Machine tool cutting fluid supply device for linear cutting

By introducing a servo motor-driven stirring assembly and a baffle filter structure into the cutting fluid supply device, the problem of blockage caused by cutting fluid sedimentation was solved, and a smooth supply of cutting fluid was achieved.

CN223801713UActive Publication Date: 2026-01-16泰州市江南机械制造有限公司
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Patent Information

Application Number
CN202423255848.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-28
Publication Date
2026-01-16
Estimated Expiration
2034-12-28

AI Technical Summary

Technical Problem

Cutting fluid is prone to sedimentation when left for a long time, which can cause the sediment to enter the supply pipe and cause blockage.

Method used

A cutting fluid supply device was designed, comprising a storage mechanism, a guiding component, a baffle mechanism, a servo motor, and a stirring component. The servo motor drives the stirring component to stir and filter the cutting fluid, preventing sediment from entering the supply pipe.

Benefits of technology

It effectively prevents cutting fluid deposits from entering the supply pipe, avoids blockage, and ensures a smooth supply of cutting fluid.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223801713U_ABST
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Abstract

The utility model provides a machine tool cutting fluid supply device for linear cutting, and relates to the field of cutting fluid supply, the bottom end face of a storage mechanism is further fixedly connected with a servo motor, an output shaft at the top end of the servo motor is connected with the storage mechanism through a bearing seat, and the existing cutting fluid is formed by mixing various substances inside, so that the cutting fluid cannot be stored in the storage mechanism. The problems that in the prior art, the bottom end of a feeding pipe is prone to precipitation when the feeding pipe is placed for a long time, if the precipitation phenomenon cannot be treated in time, precipitates enter the feeding pipe easily, and blockage is caused are solved, a partition plate assembly inserted into a guide assembly is arranged, and after installation is completed, the partition plate assembly is inserted into the guide assembly; according to the cutting fluid supply device, the internal space of the storage mechanism can be partitioned, and the cutting fluid entering the storage mechanism can be filtered through the filtering holes formed in the partition plate mechanism, so that the situation of blockage caused by the fact that impurities enter the supply pipeline is prevented.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to cutting fluid supply field, especially relate to a linear cutting machine tool cutting fluid supply device. BACKGROUND

[0002] At present, the wire cut electrical discharge machine belongs to the electric processing category, the instantaneous high temperature of the electric spark can make the local metal melt and oxidize and be corroded, thereby creating and inventing the electric spark processing method, and the cutting fluid needs to be used to cool the cutting workpiece and the machine tool during the wire cutting operation, and the corresponding supply device needs to be used when the cutting fluid is supplied.

[0003] However, the cutting fluid is mixed by various substances inside, and the bottom end is easy to produce the precipitation phenomenon when being placed for a long time, if the precipitation phenomenon cannot be treated in time, the precipitate is easy to enter the supply pipe and cause the blockage, therefore the linear cutting machine tool cutting fluid supply device is proposed.

[0004] Therefore, in view of the above-mentioned scheme in the actual production and implementation use's defect, and correct, improve, and the spirit and idea of seeking good, and the aid of professional knowledge, experience, and after many parties, cleverness, test, the utility model is created, and a linear cutting machine tool cutting fluid supply device is provided to solve the problem. SUMMARY

[0005] The utility model discloses a linear cutting machine tool cutting fluid supply device, solve the cutting fluid in the prior art because the inside contains various substances mixed and formed, the bottom end is easy to produce the precipitation phenomenon when being placed for a long time, if the precipitation phenomenon cannot be treated in time, the precipitate is easy to enter the supply pipe and cause the blockage.

