Slicing machine for high-precision cutting

By using a cutting synchronous feeding device in the slicer, the synchronization wheel and belt system are used to ensure the speed matching of cutting and feeding, the problem of difficult to accurately control the slice thickness in the prior art is solved, and a more efficient cutting process is achieved.

CN222874656UActive Publication Date: 2025-05-16XIAMEN CUNYUAN ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202421776417.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-25
Publication Date
2025-05-16
Estimated Expiration
2034-07-25

AI Technical Summary

Technical Problem

When the cutting and feeding drive are separated from the existing slicer, the slice thickness is difficult to accurately control, resulting in unsatisfactory slice effect, easy to produce waste and bad products, and reduce cutting efficiency.

Method used

The cutting synchronous feeding device is adopted, through the synchronization wheel and belt system, the same driving device is used to ensure that the cutting and feeding speeds are fully matched, achieving precise control of the slice thickness.

Benefits of technology

Through synchronous driving, the scrap rate is reduced, the generation of defective products is reduced, the problem of unsatisfactory slice effect is avoided, and the cutting efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

A slicing machine for high-precision cutting is characterized in that a cavity is formed in a cavity box, a through groove is formed in the end face of the upper portion of the cavity box, a vertical plate is fixedly connected to the rear side of the end face of the upper portion of the cavity box, an extension plate is fixedly connected to the end face of one side of the vertical plate, and a cutting synchronous feeding device is connected to the vertical plate; the cutting device is connected to the cutting synchronous feeding device, a buffer block is arranged on the upper end face of the cavity box, a guide plate is arranged on the upper end face of the cavity box, a guide rail is arranged on the front end face of the vertical plate, a motor box is arranged on the rear end face of the synchronous wheel, a motor is arranged in the motor box, and a supporting column is arranged at the end, close to the synchronous wheel, of the motor box. The cutting synchronous feeding device has the advantages that the cutting synchronous feeding device uses the same driving device to synchronize by adopting the synchronizing wheel, so that the cutting speed and the feeding speed can be ensured to be completely matched, the rejection rate is reduced, defective products are reduced, and the problem that the slicing effect is not ideal due to the fact that the speed is not matched is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of high-precision cutting, in particular to a slicer used for high-precision cutting. Background Art

[0002] The working principle of the slicer is to feed the items to be cut into the blade or cutting mechanism through a continuously rotating blade or cutting mechanism, and the blade quickly cuts it into thin slices or strips. The slicer usually has the function of adjusting the slice thickness, and different slice thicknesses can be selected as needed to meet the user's requirements for slice quality. The working principle of the slicer is to feed the items to be cut into the blade or cutting mechanism through a continuously rotating blade or cutting mechanism, and the blade quickly cuts it into thin slices or strips. The slicer usually has the function of adjusting the slice thickness, and different slice thicknesses can be selected as needed to meet the user's requirements for slice quality. The slicer is a kind of machine that can improve processing efficiency, ensure slice quality, and is widely used to bring convenience and benefits to users.

[0003] However, the slicer in the prior art still has the following disadvantages:

[0004] 1. Most of the slicers in the prior art are driven separately for cutting and feeding, which may cause the speed of slicing and feeding to be inconsistent, making it impossible to accurately control the thickness of the slices, resulting in unsatisfactory slicing effects, easily resulting in waste and defective products, thereby reducing the cutting efficiency of the slicer. Utility Model Content

[0005] The technical problem to be solved by the utility model is to overcome the above technical defects and provide a slicer for high-precision cutting.

[0006] In order to achieve the above objectives, the present invention is implemented through the following technical solutions:

[0007] A slicer for high-precision cutting, comprising:

[0008] A cavity box, wherein a cavity is provided in the cavity box, and a through groove is provided on the upper end surface of the cavity box;

[0009] A vertical plate, the vertical plate is fixedly connected to the rear side of the upper end surface of the cavity box;

[0010] An extension plate, the extension plate is fixedly connected to an end surface of one side of the vertical plate;

[0011] A cutting synchronous feeding device, wherein the cutting synchronous feeding device is connected to the vertical plate;

[0012] A cutting device is connected to the cutting synchronous feeding device.

