Cutting fluid recycling structure

By introducing an overflow box, a filter box, and a filter membrane into the cutting fluid recovery structure, multi-stage filtration is achieved, solving the problem of impurities in the cutting fluid and improving the purity and reusability of the cutting fluid.

CN223586750UActive Publication Date: 2025-11-25QINGDAO XINHANGDA INSTRUMENT CO LTD
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Patent Information

Application Number
CN202422994591.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-11-25
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

Existing cutting fluid recovery systems still contain a large number of impurities in the cutting fluid during the filtration process, resulting in poor recovery efficiency.

Method used

Design a cutting fluid recovery structure, including an overflow box, a filter box, and a filter membrane, to improve the purity of the cutting fluid through multi-stage filtration.

Benefits of technology

Multi-stage filtration of the cutting fluid is achieved, effectively removing impurities, improving the purity of the cutting fluid, and ensuring its reusability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cutting fluid recycling structure. Comprising a recycling barrel, an overflow box is arranged in the recycling barrel, a first fixing edge is arranged at the upper end of the overflow box, and an overflow hole is formed in the edge of the upper end of the overflow box; a filtering box is arranged in the recycling barrel, a second fixing edge is arranged at the upper end of the filtering box, a plurality of first discharging holes are formed in the bottom of the filtering box, a first activated carbon plate is arranged in the filtering box, and first fiber plates are arranged on the two sides of the first activated carbon plate respectively; a filtering membrane is arranged in the recycling barrel, and a third fixing edge is arranged at the upper end of the filtering membrane; the overflow box is arranged at the upper end of the recycling bin, the filter box is arranged in the middle of the recycling bin, and the filter membrane is arranged at the lower end of the recycling bin; according to the cutting fluid recycling device, the overflow box, the filter box and the filter membrane are arranged in the recycling barrel, so that the cutting fluid is subjected to multi-stage filtering treatment, and the cleanliness of the cutting fluid is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to cutting technical field especially relates to a cutting fluid recovery structure. BACKGROUND

[0002] Cutting fluid is a liquid or gaseous material used in metal machining processes, mainly for lubrication, cooling, cleaning and corrosion protection. It plays a very important role in cutting, grinding, drilling and other machining processes, can effectively prolong the tool life, improve the machining accuracy, improve the surface quality, and reduce the deformation of workpiece caused by high temperature.

[0003] The main functions of cutting fluid include cooling effect: a large amount of heat will be generated during cutting process, if not heat dissipation in time, will lead to tool overheating, workpiece deformation, even damage the tool. Cutting fluid can take away the heat generated between tool and workpiece, keep the processing area temperature appropriate, reduce thermal expansion and thermal stress.

[0004] Lubrication: the lubrication of cutting fluid can reduce the friction between tool and workpiece in cutting process, reduce the heat generation caused by friction, prevent tool wear. Good lubrication can also improve the machining efficiency and machining quality.

[0005] Cleaning effect: cutting fluid can effectively clean the workpiece surface, remove the metal chips, oil stains and other impurities in the machining process, avoid the influence of impurities on the machining quality, and ensure the cleanliness of the machining environment.

[0006] Anti-rust effect: the anti-rust components in cutting fluid can protect the machine tool and workpiece surface from corrosion, prolong the service life of equipment and tools.

[0007] Reduce cutting force: the lubrication effect of cutting fluid helps to reduce the cutting force, make the cutting process more stable, avoid vibration and excessive tool load, improve the machining accuracy.

[0008] In order to reduce the consumption of resources, it is necessary to recycle and filter the used cutting fluid, so that the used cutting fluid can be reused, and the waste of resources can be reduced.

[0009] However, the existing technology has some problems: the existing recovery mechanism uses filter screen to filter the used cutting fluid during use, so there are still a lot of impurities in the cutting fluid, therefore we propose a cutting fluid recovery structure. UTILITY MODEL CONTENTS

[0010] In view of the problems existing in the prior art, the utility model aims at providing a cutting fluid recovery structure, which is characterized in that an overflow box, a filter box and a filter membrane are arranged in the interior of the recovery barrel, so as to realize multi-stage filtering treatment of the cutting fluid and improve the cleanliness of the cutting fluid.

