CN222903338U - A vertical CNC machining center that is easy to load and unload - Google Patents

A vertical CNC machining center that is easy to load and unload Download PDF

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Publication number
CN222903338U
CN222903338U CN202421496198.2U CN202421496198U CN222903338U CN 222903338 U CN222903338 U CN 222903338U CN 202421496198 U CN202421496198 U CN 202421496198U CN 222903338 U CN222903338 U CN 222903338U
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China
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linear module
loading
cylinder
numerical control
machining center
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CN202421496198.2U
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Chinese (zh)
Inventor
李升丽
郑召和
叶丽荣
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Wuhan Forster Electromechanical Co ltd
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Wuhan Forster Electromechanical Co ltd
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Abstract

本实用新型公开了一种便于上下料的立式数控加工中心,包括数控机床本体和上下料机构;上下料机构包括底座,其中底座两侧设有支撑架;支撑架上端安装有横梁,其中横梁一侧固定安装有第一直线模组;第一直线模组上固定连接有活动板,其中活动板一侧安装有第二直线模组,该活动板另一侧一侧设有支撑板;支撑板一侧并排设有升降气缸;底座上方设有第三直线模组,其中第三直线模组上设有工件放置台。本实用新型通过自动化的上下料过程减少了人工操作时间,避免了因人工疲劳导致的加工效率下降问题,使得加工中心能够连续、高效地进行生产加工,大大降低了工作人员在危险区域的操作,提高了生产安全,降低了运营成本,具有较大的实用价值和推广前景。

The utility model discloses a vertical CNC machining center that is convenient for loading and unloading, including a CNC machine tool body and a loading and unloading mechanism; the loading and unloading mechanism includes a base, wherein support frames are provided on both sides of the base; a crossbeam is installed on the upper end of the support frame, wherein a first linear module is fixedly installed on one side of the crossbeam; a movable plate is fixedly connected to the first linear module, wherein a second linear module is installed on one side of the movable plate, and a support plate is provided on the other side of the movable plate; a lifting cylinder is arranged side by side on one side of the support plate; a third linear module is arranged above the base, wherein a workpiece placement table is arranged on the third linear module. The utility model reduces manual operation time through an automated loading and unloading process, avoids the problem of reduced processing efficiency due to manual fatigue, enables the machining center to carry out production and processing continuously and efficiently, greatly reduces the operation of staff in dangerous areas, improves production safety, reduces operating costs, and has great practical value and promotion prospects.

