Five-axis machining center

By designing a receiving chamber and a cooling unit in the five-axis machining center, the problems of heat dissipation from machining tools and waste separation were solved, achieving good heat dissipation and waste collection and separation functions, thus improving the efficiency and convenience of machine use.

CN223670676UActive Publication Date: 2025-12-16温岭市深澳机床有限公司
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Patent Information

Application Number
CN202422133441.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-12-16
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The existing five-axis machining centers lack cooling devices, which prevents the heat from the machining tools from being dissipated in time, and makes it impossible to effectively separate waste materials during collection, affecting the continuous use of the machine and subsequent sorting and collection.

Method used

The machine tool body is designed with a receiving chamber, equipped with a receiving unit and a cooling unit. The front end of the receiving chamber is provided with a recessed groove. The receiving unit consists of a liquid receiving tank and a waste tank. The cooling unit consists of a circulation tank, a circulation pump and a nozzle pipe, so as to realize the separation and recycling of waste and coolant.

Benefits of technology

Effective heat dissipation and separation of waste and coolant improve the continuous operation efficiency of the machine and the convenience of waste sorting and collection.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223670676U_ABST
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Abstract

The utility model provides a five-axis machining center, and belongs to the technical field of machining equipment. The five-axis machining center solves the existing problems that a machined part of the five-axis machining center is not easy to dissipate heat and is not changed to clean. The five-axis machining center comprises a machine tool body with a material receiving cavity and a machining table arranged on the machine tool body and connected with the machine tool body, a gap is reserved between the lower end face of the machining table and the material receiving cavity, and a sunken groove which is sunken inwards in the axial direction and communicated with the material receiving cavity is formed in the position, located on the front end face of the material receiving cavity, of the machine tool body. A receiving unit which is in sliding fit with the machine tool main body and is used for collecting waste and cooling liquid is arranged at the concave groove of the machine tool main body; and a cooling unit which is connected with the machine tool main body and is used for cooling a machining tool is arranged on one side wall of the machine tool main body. The LED lamp has the advantages of improving the heat dissipation effect and being convenient to clean.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to processing equipment technical field relates to a five -axis machining center. BACKGROUND

[0002] Five -axis linkage machining center is also called five -axis machining center, it is a kind of high scientific and technical content, high precision and is specially used for processing complex curved surface machining center, this machining center system has the influential power of aviation, spaceflight, military, scientific research, precision instrument, high-precision medical equipment etc. of a country, at present, five -axis linkage numerical control machining center system is the only means for solving impeller, blade, marine propeller, heavy generator rotor, steam turbine rotor, large diesel engine crankshaft etc. machining, the existing five -axis machining center when using, not set cooling device, when processing, the heat of processing tool cannot be promptly dissipated, always maintains at high temperature, it is not conducive to the continuous use of machine, secondly, base connectivity is poor, because a large amount of waste oil, cooling water, chaff etc. impurities are generated in the processing process, when collecting, cannot be separated, causes the trouble for later classification collection, not convenient for the removal of iron filings, thereby not satisfying the use demand. SUMMARY

[0003] The utility model discloses a five -axis machining center that has good heat dissipation and can separate and collect waste materials.

[0004] The utility model discloses a five -axis machining center, including the machine tool main part with the material collecting cavity and set up in the machine tool main part and with its connection processing platform, the lower end surface of this processing platform and material collecting cavity leave the interval, its characterized in that, the machine tool main part is located in the recessed groove that the recessed groove is communicated with material collecting cavity and is set up with the sliding fit of its and is used for collecting waste material and cooling liquid's material collecting unit at recessed groove, the side wall of machine tool main part is provided with the cooling unit that is connected with its and is used for cooling processing tool.

[0005] In the above -mentioned five -axis machining center, the cavity bottom surface of material collecting cavity is V type structure.