[0011] The utility model discloses a cutting fluid recovery structure, including the recovery bucket, the inside of recovery bucket is equipped with the overflow box, the upper end of overflow box is equipped with the first fixed edge, the upper end edge of overflow box is opened with the overflow hole,

[0012] The inside of the recovery bucket is provided with a filter box, the upper end of the filter box is fixedly provided with a second fixed edge, a plurality of first discharge holes are formed in the bottom of the filter box, a first activated carbon plate is arranged in the filter box, and first fiber plates are arranged on the two sides of the first activated carbon plate.

[0013] The inside of the recovery bucket is provided with a filter membrane, and the upper end of the filter membrane is fixedly provided with a third fixed edge.

[0014] The overflow box is arranged at the upper end of the recovery bucket, the filter box is arranged at the middle part of the recovery bucket, and the filter membrane is arranged at the lower end of the recovery bucket.

[0015] Specifically, the upper end surface of the recovery bucket is fixedly provided with a bonding plate bonded to the lower part of the cutting machine, T-shaped sliding grooves are formed in the lower parts of the two sides of the bonding plate, a discharge pipe is communicated with the middle of the bottom end of the recovery bucket, and a control valve is fixedly installed on the discharge pipe.

[0016] Specifically, the upper part of the recovery bucket is provided with a first pressing block and a first supporting block for fixing the overflow box, the middle part of the recovery bucket is provided with a second pressing block and a second supporting block for fixing the filter box, and the bottom part of the recovery bucket is provided with a supporting ring for fixing the filter membrane.

[0017] Specifically, the outer side of the third fixed edge is provided with a first arc-shaped groove, the length of the first arc-shaped groove is greater than the lengths of the first pressing block, the first supporting block, the second pressing block and the second supporting block, the length of the second supporting block is greater than the length of the second pressing block, the length of the second pressing block is the same as the length of the first supporting block, and the length of the first supporting block is greater than the length of the first pressing block.

[0018] Specifically, the outer side of the second fixed edge is provided with a second arc-shaped groove, the length of the second arc-shaped groove is greater than the length of the second pressing block, and the length of the second arc-shaped groove is less than the length of the second supporting block.

[0019] Specifically, the outer side of the first fixed edge is provided with a third arc-shaped groove, the length of the third arc-shaped groove is greater than the length of the first pressing block, and the length of the third arc-shaped groove is less than the length of the first supporting block.

[0020] Specific, the overflow box is screwed in the middle of the settling cylinder, the bottom of the settling cylinder is provided with a second discharge hole, the upper part of the settling cylinder is provided with a plurality of into holes, the inside of the settling cylinder is provided with a second activated carbon plate, the two sides of the second activated carbon plate are provided with a second fiber plate, the upper end of the settling cylinder is screwed with a first pressing plate, and the first pressing plate is fixedly provided with a first handle.

[0021] Specific, the upper end of the filter box is screwed with a second pressing plate, a plurality of water flow holes are formed in the second pressing plate, a second handle is fixedly arranged in the middle of the second pressing plate, and a third handle is fixedly arranged on the upper part of the first fixed edge, the second fixed edge and the third fixed edge.

[0022] Compared with the prior art, the utility model has the advantages that:

[0023] When the utility model is used, the overflow box, the filter box and the filter membrane are arranged in the recycling barrel to realize multi-stage filtering treatment of the cutting fluid, and the purity of the cutting fluid is improved.

[0024] The overflow box is used to realize sedimentation overflow of the cutting fluid, so that the impurities in the cutting fluid can be precipitated at the bottom, the cutting fluid at the upper part can fall from the overflow hole and be stored in the overflow box, and the cutting fluid stored in the overflow box is slowly immersed and flowed through the settling cylinder, so that the cutting fluid is prevented from being stored in the overflow box.

[0025] The first activated carbon plate and the first limiting plate in the filter box are used to filter the cutting fluid, so that the impurities in the cutting fluid are effectively reduced.

[0026] The filter membrane is used to realize re-filtering treatment of the cutting fluid, so that the fine impurities in the cutting fluid are reduced again, and the cleanliness of the cutting fluid is improved.

