Copper casting machining numerical control machine tool fixing device

Through the design of lifting components and buffering mechanism, the applicability and accuracy of CNC machine tool fixtures for cast copper parts are solved when flipping workpieces, and the flexible flipping and convenient cleaning of workpieces are achieved, and the processing efficiency and accuracy are improved.

CN223084269UActive Publication Date: 2025-07-11JIANGXI JIANGVALE CASTING & FORGING CO LTD
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Patent Information

Application Number
CN202421998492.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-07-11
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

The existing CNC machine tool fixing devices for cast copper parts can easily cause the bottom end of the workpiece to come into contact with the workbench when flipping the workpiece, affecting the application scope and machining accuracy of the device.

Method used

The lifting assembly and buffer mechanism are adopted to achieve flexible flip and stable fixation of the workpiece through the cooperation of the screw, slide and motor, and the cleaning component design is conveniently cleaned and processed debris.

Benefits of technology

It improves the convenience and processing accuracy of workpiece flips, improves the applicability and working efficiency of the device, and simplifies the debris cleaning process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a fixing device for a cast copper part machining numerical control machine tool, which relates to the technical field of cast copper part machining numerical control machine tools and comprises a machine tool, a pair of lifting assemblies are mounted at the top end of the machine tool, and a first mounting seat is mounted at the top end of each lifting assembly. A buffering mechanism is arranged at the position, between the pair of lifting assemblies, of the top end of the machine tool, a workbench is installed at the top end of the buffering mechanism, and a cleaning assembly is installed at the top end of the workbench. According to the fixing device, the problems that when an existing fixing device for the copper casting machining numerical control machine tool is used for machining and turning over a workpiece, due to the fact that the bottom end of the workpiece makes contact with the bottom end of a workbench, part of square workpieces cannot be turned over easily, and the application range of the device is affected are solved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of numerically controlled machine tools for processing cast copper parts. More specifically, it particularly relates to a fixing device for a numerically controlled machine tool for processing cast copper parts. Background Technique

[0002] Cast copper parts are copper components produced through the casting process and are widely used in mechanical, construction, art, and other industrial fields. Fixing devices are required during the processing of cast copper parts to ensure the stability and processing accuracy of the workpiece on the numerically controlled machine tool, and the numerically controlled machine tool fixing device can ensure the stability and accuracy of the cast copper workpiece during processing.

[0003] Patent application number CN202022979525.8 discloses a fixing device for a numerically controlled machine tool, which solves the problems of the numerically controlled machine tool being unable to be fixed according to the size of the product and the vibration generated during the processing of the numerically controlled machine tool affecting the processing accuracy of the machine tool. It includes a machine body, a workbench arranged on the machine body, and a fixing device. A shock absorption component is arranged at the bottom of the workbench. The shock absorption component includes a shock absorption pad arranged at the bottom of the workbench. The fixing device includes fixing seats symmetrically arranged on two parallel sides of the workbench and a clamping component arranged on the fixing seats. An installation groove for installing the fixing seats is opened on one side of the machine body close to the fixing seats. An installation block located in the installation groove is arranged at the bottom surface of the fixing seat. A shock absorption part is sleeved on the installation block. The clamping component includes a support seat arranged on the fixing seat and a clamping part arranged on the support seat. This application has the effects of improving the processing accuracy of the numerically controlled machine tool, improving the fixing effect on the product, improving the stability of the product during processing, effectively improving the qualified product rate, and reducing material waste. However, in the above technical solution, when the workpiece is processed and flipped, since the bottom end of the workpiece contacts the bottom end of the workbench, it is easy to cause some square workpieces to be unable to be flipped, affecting the application range of the device.

[0004] Therefore, in view of this, research and improvement are carried out on the existing structure and deficiencies, and a fixing device for a numerically controlled machine tool for processing cast copper parts is provided, with the expectation of achieving a more practical value. Content of the Utility Model

[0005] The purpose and effect of a fixing device for a numerically controlled machine tool for processing cast copper parts of the utility model are achieved by the following specific technical means:

[0006] A fixing device for a numerically controlled machine tool for processing cast copper parts includes a machine tool. A pair of lifting components are installed at the top of the machine tool. An installation seat one is installed at the top of the lifting components. A buffer mechanism is arranged at the position between the pair of lifting components at the top of the machine tool. A workbench is installed at the top of the buffer mechanism. A cleaning component is installed at the top of the workbench.

