Cutting machine with guiding function

By designing the guide support component and the position adjustment module, the problem of material deviation during the cutting process of the cutting machine is solved, achieving stable guidance and high-precision cutting, and adapting to the cutting needs of different materials.

CN223971798UActive Publication Date: 2026-03-06QINGDAO XINJIA PRECISION ELECTROMECHANICAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

The lack of an effective guiding support structure during the cutting process of the cutting machine causes material to shift, affecting cutting accuracy and resulting in material waste.

Method used

The guide support assembly includes an upper support plate, a lower support plate, a straight groove rod, a slider, a guide shaft, and a connecting rod structure. Together with the X-axis and Y-axis linear guides, it achieves stable guidance and support of the material, and can be precisely adjusted through the position adjustment module.

Benefits of technology

It effectively avoids material shift, improves cutting accuracy, adapts to the cutting needs of materials of different sizes and shapes, and enhances structural stability and the adaptability of the cutting machine.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223971798U_ABST
    Figure CN223971798U_ABST
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Abstract

The utility model discloses a cutting machine with a guiding function, which comprises a cutting machine body, the cutting machine body is fixed on a supporting table, and the cutting machine body is connected with a guiding supporting assembly through a position adjusting module. The guiding and supporting assembly comprises an upper supporting plate, a lower supporting plate, a straight groove rod, a nut, a limiting bolt, a sliding groove, a guiding shaft, a sliding block and a telescopic rod. A center shaft of the upper supporting plate is fixedly connected with the center of the lower supporting plate. The utility model relates to the technical field of guiding equipment of cutting machines, in particular to a cutting machine with a guiding function, which can stably guide and support materials to be cut through the synergistic effect of structures such as an upper supporting plate, a lower supporting plate, a straight groove rod, a sliding block and a guiding shaft in a guiding and supporting assembly. And deviation of the material in the cutting process is effectively avoided.
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Description

Technical Field

[0001] This utility model relates to the technical field of cutting machine guiding equipment, specifically, to a cutting machine with guiding function. Background Technology

[0002] Cutting machines are equipment used for cutting and slitting sheet materials in various industries. They do not require molds and can directly cut products through system software control. They can facilitate product cutting and various pattern cutting, and are widely used in clothing, packaging, advertising, decoration, electronics and other industries.

[0003] During the cutting process, the lack of an effective guiding support structure often causes the material to shift, affecting cutting accuracy and resulting in material waste. Therefore, developing a cutting machine with reliable guiding functionality is of great significance. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide a cutting machine with a guiding function. Through the coordinated action of the upper support plate, lower support plate, straight groove rod, slider and guide shaft in the guiding support assembly, the material to be cut can be stably guided and supported, effectively avoiding the material from shifting during the cutting process.

[0005] A cutting machine with a guiding function includes a cutting machine body, which is fixed on a support platform. The cutting machine body is connected to a guiding support assembly via a position adjustment module. The guiding support assembly includes an upper support plate, a lower support plate, a straight groove rod, a nut, a limiting bolt, a slide groove, a guide shaft, a slider, and a telescopic rod. The central axis of the upper support plate is fixedly connected to the center of the lower support plate. There are two straight groove rods arranged symmetrically. The two ends of each straight groove rod are respectively provided with the slide groove. The slider is slidably fitted in each slide groove. Each slider is passed through by the guide shaft. The two ends of each guide shaft are fixedly connected to the two ends of the straight groove rod. Each slider can pass through the guide shaft. The lower side of each pair of sliders is rotatably connected to one end of a connecting rod. The middle of the two connecting rods intersects. The other end of each connecting rod is rotatably connected to the corresponding slider. The middle intersection of the two connecting rods is passed through by the limiting bolt. The limiting bolt is threadedly connected to the nut. The upper center of the straight groove rod and the upper side of the slider are respectively fixedly connected to the lower support plate.

[0006] As a further limitation of this technical solution, the fixed ends of the telescopic rod are respectively fixedly connected to one side of one of the straight groove rods, and the movable ends of the telescopic rod are respectively fixedly connected to the two ends of the other straight groove rod. The fixed end of the telescopic rod is threadedly connected to a first set screw, which can hold the movable end of the telescopic rod.

