any reference signs in the claims should not be regarded as limiting the involved claims.

Claims

1. A centralized filtering and cooling treatment system for lens production, comprising a washing and grinding workshop (1) and a treatment chamber (2) located on one side of the washing and grinding workshop (1), characterized in that: The inside of the washing mill (1) is provided with a plurality of washing mills (3), and one side of each washing mill (3) is provided with a backwater tank (4), and the backwater tank (4) and the washing mill (3) are communicated through a drain pipe; The inside of the treatment chamber (2) is provided with a filtering mechanism (5), which is used for filtering the wastewater; The inside of the treatment chamber (2) and one side of the filtering mechanism (5) are provided with a water tank mechanism (6), and one side of the top of the water tank mechanism (6) is installed with a plurality of groups of coarse residue automatic extrusion discharge device (7), which is used for solid-liquid separation treatment of wastewater; One side of the coarse residue automatic extrusion discharge device (7) is also provided with a coarse residue receiving assembly (8), which is used for receiving the coarse residue treated by the coarse residue automatic extrusion discharge device (7). The inside of the treatment chamber (2) is also connected with a power distribution cabinet (9), which is used for the control of the whole system.

2. The centralized filtration-cooling treatment system for lens production according to claim 1, characterized in that: The filtering mechanism (5) comprises filter cabinets (51), full-automatic candle type filter cake layer filter (52) and filter receiving trolley (53), the filter cabinets (51) are arranged side by side, and two filter cabinets (51) are located on one side of the water tank mechanism (6).

3. The centralized filtration and cooling treatment system for lens production according to claim 2, characterized in that: The top of the filter cabinet (51) is provided with a full-automatic candle type filter cake layer filter (52), and the lower part of the full-automatic candle type filter cake layer filter (52) is provided with a filter receiving trolley (53), which is used for receiving the residue after the full-automatic candle type filter cake layer filter (52) is filtered.

4. The centralized filtration and cooling process system for lens production of claim 1, wherein: The water tank mechanism (6) comprises a composite water tank (61), a vertical wastewater pump (62), a fishing net filter box (63) and an invasive multi-stage centrifugal water supply pump (64), the composite water tank (61) is located in the inside of the treatment chamber (2), the inside of the composite water tank (61) is provided with a clean water tank (611) and a wastewater tank (612), and the clean water tank (611) is communicated with the water outlet end of the full-automatic candle type filter cake layer filter (52) through a pipeline.

5. The centralized filtration-cooling treatment system for lens production according to claim 4, characterized in that: The one side of the composite water tank (61) is provided with two vertical wastewater pumps (62), the water inlet end of the vertical wastewater pump (62) is communicated with the wastewater tank (612) through a pipeline, and the water outlet end of the vertical wastewater pump (62) is communicated with the water inlet end of the full-automatic candle type filter cake layer filter (52).

6. The centralized filtration-cooling treatment system for lens production according to claim 5, characterized in that: The top of the composite water tank (61) is provided with a fishing net filter box (63), the water inlet end of the fishing net filter box (63) is communicated with the wastewater tank (612) through a pipeline, and the water outlet end of the fishing net filter box (63) is communicated with the clean water tank (611) through a pipeline, and the fishing net filter box (63) is used for filtering the wastewater in the wastewater tank (612) and flowing into the inside of the clean water tank (611).

7. The centralized filtration and cooling process system for lens production according to claim 6, characterized in that: The composite water tank (61) surface and located above the clean water tank (611) is equipped with two groups of invasive multistage centrifugal water supply pump (64), and the water inlet end of the invasive multistage centrifugal water supply pump (64) extends to the inside of the clean water tank (611), the water outlet end of the invasive multistage centrifugal water supply pump (64) is communicated with the water supply pipe (10) with electromagnetic valve, and the other end of the water supply pipe (10) and the water inlet end of the water return tank (4) are interconnected.

8. The centralized filtration and cooling process system for lens production of claim 1, wherein: The water inlet end of the coarse slag automatic extrusion slag discharge device (7) is communicated with the water return pipe (11), and the other end of the water return pipe (11) is respectively communicated with the water outlet end of the water return tank (4); the coarse slag receiving assembly (8) comprises a receiving hopper (81) and a coarse slag receiving trolley (82), the receiving hopper (81) is placed on one side of the coarse slag automatic extrusion slag discharge device (7), and a coarse slag receiving trolley (82) which can be pushed and pulled is placed below the receiving hopper (81).