[0027] Other features and advantages of the utility model will become clear through the following detailed description of exemplary embodiments of the utility model with reference to the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 is the structural schematic view provided by the utility model;

[0029] Figure 2 is the internal schematic view of the recycling barrel provided by the utility model;

[0030] Figure 3 is the bottom view of the overflow box provided by the utility model;

[0031] Figure 4 is the top view of the overflow box provided by the utility model;

[0032] Figure 5 is a cross-sectional view of the overflow box provided by the utility model;

[0033] Figure 6 is a bottom view of the filter box provided by the utility model;

[0034] Figure 7 is a top view of the filter box provided by the utility model;

[0035] Figure 8 is a cross-sectional view of the filter box provided by the utility model;

[0036] Figure 9 is a filter membrane structure schematic view provided by the utility model.

[0037] In the figure: 1, recovery bucket; 2, fit board; 3, control valve; 4, overflow box; 5, first fixed edge; 6, overflow hole; 7, filter box; 8, first discharge hole; 9, second fixed edge; 10, second pressing plate; 11, first fiber plate; 12, first activated carbon plate; 13, filter membrane; 14, third fixed edge; 15, third handle; 16, first arc-shaped groove; 17, second handle; 18, water flow hole; 19, second arc-shaped groove; 20, settling cylinder; 21, second discharge hole; 22, inlet hole; 23, first pressing plate; 24, first handle; 25, second fiber plate; 26, second activated carbon plate; 27, third arc-shaped groove; 28, support ring; 29, second support block; 30, second pressing block; 31, first support block; 32, first pressing block; 33, T-shaped sliding groove; 34, discharge pipe. DETAILED DESCRIPTION

[0038] In order to further understand the utility model content, characteristics and efficacy of the utility model, the following examples are cited, and the following is described in detail with the aid of drawings.

[0039] As Figures 1 to 9 shown, the utility model embodiment provides a cutting fluid recovery structure, including recovery bucket 1, the inside of recovery bucket 1 is equipped with overflow box 4, the upper end of overflow box 4 is fixedly provided with first fixed edge 5, and the upper end edge of overflow box 4 is provided with overflow hole 6;

[0040] The inside of recovery bucket 1 is equipped with filter box 7, the upper end of filter box 7 is fixedly provided with second fixed edge 9, the bottom of filter box 7 is provided with a plurality of first discharge hole 8, the inside of filter box 7 is equipped with first activated carbon plate 12, and the two sides of first activated carbon plate 12 are respectively provided with first fiber plate 11;

[0041] The inside of recovery bucket 1 is equipped with filter membrane 13, and the upper end of filter membrane 13 is fixedly provided with third fixed edge 14;

[0042] The overflow box 4 is arranged at the upper end of the recovery bucket 1, the filter box 7 is arranged at the middle of the recovery bucket 1, and the filter membrane 13 is arranged at the lower end of the recovery bucket 1.

[0043] In the embodiment, preferably, the upper end surface of the recovery bucket 1 is fixedly provided with a fitting plate 2 which is fitted to the lower part of the cutting machine, T-shaped sliding grooves 33 are arranged at the lower part of the fitting plate 2, a discharge pipe 34 is communicated with the middle of the bottom end of the recovery bucket 1, and a control valve 3 is fixedly arranged on the discharge pipe 34.

[0044] It should be noted that the fitting plate 2 is arranged to facilitate the fitting connection of the recovery bucket 1 and the cutting machine, and the lower part of the fitting plate 2 is provided with T-shaped sliding grooves 33, which are arranged to facilitate the sliding installation of the fitting plate 2, so that the fitting plate 2 is fitted to the cutting machine, and the discharge pipe 34 and the control valve 3 are arranged to facilitate the discharge of the purified cutting fluid.

[0045] In the embodiment, preferably, the upper part of the recovery bucket 1 is provided with a first pressing block 32 and a first supporting block 31 for fixing the overflow box 4, the middle of the recovery bucket 1 is provided with a second pressing block 30 and a second supporting block 29 for fixing the filter box 7, and the bottom of the recovery bucket 1 is provided with a supporting ring 28 for fixing the filter membrane 13.

[0046] It should be noted that the first pressing block 32 and the first supporting block 31 are arranged to facilitate the fixed installation of the overflow box 4, and the second pressing block 30 and the second supporting block 29 are arranged to facilitate the fixed installation of the filter box 7, and the supporting ring 28 is arranged to facilitate the fixed installation of the filter membrane 13.