[0013] Furthermore, a buffer block is provided on the upper end surface of the cavity box, and the buffer block is slidably connected to the cavity box up and down. A guide plate is provided on the upper end surface of the cavity box, and the guide plate is fixedly connected to the cavity box. A guide rail is provided on the front end surface of the vertical plate, and the guide rail is fixedly connected to the vertical plate.

[0014] Furthermore, the cutting synchronous feeding device comprises:

[0015] A synchronous wheel, wherein a belt is provided on the synchronous wheel, and the belt is rotatably connected to the synchronous wheel;

[0016] A speed adjustment component connected to the other end of the belt;

[0017] A rotating shaft, the rotating shaft is connected to the speed adjustment assembly, and the rotating shaft penetrates the extension plate;

[0018] A transmission wheel 1, wherein the transmission wheel 1 is fixedly connected to the rotating shaft;

[0019] A second transmission wheel, the second transmission wheel is rotatably connected to the inside of the cavity box, and the upper end of the second transmission wheel passes through the upper cavity of the cavity box and is higher than the upper end surface of the cavity box;

[0020] A long rotating shaft, the long rotating shaft penetrates the vertical plate, and one end of the long rotating shaft is fixedly connected to the synchronous wheel;

[0021] A rotating block, wherein one end of the long rotating shaft away from the synchronous wheel is fixedly connected to the rotating block;

[0022] A first limiting bolt, wherein the first limiting bolt is fixedly connected to the outer end surface of the rotating block;

[0023] A connecting arm, the connecting arm is rotatably connected to a limiting bolt;

[0024] A sliding plate, wherein a second limit bolt is disposed on the front end surface of the sliding plate, wherein the second limit bolt is fixedly connected to the sliding plate, and the connecting arm is rotatably connected to the second limit bolt at one end away from the first limit bolt;

[0025] A slider is fixedly connected to the sliding plate and slidably connected to the guide rail.

[0026] Further, the cutting device comprises:

[0027] A fixed block, the fixed block is fixedly connected to the sliding plate;

[0028] A fixing plate, the fixing plate being fixedly connected to the fixing block;

[0029] A groove, the groove being opened on the lower end surface of the fixing block;

[0030] A slide groove, which is opened on both side end surfaces of the groove;

[0031] A movable plate, the movable plate being slidably connected to the slide groove;

[0032] A cutter, the cutter being placed between the fixed plate and the movable plate;

[0033] The bolt penetrates the movable plate and is threadably connected to the fixed plate with the tool.

[0034] Furthermore, a motor box is provided on the rear end face of the synchronous wheel, a motor is provided in the motor box, the motor is fixedly connected to the synchronous wheel and the motor box, a pillar is provided at one end of the motor box close to the synchronous wheel, one end of the pillar is fixedly connected to the motor box and the other end is fixedly connected to the vertical plate.

[0035] Furthermore, the speed adjustment component is composed of a plurality of synchronous wheels, and the number of the synchronous wheels of the speed adjustment component is consistent.

[0036] The advantages of the utility model compared with the existing technology are:

[0037] 1. The utility model adopts a cutting synchronous feeding device which uses the same driving device and a synchronous wheel for synchronization, which can ensure that the cutting and feeding speeds are completely matched, reduce the scrap rate, reduce the production of defective products, and avoid the problem of unsatisfactory slicing effect caused by speed mismatch. BRIEF DESCRIPTION OF THE DRAWINGS

[0038] Figure 1 It is a three-dimensional high-precision cutting slicer of the utility model. Figure 1 .

[0039] Figure 2 It is a three-dimensional high-precision cutting slicer of the utility model. Figure 2 .

