Waist sheet slitting and clamping device

By combining transmission and pressing, limiting and guiding, slitting and clamping, and active driving and cutting and pressing devices, the problems of insufficient operational safety and adaptability of the waist slice slitting device are solved, realizing automated clamping and multiple cutting methods, and improving cutting efficiency and safety.

CN119159616BActive Publication Date: 2025-11-18ANHUI YUEDAO FOOD CO LTD
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Patent Information

Application Number
CN202411516553.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-11-18
Estimated Expiration
2044-10-29

AI Technical Summary

Technical Problem

Existing waist-slice cutting and clamping devices suffer from the risks of operator cutting errors, insufficient adaptability, and inconvenience of use, and cannot achieve multiple cutting methods and automated clamping.

Method used

By employing the coordinated use of a transmission and pressing device, a limiting and guiding device, a slitting and clamping device, a moving drive device, and a cutting and pressing device, the automatic clamping of the waist flower and the selection of multiple cutting methods can be achieved.

Benefits of technology

It achieves stable clamping of the kidney-shaped flower during cutting, avoiding the safety hazards of manual cutting by operators, and supports multiple cutting methods and spacing control, improving cutting efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The waist piece slitting and clamping device disclosed by the application belongs to the technical field of waist piece slitting and clamping and specifically comprises a transmission and pressing device, which is placed on a desktop and can place waist pieces through the transmission and pressing device. Meanwhile, through the transmission and lifting operation of the transmission and pressing device, the waist pieces placed on the surface can be driven to perform transmission and lifting movements, and through the cooperation of the transmission and pressing device and the slitting and clamping device, the lifted waist pieces can be clamped and limited. The waist pieces placed and transmitted can be clamped, the waist pieces are prevented from deviating and sliding during cutting, the cutting mode can be autonomously selected during cutting, the slitting interval can be autonomously determined, various cutting modes such as oblique cutting or vertical cutting are realized, the width of slitting is controlled, and during cutting, an operator does not need to perform hand cutting, thereby solving the problem of cutting safety hazards.
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Description

Technical Field

[0001] This invention relates to the field of waist slice cutting and clamping technology, specifically to a waist slice cutting and clamping device. Background Technology

[0002] The reason why waist slices need to be clamped during slitting is to ensure the accuracy and safety of the operation. During the slitting process, clamping can help fix the waist slices and prevent them from moving or sliding, thereby ensuring the precision and consistency of the cut. At the same time, clamping can also reduce the operator's hand contact during the slitting process and reduce the risk of cutting errors caused by unstable hands or uneven force.

[0003] Existing waist-piece cutting and clamping methods have the following drawbacks:

[0004] 1. Even with the waist slices clamped, operators still need to manually cut them, so the risk of operator error cannot be avoided.

[0005] 2. Although the clamping device can prevent the waist piece from moving or sliding, it cannot be used to make different cutting methods after clamping, such as beveling or slicing, which is not adaptable enough.

[0006] 3. The existing clamping device is cumbersome to use, which not only reduces the cutting efficiency, but also makes it more inconvenient to cut the waist piece due to the obstruction of the clamping device.

[0007] Therefore, we propose a waist-slice cutting and clamping device. Summary of the Invention

[0008] In view of the problems existing in the above and / or existing waist-piece slitting and clamping devices, the present invention is proposed.

[0009] Therefore, the purpose of this invention is to provide a waist-shaped flower cutting and clamping device, which, through the cooperation of a transmission and pressing device, a limiting and guiding device, a cutting and clamping device, a movable driving device, and a cutting and pressing device, can clamp the waist-shaped flower that is being transmitted and placed. At the same time, it can autonomously select the cutting method and cutting spacing during cutting, thereby solving the aforementioned existing problems.

[0010] To address the aforementioned technical problems, according to one aspect of the present invention, the present invention provides the following technical solution:

[0011] A waist-slice slitting clamping device, comprising:

[0012] The transmission and pressing device is placed on the table and can place the waist piece. At the same time, the transmission and lifting operation of the transmission and pressing device can drive the waist flower placed on the surface to perform transmission and lifting movements. In cooperation with the cutting and clamping device, the waist flower after lifting can be clamped and limited.

[0013] Limiting and guiding devices are installed at both ends of the top of the transmission and pressing device. The limiting and guiding devices can limit and guide the movement of the cutting and clamping device. At the same time, the limiting and guiding devices can slide and guide the tilt of the cutting and clamping device.

