Cutting fluid recovery device for wire cutting
By designing a cutting fluid recovery device that includes a filter screen and a filter element, the problem of difficult classification of metal chips and lubricating oil in the cutting fluid recovery of wire EDM machines has been solved, realizing automated sorting and efficient filtration.
Patent Information
- Application Number
- CN202423211356.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2034-12-25
AI Technical Summary
Existing wire EDM machine tools' cutting fluid recovery devices cannot effectively classify and collect metal chips and lubricating oil during the cutting process, leading to difficulties in subsequent sorting.
A cutting fluid recovery device including a recovery mechanism, a filtration mechanism and a transfer mechanism was designed. It uses a filter screen and a filter element assembly for dual filtration, combines an air-filling assembly to improve filtration efficiency, and achieves automated sorting through a split structure.
It achieves efficient filtration and automated sorting of cutting fluid, improves the practicality and filtration effect of the device, and simplifies the subsequent processing procedures.
Smart Images

Figure CN223811645U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to cutting fluid recovery field, especially relate to a cutting fluid recovery device for wire cutting. BACKGROUND
[0002] At present, wire cutting machine tool belongs to electric processing category, and its basic physical principle is that free positive ions and electrons accumulate in a field, quickly form an ionized conductive channel, and perform corresponding cutting forming on a workpiece.
[0003] When the wire cutting machine tool is used, sparks are generated due to high temperature, and cutting fluid is needed to cool the workpiece and the cutting member, and when the cutting fluid is flushed, metal scraps in the cutting process and lubricating oil used for lubricating the machine tool itself are flushed into the corresponding recovery mechanism, but the recovery mechanism can only realize unified collection of the above-mentioned substances, which leads to subsequent inconvenience of classification, and therefore a cutting fluid recovery device for wire cutting is proposed.
[0004] Therefore, in view of the above-mentioned deficiencies in actual production and implementation, the utility model is modified and improved, and is created based on the spirit and concept of seeking good, the assistance of professional knowledge and experience, and multiple trials and experiments, and provides a cutting fluid recovery device for wire cutting to solve the problem that the existing cutting fluid is flushed, metal scraps in the cutting process and lubricating oil used for lubricating the machine tool itself are flushed into the corresponding recovery mechanism, but the recovery mechanism can only realize unified collection of the above-mentioned substances, which leads to subsequent inconvenience of classification. SUMMARY
[0005] The utility model discloses a cutting fluid recovery device for wire cutting, which solves the problem that the cutting fluid in the prior art is flushed, metal scraps in the cutting process and lubricating oil used for lubricating the machine tool itself are flushed into the corresponding recovery mechanism, but the recovery mechanism can only realize unified collection of the above-mentioned substances, which leads to subsequent inconvenience of classification.
[0006] The technical scheme of the utility model is as follows: a cutting fluid recovery device for wire cutting, comprising a recovery mechanism, the main body of the recovery mechanism is a conical frustum structure with a thick upper part and a thin lower part, a transfer mechanism is inserted into the recovery mechanism, and a filtering mechanism is further installed above the transfer mechanism.
[0007] The main body of the filtering mechanism is a bidirectional through structure with upper and lower sides, a filter screen assembly is fixedly connected to the inner bottom end face of the filtering mechanism, a through hole is formed in a rectangular array in the inner portion of the filter screen assembly, the filter screen assembly and the filtering mechanism together form an initial filtering structure for cutting fluid, a plug rod assembly with a cylindrical structure is fixedly connected to the bottom end face of the filtering mechanism, the plug rod assembly is provided with four plug rod assemblies, the four plug rod assemblies are fixedly connected to the four corner positions of the bottom end face of the filtering mechanism, a seat body assembly with a rectangular frame structure is installed at the bottom end of the transfer mechanism, a filter core assembly is embedded in the inner portion of the seat body assembly, a mounting hole is formed at the four corner positions of the inner portion of the seat body assembly, and the seat body assembly is mounted below the transfer mechanism through a fixed bolt, and an inflation assembly is fixedly connected to the outer circumferential surface of the transfer mechanism, and the distal end of the inflation assembly is connected with an inflation pump.