[0040] Figure 3 It is a stereoscopic diagram of a cutting synchronous feeding device of a high-precision cutting slicer of the utility model.

[0041] Figure 4 It is a three-dimensional diagram of the cutting device of the high-precision cutting slicer of the utility model.

[0042] As shown in the figure: 1. Cavity box; 2. Buffer block; 3. Guide plate; 4. Vertical plate; 5. Guide rail; 6. Extension plate; 7. Cutting synchronous feeding device; 701. Synchronous wheel; 702. Belt; 703. Speed ​​adjustment assembly; 704. Rotating shaft; 705. Transmission wheel one; 706. Transmission wheel two; 707. Long rotating shaft; 708. Rotating block; 709. Limit bolt one; 7010. Connecting arm; 7011. Sliding plate; 7012. Limit bolt two; 7013. Sliding block; 8. Motor box; 9. Pillar; 10. Cutting device; 1001. Fixed block; 1002. Fixed plate; 1003. Groove; 1004. Slide; 1005. Moving plate; 1006. Cutting tool; 1007. Bolt. DETAILED DESCRIPTION

[0043] The specific implementation of the utility model is further described below in conjunction with the accompanying drawings, wherein the same parts are represented by the same reference numerals.

[0044] It should be noted that the words "front", "rear", "left", "right", "up" and "down" used in the following description refer to directions in the drawings, and the words "inside" and "outside" refer to directions toward or away from the geometric center of a specific component, respectively.

[0045] In order to make the contents of the present invention more clearly understood, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention.

[0046] like Figures 1 to 4 As shown in the figure, the technical solution of the utility model is: a slicer for high-precision cutting, including a cavity connected in a cavity box 1, a through groove connected to the upper end face of the cavity box 1, the cavity box 1 is used for subject support, a vertical plate 4 is fixedly connected to the rear side of the upper end face of the cavity box 1, the vertical plate 4 is used to support the main device, an extension plate 6 is fixedly connected to one side end face of the vertical plate 4, a cutting synchronous feeding device 7 is connected to the vertical plate 4, and a cutting device 10 is connected to the cutting synchronous feeding device 7.

[0047] like Figures 1 to 4 As shown in the figure, the upper end face of the cavity box 1 is connected to the buffer block 2, and the buffer block 2 slides up and down to connect the cavity box 1. The buffer block 2 is used to buffer the cutting force. The upper end face of the cavity box 1 is connected to the guide plate 3, and the guide plate 3 is fixedly connected to the cavity box 1. The guide plate 3 is used to facilitate material transportation. The front end face of the vertical plate 4 is connected to the guide rail 5, and the guide rail 5 is fixedly connected to the vertical plate 4.

[0048] like Figures 1 to 4As shown in the figure, the guide plate 3 cutting synchronous feeding device 7 includes, a synchronous wheel 701 is connected to a belt 702, the belt 702 is rotatably connected to the synchronous wheel 701, a speed adjustment component 703 is connected to the other end of the belt 702, and the cutting rhythm is adjusted by the cooperation of the synchronous wheel 701, the belt 702 and different speed adjustment components 703, the rotating shaft 704 is connected to the speed adjustment component 703, the rotating shaft 704 penetrates the extension plate 6, the transmission wheel 1 705 is fixedly connected to the rotating shaft 704, the extension plate 6 is used to fix the transmission wheel 1 705, the transmission wheel 2 706 is rotatably connected to the inside of the cavity box 1, the upper end of the transmission wheel 2 706 passes through the cavity above the cavity box 1 and is higher than the upper end surface of the cavity box 1, the long rotating shaft 707 penetrates the vertical plate 4, and the long rotating shaft 707- The end is fixedly connected to the synchronous wheel 701, and the end of the long rotating shaft 707 away from the synchronous wheel 701 is fixedly connected to the rotating block 708, the limit bolt 1 709 is fixedly connected to the outer end face of the rotating block 708, the connecting arm 7010 is rotatably connected to the limit bolt 1 709, and when the rotating block 708 rotates, it cooperates with the connecting arm 7010 to drive the sliding plate 7011 to slide up and down, the front end face of the sliding plate 7011 is connected to the limit bolt 2 7012, the limit bolt 2 7012 is fixedly connected to the sliding plate 7011, and the end of the connecting arm 7010 away from the limit bolt 1 709 is rotatably connected to the limit bolt 2 7012, the slider 7013 is fixedly connected to the sliding plate 7011, the slider 7013 is slidably connected to the guide rail 5, and the sliding plate 7011 drives the cutting device 10 to cut.