Description

Vertical numerical control machining center convenient to go up unloading
Technical Field
The utility model relates to the technical field of vertical machining centers, in particular to a vertical numerical control machining center convenient for loading and unloading.
Background
In the current manufacturing environment, vertical machining center machines are of self-evident importance as highly automated multi-function numerically controlled machines. The machine tool is provided with a tool magazine and an automatic tool changer, and can execute a series of complex processing tasks including various procedures such as drilling, boring, milling, reaming, tapping and the like. Once the workpiece is correctly clamped on the processing tray platform, the numerical control system can automatically control the machine tool to select and replace the cutter according to preset standards, so that automatic cutter setting, spindle rotating speed and feeding amount are automatically adjusted. However, in the actual production process, the loading and unloading process of the processing center still faces many challenges.
Currently, most vertical machining centers still rely on manual operations in the loading and unloading links. This not only increases the operating costs of the enterprise, as a great deal of human resources are required to do this cumbersome and repetitive task. Moreover, a worker who performs loading and unloading operations for a long time is liable to feel tired, which may affect not only the processing efficiency and quality, but also the occurrence of potential safety hazards due to negligence.
In order to solve the above problems, it is necessary to develop a novel vertical type numerical control machining center, which can optimize the loading and unloading process, reduce manual intervention, improve production efficiency, and ensure work safety while maintaining high automation.
Disclosure of Invention
The utility model aims to provide a vertical numerical control machining center convenient for loading and unloading so as to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
The vertical numerical control machining center convenient for loading and unloading comprises a numerical control machine tool body, wherein an loading and unloading mechanism is arranged on one side of the numerical control machine tool body side by side, the loading and unloading mechanism comprises a base, support frames are arranged on two sides of the base, a cross beam is installed at the upper end of the support frames, a first linear module is fixedly installed on one side of the cross beam, the first linear module is horizontally arranged, a movable plate is fixedly connected to a first sliding table of the first linear module, a second linear module is installed on one side of the movable plate, the second linear module is mutually perpendicular to the first linear module, a support arm is fixedly connected to a second sliding table of the second linear module, a double-head cylinder is arranged at one end of the support arm far away from the second sliding table, a support plate is arranged on one side of the movable plate far away from the second linear module, lifting cylinders are arranged on one side of the support plate side by side, an L-shaped lifting seat is fixedly connected to the top of a piston rod of each lifting cylinder, the L-shaped lifting seat is slidably connected with the support plate, a third linear module is arranged above the base, and a workpiece placing table is arranged on the third sliding table of the third linear module.
Preferably, the double-head cylinder is fixedly connected with the supporting arm through a cylinder mounting seat, wherein the top ends of two piston rods of the double-head cylinder are respectively provided with a first sucker and a second sucker which have the same structure.
Preferably, a double-shaft air cylinder is fixedly arranged on one side of the L-shaped lifting seat, wherein the double-shaft air cylinder is horizontally arranged, and a third sucking disc is arranged at the front end of a piston rod of the double-shaft air cylinder.
Preferably, a sliding block is arranged on one side of the L-shaped lifting seat close to the supporting plate, and a linear guide rail matched with the sliding block is arranged on the supporting plate.
Preferably, a vacuum adsorption plate is arranged at the upper end of the workpiece placing table, and a fixed cylinder is arranged at one end of the workpiece placing table.
The numerical control machine tool comprises a numerical control machine tool body, a base, a first limiting seat, a second limiting seat, a limiting cylinder, a first limiting block and a second limiting block, wherein the base is symmetrically arranged close to two side edges of the numerical control machine tool body, the first limiting seat is provided with the limiting cylinder above, the top end of a piston rod of the limiting cylinder is provided with the first limiting block, the second limiting block is arranged above the second limiting seat, the second limiting block and the first limiting block are oppositely arranged, and the second limiting block and the first limiting block are located at the same horizontal height.
Preferably, the base is provided with a plate storage rack and a finished product storage rack respectively at two sides far away from the numerically-controlled machine tool body.
Compared with the prior art, the automatic feeding and discharging device has the beneficial effects that through the introduction of the first linear module, the second linear module, the third linear module, the double-head cylinder, the lifting cylinder, the double-shaft cylinder, the limiting cylinder and other automatic devices, the feeding and discharging automatic process is realized, the manual intervention is obviously reduced, the automatic level of a machining center is improved, the manual operation time is shortened in the automatic feeding and discharging process, the problem of the reduction of the machining efficiency caused by manual fatigue is avoided, the machining center can continuously and efficiently perform production and machining, the manual error is reduced in the automatic operation, the stability and the accuracy of the machining process are ensured, the machining quality is improved, the operation of workers in a dangerous area is greatly reduced, the risk of industrial accidents is reduced, the production safety is improved, the operation cost is reduced, and the automatic feeding and discharging device has great practical value and popularization prospect.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of the structure of the feeding and discharging mechanism of the present utility model;