[0008] As a preferred embodiment, a discharging assembly is fixedly connected to the bottom end face of the recycling mechanism, and the discharging assembly is a bidirectional through structure with upper and lower sides.
[0009] As a preferred embodiment, an L-shaped supporting assembly is fixedly connected to the outer side of the recycling mechanism, and the supporting assembly is provided with four supporting assemblies.
[0010] As a preferred embodiment, a cylindrical cushion block assembly is fixedly connected to the bottom end face of the longitudinal member of each of the four supporting assemblies, and a supporting plate assembly is fixedly connected to the inner wall of the recycling mechanism.
[0011] As a preferred embodiment, the supporting plate assembly is provided with two supporting plate assemblies, and the two supporting plate assemblies are used for lifting the filtering mechanism and the transfer mechanism.
[0012] As a preferred embodiment, a slot for inserting a sealing assembly is formed in the left side of the transfer mechanism, and a holding assembly is fixedly connected to the left side of the sealing assembly.
[0013] As a preferred embodiment, the sealing assembly and the holding assembly together form a sealing structure for the opening at the top end of the transfer mechanism.
[0014] As a preferred embodiment, a positioning hole is formed at the top end of the transfer mechanism, and the positioning hole is provided with four positioning holes, and the four positioning holes are formed at the four corner positions of the top end face of the transfer mechanism.
[0015] As a preferred embodiment, the positioning hole is matched with the plug rod assembly fixedly connected to the four corner positions of the bottom end face of the filtering mechanism.
[0016] As a preferred embodiment, the seat body assembly and the filter core assembly together form an adsorption structure for oil.
[0017] After the above technical scheme is used, the beneficial effects of the present application are as follows:
[0018] 1. The utility model discloses a seat body subassembly is installed on the bottom end face of transfer mechanism through the fixed bolt, the inside fixed connection of seat body subassembly has filter core subassembly, therefore, when using, can realize the double filtration recovery operation to the current cutting fluid with the setting of filter screen subassembly in the filter mechanism, the design can significantly improve the practicability of the whole device, and then reach the purpose that improves the filtering effect.
[0019] 2. The utility model discloses a transfer mechanism and recovery mechanism of split type structure are set up, when filtering the cutting fluid, compared with the traditional recovery structure, the subsequent manual sorting is different, the sorting operation of the impurity in the cutting fluid can be automated, and through the split structure setting, the subsequent dismounting and overhauling can be more convenient. ACCURACY OF DRAWINGS
[0020] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, the following will briefly introduce the drawing needed to be used in the embodiment or prior art description, obviously, the drawing in the following description only some embodiments of the utility model, for ordinary skilled person in the art, under the premise of not paying the creative labor, still can obtain other drawings according to these drawings.
[0021] Figure 1 It is the front side view structural schematic diagram of cutting fluid recovery device's section after of the utility model,
[0022] Figure 2 It is the overall shaft side view structural schematic diagram of cutting fluid recovery device of the utility model,
[0023] Figure 3 It is the transfer mechanism and closed assembly combination structural schematic diagram of cutting fluid recovery device of the utility model,
[0024] Figure 4 It is the overhead structure schematic diagram of cutting fluid recovery device of the utility model,
[0025] Figure 5 It is the seat body subassembly and filter core subassembly combination structural schematic diagram of cutting fluid recovery device of the utility model,
[0026] Figure 6 It is the front view structural schematic diagram of cutting fluid recovery device of the utility model,
[0027] In the figure, 1, recovery mechanism; 101, blanking assembly; 102, support assembly; 103, cushion block assembly; 104, support plate assembly; 2, transfer mechanism; 201, closing assembly; 202, holding assembly; 203, positioning hole; 3, filtering mechanism; 301, filter screen assembly; 302, insertion rod assembly; 303, seat body assembly; 304, filter core assembly; 305, fixing bolt; 306, inflation assembly. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0029] As Figures 1-6 shown, a cutting fluid recovery device for wire cutting includes: a recovery mechanism 1, the main body of the recovery mechanism 1 is a tapered structure with a thick upper part and a thin lower part, a transfer mechanism 2 is inserted into the recovery mechanism 1, and a filtering mechanism 3 is further installed above the transfer mechanism 2.