[0007] As a further limitation of this technical solution, the position adjustment module includes a sleeve, a second set screw, and a round shaft. There are two pairs of sleeves, which are respectively fixed inside the outer shell of the cutting machine body. The round shafts are slidably connected inside the sleeves. Each pair of round shafts is fixedly connected to one side of the corresponding straight groove rod. Each sleeve is threadedly connected to the second set screw, and each second set screw can abut against the corresponding round shaft.

[0008] As a further limitation of this technical solution, the cutting machine body is provided with an X-axis linear guide and a Y-axis linear guide. The fixed end of the X-axis linear guide is fixedly connected to the cutting machine body, the movable end of the X-axis linear guide is fixedly connected to the fixed end of the Y-axis linear guide, and the movable end of the Y-axis linear guide is fixedly connected to the cutting module.

[0009] Compared with the prior art, the advantages and positive effects of this utility model are:

[0010] Through the coordinated action of the upper support plate, lower support plate, straight groove rod, slider and guide shaft in the guide support assembly, the material being cut can be stably guided and supported, effectively preventing the material from shifting during the cutting process;

[0011] The sleeve, second set screw, and round shaft in the position adjustment module enable the guide support assembly to be easily adjusted in position to adapt to the cutting needs of materials of different sizes and shapes. The operator only needs to loosen the nut and rotate the second set screw to make fine adjustments to the position of the straight groove rod.

[0012] The connecting rod cross structure and the setting of limit bolts and nuts in the guide support assembly enhance the structural stability of the entire guide support assembly. It can maintain the integrity of the structure even when subjected to large cutting forces, ensuring the continuous effectiveness of the guiding function. The setting of the telescopic rod further enhances the connection stability between the straight groove rods, and the length of the telescopic rod can be precisely adjusted through the first set screw, thereby adapting to different working scenarios.

[0013] The X-axis and Y-axis linear guides on the main body of the cutting machine enable the cutting module to move precisely in two dimensions, greatly improving the cutting machine's adaptability to cutting materials of different shapes and sizes. Attached Figure Description

[0014] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. Obviously, the drawings described below are merely some embodiments of this utility model, and those skilled in the art can obtain other drawings based on these drawings without creative effort. In the drawings:

[0015] Figure 1 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 1 ;

[0016] Figure 2 For the present utility model Figure 1 A magnified view of a section at point A in the middle;

[0017] Figure 3 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 2 ;

[0018] Figure 4 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 3 .

[0019] In the diagram: 1. Cutting machine; 2. Support platform; 4. Guide support assembly; 400. Connecting rod; 401. Upper support plate; 402. Lower support plate; 403. Straight groove rod; 404. Nut; 405. Limit bolt; 406. Slide groove; 407. Guide shaft; 408. Slider; 409. Telescopic rod; 4091. First set screw; 5. Cutting module; 6. Position adjustment module; 601. Sleeve; 602. Second set screw; 603. Round shaft; 7. X-axis linear track; 8. Y-axis linear track. Detailed Implementation

[0020] The following is in conjunction with the appendix Figure 1-4 The present invention will be further described in terms of the embodiments and implementation methods.

[0021] A cutting machine 1 with a guiding function is characterized in that it includes a cutting machine 1 body, which is fixed on a support platform 2. The cutting machine 1 body is connected to a guide support assembly 4 via a position adjustment module 6. The guide support assembly 4 includes an upper support plate 401, a lower support plate 402, straight groove rods 403, nuts 404, limiting bolts 405, sliding grooves 406, a guide shaft 407, a slider 408, and a telescopic rod 409. The central axis of the upper support plate 401 is fixedly connected to the center of the lower support plate 402. There are two straight groove rods 403 arranged symmetrically. The two ends of each straight groove rod 403 are respectively provided with sliding grooves 406, and each sliding groove 408 is slidably fitted with a slider 409. 8. Each slider 408 is passed through by the guide shaft 407. The two ends of each guide shaft 407 are fixedly connected to the two ends of the straight groove rod 403. Each slider 408 can pass through the guide shaft 407. The lower side of a pair of sliders 408 is rotatably connected to one end of a connecting rod 400. The middle of the two connecting rods 400 intersects. The other end of each connecting rod 400 is rotatably connected to the corresponding slider 408. The middle intersection of the two connecting rods 400 is passed through by the limiting bolt 405. The limiting bolt 405 is threadedly connected to the nut 404. The upper center of the straight groove rod 403 and the upper side of the slider 408 are fixedly connected to the lower support plate 402.

