Vertical machining center for mold production

By setting up a filtering mechanism and a clamping mechanism in the vertical machining center, the problems of the cutting fluid being unable to be recycled and the difficulty in quickly clamping workpieces of different diameters are solved. The recycling of the cutting fluid and the rapid clamping and fixation of the workpieces are realized, which reduces the processing cost and improves the processing efficiency.

CN223368787UActive Publication Date: 2025-09-23HUBEI ZHENGHONG MOLD MANUFACTURING CO LTD
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Patent Information

Application Number
CN202422828916.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-09-23
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

Existing machining centers are unable to effectively filter cutting fluid, the cutting fluid cannot be recycled, the machining cost is high, and it is difficult to quickly and stably clamp workpieces of different diameters and sizes, resulting in low machining effects.

Method used

A filtering mechanism is set in the vertical machining center, including a material storage box, a material extraction pump, a material extraction pipe, a material discharge pipe, a nozzle, a through hole, a first cylinder, a filter plate, a filter screen and a guide rod to realize the filtering and recycling of the cutting fluid; the clamping mechanism realizes the rapid clamping and fixation of workpieces of different diameters and sizes through a connecting seat, a motor, a rotating rod, a rotating plate, a guide rail, a slide block, a clamping block and a second cylinder.

Benefits of technology

It realizes the recycling of cutting fluid, reduces processing costs, and can quickly and stably clamp workpieces of different diameters and sizes, thereby improving processing efficiency.

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Abstract

The utility model relates to the relevant technical field of mold production, in particular to a vertical machining center for mold production, which comprises a machining table, a filtering mechanism is arranged at one end of the machining table, and a clamping mechanism is arranged at one end of the machining table. According to the vertical machining center for mold production, by arranging a storage box, a transfer pump, a transfer pipe, a discharge pipe, a spray head, a through hole, a first air cylinder, a filter plate, a filter screen and a guide rod, cutting fluid is injected into the storage box before machining, the transfer pump is started during machining, and the transfer pump pumps out the cutting fluid in the storage box through the transfer pipe; then the cutting fluid is sprayed to a machining position through a discharging pipe and a spray head, the machining position is lubricated and cooled, the used cutting fluid flows into the machining table through a through hole, a filter screen can filter the cutting fluid, the cutting fluid can be recycled, and the machining cost is reduced; the first cylinder enables the filter plate to drive the filter screen to slide left and right on the guide rod, so that the filtering effect is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field related to mold production, in particular to a vertical machining center used for mold production. Background Art

[0002] Mold production refers to the process of processing the blanks of mold parts through specific manufacturing processes and equipment to change their shape, size, relative position and properties to make them meet the requirements, and then assembling these parts into molds through matching, positioning, connecting and fixing. When carrying out mold production and processing, a vertical machining center is needed. The vertical machining center is a highly automated multi-functional CNC machine tool. The structure of the vertical machining center is simple but it has many functions and is very simple and convenient to operate. It is a very commonly used mold production and processing device. Therefore, a vertical machining center for mold production is particularly needed.

[0003] However, most of the existing vertical machining centers used for mold production cannot filter the cutting fluid, and the cutting fluid cannot be recycled, resulting in high processing costs. Secondly, most processing devices are difficult to quickly and stably clamp and fix workpieces of different diameters and sizes, resulting in low processing effects. Utility Model Content

[0004] The purpose of the present utility model is to provide a vertical machining center for mold production, so as to solve the problems of the existing vertical machining centers for mold production proposed in the above background technology, that most machining devices are unable to filter the cutting fluid, the cutting fluid cannot be recycled, the machining cost is high, and secondly, most machining devices are difficult to quickly and stably clamp and fix workpieces of different diameters and sizes, resulting in low machining effects.