[0014] The sliding and clamping device is slidably connected to the upper and lower ends of the limiting and guiding device, and the sliding and clamping device can guide and limit the cutting of the cutting and pressing device.

[0015] The movable drive device is installed at both ends of the slitting and clamping device. Driven by the movable drive device, the slitting and clamping device can be driven to control the spacing, thereby adjusting the slitting spacing.

[0016] The cutting and pressing device is slidably connected to both ends of the slitting and clamping device, and is positioned at the upper end of the slitting and clamping device. By tilting and pressing the cutting and pressing device, the slitting and clamping device can be tilted. At the same time, by sliding and pressing the cutting and pressing device, the cutting and pressing device can cut the clamped waist flower.

[0017] As a preferred embodiment of the waist-piece slitting and clamping device of the present invention, the transmission and pressing device includes:

[0018] The top pressure assembly is placed on the table and is set into two sets. The top pressure assembly can be installed on the factory's transmission mechanism to support the waist flower.

[0019] The transmission component is installed between two sets of top pressing components, and its two ends are connected to the driving ends of the top pressing components. The transmission component can be raised and lowered by the driving of the top pressing components. At the same time, the surface of the transmission component can place the waist flower and transmit and receive the waist flower.

[0020] As a preferred embodiment of the waist-piece slitting and clamping device of the present invention, the top-pressing assembly includes:

[0021] The base plate is placed on the tabletop, and the base plate is set up in two sets;

[0022] The lifting trough is located at both ends and the middle of the inner wall of the base plate;

[0023] The lifting screw is rotatably connected inside the lifting groove and connects the two ends of the transmission component. The rotation of the lifting screw can drive the transmission component to lift. At the same time, there are three sets of lifting screws, and the three sets of lifting screws are connected to each other through sprockets and chains for transmission.

[0024] The lifting drive motor is installed on the outer wall of the base plate, and the output end of the lifting drive motor is connected to a set of lifting screws through a steering gear. The rotation of the lifting drive motor and the steering gear can drive the three sets of lifting screws to rotate.

[0025] The transmission component includes:

[0026] The top pressure plate has lifting threaded blocks at both ends of its outer wall, and the inner wall of the lifting threaded blocks is threadedly connected to the outer wall of the lifting screw. At the same time, the lifting threaded blocks are slidably connected inside the lifting groove, and can drive the top pressure plate to lift and lower through the drive of the lifting drive motor.

[0027] The drive belt is rolled inside the top pressure plate and can be used to place the waist flower. At the same time, the drive belt is flush with the factory's transmission mechanism, which transports the waist flower to the surface of the drive belt and then moves the waist flower to the center of the drive belt.

[0028] The drive motor is installed on one side of the front end of the top pressure plate and is connected to the drive roller of the drive belt through the drive motor. The drive motor drives the drive belt to perform transmission.

[0029] As a preferred embodiment of the waist-piece slitting and clamping device of the present invention, the limiting and guiding device includes:

[0030] The first limiting component is mounted on the top of the base plate;

[0031] The first limiting component includes:

[0032] The first limiting plate is installed on the top of the base plate;

[0033] The limiting groove is located in the middle of the inner wall of the first limiting component. The limiting groove can slide and limit the cutting and clamping device, and at the same time, it can install the movable drive device.

[0034] A drive groove is provided on the upper end of the inner wall of the first limiting plate and extends through the first limiting plate. The drive groove can be used to rotate and limit the movable drive device, as well as to guide it in sliding.

[0035] The guide box is located at the upper end and lower end of the inner wall of the first limiting plate, and the bottom of the guide box can slide and limit the top of the movable drive device.

[0036] The first guide groove is located on the inner wall of the guide box;

[0037] The second limiting component is installed on the inner wall of the first limiting plate, and through the cooperation between the second limiting component and the first limiting plate, it can guide and limit the movement of the cutting and clamping device.

[0038] The second limiting component includes:

[0039] The second limiting plate is installed on the inner wall of the first limiting plate;

[0040] The second guide groove is located on the inner wall of the second limiting plate, and through the cooperation of the first guide groove and the second guide groove, it can provide tilt guidance for the cutting and clamping device.

[0041] As a preferred embodiment of the waist-slice cutting and clamping device of the present invention, the cutting and clamping device includes:

[0042] The first cutting clamping assembly is slidably connected between the first guide groove and the second guide groove;

[0043] The second sliding clamping assembly is slidably connected between the first guide groove and the second guide groove, and is positioned at both ends of the first sliding clamping assembly. There are two sets of the second sliding clamping assembly, and the two sets of the second sliding clamping assembly and the first set of the first sliding clamping assembly form a unit. The two sets of the first sliding clamping assembly and the first set of the second sliding clamping assembly cooperate with each other to control the sliding spacing. At the same time, the first sliding clamping assembly and the second sliding clamping assembly cooperate with the transmission belt to clamp the waist flower.