[0049] like Figures 1 to 4 As shown in the figure, the cutting device 10 includes a fixed block 1001 fixedly connected to the sliding plate 7011, a fixed plate 1002 fixedly connected to the fixed block 1001, a groove 1003 is opened on the lower end surface of the fixed block 1001, and a slide groove 1004 is opened on the end surfaces on both sides of the groove 1003. The movable plate 1005 is slidably connected to the slide groove 1004. The movable plate 1005 and the fixed plate 1002 clamp the tool 1006 and fix it with a bolt 1007. The tool 1006 is placed between the fixed plate 1002 and the movable plate 1005. The bolt 1007 penetrates the movable plate 1005 and the tool 1006 is threadedly connected to the fixed plate 1002, and the tool 1006 is used for cutting.

[0050] like Figures 1 to 4 As shown in the figure, the rear end face of the synchronous wheel 701 is connected to the motor box 8, the motor is connected in the motor box 8, the motor is fixedly connected to the synchronous wheel 701 and the motor box 8, the motor box 8 is connected to the pillar 9 at one end close to the synchronous wheel 701, and one end of the pillar 9 is fixedly connected to the motor box 8 and the other end is fixedly connected to the vertical plate 4.

[0051] like Figures 1 to 4 As shown in the figure, the speed adjustment component 703 is composed of a plurality of synchronous wheels, and the number of the synchronous wheels of the speed adjustment component 703 is consistent with that of the synchronous wheels 701.

[0052] In specific use, the device is placed in a suitable position, and the motor is started to drive the synchronous wheel 701 to rotate. When the synchronous wheel 701 rotates, it cooperates with the connecting arm 7010 to drive the sliding plate 7011 to slide up and down, and the tool 1006 is moved up and down. After adjustment, the material is inserted between the transmission wheel 1 705 and the transmission wheel 2 706 through the guide plate 3, so that the tool can slice. When the slicing rate needs to be adjusted, the belt 702 on the speed adjustment component 703 can be connected to the synchronous wheels of different sizes.

[0053] The electrical components appearing in this article are all connected to an external main controller and 220V AC power, and the main controller can be a conventional known device that controls a computer, etc. The specific implementation method of the present disclosure omits the detailed description of known functions and known components. To ensure the compatibility of the equipment, the operating methods used are consistent with the parameters of marketed equipment.

[0054] The above describes the utility model and its implementation methods, which are not restrictive. The drawings show only one implementation method of the utility model, and the actual structure is not limited thereto. In short, if ordinary technicians in this field are inspired by it and design structural methods and embodiments similar to the technical solution without creativity without departing from the purpose of the invention of the utility model, they should all fall within the protection scope of the utility model.

Claims

1. A slicer for high-precision cutting, characterized in that: include: A cavity box (1), wherein a cavity is provided in the cavity box (1), and a through groove is provided on an upper end surface of the cavity box (1); A vertical plate (4), the vertical plate (4) being fixedly connected to the rear side of the upper end surface of the cavity box (1); An extension plate (6), wherein the extension plate (6) is fixedly connected to an end surface of one side of the vertical plate (4); A cutting synchronous feeding device (7), wherein the cutting synchronous feeding device (7) is connected to the vertical plate (4); A cutting device (10), wherein the cutting device (10) is connected to a cutting synchronous feeding device (7).