[0005] To achieve the above-mentioned object, the present utility model provides the following technical solution: a vertical machining center for mold production, comprising a machining table, one end of which is provided with a filtering mechanism, and one end of which is provided with a clamping mechanism;

[0006] The filtering mechanism includes a material storage box, a material extraction pump, a material extraction pipe, a material discharge pipe, a nozzle, a through hole, a first cylinder, a filter plate, a filter screen and a guide rod. The material storage box is fixedly installed on one side surface of the processing table, and the material extraction pump is fixedly installed on one side surface of the material storage box. One end of the material extraction pump is provided with a material extraction pipe, one end of the material extraction pump is provided with a discharge pipe, one end of the discharge pipe is fixedly connected to the nozzle, a through hole is opened on one side surface of the processing table, and the first cylinder is fixedly installed on one side surface of the processing table, one end of the first cylinder is connected to the filter plate, one end of the filter plate is provided with a filter screen, and a guide rod is fixedly installed inside the processing table.

[0007] Preferably, both ends of the material extraction pipe are connected to a material storage box and a material extraction pump respectively, and the through holes are opened at equal intervals on one side surface of the processing table.

[0008] Preferably, two groups of guide rods are provided, and the filter plates and the guide rods form a sliding structure.

[0009] Preferably, the clamping mechanism includes a connecting seat, a motor, a rotating rod, a rotating plate, a guide rail, a slider, a clamping block and a second cylinder. The connecting seat is fixedly installed on one side surface of the processing table, the motor is fixedly installed inside the connecting seat, one end of the motor is connected to the rotating rod, one end of the rotating rod is fixedly connected to the rotating plate, the guide rail is fixedly installed on one side surface of the rotating plate, one end of the guide rail is provided with a slider, the clamping block is fixedly installed on one side surface of the slider, and one end of the clamping block is connected to the second cylinder.

[0010] Preferably, the rotating rod is connected to the connecting seat via a bearing, and the rotating plate forms a rotating structure via the rotating rod and the connecting seat.

[0011] Preferably, the slider and the guide rail form a sliding structure, and the second cylinder is fixedly mounted on one side surface of the rotating plate.

[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: the vertical machining center for mold production, through the arrangement of the material storage box, the material extraction pump, the material extraction pipe, the material discharge pipe, the nozzle, the through hole, the first cylinder, the filter plate, the filter screen and the guide rod, starts the material extraction pump during processing, the material extraction pump can extract the cutting fluid in the material storage box and spray it through the material discharge pipe and the nozzle to lubricate and cool the processing parts of the parts, the sprayed cutting fluid can flow to the cavity inside the processing table through the through hole, the filter screen can filter the cutting fluid, and the filtered cutting fluid can be recycled, thereby reducing the processing cost, and through the arrangement of the connecting seat, the motor, the rotating rod, the rotating plate, the guide rail, the slider, the clamping block and the second cylinder, the second cylinder is started during processing, the second cylinder allows the slider to slide on the guide rail, and the clamping block will move toward the middle at the same time to clamp and fix the workpiece to be processed, and this clamping structure can clamp workpieces of different diameters and sizes quickly and stably, thereby improving processing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a side view of the structure of the utility model;

[0014] Figure 2 This is a schematic diagram of the structure of the material storage box and the material pump cooperating with each other in the utility model;

[0015] Figure 3 This is a schematic diagram of the structure of the processing table and the through hole cooperating with each other in the utility model;

[0016] Figure 4 This is a schematic diagram of the structure of the rotating rod and the rotating plate cooperating with each other in the utility model;

[0017] Figure 5 This is a schematic diagram of the structure in which the slider and the clamping block cooperate with each other in the utility model.

[0018] In the figure: 1. processing table; 2. filtering mechanism; 201. material storage box; 202. extraction pump; 203. extraction pipe; 204. discharge pipe; 205. nozzle; 206. through hole; 207. first cylinder; 208. filter plate; 209. filter screen; 210. guide rod; 3. clamping mechanism; 301. connecting seat; 302. motor; 303. rotating rod; 304. rotating plate; 305. guide rail; 306. slider; 307. clamping block; 308. second cylinder. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0020] See also Figure 1-5 , the utility model provides a technical solution: a vertical machining center for mold production, comprising a machining table 1, a filtering mechanism 2 is provided at one end of the machining table 1, and a clamping mechanism 3 is provided at one end of the machining table 1;