[0044] As a preferred embodiment of the waist-piece slitting and clamping device of the present invention, the first slitting and clamping assembly includes:

[0045] The slitting plate has first guide shaft seats at its top and bottom ends, and the slitting plate is slidably connected between the first guide groove and the second guide groove through the first guide shaft seats. The first guide groove and the second guide groove cooperate with the slitting plate to limit and guide the movement of the slitting plate, and at the same time, to guide and limit the tilt of the slitting plate.

[0046] The cutting guide groove is set on both the front and rear sides of the cutting plate, and the cutting guide groove can limit and guide the cutting of the cutting and pressing device.

[0047] The convex plates are set at both ends of the side of the cutting plate;

[0048] A slide groove is provided at one end of the inner wall of the convex plate, and the slide groove can limit and guide the sliding of the movable drive device.

[0049] A limiting U-plate is positioned at the midpoint between the front and rear ends of the convex plate.

[0050] The limiting slide is located inside the limiting U-plate, and through the cooperation between the limiting U-plate and the limiting slide, the movement of the second cutting clamping component can be limited and guided.

[0051] The second cutting clamping assembly includes:

[0052] The slitting side plate has a second guide shaft seat at its top and bottom ends, and the slitting side plate is slidably connected between the first guide groove and the second guide groove through the second guide shaft seat. At the same time, the slitting side plate is set at both ends of the slitting middle plate.

[0053] The spacing adjustment rod is rotatably connected to both ends of the side of the cutting side plate, and the spacing adjustment rod is slidably connected inside the limiting slide groove;

[0054] The stop block is set on the outer wall of the spacing adjustment rod and clamps the limiting U plate. Through the cooperation between the stop block and the spacing adjustment rod, the spacing adjustment rod can be slidably connected inside the limiting U plate.

[0055] The spacing adjustment block is located at the outer port of the spacing adjustment rod, and its interior is connected to the rotary drive end of the movable drive device. Driven by the movable drive device, the spacing adjustment block can be driven to adjust the spacing between itself and the cutting side plate.

[0056] As a preferred embodiment of the waist-piece slitting and clamping device of the present invention, the movable driving device includes:

[0057] An external limiting component is slidably connected between two sets of guide boxes;

[0058] The first spacing adjustment drive assembly is rotatably connected to the middle of the external limiting assembly, and several sets of first spacing adjustment drive assemblies are interconnected. At the same time, the connecting ends of several sets of first spacing adjustment drive assemblies are slidably connected to the inside of the slide groove, and the drive groove is penetrated through the middle of the first spacing adjustment drive assembly. At the same time, the first spacing adjustment drive assembly can drive the cutting plate to adjust the spacing.

[0059] The second spacing adjustment component is rotatably connected inside the limiting groove, and the middle position of the second spacing adjustment component is connected to the first spacing adjustment drive component. The second spacing adjustment component can be driven by the first spacing adjustment drive component to rotate, thereby driving the slitting side plate to adjust the spacing.

[0060] As a preferred embodiment of the waist-piece slitting and clamping device of the present invention, the external limiting component includes:

[0061] An external limiting main board is rotatably connected between two sets of guide boxes;

[0062] External limiting sub-plates are set at both ends of the external limiting main plate and are configured in several groups, with the external limiting sub-plates slidably connected between two groups of guide boxes;

[0063] The first spacing adjustment drive component includes:

[0064] The main rotating board is rotatably connected to the interior of the external limiting main board at its middle position;

[0065] The follower rotating plate is rotatably connected to both ends of the main rotating plate, and the follower rotating plate is set into several groups. The several groups of follower rotating plates are rotatably connected to each other, forming a V shape. At the same time, the follower rotating plate is rotatably connected to the inside of the external limiting sub-plate.

[0066] The rotating gear is connected to the middle of the main rotating plate, and the rotation of the rotating gear can drive the main rotating plate to rotate.

[0067] The first steering gear is rotatably connected to the port of the main rotating plate;

[0068] The second steering gear is installed in the middle position of the second pitch adjustment assembly, and its outer wall meshes with the first steering gear. By rotating the gear, the first steering gear and the second steering gear can be driven to rotate.