[0006] The technical scheme of the utility model is realized as follows: a linear cutting machine tool cutting fluid supply device, including the storage mechanism, the main part of the storage mechanism is the shell body structure, the inside of the storage mechanism is fixedly connected with the longitudinally arranged guide assembly;

[0007] The inside of the guide assembly is inserted with a partition mechanism, the inside of the partition mechanism is provided with through holes in a rectangular array, the partition mechanism is used for filtering cutting fluid and separating the internal space of the storage mechanism, the bottom end face of the inside of the storage mechanism is fixedly connected with a flow converging assembly, the main body of the flow converging assembly is a frustum structure with a wide top and a narrow bottom, the bottom end face of the flow converging assembly is fixedly connected with a discharging assembly, the main body of the discharging assembly is a bidirectional through structure on the top and bottom, the bottom end face of the discharging assembly is fixedly connected with a flange, and the bottom end face of the storage mechanism is also fixedly connected with a servo motor, the top end output shaft of the servo motor is connected with the storage mechanism through a bearing seat, and the top end output shaft of the servo motor is fixedly connected with a stirring assembly in an annular array.

[0008] As a preferred embodiment, the servo motor and the stirring assembly jointly constitute a mixing structure, and the top end face of the partition mechanism is fixedly connected with a handle assembly in an annular structure.

[0009] As a preferred embodiment, the front end face of the storage mechanism is provided with an observation assembly, and the inside of the observation assembly is embedded with an observation window.

[0010] As a preferred embodiment, the outside face of the storage mechanism is fixedly connected with mounting assemblies at four corner positions, and the inside of the four mounting assemblies is provided with mounting holes.

[0011] As a preferred embodiment, the mounting assemblies and the mounting holes jointly constitute a mounting structure for the storage mechanism, and the top end of the storage mechanism is placed with a shielding mechanism.

[0012] As a preferred embodiment, the shielding mechanism is used for covering the top end opening of the storage mechanism, and the bottom end face of the shielding mechanism is fixedly connected with a pipe inserting assembly.

[0013] As a preferred embodiment, the size of the pipe inserting assembly is smaller than the internal size of the storage mechanism, and the left and right sides of the shielding mechanism are fixedly connected with two holding assemblies in opposition.

[0014] As a preferred embodiment, the holding assemblies and the shielding mechanism jointly constitute a taking-out structure, and the inside of the shielding mechanism is provided with a through hole for mounting a liquid inlet assembly.

[0015] As a preferred embodiment, the liquid inlet assembly is a bidirectional through structure on the top and bottom, and extends downward into the shielding mechanism.

[0016] As a preferred embodiment, the top end face of the liquid inlet assembly is fixedly connected with a hopper, and the hopper is in communication with the liquid inlet assembly.

[0017] After the above technical scheme is used, the beneficial effects of the present application are as follows:

[0018] 1. The utility model discloses, through being provided with the servo motor of fixed connection on the storage mechanism bottom end face, the top output shaft of servo motor is installed with the stirring subassembly, makes it when using, can be driven to the stirring subassembly through starting the servo motor of installation on the storage mechanism bottom end face and makes the cutting fluid in storage mechanism can be obtained fully stirring, and then reach more practical purpose.

[0019] 2The utility model discloses, through being provided with the baffle subassembly of inserting in the guide component, its after installing is completed, not only can the internal space of storage mechanism be separated, can also be filtered operation is carried out to the cutting fluid of entering the storage mechanism through using the filter hole of baffle mechanism, and then reach the purpose that prevents the situation of producing the blockage because of the impurity entering the inside of supply pipeline. ACCURACY

[0020] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, the following will be to the drawing needed to be used in the embodiment or prior art description simple introduction, obviously, the following description in the drawing is only some embodiments of the utility model, for the ordinary skilled person in the art comes, under the premise of not paying the creative labor, can also obtain other drawings according to these drawings.