[0022] One end of one straight groove rod 403 is fixedly connected to the fixed end of a telescopic rod 409 at both ends. The movable end of the telescopic rod 409 is fixedly connected to both ends of another straight groove rod 403. The fixed end of the telescopic rod 409 is threadedly connected to a first set screw 4091, which can hold the movable end of the telescopic rod 409.

[0023] When material guidance and support are required, the material to be cut is placed in the area between the upper side of the lower support plate 402 and the lower side of the upper support plate 401. The lower support plate 402 supports the material, and the upper support plate 401 and the lower support plate 402 are fixedly connected by a central shaft, providing a stable support foundation. The sliders 408 in the grooves 406 at both ends of the straight groove rod 403 can slide along the guide shaft 407. When the material generates force during the cutting process, the sliders 408 can move flexibly on the guide shaft 407 to adapt to changes in the material's position. At the same time, a pair of sliders 408 are constrained by a rotatably connected connecting rod 400 and a limiting bolt 405 and nut 404 at the intersection, so that the relative position between the sliders 408 can remain stable, thereby ensuring the guiding accuracy of the material. Furthermore, the straight groove rods 403 are connected by telescopic rods 409. The fixed end of the telescopic rod 409 is threaded to a first set screw 4091. By loosening the nut 404, the first set screw 4091 is adjusted to press against the movable end of the telescopic rod 409, thereby adjusting the length of the telescopic rod 409 and thus changing the spacing between the straight groove rods 403 to accommodate materials of different widths.

[0024] The position adjustment module 6 includes a sleeve 601, a second set screw 602, and a round shaft 603. There are two pairs of sleeves 601, which are respectively fixed inside the outer shell of the cutting machine 1. The round shafts 603 are slidably connected inside the sleeves 601. Each pair of round shafts 603 is fixedly connected to one side of the corresponding straight groove rod 403. Each sleeve 601 is threadedly connected to the second set screw 602. Each second set screw 602 can abut against the corresponding round shaft 603.

[0025] The sleeve 601 in the position adjustment module 6 is fixed inside the outer shell of the cutting machine 1. The round shaft 603 can slide inside the sleeve 601. When it is necessary to adjust the position of the guide support assembly 4, the operator rotates the second set screw 602 to press against or release the round shaft 603. When the second set screw 602 releases the round shaft 603, the round shaft 603 can slide freely inside the sleeve 601, thereby driving the straight groove rod 403 to adjust its position. After adjusting to the appropriate position, the second set screw 602 is tightened to fix the round shaft 603 inside the sleeve 601, thereby locking the position of the guide support assembly 4.

[0026] The cutting machine 1 is equipped with an X-axis linear guide and a Y-axis linear guide. The fixed end of the X-axis linear guide is fixedly connected to the cutting machine 1, the movable end of the X-axis linear guide is fixedly connected to the fixed end of the Y-axis linear guide, and the movable end of the Y-axis linear guide is fixedly connected to the cutting module 5.

[0027] In this embodiment, the fixed end of the X-axis linear guide rail on the cutting machine 1 body is fixedly connected to the cutting machine 1 body, and its movable end is connected to the fixed end of the Y-axis linear guide rail. The movable end of the Y-axis linear guide rail is connected to the cutting module 5. By controlling the movement of the X-axis linear guide rail and the Y-axis linear guide rail, the cutting module 5 can move precisely in both the X-axis and Y-axis directions, thereby accurately cutting the material placed on the guide support assembly 4.

[0028] The method of using this utility model is as follows: According to the width of the material to be cut, adjust the length of the telescopic rod 409 in the guide support assembly 4, and adjust the position of the movable end of the telescopic rod 409 by loosening the nut 404 and loosening the first set screw 4091 so that the spacing between the straight groove rods 403 matches the width of the material. After the adjustment is completed, tighten the first set screw 4091 and the nut 404.