[0007] Further, the lifting assembly includes a second mounting base. A first mounting groove is provided at the top end of the second mounting base. A lead screw is installed inside the first mounting groove. A sliding cylinder is installed on the circumferential side of the lead screw. The top end of the sliding cylinder is connected to the first mounting base.

[0008] Further, a chute is provided on one side of the sliding cylinder. The inside of the chute matches the circumferential side at the top end of the second mounting base.

[0009] Further, a second mounting groove is provided inside the second mounting base. A motor is installed inside the second mounting groove. The output end of the motor is in transmission connection with the lead screw.

[0010] Further, the cleaning assembly includes a T-shaped groove. A top plate is placed at the top end of the T-shaped groove. A pair of leakage grooves are provided at both ends of the top plate. A number of round rods are installed inside the pair of leakage grooves. A drawer is inserted at the bottom end of the T-shaped groove. One end of the drawer extends to the outside of one side of the workbench. A handle is installed on one side of the drawer.

[0011] Further, a pair of knobs one are installed at both sides of the workbench where the drawer is located. A pair of knobs two are installed at both sides of the workbench where the top plate is located.

[0012] Further, a frame is installed on one side at the top end of the machine tool. A processing mechanism is installed at the bottom end of one side of the frame.

[0013] Further, a clamping mechanism is installed at the top end of the first mounting base. A fixture is installed at one end of the clamping mechanism.

[0014] Compared with the prior art, the utility model has the following beneficial effects:

[0015] Through the cooperation of the lead screw, the sliding cylinder, the first mounting base, the second mounting base, the chute and the motor, the rotation of the motor drives the rotation of the lead screw. When the lead screw rotates, it drives the sliding cylinder to move up and down. Through the matching of the chute and the second mounting base, the sliding cylinder can be limited during the lifting process to prevent the sliding cylinder from shifting and restrict the sliding cylinder to move linearly up and down. When the sliding cylinder moves up and down, it drives the first mounting base to move up and down at the same time. When the workpiece needs to be flipped, the first mounting base first moves up. After the workpiece rotates, the first mounting base moves down and resets, improving the work efficiency and enhancing the overall applicability of the device.

[0016] Through the cooperation of the top plate, the leakage grooves, the round rods, the T-shaped groove, the knob one, the knob two, the drawer and the handle, when the workpiece is processed on the top plate, the generated chips fall into the T-shaped groove through the leakage grooves between the round rods and then fall into the drawer. When the processing is completed, the drawer can be pulled out by turning the knob one through the handle. By turning the knob two, the top plate can be taken out. The operation is simple and convenient, improving the work efficiency. Description of the Drawings

[0017] Figure 1 It is a three-dimensional schematic diagram of a fixing device for a numerically controlled machine tool for processing cast copper parts of the present utility model.

[0018] Figure 2 It is a sectional view schematic diagram of a cleaning component of a fixing device for a numerically controlled machine tool for processing cast copper parts of the present utility model.

[0019] Figure 3 It is a sectional view schematic diagram of a lifting component of a fixing device for a numerically controlled machine tool for processing cast copper parts of the present utility model.

[0020] Figure 4 It is a fixing device for a numerically controlled machine tool for processing cast copper parts of the present utility model Figure 1 and an enlarged schematic diagram at position A in it.

[0021] In the figure, the corresponding relationship between the component names and the drawing reference numerals is as follows:

[0022] 1. Machine tool; 2. Frame; 3. Processing mechanism; 4. Workbench; 5. Buffer mechanism; 6. Top plate; 7. Leakage trough; 8. Round rod; 9. Knob two; 10. Clamping mechanism; 11. Mounting seat one; 12. Slide cylinder; 13. Mounting seat two; 14. Knob one; 15. Drawer; 16. Handle; 17. Fixture; 18. T-shaped groove; 19. Motor; 20. Mounting groove two; 21. Lead screw; 22. Mounting groove one; 23. Slide groove. Specific embodiments

[0023] The following further describes in detail the embodiments of the present utility model in conjunction with the drawings and examples. The following examples are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.