[0069] The spacer gear is rotatably connected inside the external limiting main board, and the lower end of the outer wall of the spacer gear meshes with the upper end of the outer wall of the rotating gear. The rotation of the rotating gear can drive the spacer gear to rotate.

[0070] The drive gear is rotatably connected to the upper part of the external limiting main board, and the lower part of the outer wall of the drive gear meshes with the upper part of the outer wall of the spacer gear. At the same time, the straight rod of the drive gear passes through the external limiting main board until it passes through the drive groove. Through the limiting and guiding of the drive groove, the rotation of the drive gear can be limited and guided, and the tilting movement of the drive gear can also be limited and guided.

[0071] The sliding guide block is rotatably connected to the connection end between the main rotating plate and the follower rotating plate, and the sliding guide block is connected to the connection end of several sets of follower rotating plates.

[0072] In a preferred embodiment of the waist-piece slitting and clamping device of the present invention, the second spacing adjustment component includes:

[0073] The bidirectional threaded screw is set inside the limiting groove, and the middle of the outer wall of the bidirectional threaded screw is connected to the second steering gear. At the same time, the two ends of the outer wall of the bidirectional threaded screw are connected to the inside of the spacing adjustment block. The rotation of the second steering gear can drive the bidirectional threaded screw to rotate, thereby causing the spacing adjustment blocks at both ends of the bidirectional threaded screw to move away from each other and closer to each other, thus realizing the spacing adjustment of the cutting side plate.

[0074] The connecting post is connected to both ends of the bidirectional threaded screw, and the connecting post at the end is rotatably connected to the inner wall of the limiting groove. Several sets of bidirectional threaded screws can be connected to each other through the connecting post.

[0075] As a preferred embodiment of the waist-piece cutting and clamping device of the present invention, the cutting and pressing device includes:

[0076] The pressing and tilting component is located at the upper end of the cutting and clamping device. By pressing the pressing and tilting component, the cutting component can be driven to cut the waist flower. At the same time, by tilting and pressing the pressing and tilting component, the cutting component can be driven to tilt, thus achieving oblique cutting.

[0077] The pressing and tilting assembly includes:

[0078] The top plate is pressed down and is located at the upper end of the cutting and clamping device;

[0079] Built-in grooves are located at both ends of the inner wall of the pressing top plate;

[0080] The center cutting blade is rotatably connected to the inside of the built-in groove. By pressing the top plate, the center cutting blade can cut the middle of the waist flower. At the same time, by tilting the top plate, the center cutting blade can be tilted, so that the center cutting blade can make an inclined cut in the middle of the waist flower.

[0081] The cutting component is slidably connected inside the cutting guide groove of the cutting plate, and can be driven to cut the waist flower by pressing the tilting component.

[0082] The cutting assembly includes:

[0083] The movable blade has shafts at both ends at the top, and the movable blade is slidably connected to the inside of the built-in groove through the shafts. By pressing the top plate, the movable blade can be driven to cut the waist flower. By tilting the top plate, the movable blade can be driven to tilt, thereby making the movable blade cut the waist flower at an angle. At the same time, the movable blade can be installed on the side end of the cutting side plate to achieve multiple cuts.

[0084] The movable guide block is located at both ends on one side of the outer wall of the movable blade and is slidably connected inside the cutting guide groove. The movable guide block enables the movable blade to slide and cut along the cutting guide groove.

[0085] Compared with existing technologies:

[0086] Through the coordinated operation of the transmission and pressing device, the limiting and guiding device, the slitting and clamping device, the moving drive device, and the cutting and pressing device, the transported and placed pork kidneys can be clamped to prevent them from shifting or sliding during cutting. At the same time, the cutting method can be selected autonomously, and the slitting spacing can be determined autonomously, realizing multiple cutting methods such as oblique or vertical cutting, and controlling the slitting width. Moreover, no manual cutting is required during cutting, solving the problem of cutting safety hazards. It is easy to use and can meet the industrial processing needs in the factory as well as the processing needs in daily life, increasing the practicality of the product. Attached Figure Description

[0087] Figure 1 This is a schematic diagram of the overall main view structure provided by the present invention;

[0088] Figure 2 This is a schematic diagram of the overall disassembled structure provided by the present invention;

[0089] Figure 3 A schematic diagram showing the disassembled structure of the transmission and pressing device and the limiting and guiding device provided by the present invention;

[0090] Figure 4 This is a schematic diagram of the disassembled structure of the top pressure component provided by the present invention;