FIG. 3 is a schematic view of the structure of the support frame and base connection of the present utility model;
FIG. 4 is a schematic diagram of a connection structure of a first linear module and a second linear module according to the present utility model;
FIG. 5 is a schematic view of the structure of the connection of the biaxial cylinder and the movable plate of the present utility model;
Fig. 6 is a schematic structural diagram of a first linear module according to the present utility model.
The numerical control machine tool comprises a numerical control machine tool body, a feeding and discharging mechanism, a base, a 202, a supporting frame, 203, a cross beam, 204, a first linear module, 205, a first sliding table, 206, a movable plate, 207, a second linear module, 208, a second sliding table, 209, a supporting arm, 210, a double-head cylinder, 211, a supporting plate, 212, a lifting cylinder, 213, an L-shaped lifting seat, 214, a double-shaft cylinder, 215, a cylinder mounting seat, 216, a third linear module, 217, a third sliding table, 218, a workpiece placing table, 3, a first sucker, 4, a second sucker, 5, a third sucker, 6, a workpiece, 7, a processing table, 8, a sliding block, 9, a linear guide rail, 10, a vacuum adsorption plate, 11, a fixed cylinder, 12, a first limiting seat, 13, a second limiting seat, 14, a limiting cylinder, 15, a first limiting block, 16, a second limiting block, 17, a plate storage rack, 18 and a finished product storage rack.
Detailed Description
The utility model is described in further detail below with reference to the accompanying drawings.
Referring to fig. 1 to 6 in combination, a vertical numerically-controlled machining center for feeding and discharging conveniently comprises a numerically-controlled machine tool body 1, wherein a feeding and discharging mechanism 2 is arranged on one side of the numerically-controlled machine tool body 1 side by side; the feeding and discharging mechanism 2 comprises a base 201, wherein supporting frames 202 are arranged on two sides of the base 201, a cross beam 203 is arranged at the upper end of the supporting frames 202, a first linear module 204 is fixedly arranged on one side of the cross beam 203, the first linear module 204 is horizontally arranged, a movable plate 206 is fixedly connected to a first sliding table 205 of the first linear module 204, the first sliding table 205 is driven to slide through the first linear module 204, the movable plate 206 can move horizontally along with the first linear module 204, a second linear module 207 is arranged on one side of the movable plate 206, the second linear module 207 and the first linear module 204 are mutually perpendicular, the second linear module 207 can move linearly in the direction perpendicular to the first linear module 204, a supporting arm 209 is fixedly connected to a second sliding table 208 of the second linear module 207, a double-head cylinder 210 is arranged at one end of the supporting arm 209, two top ends of the double-head cylinder 210 are respectively provided with a first sucker 3 and a second sucker 4 with the same structure, the first sucker 3 and the second sucker 4 are respectively used for placing a workpiece 216 on the first linear module 216 or the third linear module 216, and the workpiece to be processed can be placed on the first linear module 216 or the first linear module 216 and the workpiece to be processed in the direction of the first linear module 216.
The movable plate 206 is provided with a supporting plate 211 at one side far away from the second linear module 207, wherein a lifting cylinder 212 is arranged side by side at one side of the supporting plate 211, the top end of a piston rod of the lifting cylinder 212 is fixedly connected with an L-shaped lifting seat 213, the L-shaped lifting seat 213 can move up and down under the driving of the lifting cylinder 212, the L-shaped lifting seat 213 is in sliding connection with the supporting plate 211 to ensure stable lifting, a double-shaft cylinder 214 is fixedly arranged at one side of the L-shaped lifting seat 213, a third sucking disc 5 is arranged at the front end of the piston rod of the double-shaft cylinder 214, the third sucking disc 5 is used for sucking a workpiece 6 to be processed placed on the third linear module 216 and transferring the workpiece 6 to a processing table 7 on the numerical control machine tool body 1, and after the workpiece 6 is processed, the workpiece 6 of the processing table 7 is transferred to a workpiece placing table 218 arranged on the third linear module 216 through the third sucking disc 5, so that the stable sucking and efficient movement of the workpiece 6 is realized, the automatic loading and unloading process is greatly simplified, and the production efficiency is improved.
Referring to fig. 2 and 3 in combination, as an embodiment of the present utility model, a double-head cylinder 210 is fixedly connected to a supporting arm 209 through a cylinder mounting seat 215, wherein a first suction cup 3 and a second suction cup 4 with the same structure are respectively mounted on top ends of two piston rods of the double-head cylinder 210.