[0030] The main body of the filtering mechanism 3 is a bidirectional through structure with upper and lower sides, a filter screen assembly 301 is fixedly connected to the inner bottom end face of the filtering mechanism 3, the inside of the filter screen assembly 301 is provided with through holes in a rectangular array, the filter screen assembly 301 and the filtering mechanism 3 together constitute a primary filtering structure for cutting fluid, a cylindrical insertion rod assembly 302 is fixedly connected to the bottom end face of the filtering mechanism 3, the insertion rod assembly 302 is provided with four, the four insertion rod assemblies 302 are fixedly connected to the four corner positions of the bottom end face of the filtering mechanism 3, a seat body assembly 303 in a rectangular frame structure is installed at the bottom end of the transfer mechanism 2, a filter core assembly 304 is embedded in the seat body assembly 303, installation holes are provided at the four corner positions in the seat body assembly 303, and the seat body assembly 303 is installed below the transfer mechanism 2 through fixing bolts 305, an inflation assembly 306 is fixedly connected to the outer circumferential surface of the transfer mechanism 2, the distal end of the inflation assembly 306 is connected to an inflation pump, and the seat body assembly 303 and the filter core assembly 304 together constitute an adsorption structure for oil.
[0031] The bottom end face of the recovery mechanism 1 is fixedly connected to a blanking assembly 101, the blanking assembly 101 is a bidirectional through structure with upper and lower sides, the outer side of the recovery mechanism 1 is fixedly connected to an L-shaped support assembly 102, and the support assembly 102 is provided with four.
[0032] The bottom end surface of the longitudinal member of the four supporting assemblies 102 is fixedly connected with a cushion block assembly 103 in a cylindrical structure, and the inner wall of the recovery mechanism 1 is fixedly connected with a supporting plate assembly 104, and the supporting plate assembly 104 is provided with two supporting plate assemblies 104, and the two supporting plate assemblies 104 are used for lifting the filtering mechanism 3 and the transfer mechanism 2.
[0033] The left side of the transfer mechanism 2 is provided with a slot for inserting a sealing assembly 201, and the left side of the sealing assembly 201 is fixedly connected with a holding assembly 202, and the sealing assembly 201 and the holding assembly 202 jointly form a sealing structure for the top opening of the transfer mechanism 2.
[0034] The top end of the transfer mechanism 2 is provided with a positioning hole 203, and the positioning hole 203 is provided with four positioning holes 203, and the four positioning holes 203 are respectively arranged at the four corner positions of the top end surface of the transfer mechanism 2, and the positioning hole 203 is matched with the insertion rod assembly 302 fixedly connected to the four corner positions of the bottom end surface of the filtering mechanism 3.
[0035] In use, when the wire cutting machine tool cutting fluid is recovered, the recovery mechanism 1 is placed on the ground by the supporting assembly 102 and the cushion block assembly 103 fixedly connected to the outer side surface thereof, and the cutting fluid mixture generated during the machining of the wire cutting machine tool is simultaneously sucked into the upper side of the filtering mechanism 3 by the external suction pump, and the initial filtering operation of the cutting fluid is realized by the arrangement of the filter screen assembly 301 fixedly connected in the filtering mechanism 3, so that the waste in the cutting fluid can be preliminarily filtered by the filter screen assembly 301, and the subsequent waste liquid will continue to fall into the inside of the transfer mechanism 2, and the subsequent permeation filtering operation is realized by the filter core assembly 304 arranged in the seat body assembly 303;
[0036] The waste liquid filtered by the filter core assembly 304 can be discharged by the discharging assembly 101 fixedly connected to the bottom end surface of the recovery mechanism 1, and the oil liquid can be adsorbed by the filter core assembly 304 for subsequent separate treatment, and when the cutting fluid is recovered, the sealing assembly 201 is inserted into the inside of the transfer mechanism 2, and the inside of the transfer mechanism 2 is inflated by starting the external air pump and using the inflation assembly 306, so that the liquid in the inside of the transfer mechanism 2 can accelerate the permeation filtering efficiency, and the recovery efficiency of the cutting fluid is further improved.