[0091] Figure 5 This is a schematic diagram of the transmission component structure provided by the present invention;

[0092] Figure 6 This is a schematic diagram of the disassembled structure of the limiting and guiding device provided by the present invention;

[0093] Figure 7 This is a schematic diagram of the structure of the second limiting component provided by the present invention;

[0094] Figure 8 A schematic diagram of the disassembled structure of the cutting and clamping device and the movable driving device provided by the present invention;

[0095] Figure 9 A schematic diagram of the connection structure between the cutting and clamping device and the movable driving device provided by the present invention;

[0096] Figure 10 This is a schematic diagram of the disassembled structure of the cutting and clamping device provided by the present invention;

[0097] Figure 11This is a schematic diagram of the disassembled structure of the first and second cutting clamping components provided by the present invention;

[0098] Figure 12 This is a schematic diagram of the first cutting and clamping assembly structure provided by the present invention;

[0099] Figure 13 This is a schematic diagram of the second cutting and clamping assembly structure provided by the present invention;

[0100] Figure 14 This is a schematic diagram of the structure of the active driving device provided by the present invention;

[0101] Figure 15 A schematic diagram of the structure of the first pitch adjustment drive component provided by the present invention;

[0102] Figure 16 This is a schematic diagram of the cutting and pressing device provided by the present invention;

[0103] Figure 17 This is a schematic diagram of the cutting component structure provided by the present invention;

[0104] Figure 18 This is a schematic diagram of the pressing and tilting component structure provided by the present invention.

[0105] In the picture:

[0106] Transmission and pressing device 1, pressing assembly 11, base plate 111, lifting groove 112, lifting screw 113, lifting drive motor 114, transmission assembly 12, pressing plate 121, lifting threaded block 122, transmission belt 123, transmission drive motor 124, limiting and guiding device 2, first limiting assembly 21, first limiting plate 211, limiting groove 212, drive groove 213, guide box 214, first guide groove 215, second limiting assembly 22, second limiting plate 221, second guide groove 222, cutting and clamping device 3, first cutting and clamping assembly 31, cutting middle plate 311, first guide shaft seat 312, cutting guide groove 313, protruding plate 314, sliding groove 315, limiting U plate 316, limiting sliding groove 317, second cutting and clamping assembly 32. The components include: a cutting side plate 321, a second guide shaft seat 322, a spacing adjustment rod 323, a stop block 324, a spacing adjustment block 325, a movable drive device 4, an external limiting assembly 41, an external limiting main plate 411, an external limiting secondary plate 412, a first spacing adjustment drive assembly 42, a main rotating plate 421, a rotating gear 422, a first steering gear 423, a second steering gear 424, a spacer gear 425, a drive gear 426, a sliding guide block 427, a follower rotating plate 428, a second spacing adjustment assembly 43, a bidirectional threaded screw 431, a connecting column 432, a cutting and pressing device 5, a pressing and tilting assembly 51, a pressing top plate 511, an internal groove 513, a center cutting blade 514, a cutting assembly 52, a movable blade 521, a shaft column 522, and a movable guide block 523. Detailed Implementation

[0107] To make the objectives, technical solutions, and advantages of the present invention clearer, the embodiments of the present invention will be described in further detail below with reference to the accompanying drawings.

[0108] This invention provides a waist-shaped slice cutting and clamping device; please refer to [link / reference]. Figure 1-18 It includes a transmission and pressing device 1, a limiting and guiding device 2, a cutting and clamping device 3, a moving drive device 4, and a cutting and pressing device 5;