[0021] Figure 1 It is the front side view structural schematic diagram of the cutting fluid supply device of the utility model after splitting;

[0022] Figure 2 It is the shaft side view structural schematic diagram of the cutting fluid supply device of the utility model;

[0023] Figure 3 It is the front view structural schematic diagram of the cutting fluid supply device of the utility model;

[0024] Figure 4 It is the shielding mechanism and cannula subassembly combined structure schematic diagram of the cutting fluid supply device of the utility model;

[0025] Figure 5 It is the overhead view structural schematic diagram of the cutting fluid supply device of the utility model;

[0026] Figure 6 It is the left view structural schematic diagram of the cutting fluid supply device of the utility model;

[0027] In the diagram, 1 is the storage mechanism; 101 is the observation component; 102 is the guide component; 103 is the mounting component; 104 is the mounting hole; 2 is the shielding mechanism; 201 is the tube insertion component; 202 is the gripping component; 203 is the liquid inlet component; 204 is the hopper; 3 is the partition mechanism; 301 is the handle component; 302 is the flow gathering component; 303 is the material discharge component; 304 is the servo motor; and 305 is the stirring component. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0029] like Figures 1-6 As shown, a cutting fluid supply device for wire EDM machine tools includes: a storage mechanism 1, the main body of the storage mechanism 1 being an outer shell structure, and a longitudinally arranged guide component 102 fixedly connected to the inner side of the storage mechanism 1;

[0030] A partition mechanism 3 is inserted inside the guide assembly 102. The partition mechanism 3 has through holes arranged in a rectangular array inside. The partition mechanism 3 is used to filter cutting fluid and to separate the internal space of the storage mechanism 1. A flow-gathering assembly 302 is fixedly connected to the bottom surface inside the storage mechanism 1. The main body of the flow-gathering assembly 302 is a frustoconical structure that is thicker at the top and thinner at the bottom. A feeding assembly 303 is fixedly connected to the bottom surface of the flow-gathering assembly 302. The main body of the feeding assembly 303 is a bidirectional through structure on both the top and bottom sides. A flange is fixedly connected to the bottom surface of the feeding assembly 303. A servo motor 304 is also fixedly connected to the bottom surface of the storage mechanism 1. The top output shaft of the servo motor 304 is connected to the storage mechanism 1 through a bearing seat. A stirring assembly 305 is fixedly connected to the top output shaft of the servo motor 304 in a ring array.

[0031] The servo motor 304 and the stirring component 305 together form a mixing structure, and a ring-shaped handle component 301 is fixedly connected to the top surface of the partition mechanism 3. An observation component 101 is provided on the front surface of the storage mechanism 1, and an observation window is embedded inside the observation component 101.

[0032] Among them, the four corners of the outer side of the storage mechanism 1 are fixedly connected with the mounting components 103, and the four mounting components 103 are provided with mounting holes 104. The mounting components 103 and the mounting holes 104 together form the mounting structure for the storage mechanism 1. The top of the storage mechanism 1 is provided with a shielding mechanism 2.

[0033] The shielding mechanism 2 is used for covering the top opening of the storage mechanism 1, the bottom end surface of the shielding mechanism 2 is fixedly connected with a pipe inserting assembly 201, the size of the pipe inserting assembly 201 is smaller than the internal size of the storage mechanism 1, and the left and right side surfaces of the shielding mechanism 2 are fixedly connected with two holding assemblies 202 in opposition.

[0034] The holding assembly 202 and the shielding mechanism 2 jointly form a taking-out structure, the shielding mechanism 2 is internally provided with a through hole for mounting a liquid inlet assembly 203, the liquid inlet assembly 203 is a bidirectional through structure with upper and lower sides, and extends downwards out of the shielding mechanism 2, the top end surface of the liquid inlet assembly 203 is fixedly connected with a hopper 204, and the hopper 204 is in communication with the liquid inlet assembly 203.

[0035] In use, when the wire cutting cutting fluid supply operation is performed, the storage mechanism 1 is attached to the wire cutting machine body by the mounting assembly 103 fixedly connected to the outer side surface of the storage mechanism 1, the bolt is inserted through the mounting hole 104 in the mounting assembly 103 to quickly mount the storage mechanism 1, the pipeline for supplying the cutting fluid is connected to the discharging assembly 303 fixedly connected to the bottom end surface of the flow converging assembly 302, and the baffle mechanism 3 is inserted into the internal position of the guide assembly 102 fixedly connected to the storage mechanism 1.