[0021] The filtering mechanism 2 includes a storage box 201, a suction pump 202, a suction pipe 203, a discharge pipe 204, a nozzle 205, a through hole 206, a first cylinder 207, a filter plate 208, a filter screen 209 and a guide rod 210. The storage box 201 is fixedly installed on one side surface of the processing table 1, and the suction pump 202 is fixedly installed on one side surface of the storage box 201. One end of the suction pump 202 is provided with a suction pipe 203, one end of the suction pump 202 is provided with a discharge pipe 204, and one end of the discharge pipe 204 is fixedly connected to the nozzle 205. A through hole 206 is opened on one side surface of the processing table 1, and the first cylinder 207 is fixedly installed on one side surface of the processing table 1. One end of the first cylinder 207 is connected to the filter plate 208, and one end of the filter plate 208 is provided with a filter screen 209. The guide rod 210 is fixedly installed inside the processing table 1. The material pump 202, the material extraction pipe 203, the material discharge pipe 204, the nozzle 205, the through hole 206, the first cylinder 207, the filter plate 208, the filter screen 209 and the guide rod 210 are arranged. Before processing, the cutting fluid is injected into the material storage box 201. During processing, the material extraction pump 202 is started. The material extraction pump 202 extracts the cutting fluid in the material storage box 201 through the material extraction pipe 203, and then sprays it to the processing site through the material discharge pipe 204 and the nozzle 205 to lubricate and cool the processing site. The used cutting fluid flows into the interior of the processing table 1 through the through hole 206. The filter screen 209 can filter the cutting fluid so that the cutting fluid can be recycled, thereby reducing the processing cost. During filtering, the first cylinder 207 is started. The first cylinder 207 allows the filter plate 208 to drive the filter screen 209 to slide left and right on the guide rod 210, which improves the filtering effect while also preventing the filter screen 209 from being blocked.

[0022] Furthermore, the two ends of the extraction pipe 203 are respectively connected to the material storage box 201 and the extraction pump 202, and the through holes 206 are opened at equal intervals on the side surface of the processing table 1. Through the setting of the extraction pump 202, the extraction pump 202 can extract the cutting fluid in the material storage box 201 and spray it to the processing area.

[0023] Furthermore, two groups of guide rods 210 are provided, and the filter plates 208 and the guide rods 210 form a sliding structure. Through the arrangement of the filter plates 208 and the guide rods 210, the filter plates 208 slide left and right on the guide rods 210, which can improve the filtering effect.

[0024] Furthermore, the clamping mechanism 3 includes a connecting seat 301, a motor 302, a rotating rod 303, a rotating plate 304, a guide rail 305, a slider 306, a clamping block 307 and a second cylinder 308. The connecting seat 301 is fixedly installed on one side surface of the processing table 1, and the motor 302 is fixedly installed inside the connecting seat 301. One end of the motor 302 is connected to the rotating rod 303, and one end of the rotating rod 303 is fixedly connected to the rotating plate 304. The guide rail 305 is fixedly installed on one side surface of the rotating plate 304, and the slider 306 is provided at one end of the guide rail 305. The clamping block 307 is fixedly installed on one side surface of the slider 306, and one end of the clamping block 307 is connected to the The second cylinder 308 is connected to the seat 301, the motor 302, the rotating rod 303, the rotating plate 304, the guide rail 305, the slider 306, the clamping block 307 and the second cylinder 308. When the second cylinder 308 is started during processing, the second cylinder 308 allows the slider 306 to slide on the guide rail 305, thereby driving the three clamping blocks 307 to move toward the middle at the same time, clamping and fixing the workpiece to be processed. Such a clamping structure can quickly clamp and fix workpieces of different diameters and sizes. Finally, the motor 302 is started, the rotating rod 303 will rotate the rotating plate 304, and the workpiece will also be rotated, so that the workpiece can be processed quickly.

[0025] Furthermore, the rotating rod 303 is connected to the connecting seat 301 through a bearing, and the rotating plate 304 forms a rotating structure through the rotating rod 303 and the connecting seat 301. Through the setting of the rotating rod 303, when the rotating rod 303 rotates, it can rotate with the rotating plate 304, and the workpiece is also rotated.

[0026] Furthermore, the slider 306 and the guide rail 305 form a sliding structure, and the second cylinder 308 is fixedly installed on one side surface of the rotating plate 304. Through the setting of the guide rail 305 and the slider 306, the slider 306 can move toward the middle with the clamping block 307 when sliding on the guide rail 305, so as to clamp and fix the workpiece to be processed.