[0109] A transmission and pressing device 1 is placed on a tabletop and can be used to place waist pieces. Simultaneously, through the transmission and lifting operation of the transmission and pressing device 1, the waist pieces placed on the surface can be driven to undergo transmission and lifting movements. In cooperation with the cutting and clamping device 3, the waist pieces after lifting can be clamped and limited. The transmission and pressing device 1 includes: a pressing assembly 11, a base plate 111, a lifting groove 112, a lifting screw 113, a lifting drive motor 114, a transmission assembly 12, a pressing plate 121, a lifting threaded block 122, a transmission belt 123, and a transmission drive motor 124. The pressing assembly 11 is placed on the tabletop, and two sets of pressing assemblies 11 are configured. The overhead pressure assembly 11 can be installed on the factory's transmission mechanism to support the waist flower. The base plate 111 is placed on a table and is configured as two sets. Lifting grooves 112 are located at both ends and the middle of the inner wall of the base plate 111. Lifting screws 113 are rotatably connected inside the lifting grooves 112 and connect to both ends of the transmission assembly 12. The rotation of the lifting screws 113 drives the transmission assembly 12 to lift. Simultaneously, three sets of lifting screws 113 are configured and interconnected via sprockets and chains for transmission. A lifting drive motor 114 is installed on the outer wall of the base plate 111, and its output end... The steering gear is connected to a set of lifting screws 113, and the rotation of the lifting drive motor 114 and the steering gear can drive the three sets of lifting screws 113 to rotate. The transmission component 12 is installed between the two sets of top pressing components 11, and the two ends of the transmission component 12 are connected to the drive ends of the top pressing components 11. The transmission component 12 can be driven to lift and lower through the drive of the top pressing components 11. At the same time, the surface of the transmission component 12 can place the waist flower and transmit and receive the waist flower. The top pressing plate 121 has lifting threaded blocks 122 at both ends of its outer wall, and the inner wall of the lifting threaded block 122 is threadedly connected to the outer wall of the lifting screw 113. At the same time, the lifting threaded block 122 is slidably connected to the lifting groove 112. Inside the top plate 121, driven by the lifting drive motor 114, the top plate 121 can be lifted and lowered. The transmission belt 123 is rolled inside the top plate 121 and can be used to place the waist flower. At the same time, the transmission belt 123 is flush with the factory's transmission mechanism, which transports the waist flower to the surface of the transmission belt 123 and moves it to the center position. The transmission drive motor 124 is installed on the front end side of the top plate 121 and is engaged with the steering gear to connect the transmission roller of the transmission belt 123. Driven by the transmission drive motor 124, the transmission belt 123 can be driven to move.

[0110] The limiting and guiding device 2 is installed at both ends of the top of the transmission and pressing device 1. It limits and guides the movement of the cutting and clamping device 3, and also guides the tilting of the cutting and clamping device 3. The limiting and guiding device 2 includes: a first limiting component 21, a first limiting plate 211, a limiting groove 212, a driving groove 213, a guide box 214, a first guiding groove 215, a second limiting component 22, a second limiting plate 221, and a second guiding groove 222. The first limiting component 21 is installed on the top of the base plate 111. The first limiting plate 211 is installed on the top of the base plate 111. The limiting groove 212 is located in the middle of the inner wall of the first limiting component 21, and it allows for sliding limitation of the cutting and clamping device 3. It also allows for the installation of the movable driving device 4. The driving groove 213 is located in the first limiting component 211. The upper end of the inner wall of plate 211 is provided with a drive groove 213 that passes through the first limiting plate 211. The drive groove 213 can rotate and limit the movable drive device 4 and guide it in a sliding manner. The guide box 214 is provided at the upper end and the lower end of the inner wall of the first limiting plate 211. The bottom of the guide box 214 can slide and limit the top of the movable drive device 4. The first guide groove 215 is provided on the inner wall of the guide box 214. The second limiting component 22 is installed on the inner wall of the first limiting plate 211. The cooperation between the second limiting component 22 and the first limiting plate 211 can guide and limit the movement of the cutting and clamping device 3. The second limiting plate 221 is installed on the inner wall of the first limiting plate 211. The second guide groove 222 is provided on the inner wall of the second limiting plate 221. The cooperation between the first guide groove 215 and the second guide groove 222 can guide the cutting and clamping device 3 in an inclined manner.