[0036] When the placing is completed, the cutting fluid to be supplied is poured into the hopper 204 fixedly connected to the top end of the liquid inlet assembly 203, when the cutting fluid is placed for a long time and needs to be used, the stirring assembly 305 is driven to rotate by starting the servo motor 304 mounted on the bottom end surface of the storage mechanism 1, and the cutting fluid in the storage mechanism 1 is stirred by the rotation of the stirring assembly 305, the stirred and mixed cutting fluid is filtered by the baffle mechanism 3 and supplied to the internal position of the left cavity of the storage mechanism 1, and the supply operation is performed by the flow converging assembly 302 and the discharging assembly 303.

[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 machine tool cutting fluid supply device comprising a storage mechanism (1), the main body of the storage mechanism (1) being a housing structure, characterized in that, The inner side of the storage mechanism (1) is fixedly connected with a longitudinally arranged guide assembly (102); The inside of the guide assembly (102) is inserted with a partition mechanism (3), the inside of the partition mechanism (3) is provided with through holes in a rectangular array, the partition mechanism (3) is used for filtering cutting fluid and separating the internal space of the storage mechanism (1), the bottom end surface of the storage mechanism (1) is fixedly connected with a flow converging assembly (302), the main body of the flow converging assembly (302) is a frustum structure with a wide top and a narrow bottom, the bottom end surface of the flow converging assembly (302) is fixedly connected with a discharging assembly (303), the main body of the discharging assembly (303) is a bidirectional through structure on the top and bottom, the bottom end surface of the discharging assembly (303) is fixedly connected with a flange, the bottom end surface of the storage mechanism (1) is also fixedly connected with a servo motor (304), the top end output shaft of the servo motor (304) is connected with the storage mechanism (1) through a bearing seat, and the top end output shaft of the servo motor (304) is fixedly connected with a stirring assembly (305) in an annular array.

2. The machine tool cutting fluid supply device for wire cutting according to claim 1, characterized by The servo motor (304) and the stirring assembly (305) jointly form a mixing structure, and the top end surface of the partition mechanism (3) is fixedly connected with a handle assembly (301) of an annular structure.

3. The machine tool cutting fluid supply device for wire cutting according to claim 1, wherein The front end surface of the storage mechanism (1) is provided with an observation assembly (101), and the inside of the observation assembly (101) is embedded with an observation window.

4. The machine tool cutting fluid supply device for wire cutting according to claim 1, wherein The outer side surface of the storage mechanism (1) is fixedly connected with mounting assemblies (103) at the four corner positions, and mounting holes (104) are formed in the four mounting assemblies (103).

5. The machine tool cutting fluid supply device for wire cutting according to claim 4, wherein The mounting assembly (103) and the mounting hole (104) jointly form a mounting structure for the storage mechanism (1), and the top end of the storage mechanism (1) is placed with a shielding mechanism (2).

6. The machine tool cutting fluid supply device for wire cutting according to claim 5, wherein The shielding mechanism (2) is used for covering the top end opening of the storage mechanism (1), and the bottom end surface of the shielding mechanism (2) is fixedly connected with a pipe inserting assembly (201).

7. The machine tool cutting fluid supply device for wire cutting according to claim 6, wherein The size of the pipe inserting assembly (201) is smaller than the internal size of the storage mechanism (1), and the left and right side surfaces of the shielding mechanism (2) are fixedly connected with two holding assemblies (202) in opposition.

8. The machine tool cutting fluid supply device for wire cutting according to claim 7, wherein The holding assembly (202) and the shielding mechanism (2) jointly form a taking-out structure, and the inside of the shielding mechanism (2) is provided with a through hole for mounting a liquid inlet assembly (203).

9. The machine tool cutting fluid supply device for wire cutting according to claim 8, wherein The liquid inlet assembly (203) is a bidirectional through structure on the top and bottom, and extends downward out of the shielding mechanism (2).

10. The machine tool cutting fluid supply device for wire cutting according to claim 9, wherein The top end surface of the liquid inlet assembly (203) is fixedly connected with a hopper (204), and the hopper (204) is in communication with the liquid inlet assembly (203).