In the above scheme, the double-head cylinder 210 is a special cylinder, and is provided with two independent piston rods, each piston rod can independently reciprocate in the cylinder body, the two piston rods can be controlled by two independent air sources or different control valves of the same air source respectively, the double-head cylinder 210 is firmly fixedly connected with the supporting arm 209 through the cylinder mounting seat 215, the connection mode ensures the stability and reliability of the double-head cylinder 210 in the operation process, meanwhile, the double-head cylinder 210 can be accurately adjusted according to the requirement, when loading and unloading are required, the first sucker 3 or the second sucker 4 generates adsorption force under the action of air pressure, so that workpieces 6 are tightly adsorbed, the adsorption force is enough to ensure that the workpieces 6 cannot fall off or shake in the moving process, the accuracy and the safety of loading and unloading are ensured, once the workpieces 6 are successfully adsorbed, the double-head cylinder 210 can drive the first sucker 3 or the second sucker 4 and the adsorbed workpieces 6 to move through the telescopic movement of the piston rods, and the two piston rods of the double-head cylinder 210 can realize the accurate position adjustment according to the requirement, the first sucker 3 or the second sucker 4 can be accurately positioned on the workpieces 6, and the first sucker 4 can be accurately positioned on the first sucker 4 or the second sucker 4 can be accurately positioned, and the second sucker 4 can be accurately positioned on the workpiece 6 or can be accurately positioned on the second sucker 4, and the workpiece can be accurately positioned on the second sucker 4 or can be accurately positioned and easily and can be accurately positioned on the workpiece 4.
In the loading and unloading process of the vertical numerical control machining center, the double-head air cylinder 210 and the first sucking disc 3 arranged on the double-head air cylinder can move the workpiece 6 from the plate storage rack 17 to the workpiece placing table 218 arranged on the third linear module 216, and convey the workpiece 6 to the loading position through the third linear module 216, wherein the second sucking disc 4 can adsorb and move the machined workpiece 6 on the workpiece placing table 218 into the finished product storage rack 18, and the quick, accurate and safe loading and unloading of the workpiece can be realized by accurately controlling the movement of the double-head air cylinder 210, so that the production efficiency of the machining center is greatly improved.
Referring to fig. 1 and 5 in combination, as an embodiment of the present utility model, a dual-shaft air cylinder 214 is fixedly installed on one side of an L-shaped lifting seat 213, wherein the dual-shaft air cylinder 214 is horizontally disposed, and a third suction cup 5 is disposed at the front end of a piston rod of the dual-shaft air cylinder 214.
In the above-mentioned scheme, the dual-shaft air cylinder 214 is horizontally arranged at one side of the L-shaped lifting seat 213 and is used for providing power in the horizontal direction, wherein the front end of the piston rod of the dual-shaft air cylinder 214 is provided with the third sucking disc 5, when the piston rod of the dual-shaft air cylinder 214 stretches out, the third sucking disc 5 moves to the position where the workpiece 6 is sucked, under the action of air pressure, the third sucking disc 5 generates suction force so as to suck the workpiece 6, at the moment, the suction force of the third sucking disc 5 can be controlled by adjusting the air pressure, so that the workpiece 6 is firmly sucked, and when the sucked workpiece 6 needs to be put down, the piston rod is retracted by controlling the dual-shaft air cylinder 214, and the air pressure is reduced or closed, so that the suction force is released by the third sucking disc 5, and the workpiece 6 is put down accordingly.
In the initial state, the L-shaped lifting seat 213 is positioned at a certain height, the piston rod of the double-shaft air cylinder 214 is retracted, the third sucker 5 is in a non-working state, after the third linear module 216 conveys the workpiece 6 to a feeding position, the L-shaped lifting seat 213 is driven to move downwards through the lifting air cylinder 212 and drives the sliding block 8 to slide on the linear guide rail 9, so that the double-shaft air cylinder 214 synchronously drives the third sucker 5 to move downwards, and the third sucker 5 is moved to contact with and adsorb the workpiece 6, then, the lifting air cylinder 212 is controlled again to drive the L-shaped lifting seat 213 to move upwards, so that the third sucker 5 is driven to move upwards through the double-shaft air cylinder 214 and remove the workpiece 6 from the workpiece placing table 218, and after the double-shaft air cylinder 214 is lifted to a preset height, the piston rod is driven to extend forwards through control of the double-shaft air cylinder 214, so that the piston rod pushes the third sucker 5 and the workpiece 6 to move to the upper part of the machining table 7 on the numerical control machine tool body 1, and then the third sucker 5 is controlled to release the adsorption force, so that the workpiece 6 is automatically placed on the machining table 7, and the machining operation is facilitated.
Referring to fig. 5, as an embodiment of the present utility model, a slider 8 is disposed on a side of the "L" shaped lifting seat 213 near the supporting plate 211, wherein a linear guide 9 adapted to the slider 8 is disposed on the supporting plate 211.
In the above-mentioned scheme, the side of the 'L' -shaped lifting seat 213 close to the supporting plate 211 is provided with the sliding block 8, the sliding block 8 can slide on the supporting plate 211, so that the 'L' -shaped lifting seat 213 can move along the vertical direction, the supporting plate 211 is provided with the linear guide rail 9 matched with the sliding block 8, the linear guide rail 9 provides accurate guiding for the sliding block 8, the stable movement of the 'L' -shaped lifting seat 213 along the vertical direction is ensured, the working principle of the linear guide rail 9 is that the 'L' -shaped lifting seat 213 moves along the linear guide rail 9 with high precision by the infinite rolling circulation of steel balls between the sliding block 8 and the linear guide rail 9, and the design can obviously reduce the friction coefficient, improve the positioning precision and enable the movement to be smoother and have low noise.
Referring to fig. 6, as an embodiment of the present utility model, a vacuum chuck 10 is provided at an upper end of a workpiece placement table 218, wherein a fixing cylinder 11 is installed at one end of the workpiece placement table 218.