[0027] Working principle: before processing, the cutting fluid is injected into the storage box 201, and the extraction pump 202 is started during processing. The extraction pump 202 extracts the cutting fluid in the storage box 201 through the extraction pipe 203, and then sprays it to the processing area through the discharge pipe 204 and the nozzle 205 to lubricate and cool the processing area. The used cutting fluid flows into the interior of the processing table 1 through the through hole 206. The filter screen 209 can filter the cutting fluid so that the cutting fluid can be recycled, reducing the processing cost. When filtering, the first cylinder 207 is started, and the first cylinder 207 allows the filter plate 208 to drive the filter screen 2 09 slides left and right on the guide rod 210, which improves the filtering effect and prevents the filter screen 209 from being blocked. During processing, the second cylinder 308 is started. The second cylinder 308 allows the slider 306 to slide on the guide rail 305, thereby driving the three clamping blocks 307 to move toward the middle at the same time, clamping and fixing the workpiece to be processed, and such a clamping structure can quickly clamp and fix workpieces of different diameters and sizes. Finally, the motor 302 is started, and the rotating rod 303 will rotate with the rotating plate 304, and the workpiece will also be rotated, so that the workpiece can be processed quickly.

[0028] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A vertical machining center for mold production, comprising a machining table (1), characterized in that: One end of the processing table (1) is provided with a filtering mechanism (2), and one end of the processing table (1) is provided with a clamping mechanism (3); The filtering mechanism (2) comprises a material storage box (201), a material extraction pump (202), a material extraction pipe (203), a material discharge pipe (204), a nozzle (205), a through hole (206), a first cylinder (207), a filter plate (208), a filter screen (209) and a guide rod (210); the material storage box (201) is fixedly mounted on one side surface of the processing table (1); the material extraction pump (202) is fixedly mounted on one side surface of the material storage box (201); and a material extraction pipe (203) is provided at one end of the material extraction pump (202). A discharge pipe (204) is provided at one end of the extraction pump (202), and a nozzle (205) is fixedly connected to one end of the discharge pipe (204). A through hole (206) is provided on one side surface of the processing table (1). A first cylinder (207) is fixedly installed on one side surface of the processing table (1), and a filter plate (208) is connected to one end of the first cylinder (207). A filter screen (209) is provided at one end of the filter plate (208). A guide rod (210) is fixedly installed inside the processing table (1).

2. A vertical machining center for mold production according to claim 1, characterized in that: The two ends of the extraction pipe (203) are respectively connected to a material storage box (201) and an extraction pump (202), and the through holes (206) are opened at equal intervals on one side surface of the processing table (1).

3. A vertical machining center for mold production according to claim 1, characterized in that: Two groups of guide rods (210) are provided, and the filter plates (208) and the guide rods (210) form a sliding structure.

4. A vertical machining center for mold production according to claim 1, characterized in that: The clamping mechanism (3) comprises a connecting seat (301), a motor (302), a rotating rod (303), a rotating plate (304), a guide rail (305), a slider (306), a clamping block (307) and a second cylinder (308); the connecting seat (301) is fixedly mounted on one side surface of the processing table (1); the motor (302) is fixedly mounted inside the connecting seat (301); one end of the motor (302) is connected to the rotating rod (303); one end of the rotating rod (303) is fixedly connected to the rotating plate (304); the guide rail (305) is fixedly mounted on one side surface of the rotating plate (304); one end of the guide rail (305) is provided with a slider (306); the clamping block (307) is fixedly mounted on one side surface of the slider (306); and one end of the clamping block (307) is connected to the second cylinder (308).

5. A vertical machining center for mold production according to claim 4, characterized in that: The rotating rod (303) is connected to the connecting seat (301) via a bearing, and the rotating plate (304) forms a rotating structure via the rotating rod (303) and the connecting seat (301).

6. A vertical machining center for mold production according to claim 4, characterized in that: The slider (306) and the guide rail (305) form a sliding structure, and the second cylinder (308) is fixedly mounted on a side surface of the rotating plate (304).