[0006] In the above -mentioned five -axis machining center, the material collecting unit is composed of the liquid collecting tank with liquid collecting cavity and the waste tank with waste cavity, which is arranged above the liquid collecting cavity and connected therewith, and the groove bottom surface of the waste tank is provided with a plurality of through holes for connecting the liquid collecting cavity and the waste cavity, the groove bottom surface of the waste tank is provided with a filter cotton layer matched with the groove bottom surface, and the waste tank is provided with a position limiting plate for limiting the position of the filter cotton layer.

[0007] In the five-axis machining center, the liquid collecting tank is connected with the cooling unit through a connecting pipe.

[0008] In the five-axis machining center, the cooling unit is composed of a circulating tank with a circulating cavity, a circulating pump with an inlet and an outlet, and a nozzle pipe.

[0009] In the five-axis machining center, the outer wall of the nozzle pipe is provided with a control box connected therewith and used for controlling the liquid spraying size and spraying of the nozzle pipe.

[0010] Compared with the prior art, the five-axis machining center has the following advantages:

[0011] 1. The machine tool body is provided with a recessed groove axially recessed inward and connected with the material collecting cavity on the front end surface of the material collecting cavity. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 is a schematic view of the five-axis machining center.

[0013] Figure 2 is a schematic view of the five-axis machining center

[0014] In the figure, 1 is a machine tool body; 2 is a liquid collecting tank; 3 is a waste tank; 4 is a filter cotton layer; 5 is a limiting pressing plate; 6 is a circulating tank; 7 is a nozzle pipe; 8 is a protective cover; 9 is a control panel; 11 is a protective sleeve; 12 is a limiting seat; 13 is a rotating ring. DETAILED DESCRIPTION

[0015] The following is a specific embodiment of the present application and further describes the technical scheme of the present application in combination with the drawings, but the present application is not limited to these embodiments.

[0016] like Figure 1 As shown, this five-axis machining center includes a machine tool body 1 with a receiving chamber and a machining table mounted on and connected to the machine tool body 1. A gap is left between the lower end face of the machining table and the receiving chamber. An axially inwardly recessed groove connected to the receiving chamber is formed on the front end face of the machine tool body 1 at the receiving chamber. A receiving unit, which slides within the groove and is used to collect waste material and coolant, is located on one side wall of the machine tool body 1. A cooling unit, connected to the cooling unit and used to cool the machining tools, is also provided. The receiving unit consists of a liquid receiving tank 2 with a liquid receiving chamber. It consists of a collection tank 3 located directly above and connected to the liquid collection chamber, and equipped with a waste chamber. A sealing strip is provided at the connection between the collection tank 2 and the waste tank 3. Several through holes are provided on the bottom surface of the waste tank 3 to connect the liquid collection chamber and the waste chamber. A filter cotton layer 4 is provided on the bottom surface of the waste tank 3, adhering to it. A limiting pressure plate 5 is provided inside the waste tank 3 to restrict the position of the filter cotton layer 4. Several axially downward-protruding and spaced-apart raised strips are provided on the end face of the limiting pressure plate 5 that adheres to the filter cotton layer 4. The collection tank 2 passes through... The connecting pipe is connected to the cooling unit, which consists of a circulation tank 6 with a circulation chamber, a circulation pump with an inlet and an outlet, and a nozzle pipe 7. The circulation tank 6 is located on one side of the machine tool body 1 and is connected to the liquid collection tank 2 through the aforementioned connecting pipe. The circulation pump is mounted on the machine tool body 1 and connected to it. The inlet of the circulation pump is also connected to the circulation chamber in the circulation tank 6 through the connecting pipe, and the outlet of the circulation pump is also connected to the nozzle pipe 7 through the connecting pipe. A protective cover 8 is provided on the machine tool body 1, which is connected to and protects the circulation pump. The protective cover 8 is equipped with a... The control panel 9, which is connected to and used to control the circulating pump, is provided on the outer peripheral wall of the nozzle pipe 7. The control box, which is connected to and used to control the spray size and spray of the nozzle pipe 7, is provided on the machine tool body 1. The limiting unit is provided to limit the position of the nozzle pipe 7 and can be aligned and adjusted. The limiting unit consists of a protective sleeve 11 and a limiting seat 12. The outer end of the connecting pipe is connected to the nozzle pipe 7 by extending into the protective sleeve 11. The lower end of the protective sleeve 11 is provided with a rotating ring 13 that is connected to and connected to the limiting seat 12. The rotating ring 13 is connected to the limiting seat 12 through a rotating shaft.