[0111] The sliding and clamping device 3 is slidably connected to the upper and lower ends of the limiting and guiding device 2. It guides and limits the cutting action of the cutting and pressing device 5. The sliding and clamping device 3 includes: a first sliding and clamping assembly 31, a sliding middle plate 311, a first guide shaft seat 312, a cutting guide groove 313, a protruding plate 314, a sliding groove 315, a limiting U-plate 316, a limiting sliding groove 317, a second sliding and clamping assembly 32, a sliding side plate 321, a second guide shaft seat 322, a spacing adjustment rod 323, a stop block 324, and a spacing adjustment block 325. The first sliding and clamping assembly 31 is slidably connected between the first guide groove 215 and the second guide groove 222. The sliding middle plate 311 has a first guide groove 215 at its top end and a second guide groove 222 at its bottom end. A guide shaft seat 312 is provided, and the cutting plate 311 is slidably connected between the first guide groove 215 and the second guide groove 222 via the first guide shaft seat 312. The first guide groove 215 and the second guide groove 222 cooperate with the cutting plate 311 to limit and guide the movement of the cutting plate 311, and simultaneously guide and limit the tilt of the cutting plate 311. A cutting guide groove 313 is provided on both the front and rear ends of the cutting plate 311, and limits and guides the cutting of the cutting and pressing device 5. A protruding plate 314 is provided on both sides of the cutting plate 311. A sliding groove 315 is provided on one end of the inner wall of the protruding plate 314, and allows the moving drive device to... The sliding of the 4th component is limited and guided by a limiting U-plate 316, which is located at the middle position between the front and rear ends of the convex plate 314. A limiting groove 317 is located inside the limiting U-plate 316. Through the cooperation of the limiting U-plate 316 and the limiting groove 317, the movement of the second sliding clamping assembly 32 is limited and guided. The second sliding clamping assembly 32 is slidably connected between the first guide groove 215 and the second guide groove 222, and is located at both ends of the first sliding clamping assembly 31, and is configured as two sets. The two sets of second sliding clamping assemblies 32 and one set of first sliding clamping assemblies 31 form a unit. Through the cooperation of the two sets of first sliding clamping assemblies 31 and one set of second sliding clamping assemblies 32, the movement of the second sliding clamping assembly 32 is limited and guided. The cutting spacing can be controlled. Simultaneously, the first cutting clamping assembly 31 and the second cutting clamping assembly 32, in cooperation with the transmission belt 123, can clamp the waist-shaped flower. The cutting side plate 321 has second guide shaft seats 322 at its top and bottom ends, allowing the cutting side plate 321 to slide between the first guide groove 215 and the second guide groove 222 via the second guide shaft seats 322. The cutting side plate 321 is also located at both ends of the cutting middle plate 311. The spacing adjustment rod 323 is rotatably connected to both sides of the cutting side plate 321 and slidably connected inside the limiting slide groove 317. The stop block 324 is located on the outer wall of the spacing adjustment rod 323 and clamps the limiting U-plate 316.Furthermore, through the cooperation of the stop block 324 and the spacing adjustment rod 323, the spacing adjustment rod 323 can be slidably connected inside the limiting U-plate 316. The spacing adjustment block 325 is located at the outer port of the spacing adjustment rod 323, and the interior of the spacing adjustment block 325 is connected to the rotation drive end of the movable drive device 4. Driven by the movable drive device 4, the spacing adjustment block 325 can be driven to adjust the spacing between itself and the cutting side plate 321.