2. A slicer for high-precision cutting according to claim 1, characterized in that: A buffer block (2) is provided on the upper end surface of the cavity box (1), and the buffer block (2) is slidably connected to the cavity box (1) up and down; a guide plate (3) is provided on the upper end surface of the cavity box (1), and the guide plate (3) is fixedly connected to the cavity box (1); a guide rail (5) is provided on the front end surface of the vertical plate (4), and the guide rail (5) is fixedly connected to the vertical plate (4).

3. A slicer for high-precision cutting according to claim 1, characterized in that: The cutting synchronous feeding device (7) comprises: A synchronous wheel (701), wherein a belt (702) is provided on the synchronous wheel (701), and the belt (702) is rotatably connected to the synchronous wheel (701); A speed adjustment component (703), wherein the speed adjustment component (703) is connected to the other end of the belt (702); A rotating shaft (704), the rotating shaft (704) is connected to the speed adjustment assembly (703), and the rotating shaft (704) penetrates the extension plate (6); A transmission wheel (705), wherein the transmission wheel (705) is fixedly connected to the rotating shaft (704); A second transmission wheel (706), the second transmission wheel (706) is rotatably connected to the interior of the cavity box (1), and the upper end of the second transmission wheel (706) passes through the upper cavity of the cavity box (1) and is higher than the upper end surface of the cavity box (1); A long rotating shaft (707), wherein the long rotating shaft (707) penetrates the vertical plate (4), and one end of the long rotating shaft (707) is fixedly connected to the synchronous wheel (701); A rotating block (708), wherein one end of the long rotating shaft (707) away from the synchronous wheel (701) is fixedly connected to the rotating block (708); A limiting bolt (709), wherein the limiting bolt (709) is fixedly connected to the outer end surface of the rotating block (708); A connecting arm (7010), wherein the connecting arm (7010) is rotatably connected to a limiting bolt (709); A sliding plate (7011), wherein a second limiting bolt (7012) is provided on the front end surface of the sliding plate (7011), wherein the second limiting bolt (7012) is fixedly connected to the sliding plate (7011), and the connecting arm (7010) is rotatably connected to the second limiting bolt (7012) at one end away from the first limiting bolt (709); A slider (7013), wherein the slider (7013) is fixedly connected to the sliding plate (7011), and the slider (7013) is slidably connected to the guide rail (5).

4. A slicer for high-precision cutting according to claim 3, characterized in that: The cutting device (10) comprises: A fixed block (1001), wherein the fixed block (1001) is fixedly connected to the sliding plate (7011); A fixing plate (1002), wherein the fixing plate (1002) is fixedly connected to the fixing block (1001); A groove (1003), wherein the groove (1003) is opened on the lower end surface of the fixed block (1001); A slide groove (1004), wherein the slide groove (1004) is opened on both side end surfaces of the groove (1003); A movable plate (1005), wherein the movable plate (1005) is slidably connected to the slide groove (1004); A cutter (1006), wherein the cutter (1006) is placed between the fixed plate (1002) and the movable plate (1005); Bolts (1007), wherein the bolts (1007) penetrate the movable plate (1005) and are threadedly connected to the fixed plate (1002) with the cutter (1006).

5. A slicer for high-precision cutting according to claim 3, characterized in that: A motor box (8) is provided at the rear end surface of the synchronous wheel (701), and a motor is provided in the motor box (8). The motor is fixedly connected to the synchronous wheel (701) and the motor box (8). A support (9) is provided at one end of the motor box (8) close to the synchronous wheel (701), and one end of the support (9) is fixedly connected to the motor box (8) and the other end is fixedly connected to the vertical plate (4).

6. A slicer for high-precision cutting according to claim 3, characterized in that: The speed adjustment component (703) is composed of a plurality of synchronous wheels, and the number of the synchronous wheels of the speed adjustment component (703) is consistent with that of the synchronous wheels (701).