Cutting device

By employing a dual-cutting machine design and precise adjustment of the drive mechanism, the problem of inconsistent cutting in traditional cutting machines has been solved, improving cutting accuracy and aesthetics, reducing the need for reprocessing, and expanding the scope of application.

CN223558526UActive Publication Date: 2025-11-18SUZHOU SOWELL PRECISION MASCH CO LTD
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Patent Information

Application Number
CN202423207054.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-11-18
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

When traditional cutting machines cut workpieces into segments, the differences between the segments are significant, resulting in a decrease in aesthetics and difficulties in subsequent assembly, which increases production costs and time.

Method used

The dual-cutting machine design allows for precise adjustment of the cutting machine spacing by moving the first and second drive mechanisms in the X and Y directions. Combined with the use of clearance grooves and photoelectric sensors, it ensures cutting accuracy and consistency.

Benefits of technology

It improves cutting accuracy and workpiece dimensional consistency, reduces the need for reprocessing, expands the scope of application, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223558526U_ABST
    Figure CN223558526U_ABST
Patent Text Reader

Abstract

The utility model discloses a cutting device which comprises a cutting operation table and two sets of cutting machines arranged on the cutting operation table, a first driving mechanism is arranged between each cutting machine and the cutting operation table, and a second driving mechanism is arranged between each cutting machine and the cutting operation table. The cutting machine is driven by the first driving mechanism to move back and forth in the Y direction. A second driving mechanism is arranged between at least one set of first driving mechanism and the cutting operation table, the first driving mechanisms arranged on the second driving mechanism can move in the X direction through the second driving mechanism, and therefore the distance between the two sets of cutting machines can be adjusted. According to the utility model, the distance between the cutting blades is ensured to be accurate, the cutting precision is effectively improved, meanwhile, the sizes of cut workpieces are consistent, and the aesthetic degree is effectively improved; and secondly, the cutting requirements of different sizes are met, and the application range is widened.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to cutting technical field, specifically, relate to a cutting device. BACKGROUND

[0002] In modern industrial production, cutting machine as important processing equipment, is widely used in cutting processing of various materials. And the traditional cutting machine often adopts single cutting head, this cutting machine when carrying out segmented cutting to workpiece, its each paragraph of workpiece often exists difference, the consistency is poor, affects the beautiful, leads to subsequent assembly difficulty, performance decline, therefore, need to carry out additional processing and adjustment, to make it meet the production requirement, not only increase production step and time, also lead to the rise of production cost. SUMMARY

[0003] In order to solve the problems in the prior art, the utility model aims at providing a cutting device to improve workpiece cutting precision, reduce reprocessing, reduce production cost, improve the appearance and application range.

[0004] To achieve the above technical purpose and effect, the utility model realizes by the following technical scheme:

[0005] A cutting device, including cutting operation platform and the cutting machine being set on the cutting operation platform, is provided with two groups of cutting machine, a first drive mechanism is arranged between the cutting machine and the cutting operation platform, the cutting machine can move back and forth in Y direction through the drive of the first drive mechanism, and a second drive mechanism is arranged between at least one group of first drive mechanism and the cutting operation platform, the first drive mechanism arranged on it can move in X direction through the second drive mechanism, thereby realizing the adjustment of the spacing between the two groups of cutting machine.

[0006] Further, the cutting operation platform is provided with an avoiding groove for avoiding the cutting machine blade on the table top.

[0007] Further, the first drive mechanism includes a first fixed plate, a pair of first linear guide rails are arranged on the first fixed plate, a connecting plate is arranged on the slide table of a pair of first linear guide rails, a drive assembly is arranged between the connecting plate and the first fixed plate, the connecting plate can move back and forth in Y direction along a pair of first linear guide rails through the drive of the drive assembly.

[0008] Further, the first drive mechanism further includes a pair of U-shaped photoelectric sensors and a sensing sheet matched with the U-shaped photoelectric sensor, a pair of U-shaped photoelectric sensors are arranged on the first fixed plate through connecting seat, and the sensing sheet is arranged on the connecting plate.