[0029] Depending on the shape and size of the material to be cut, the position of the guide support assembly 4 needs to be adjusted. Loosen the second set screw 602 in the position adjustment module 6, and push the straight groove rod 403 to make the round shaft 603 slide within the sleeve 601, adjusting the guide support assembly 4 to the appropriate position. After the position adjustment is completed, tighten the second set screw 602 to fix the guide support assembly 4 in the current position.

[0030] The material to be cut is placed on the lower support plate 402, ensuring that the edge of the material is aligned with the guide structure of the guide support assembly 4 to ensure the stability of the material during the cutting process. The material to be cut is supported between the upper support plate 401 and the lower support plate 402, with one end connected to the feeding mechanism and the other end connected to the pulling mechanism. The pulling mechanism pulls the material to be cut through the cutting module 5, and the cutting machine 1 is started. By controlling the movement of the X-axis linear guide and the Y-axis linear guide, the cutting module 5 cuts the material according to the preset cutting path.

[0031] The above-disclosed embodiments are merely specific examples of this utility model. However, this utility model is not limited thereto, and any variations that can be conceived by those skilled in the art should fall within the protection scope of this utility model.

Claims

1. A cutting machine (1) with a guiding function, characterized in that, The utility model provides cutting machine (1) body, cutting machine (1) body is fixed on support table (2), cutting machine (1) body is connected guiding support assembly (4) through position adjusting module (6), guiding support assembly (4) includes upper support plate (401), lower support plate (402), straight slot rod (403), nut (404), limiting bolt (405), sliding slot (406), guide shaft (407), sliding block (408) and telescopic link (409), the center axis of upper support plate (401) fixedly connected the center of lower support plate (402), the straight slot rod (403) is two and symmetrically arranged, the both ends of straight slot rod (403) are provided with sliding slot (406) respectively, each sliding slot (406) is slidably connected with sliding block (408) respectively, each sliding block (408) is penetrated by guide shaft (407) respectively, the both ends of each guide shaft (407) are fixedly connected with the both ends of straight slot rod (403) respectively, each sliding block (408) can be penetrated along guide shaft (407), the lower side of a pair of sliding blocks (408) is rotatably connected with one end of connecting rod (400) respectively, the middle part of two connecting rods (400) is crossed, the other end of each connecting rod (400) is rotatably connected with corresponding sliding block (408) respectively, the middle part of two connecting rods (400) is penetrated by limiting bolt (405), limiting bolt (405) is threadedly connected with nut (404), the upper side of the center of straight slot rod (403) and the upper side of sliding block (408) are fixedly connected with lower support plate (402) respectively.

2. The cutting machine (1) with guiding function according to claim 1, characterized in that, The both ends of one straight slot rod (403) are fixedly connected with the fixed end of telescopic link (409) respectively, the movable end of telescopic link (409) is fixedly connected with the both ends of another straight slot rod (403) respectively, the fixed end of telescopic link (409) is threadedly connected with first jackscrew (4091), and first jackscrew (4091) can abut against the movable end of telescopic link (409).

3. The cutting machine (1) with guiding function according to claim 2, characterized in that, Position adjusting module (6) includes sleeve (601), second jackscrew (602) and round shaft (603), the inner side of the shell of cutting machine (1) body is fixed with two pairs of sleeve (601) respectively, the round shaft (603) is slidably connected in sleeve (601), one side of each straight slot rod (403) is fixedly connected with corresponding round shaft (603) of each pair, each sleeve (601) is threadedly connected with second jackscrew (602), and each second jackscrew (602) can abut against corresponding round shaft (603).

4. The cutting machine (1) with guiding function according to claim 3, characterized in that, X axis linear guide rail and Y axis linear guide rail are arranged on cutting machine (1) body, the fixed end of X axis linear guide rail is fixedly connected with cutting machine (1) body, the movable end of X axis linear guide rail is fixedly connected with the fixed end of Y axis linear guide rail, and the movable end of Y axis linear guide rail is fixedly connected with cutting module (5).