[0047] In the embodiment, preferably, the outer side of the third fixed edge 14 is provided with a first arc-shaped groove 16, the length of the first arc-shaped groove 16 is greater than the length of the first pressing block 32, the first supporting block 31, the second pressing block 30 and the second supporting block 29, the length of the second supporting block 29 is greater than the length of the second pressing block 30, the length of the second pressing block 30 is the same as the length of the first supporting block 31, and the length of the first supporting block 31 is greater than the length of the first pressing block 32.

[0048] It should be noted that the first arc-shaped groove 16 is arranged on the third fixed edge 14, so that the first arc-shaped groove 16 can pass through the first pressing block 32, the first supporting block 31, the second pressing block 30 and the second supporting block 29 in sequence, and the third fixed edge 14 can be placed on the supporting ring 28.

[0049] In the embodiment, preferably, the outer side of the second fixed edge 9 is provided with a second arc-shaped groove 19, the length of the second arc-shaped groove 19 is greater than the length of the second pressing block 30, and the length of the second arc-shaped groove 19 is less than the length of the second supporting block 29.

[0050] It should be noted that the second arc-shaped groove 19 on the second fixed edge 9 is set to facilitate passing through the first pressing block 32, the first supporting block 31 and the second pressing block 30, and can be placed on the second supporting block 29.

[0051] In the embodiment, preferably, the outer side of the first fixed edge 5 is provided with a third arc-shaped groove 27, the length of the third arc-shaped groove 27 is greater than the length of the first pressing block 32, and the length of the third arc-shaped groove 27 is less than the length of the first supporting block 31.

[0052] It should be noted that the third arc-shaped groove 27 provided on the first fixed edge 5 facilitates passing through the first pressing block 32 and is placed on the first supporting block 31.

[0053] In the embodiment, preferably, the overflow box 4 is threadedly connected with a settling cylinder 20 in the middle, the bottom of the settling cylinder 20 is provided with a second discharge hole 21, the upper part of the settling cylinder 20 is laterally provided with a plurality of inlet holes 22, the inside of the settling cylinder 20 is provided with a second activated carbon plate 26, both sides of the second activated carbon plate 26 are provided with second fiber plates 25, the upper end of the settling cylinder 20 is threadedly connected with a first pressing plate 23, and the first pressing plate 23 is fixedly provided with a first handle 24.

[0054] It should be noted that the settling cylinder 20 is set to facilitate the immersion and falling of the remaining cutting fluid in the overflow box 4, and the cutting fluid is filtered by the second activated carbon plate 26 and the second fiber plate 25 to prevent impurities from entering the inside of the filter box 7.

[0055] In the embodiment, preferably, the upper end of the filter box 7 is threadedly connected with a second pressing plate 10, a plurality of water flow holes 18 are provided on the second pressing plate 10, a second handle 17 is fixedly provided in the middle of the second pressing plate 10, and a third handle 15 is fixedly provided on the upper part of the first fixed edge 5, the second fixed edge 9 and the third fixed edge 14.

[0056] It should be noted that in order to realize that the cutting fluid can enter the inside of the filter box 7, and the second activated carbon plate 26 and the second fiber plate 25 are pressed and fixed, the stability is maintained, and the first fixed edge 5, the second fixed edge 9 and the third fixed edge 14 are lifted by the third handle 15, which facilitates installation and disassembly.

[0057] The specific operation process of the application:

[0058] In use, the recycling bucket 1 and the fitting plate 2 are slidably installed at the lower part of the cutting machine through the T-shaped sliding groove 33 to receive the cutting fluid, and after the cutting fluid falls into the overflow box 4, with the increase of the cutting fluid, the large-particle impurities in the cutting fluid are left at the bottom of the overflow box 4, the upper cutting fluid falls through the overflow hole 6, so that the cutting fluid flows into the filter box 7, and the bottom cutting fluid flows down through the immersion of the settling cylinder 20, and the inside of the settling cylinder 20 is provided with the second activated carbon plate 26 and the second fiber plate 25 to filter the cutting fluid and prevent impurities from entering the filter box 7;

[0059] The falling cutting fluid falls into the inside of the filter box 7 through the water flow hole 18 on the second pressing plate 10, the first fiber plate 11 and the first activated carbon plate 12 are arranged in the inside of the filter box 7 to filter the impurities in the cutting fluid, improve the cleanliness of the cutting fluid, and the filtered cutting fluid falls into the filter membrane 13 through the first discharge hole 8;

[0060] The cutting fluid is finely filtered in the filter membrane 13, which can filter the fine impurities and foam in the cutting fluid and improve the cleanliness of the cutting fluid; and after the cutting fluid is filtered through the filter membrane 13, it falls into the inside of the recycling bucket 1, and then the filtered cutting fluid is discharged through the discharge pipe 34 and the control valve 3, so that the cutting fluid is convenient for recycling.