[0009] Further, the driving assembly comprises a first screw rod, front ends of the first screw rod are respectively sleeved with a first bearing seat, one end of the first screw rod is connected with a driving motor through a shaft coupling, and a first nut is arranged on a threaded portion of the first screw rod.

[0010] Further, the second driving mechanism comprises a second fixed plate, a pair of second linear guides are arranged on the second fixed plate, a second screw rod parallel to the arrangement direction of the second linear guides is arranged between the pair of second linear guides, front and rear ends of the second screw rod are rotatably arranged on the second fixed plate through a second bearing seat, a hand wheel is arranged on an outer end of the second screw rod, and a second nut is arranged on a threaded portion of the second screw rod.

[0011] Further, a pointer is arranged on the sliding table of the outer group of second linear guides; and a scale is arranged on the cutting operation table and matched with the pointer.

[0012] Further, universal wheels are arranged on the lower end of the cutting operation table.

[0013] The beneficial effects of the utility model are as follows: the utility model adopts the mode that the workpiece is cut by the double cutting machines, ensures that the distance between the cutting blades is accurate, effectively improves the cutting precision, and makes the sizes of the cut workpieces consistent, and effectively improves the aesthetic degree; secondly, the distance between the double cutting machines is adjustable, meets the cutting requirements of different sizes, and improves the application range.

[0014] The above description is only a summary of the technical scheme of the utility model, in order to more clearly understand the technical means of the utility model, and the content of the specification can be implemented, the following is a preferred embodiment of the utility model and the detailed description of the drawings. The specific implementation of the utility model is given in detail by the following embodiments and drawings. BRIEF DESCRIPTION OF DRAWINGS

[0015] The drawings described herein are used to provide a further understanding of the utility model, constitute a part of the present application, and the schematic embodiments of the utility model and the description are used to explain the utility model, and do not constitute an improper limitation on the utility model. In the drawings:

[0016] Figure 1 It is a whole structure schematic view of the utility model device;

[0017] Figure 2 It is a cutting machine and driving mechanism connection schematic view of the utility model;

[0018] Figure 3 It is a first driving mechanism structure schematic view of the utility model;

[0019] Figure 4 It is a second driving mechanism structure schematic view of the utility model.

[0020] Explanation of reference numerals in the drawing: 1, cutting operation platform; 2, cutting machine; 3, first driving mechanism; 4, second driving mechanism; 5, universal wheel; 11, avoiding groove; 12, scale; 31, first fixed plate; 32, first linear guide rail; 33, connecting plate; 34, driving assembly; 35, U-shaped photoelectric sensor; 36, inductive sheet; 37, connecting seat; 341, first screw rod; 342, first bearing seat; 343, coupling; 344, driving motor; 345, first nut; 41, second fixed plate; 42, second linear guide rail; 43, second screw rod; 44, second bearing seat; 45, hand wheel; 46, second nut; 47, pointer. DETAILED DESCRIPTION

[0021] The utility model will be described in detail below with reference to the drawings and in combination with embodiments.

[0022] It should be noted that all directional indications (such as up, down, left, right, front, back, upper end, lower end, top, bottom, etc.) in the embodiments of the utility model are only used to explain the relative positional relationship, movement condition, etc. between components in a certain specific posture (as shown in the drawing), and if the specific posture changes, the directional indications will also change accordingly.

[0023] Referring to Figures 1-2 As shown in the drawing, a cutting device comprises a cutting operation platform 1 and a cutting machine 2 arranged on the cutting operation platform 1; in this embodiment, two groups of cutting machines 2 are arranged, and a first driving mechanism 3 is arranged between each cutting machine 2 and the cutting operation platform 1; the cutting machine 2 can move back and forth in the Y direction through the driving of the first driving mechanism 3, thereby realizing the cutting action on the workpiece; in this embodiment, a second driving mechanism 4 is arranged between one group of first driving mechanisms 3 and the cutting operation platform 1, and the first driving mechanism 3 arranged thereon can move in the X direction through the second driving mechanism 4, thereby realizing the adjustment of the distance between the two groups of cutting machines 2, and further realizing the accurate cutting of the workpiece with different specifications and size requirements; it should be noted that in actual arrangement, one second driving mechanism 4 can also be arranged between each pair of first driving mechanisms 3 and the cutting operation platform 1, thereby realizing the adjustment of the positions of the two groups of cutting machines 2.