In the above-mentioned scheme, the vacuum adsorption plate 10 is a device for generating adsorption force by utilizing the vacuum principle, and is connected with a vacuum pump through a series of small holes or gaps, when the vacuum pump is started, the space below the small holes or gaps forms negative pressure so as to generate strong adsorption force, during loading and unloading, the vacuum adsorption plate 10 is used for firmly adsorbing the workpiece 6 and preventing the workpiece 6 from shifting or falling off during moving or processing, which is important for ensuring the processing precision and the product quality, when the workpiece 6 is placed on the workpiece placement table 218, the vacuum pump is started, the vacuum adsorption plate 10 generates adsorption force to firmly adsorb the workpiece 6 on the table surface of the workpiece placement table 218, when the workpiece 6 needs to be removed, the vacuum pump is closed, the adsorption force disappears, the workpiece 6 can be easily removed from the table surface of the workpiece placement table 218, the fixing cylinder 11 is a device for driving the piston rod to reciprocate by air pressure, on the workpiece placement table 208, the fixing cylinder 11 is usually used for assisting in fixing the workpiece 6 to keep a stable position during processing, the piston rod of the fixing cylinder 11 can be in contact with or support and support the workpiece 6 additionally for fixing the workpiece 6 by supporting the workpiece 6 by pressing the edge.
Referring to fig. 1, 3 and 6, as an embodiment of the present utility model, a base 201 is symmetrically installed with a first limiting seat 12 and a second limiting seat 13 near two sides of a numerically-controlled machine tool body 1, a limiting cylinder 14 is disposed above the first limiting seat 12, wherein a first limiting block 15 is disposed at a top end of a piston rod of the limiting cylinder 14, and a second limiting block 16 is disposed above the second limiting seat 13, wherein the second limiting block 16 and the first limiting block 15 are located at the same horizontal height.
In the above-mentioned scheme, the first limiting seat 12 is mounted on one side of the base 201 close to the numerically controlled machine tool body 1, the limiting cylinder 14 is disposed above the first limiting seat 12, the limiting cylinder 14 is responsible for driving the piston rod to move, the top end of the piston rod is provided with the first limiting block 15, the first limiting block 15 is used for providing physical limitation in the operation process of the workpiece 6, the second limiting seat 13 is also mounted on a symmetrical position of the base 201 and opposite to the first limiting seat 12, the second limiting seat 13 is provided with the second limiting block 16 above the second limiting seat 16, the second limiting block 16 and the first limiting block 15 are located at the same level to ensure that limiting ranges of two sides are consistent, when the third linear module 216 moves the workpiece 6 from one end of the plate storage frame 17 to a preset position close to one side of the numerically controlled machine tool body 1, the first limiting block 15 contacts with the first limiting block 15, and drives the first limiting block 15 to move towards one side of the second limiting block 16 through the limiting cylinder 14, so that the workpiece 6 is blocked and limited by the second limiting block 16, the biaxial cylinder 214 is matched with the third chuck 5, and the workpiece 6 is placed on the numerically controlled machine tool body 218 to be processed by the numerically controlled machine tool body 7.
Referring to fig. 1 and fig. 2 in combination, as an embodiment of the present utility model, two sides of a base 201 away from a numerically controlled machine tool body 1 are respectively provided with a plate storage rack 17 and a finished product storage rack 18, wherein the plate storage rack 17 corresponds to a first suction cup 3, and the finished product storage rack 18 corresponds to a second suction cup 4.
In the above-mentioned scheme, the plate storage rack 17 is located at one side of the base 201 away from the numerically controlled machine tool body 1 and corresponds to the first sucker 3, wherein the plate storage rack 17 has the main functions of storing the workpieces 6 to be processed, ensuring that sufficient raw materials are supplied in the processing process, when the numerically controlled machine tool needs new workpieces 6 to be processed, the first sucker 3 can be moved above the plate storage rack 17, the workpieces 6 are removed from the plate storage rack 17 by means of vacuum adsorption and accurately conveyed to the workpiece placement table 218 of the third linear module 216, the finished product storage rack 18 is also located at one side of the base 201 away from the numerically controlled machine tool body 1 but corresponds to the second sucker 4, the main functions of storing finished products after the processing are ensured to be orderly stored, facilitating subsequent quality inspection, packaging and transportation, and after the numerically controlled machine tool finishes the processing of the workpieces 6, the second sucker 4 can be moved above the workpiece placement table 218 of the third linear module 216, the finished products of the workpieces 6 are removed from the workpiece placement table 218 by means of vacuum adsorption, and then the second sucker 4 can be conveyed to the workpiece placement table 218 accurately, and the finished products are accurately conveyed to the workpiece placement table 18 according to the design rule, and the overall processing and the processing and storage process is improved, and the processing and storage risks are also improved.
While specific embodiments of the utility model have been described above, it will be appreciated by those skilled in the art that these are by way of example only, and the scope of the utility model is defined by the appended claims. Various changes and modifications to these embodiments may be made by those skilled in the art without departing from the principles and spirit of the utility model, but such changes and modifications fall within the scope of the utility model.