[0037] The above is only a preferred embodiment of the present application, and is not used to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A wire cutting cutting fluid recovery device comprising a recovery mechanism (1), the main body of the recovery mechanism (1) is a frustum structure with the upper part being thick and the lower part being thin, characterized in that, The inside of the recycling mechanism (1) is inserted with a transfer mechanism (2), and the upper side of the transfer mechanism (2) is further provided with a filtering mechanism (3). The main body of the filtering mechanism (3) is a bidirectional through structure on the upper and lower sides, a filter screen assembly (301) is fixedly connected to the inner bottom end face of the filtering mechanism (3), a through hole is formed in the filter screen assembly (301) in a rectangular array, the filter screen assembly (301) and the filtering mechanism (3) together constitute an initial filtering structure for cutting fluid, a plug rod assembly (302) in a cylindrical structure is fixedly connected to the bottom end face of the filtering mechanism (3), and the plug rod assembly (302) is provided with four, and the four plug rod assemblies (302) are fixedly connected to the four corner positions of the bottom end face of the filtering mechanism (3). A seat assembly (303) in a rectangular frame structure is installed at the bottom end of the transfer mechanism (2), a filter core assembly (304) is embedded in the seat assembly (303), mounting holes are formed in the four corner positions of the seat assembly (303), and the seat assembly (303) is installed below the transfer mechanism (2) through fixing bolts (305), an inflation assembly (306) is fixedly connected to the outer circumferential surface of the transfer mechanism (2), and the distal end of the inflation assembly (306) is connected with an air inflation pump.
2. The cutting fluid recovery device for a wire saw according to claim 1, wherein The bottom end face of the recycling mechanism (1) is fixedly connected with a discharging assembly (101), and the discharging assembly (101) is a bidirectional through structure on the upper and lower sides.
3. The cutting fluid recovery device for a wire saw according to claim 1, characterized by The outer side of the recycling mechanism (1) is fixedly connected with L-shaped support assemblies (102), and the support assemblies (102) are provided with four.
4. The cutting fluid recovery device for a wire saw according to claim 3, characterized by The bottom end face of the longitudinal member of the four support assemblies (102) is fixedly connected with a cushion block assembly (103) in a cylindrical structure, and a support plate assembly (104) is fixedly connected to the inner wall of the recycling mechanism (1).
5. The cutting fluid recovery device for a wire saw according to claim 4, characterized by The support plate assembly (104) is provided with two, and the two support plate assemblies (104) are used for lifting the filtering mechanism (3) and the transfer mechanism (2).
6. The cutting fluid recovery device for a wire saw according to claim 5, wherein The left side of the transfer mechanism (2) is provided with a slot for inserting a sealing assembly (201), and the left side of the sealing assembly (201) is fixedly connected with a holding assembly (202).
7. The cutting fluid recovery device for a wire saw according to claim 6, wherein The sealing assembly (201) and the holding assembly (202) together constitute a sealing structure for the opening at the top end of the transfer mechanism (2).
8. The cutting fluid recovery device for a wire saw according to claim 6, wherein The top end of the transfer mechanism (2) is provided with positioning holes (203), and the positioning holes (203) are provided with four, and the four positioning holes (203) are respectively formed in the four corner positions of the top end face of the transfer mechanism (2).
9. The cutting fluid recovery device for a wire saw according to claim 8, wherein The positioning holes (203) are matched with the plug rod assemblies (302) fixedly connected to the four corner positions of the bottom end face of the filtering mechanism (3).
10. The cutting fluid recovery device for a wire saw according to claim 1, wherein The seat assembly (303) and the filter core assembly (304) together constitute an adsorption structure for oil.