[0024] Further, continuing to refer to Figure 1As shown in the drawings, in the embodiment, the lower half of the blade of the cutting machine 2 is below the table of the cutting operation table 1, and the lower half is above the table of the cutting operation table 1. In order to avoid cutting the table of the cutting operation table 1 during cutting of the workpiece, a avoiding groove 11 for avoiding the blade of the cutting machine 2 is formed on the table of the cutting operation table 1.

[0025] Further, referring to Figure 3 As shown in the drawings, in the embodiment, the first driving mechanism 3 comprises a first fixed plate 31, the first fixed plate 31 is arranged on the second driving mechanism 4, and the first fixed plate 31 can move back and forth in the X direction through the driving of the second driving mechanism 4; a pair of first linear guides 32 are arranged on the first fixed plate 31, a connecting plate 33 is arranged on the slide of the pair of first linear guides 32, a driving assembly 34 is arranged between the connecting plate 33 and the first fixed plate 31, and the connecting plate 33 can move back and forth in the Y direction along the pair of first linear guides 32 through the driving of the driving assembly 34. In order to limit the movement of the connecting plate 33 and avoid the connecting plate 33 from falling off the first linear guides 32, the first driving mechanism 3 further comprises a pair of U-shaped photoelectric sensors 35 and a sensing sheet 36 matched with the U-shaped photoelectric sensors 35. When installed, the pair of U-shaped photoelectric sensors 35 are arranged on the first fixed plate 31 through connecting seats 37, and the sensing sheet 36 is arranged on the connecting plate 33. The cutting machine 2 is arranged on the connecting plate 33, and the cutting machine 2 can move synchronously with the connecting plate 33, so as to drive the cutting machine 2 to cut the workpiece.

[0026] Further, referring to Figure 3 As shown in the drawings, in the embodiment, the driving assembly 34 comprises a first lead screw 341, a first bearing seat 342 is arranged at the front end of the first lead screw 341, a driving motor 344 is connected to one end of the first lead screw 341 through a shaft coupling 343, and a first nut 345 is arranged on the threaded part of the first lead screw 341. When installed, the first lead screw 341 is rotatably arranged on the first fixed plate 31 through the first bearing seat 342. At this time, the arrangement direction of the first lead screw 341 is parallel to the arrangement direction of the first linear guides 32. The driving motor 344 is fixed on the first fixed plate 31 through a corresponding motor support, and the first nut 345 is fixedly connected with the connecting plate 33. When cutting, the driving motor 344 drives the first lead screw 341 to rotate through the shaft coupling 343, so as to drive the first nut 345 to move along the first lead screw 341, thereby driving the connecting plate 33 to move, and further driving the cutting machine 2 to cut the workpiece.

[0027] Further, referring to Figure 4 As shown in the figure, in the embodiment, the second driving mechanism 4 comprises a second fixed plate 41 fixed on the cutting operation table 1; a pair of second linear guide rails 42 are arranged on the second fixed plate 41, a second lead screw 43 parallel to the arrangement direction of the second linear guide rails 42 is arranged between the pair of second linear guide rails 42, the front and rear ends of the second lead screw 43 are rotatably arranged on the second fixed plate 41 through a second bearing seat 44 respectively, a hand wheel 45 is arranged on the outer end of the second lead screw 43, and a second nut 46 is arranged on the threaded part of the second lead screw 43; during installation, the first fixed plate 31 is arranged on the sliding table of the pair of second linear guide rails 42, and the first fixed plate 31 is fixedly connected with the second nut 46; during adjustment, the second lead screw 43 is driven to rotate through the hand wheel 45, so that the second nut 46 is driven to move along the second lead screw 43, thereby driving the first fixed plate 31 to move, and the adjustment of the distance between the two groups of cutting machines 2 is realized.