[0024] In the description of the present utility model, unless otherwise specified, "a plurality of" means two or more; the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation of the present utility model. In addition, the terms "first", "second", "third", etc. are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0025] In the description of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "connected" and "connected to" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances. Embodiment

[0026] As shown in the Figure 1 to the Figure 4 accompanying drawings:

[0027] The present utility model provides a fixing device for a numerically controlled machine tool for processing cast copper parts, including a machine tool 1. A pair of lifting components are installed at the top of the machine tool 1. An installation seat 11 is installed at the top of the lifting components. A buffer mechanism 5 is arranged at the position between the pair of lifting components at the top of the machine tool 1. A workbench 4 is installed at the top of the buffer mechanism 5. A cleaning component is installed at the top of the workbench 4.

[0028] Among them, the lifting component includes an installation seat 13. An installation groove 22 is provided at the top of the installation seat 13. A lead screw 21 is installed inside the installation groove 22. A sliding cylinder 12 is installed on the periphery of the lead screw 21. The top of the sliding cylinder 12 is connected to the installation seat 11. By the combined use of the lead screw 21, the sliding cylinder 12, the installation seat 11 and the installation seat 13, when the lead screw 21 rotates, it drives the sliding cylinder 12 to move up and down. When the sliding cylinder 12 moves up and down, it simultaneously drives the installation seat 11 to move up and down. When the workpiece needs to be flipped, the installation seat 11 first moves upward. After the workpiece rotates, the installation seat 11 moves downward and resets, improving the overall applicability of the device.

[0029] Among them, a sliding groove 23 is provided on one side of the sliding cylinder 12. The inside of the sliding groove 23 matches the periphery of the top of the installation seat 13. By the matching of the sliding groove 23 and the installation seat 13, the sliding cylinder 12 can be limited during the lifting process to prevent the sliding cylinder 12 from shifting and restrict the sliding cylinder 12 to move linearly up and down.

[0030] Among them, an installation groove 20 is provided inside the installation seat 13. A motor 19 is installed inside the installation groove 20. The output end of the motor 19 is in transmission connection with the lead screw 21. By the rotation of the motor 19, the lead screw 21 is driven to rotate, improving the work efficiency.

[0031] Among them, the cleaning component includes a T-shaped groove 18. A top plate 6 is placed at the top end of the T-shaped groove 18. A pair of leakage grooves 7 are provided at both ends of the top plate 6. A number of round rods 8 are installed inside the pair of leakage grooves 7. A drawer 15 is inserted at the bottom end of the T-shaped groove 18. One end of the drawer 15 extends to the outside of one side of the workbench 4. A handle 16 is installed on one side of the drawer 15. Through the coordinated use of the top plate 6, the leakage grooves 7, the round rods 8, the T-shaped groove 18, the drawer 15 and the handle 16, when the workpiece is processed on the top plate 6, the generated debris falls into the T-shaped groove 18 through the leakage grooves 7 between the round rods 8 and then into the drawer 15. When the processing is completed, the drawer 15 can be pulled out through the handle 16.

[0032] Among them, a pair of knob ones 14 are installed at both sides of the drawer 15 on one side of the workbench 4. A pair of knob twos 9 are installed at both sides of the top plate 6 on the top end of the workbench 4. By rotating the knob one 14, the drawer 15 can be pulled out. By rotating the knob two 9, the top plate 6 can be taken out. The operation is simple and convenient, improving the work efficiency.

[0033] Among them, a frame 2 is installed on one side at the top end of the machine tool 1. A processing mechanism 3 is installed at the bottom end of one side of the frame 2.

[0034] Among them, a clamping mechanism 10 is installed at the top end of the mounting seat one 11. A fixture 17 is installed at one end of the clamping mechanism 10.