[0017] As a preferred structure, the bottom surface of the receiving chamber is V-shaped, a drop opening is opened in the middle of the receiving chamber, and several drop holes can be opened on the bottom surface of the receiving chamber.

[0018] The specific embodiments described herein are merely illustrative of the spirit of the present application. Those skilled in the art of the present application can make various modifications or supplements to the described specific embodiments or replace them with similar ways, but will not deviate from the spirit of the present application or exceed the scope defined by the appended claims.

[0019] Although the same terms are used more frequently herein, the possibility of using other terms is not excluded. The use of these terms is only to facilitate the description and explanation of the essence of the present application; any additional limitation by interpreting them is contrary to the spirit of the present application.

Claims

1. A five-axis machining center comprising a machine tool main body (1) having a material collecting cavity and a machining table provided on and connected to the machine tool main body (1), a lower end surface of the machining table being spaced apart from the material collecting cavity, characterized in that, The recessed groove is axially recessed and connected with the material collecting cavity, the material collecting unit is arranged at the recessed groove of the machine tool body (1) and used for collecting waste and cooling liquid, the cooling unit is arranged on one side wall of the machine tool body (1) and connected with the machine tool body (1) and used for cooling the machining tool, the material collecting unit is composed of the liquid collecting tank (2) with the liquid collecting cavity and the waste tank (3) arranged above the liquid collecting cavity and connected with the liquid collecting cavity and having the waste cavity, a plurality of through holes are formed in the groove bottom surface of the waste tank (3) and used for connecting the liquid collecting cavity with the waste cavity, the filter cotton layer (4) is arranged on the groove bottom surface of the waste tank (3) and matched with the groove bottom surface, the position limiting pressing plate (5) is arranged in the waste tank (3) and used for limiting the position of the filter cotton layer (4), the liquid collecting tank (2) is connected with the cooling unit through the connecting pipe, the cooling unit is composed of the circulating tank (6) with the circulating cavity, the circulating pump with the water inlet and the water outlet and the spray pipe (7), the circulating tank (6) is arranged on one side of the machine tool body (1) and connected with the liquid collecting tank (2) through the connecting pipe, the circulating pump is arranged on the machine tool body (1) and connected with the machine tool body (1), the water inlet of the circulating pump is also connected with the circulating tank (6) through the connecting pipe, the water outlet of the circulating pump is also connected with the spray pipe (7) through the connecting pipe, the protective cover (8) is arranged on the machine tool body (1) and connected with the machine tool body (1) and used for protecting the circulating pump, the control panel (9) is arranged on the protective cover (8) and connected with the protective cover (8) and used for controlling the circulating pump.

2. A five-axis machining center according to claim 1, characterized in that, The cavity bottom surface of the material collecting cavity is in V-shaped structure.

3. A five-axis machining center according to claim 1, characterized in that, The control box is arranged on the outer peripheral wall of the spray pipe (7) and connected with the spray pipe (7) and used for controlling the liquid spraying size and spraying of the spray pipe (7), the limiting unit is arranged on the machine tool body (1) and used for limiting the position of the spray pipe (7) and capable of being adjusted in alignment, the limiting unit is composed of the protective pipe sleeve (11) and the limiting seat (12), the outer end of the connecting pipe is connected with the spray pipe (7) by extending into the protective pipe sleeve (11), the lower end of the protective pipe sleeve (11) is provided with the rotating ring (13) connected with the protective pipe sleeve (11) and the limiting seat (12), the rotating ring (13) is connected with the limiting seat (12) through the rotating shaft.