[0028] Further, referring to Figure 1 and Figure 4 As shown in the figure, in the embodiment, in order to realize the adjustment of the distance between the two groups of cutting machines 2, a pointer 47 is arranged on the sliding table of the outer group of second linear guide rails 42; a scale 12 matched with the pointer 47 is arranged on the cutting operation table 1.

[0029] Further, referring to Figure 1 As shown in the figure, in the embodiment, universal wheels 5 are arranged at the lower end of the cutting operation table 1, the universal wheels 5 are support universal wheels, which facilitate the movement of the device and the installation and fixation.

[0030] The working principle of the utility model is as follows:

[0031] During cutting, the workpiece is fixed on the table surface of the cutting operation table 1 through a special clamp according to the type of the workpiece; then, the distance between the two groups of cutting machines 2 is adjusted to the corresponding position through the rotation of the hand wheel 45 according to the size requirement of the workpiece to be cut; then, the device is started, at this time, the cutting machine 2 is started, at the same time, the first driving mechanism 3 drives the cutting machine 2 to move to the direction of the avoiding groove 11, so that the workpiece is cut, and after the cutting is completed, the first driving mechanism 3 drives the cutting machine 2 to move to the direction away from the avoiding groove 11 to reset, that is, the cutting action is completed.

[0032] The above merely describes preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A cutting device, comprising a cutting operating table (1) and a cutting machine (2) disposed on the cutting operating table (1), characterized in that: Two sets of cutting machines (2) are provided, and a first driving mechanism (3) is provided between each cutting machine (2) and the cutting operation table (1). The cutting machine (2) can move back and forth in the Y direction by being driven by the first driving mechanism (3). A second driving mechanism (4) is provided between at least one set of the first driving mechanism (3) and the cutting operation table (1). The first driving mechanism (3) provided on the second driving mechanism (4) can move in the X direction, thereby adjusting the distance between the two sets of cutting machines (2).

2. The cutting device according to claim 1, characterized in that: The cutting worktable (1) has a clearance groove (11) on its surface to avoid the blade of the cutting machine (2).

3. The cutting device according to claim 2, characterized in that: The first driving mechanism (3) includes a first fixed plate (31), on which a pair of first linear guides (32) are provided. A connecting plate (33) is provided on the slide of the pair of first linear guides (32). A driving assembly (34) is provided between the connecting plate (33) and the first fixed plate (31). The connecting plate (33) can move back and forth along the pair of first linear guides (32) in the Y direction by the driving assembly (34).

4. The cutting device according to claim 3, characterized in that: The first driving mechanism (3) further includes a pair of U-shaped photoelectric sensors (35) and a sensing plate (36) adapted to the U-shaped photoelectric sensors (35); the pair of U-shaped photoelectric sensors (35) are mounted on the first fixed plate (31) via a connecting seat (37), and the sensing plate (36) is mounted on the connecting plate (33).

5. The cutting device according to claim 3, characterized in that: The drive assembly (34) includes a first lead screw (341), a first bearing seat (342) is sleeved on the front end of the first lead screw (341), and one end of the first lead screw (341) is connected to a drive motor (344) through a coupling (343), and a first nut (345) is provided on the threaded part of the first lead screw (341).

6. The cutting device according to claim 1, characterized in that: The second drive mechanism (4) includes a second fixed plate (41), on which a pair of second linear guides (42) are provided. A second lead screw (43) parallel to the setting direction is provided between the pair of second linear guides (42). The front and rear ends of the second lead screw (43) are rotatably mounted on the second fixed plate (41) through a second bearing seat (44). A handwheel (45) is provided on the outer end of the second lead screw (43), and a second nut (46) is provided on the threaded part of the second lead screw (43).

7. The cutting device according to claim 6, characterized in that: A pointer (47) is provided on the slide of the outermost set of the second linear guide rails (42); a scale (12) adapted to the pointer (47) is provided on the cutting operation table (1).

8. The cutting device according to claim 1, characterized in that: The lower end of the cutting worktable (1) is equipped with casters (5).