Claims (7)

1. A vertical numerical control machining center convenient for loading and unloading comprises a numerical control machine tool body (1), wherein one side of the numerical control machine tool body (1) is provided with a loading and unloading mechanism (2) side by side, and is characterized in that the loading and unloading mechanism (2) comprises a base (201), support frames (202) are arranged on two sides of the base (201), a cross beam (203) is arranged at the upper end of the support frames (202), a first linear module (204) is fixedly arranged on one side of the cross beam (203), a movable plate (206) is horizontally arranged on one side of the first linear module (204), a first sliding table (205) of the first linear module (204) is fixedly connected with a movable plate (206), one side of the movable plate (206) is provided with a second linear module (207), the second linear module (207) is mutually perpendicular to the first linear module (204), a support arm (209) is fixedly connected to the second sliding table (208) of the second linear module (207), one end of the support arm (209) far away from the second sliding table (208) is provided with a double-head cylinder (210), one side of the movable plate (206) far away from the second linear module (207) is provided with a support plate (211), one side of the movable plate (211) is provided with a lifting cylinder (211) is connected with a lifting cylinder (212), the lifting device comprises an L-shaped lifting seat (213) and a supporting plate (211), wherein a third linear module (216) is arranged above the base (201), and a workpiece placing table (218) is arranged on a third sliding table (217) of the third linear module (216).
2. The vertical numerical control machining center convenient for loading and unloading according to claim 1, wherein the double-head cylinder (210) is fixedly connected with the supporting arm (209) through a cylinder mounting seat (215), and a first sucker (3) and a second sucker (4) with the same structure are respectively mounted at the top ends of two piston rods of the double-head cylinder (210).
3. The vertical numerical control machining center convenient for loading and unloading according to claim 1, wherein a double-shaft air cylinder (214) is fixedly arranged on one side of the L-shaped lifting seat (213), the double-shaft air cylinder (214) is horizontally arranged, and a third sucking disc (5) is arranged at the front end of a piston rod of the double-shaft air cylinder (214).
4. A vertical numerical control machining center convenient for loading and unloading according to claim 3, wherein a sliding block (8) is arranged on one side of the L-shaped lifting seat (213) close to the supporting plate (211), and a linear guide rail (9) matched with the sliding block (8) is arranged on the supporting plate (211).
5. The vertical type numerical control machining center convenient for loading and unloading according to claim 1, wherein a vacuum adsorption plate (10) is arranged at the upper end of the workpiece placement table (218), and a fixed cylinder (11) is arranged on one side of the workpiece placement table (218).
6. The vertical numerical control machining center convenient for loading and unloading according to claim 1 is characterized in that a first limiting seat (12) and a second limiting seat (13) are symmetrically arranged on two side edges of a base (201) close to a numerical control machine body (1), a limiting cylinder (14) is arranged above the first limiting seat (12), a first limiting block (15) is arranged at the top end of a piston rod of the limiting cylinder (14), and a second limiting block (16) is arranged above the second limiting seat (13), wherein the second limiting block (16) and the first limiting block (15) are oppositely arranged.
7. The vertical numerical control machining center convenient for loading and unloading according to claim 6, wherein the two sides of the base (201) far away from the numerical control machine body (1) are respectively provided with a plate storage rack (17) and a finished product storage rack (18).
CN202421496198.2U 2024-06-27 2024-06-27 A vertical CNC machining center that is easy to load and unload Active CN222903338U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421496198.2U CN222903338U (en) 2024-06-27 2024-06-27 A vertical CNC machining center that is easy to load and unload

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421496198.2U CN222903338U (en) 2024-06-27 2024-06-27 A vertical CNC machining center that is easy to load and unload

Publications (1)

Publication Number Publication Date
CN222903338U true CN222903338U (en) 2025-05-27

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CN202421496198.2U Active CN222903338U (en) 2024-06-27 2024-06-27 A vertical CNC machining center that is easy to load and unload

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