[0061] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A cutting fluid recovery structure comprising a recovery bucket (1), characterized by: The inside of the recycling barrel (1) is provided with an overflow box (4), the upper end of the overflow box (4) is fixedly provided with a first fixed edge (5), and the upper end edge of the overflow box (4) is provided with an overflow hole (6); The inside of the recycling barrel (1) is provided with a filter box (7), the upper end of the filter box (7) is fixedly provided with a second fixed edge (9), a plurality of first discharge holes (8) are formed in the bottom of the filter box (7), the inside of the filter box (7) is provided with a first activated carbon plate (12), and the two sides of the first activated carbon plate (12) are respectively provided with a first fiber plate (11). The inside of the recycling barrel (1) is provided with a filter membrane (13), and the upper end of the filter membrane (13) is fixedly provided with a third fixed edge (14). The overflow box (4) is arranged at the upper end of the recycling barrel (1), the filter box (7) is arranged at the middle of the recycling barrel (1), and the filter membrane (13) is arranged at the lower end of the recycling barrel (1).

2. The cutting fluid recovery structure of claim 1, wherein: The upper end surface of the recycling barrel (1) is fixedly provided with a fitting plate (2) fitted to the lower part of the cutting machine, T-shaped sliding grooves (33) are formed in the lower parts of the two sides of the fitting plate (2), a discharge pipe (34) is communicated in the middle of the bottom end of the recycling barrel (1), and a control valve (3) is fixedly installed on the discharge pipe (34).

3. The cutting fluid recovery structure of claim 1, wherein: The upper part of the recycling barrel (1) is provided with a first pressing block (32) and a first supporting block (31) for fixing the overflow box (4), the middle part of the recycling barrel (1) is provided with a second pressing block (30) and a second supporting block (29) for fixing the filter box (7), and the bottom part of the recycling barrel (1) is provided with a supporting ring (28) for fixing the filter membrane (13).

4. The cutting fluid recovery structure of claim 3, wherein: The outside of the third fixed edge (14) is provided with a first arc-shaped groove (16), the length of the first arc-shaped groove (16) is greater than the lengths of the first pressing block (32), the first supporting block (31), the second pressing block (30) and the second supporting block (29), the length of the second supporting block (29) is greater than the length of the second pressing block (30), the length of the second pressing block (30) is the same as the length of the first supporting block (31), and the length of the first supporting block (31) is greater than the length of the first pressing block (32).

5. The cutting fluid recovery structure of claim 4, wherein: The outside of the second fixed edge (9) is provided with a second arc-shaped groove (19), the length of the second arc-shaped groove (19) is greater than the length of the second pressing block (30), and the length of the second arc-shaped groove (19) is less than the length of the second supporting block (29).

6. The cutting fluid recovery structure of claim 5, wherein: The outside of the first fixed edge (5) is provided with a third arc-shaped groove (27), the length of the third arc-shaped groove (27) is greater than the length of the first pressing block (32), and the length of the third arc-shaped groove (27) is less than the length of the first supporting block (31).

7. The cutting fluid recovery structure of claim 1, wherein: The overflow box (4) is threadedly connected with a settling cylinder (20), the bottom of the settling cylinder (20) is provided with a second discharge hole (21), the upper portion of the settling cylinder (20) is laterally provided with a plurality of inlet holes (22), the inside of the settling cylinder (20) is provided with a second activated carbon plate (26), the two sides of the second activated carbon plate (26) are provided with second fiber plates (25), the upper end of the settling cylinder (20) is threadedly connected with a first pressing plate (23), and the first pressing plate (23) is fixedly provided with a first handle (24).

8. The cutting fluid recovery structure of claim 1, wherein: The upper end of the filter box (7) is threadedly connected with a second pressing plate (10), a plurality of water flow holes (18) are formed in the second pressing plate (10), the middle of the second pressing plate (10) is fixedly provided with a second handle (17), and the upper portions of the first fixed edge (5), the second fixed edge (9) and the third fixed edge (14) are all fixedly provided with third handles (15).