[0035] The specific usage mode and function of this embodiment:

[0036] First, check the integrity of the device. After confirming that it is correct, it can be used. When using, first clamp the workpiece on the fixture 17, start the device, and the processing mechanism 3 processes the surface of the workpiece. The generated debris falls into the T-shaped groove 18 through the leakage grooves 7 between the round rods 8 and then into the drawer 15. When the workpiece needs to be flipped, the rotation of the motor 19 drives the screw rod 21 to rotate. When the screw rod 21 rotates, it drives the sliding cylinder 12 to move upward. Through the matching of the sliding groove 23 and the mounting seat two 13, the sliding cylinder 12 can be limited during the lifting process to prevent the sliding cylinder 12 from shifting and restrict the sliding cylinder 12 from moving straight upward. When the sliding cylinder 12 moves upward, it simultaneously drives the mounting seat one 11 to move upward, and the workpiece is flipped through the clamping mechanism 10. The mounting seat one 11 moves downward and resets, improving the work efficiency and enhancing the overall applicability of the device. When the processing is completed, by rotating the knob one 14, the drawer 15 can be pulled out through the handle 16. By rotating the knob two 9, the top plate 6 can be taken out. The operation is simple and convenient, improving the work efficiency. The overall design of this device is novel and the structure is simple, so it is worthy of wide promotion and use.

[0037] The embodiments of the present utility model are given for purposes of illustration and description, and are not exhaustive or limit the present utility model to the disclosed forms. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are chosen and described in order to better explain the principles of the present utility model and its practical applications, and to enable those of ordinary skill in the art to understand the present utility model so as to design various embodiments with various modifications suitable for specific purposes.

Claims

1. A fixing device for a numerically controlled machine tool for processing cast copper parts, comprising a machine tool (1), characterized in that: A pair of lifting components are installed at the top of the machine tool (1). A mounting seat one (11) is installed at the top of the lifting components. A buffer mechanism (5) is arranged at the position between the pair of lifting components on the top of the machine tool (1). A workbench (4) is installed at the top of the buffer mechanism (5). A cleaning component is installed at the top of the workbench (4).

2. The fixing device for a numerically controlled machine tool for processing cast copper parts according to claim 1, characterized in that: The lifting component includes a mounting seat two (13). An installation groove one (22) is arranged at the top of the mounting seat two (13). A lead screw (21) is installed inside the installation groove one (22). A sliding cylinder (12) is installed on the circumferential side of the lead screw (21). The top of the sliding cylinder (12) is connected to the mounting seat one (11).

3. The fixing device for a numerically controlled machine tool for processing cast copper parts according to claim 2, wherein: A sliding groove (23) is arranged on one side of the sliding cylinder (12). The inside of the sliding groove (23) matches the circumferential side at the top of the mounting seat two (13).

4. The fixing device for a numerically controlled machine tool for processing cast copper parts according to claim 3, wherein: An installation groove two (20) is arranged inside the mounting seat two (13). A motor (19) is installed inside the installation groove two (20). The output end of the motor (19) is in transmission connection with the lead screw (21).

5. The fixing device for a numerically controlled machine tool for processing cast copper parts according to claim 1, characterized in that: The cleaning component includes a T-shaped groove (18). A top plate (6) is placed at the top of the T-shaped groove (18). A pair of leakage grooves (7) are arranged at both ends of the top plate (6). A number of round rods (8) are installed inside the pair of leakage grooves (7). A drawer (15) is inserted at the bottom end of the T-shaped groove (18). One end of the drawer (15) extends to the outside of one side of the workbench (4). A handle (16) is installed on one side of the drawer (15).

6. The fixing device for a numerically controlled machine tool for processing cast copper parts according to claim 5, wherein: A pair of knob one (14) are installed at both sides of the workbench (4) where the drawer (15) is located. A pair of knob two (9) are installed at both sides of the workbench (4) where the top plate (6) is located.

7. The fixing device for a numerically controlled machine tool for processing cast copper parts according to claim 6, characterized in that: A frame (2) is installed at one side of the top of the machine tool (1). A processing mechanism (3) is installed at the bottom end of one side of the frame (2).

8. The fixing device for a numerically controlled machine tool for processing cast copper parts according to claim 1, characterized in that: A clamping mechanism (10) is installed at the top of the mounting seat one (11). A fixture (17) is installed at one end of the clamping mechanism (10).

Citation Information

Patent Citations

  • Fixing device of numerical control machine tool

    CN214109637U