[0112] The movable drive device 4 is installed at both ends of the slitting and clamping device 3. Driven by the movable drive device 4, the slitting and clamping device 3 can control the spacing, thereby adjusting the slitting spacing. The movable drive device 4 includes: an external limiting component 41, an external limiting main plate 411, an external limiting secondary plate 412, a first spacing adjustment drive component 42, a main rotating plate 421, a rotating gear 422, a first steering gear 423, a second steering gear 424, an interval gear 425, a drive gear 426, a sliding guide block 427, a follower rotating plate 428, a second spacing adjustment component 43, a bidirectional threaded screw 431, and a connecting column 432. The external limiting component 41 is slidably connected between the two sets of guide boxes 214. The external limiting main plate... 411, which is rotatably connected between two sets of guide boxes 214, external limiting sub-plates 412, which are set at both ends of the external limiting main plate 411 and are configured in several groups, and the external limiting sub-plates 412 are slidably connected between the two sets of guide boxes 214, the first spacing adjustment drive assembly 42, which is rotatably connected in the middle of the external limiting assembly 41, and the several groups of first spacing adjustment drive assemblies 42 are interconnected. At the same time, the connecting ends of the several groups of first spacing adjustment drive assemblies 42 are slidably connected in the inside of the slide groove 315, and the drive groove 213 passes through the middle of the first spacing adjustment drive assembly 42. At the same time, the drive of the first spacing adjustment drive assembly 42 can drive the cutting plate 311 to adjust the spacing. The main rotating plate 4 21. The central position of the main plate 421 is rotatably connected to the interior of the external limiting main plate 411. The follower plate 428 is rotatably connected to both ends of the main plate 421, and the follower plate 428 is set into several groups, which are rotatably connected to each other in a V-shape. At the same time, the follower plate 428 is rotatably connected to the interior of the external limiting sub-plate 412. The rotating gear 422 is connected to the middle position of the main plate 421, and the rotation of the rotating gear 422 can drive the main plate 421 to rotate. The first steering gear 423 is rotatably connected to the port of the main plate 421. The second steering gear 424 is installed in the middle position of the second pitch adjustment component 43, and the outer wall of the second steering gear 424 is connected to the first steering gear 423. The gears are meshed together, and the rotation of the rotating gear 422 drives the first steering gear 423 and the second steering gear 424 to rotate. The spacer gear 425 is rotatably connected inside the external limiting main plate 411, and the lower end of the outer wall of the spacer gear 425 meshes with the upper end of the outer wall of the rotating gear 422. The rotation of the rotating gear 422 drives the spacer gear 425 to rotate. The drive gear 426 is rotatably connected inside the upper end of the external limiting main plate 411, and the lower end of the outer wall of the drive gear 426 meshes with the upper end of the outer wall of the spacer gear 425. At the same time, the straight rod of the drive gear 426 passes through the external limiting main plate 411 until it passes through the drive groove 213, and is limited and guided by the drive groove 213.The system can limit and guide the rotation of the drive gear 426, and also limit and guide the tilting movement of the drive gear 426. A sliding guide block 427 is rotatably connected to the connection end between the main rotating plate 421 and the follower rotating plate 428, and is connected to the connection ends of several sets of follower rotating plates 428. A second spacing adjustment component 43 is rotatably connected inside the limiting groove 212, and its middle position is connected to the first spacing adjustment drive component 42. Driven by the first spacing adjustment drive component 42, the second spacing adjustment component 43 can be rotated, thereby adjusting the spacing of the slitting side plate 321. A bidirectional threaded screw 431 is provided with… Inside the limiting groove 212, a second steering gear 424 is connected to the middle of the outer wall of the bidirectional threaded screw 431. Simultaneously, both ends of the outer wall of the bidirectional threaded screw 431 are connected to the interior of the spacing adjustment blocks 325. The rotation of the second steering gear 424 drives the bidirectional threaded screw 431 to rotate, causing the spacing adjustment blocks 325 at both ends to move away from and closer together, thereby adjusting the spacing of the cutting side plates 321. A connecting post 432 is connected to both ends of the bidirectional threaded screw 431, and the connecting post 432 at the end is rotatably connected to the inner wall of the limiting groove 212. Several sets of bidirectional threaded screws 431 can be interconnected through the connecting post 432.

[0113] The cutting and pressing device 5 is slidably connected to both ends of the slitting and clamping device 3, and is positioned at the upper end of the slitting and clamping device 3. By tilting and pressing the cutting and pressing device 5, the slitting and clamping device 3 can be tilted. At the same time, by sliding and pressing the cutting and pressing device 5, the cutting and pressing device 5 can cut the clamped waist flower. The cutting and pressing device 5 includes: a pressing tilting component 51, a pressing top plate 511, an internal groove 513, a middle cutting blade 514, a cutting component 52, a movable blade 521, a shaft column 522, and a movable guide block 523. The pressing tilting component 51 is located at the upper end of the cutting and clamping device 3. Pressing the pressing tilting component 51 drives the cutting component 52 to cut the waist-shaped flower. At the same time, tilting the pressing tilting component 51 drives the cutting component 52 to tilt, achieving a bevel cut. The pressing top plate 511 is located at the upper end of the cutting and clamping device 3. The built-in groove 513 is located at both ends of the inner wall of the pressing top plate 511. The top of the middle cutting blade 514 is rotatably connected to the inside of the built-in groove 513. Pressing the pressing top plate 511 drives the middle cutting blade 514. The center of the waist-shaped flower is cut. Simultaneously, by tilting and pressing the top plate 511, the center-cutting blade 514 is tilted, causing it to cut the center of the waist-shaped flower at an angle. The cutting assembly 52 is slidably connected inside the cutting guide groove 313 of the cutting plate 311. Pressing the tilting assembly 51 causes the cutting assembly 52 to cut the waist-shaped flower. The movable blade 521 has shafts 522 at both ends at its top, and the movable blade 521 is slidably connected inside the built-in groove 513 via the shafts 522. Pressing the top plate 511... The pressure can drive the movable blade 521 to cut the waist flower. By tilting the pressing top plate 511, the movable blade 521 can be tilted, so that the movable blade 521 can make tilted cuts on the waist flower. At the same time, the movable blade 521 can be installed on the side end of the cutting side plate 321 to realize multiple cuts. The movable guide block 523 is set at both ends on the outer wall of the movable blade 521 and is slidably connected to the inside of the cutting guide groove 313. The movable blade 521 can slide and cut along the cutting guide groove 313 through the movable guide block 523.

[0114] In practical use, those skilled in the art can use it in daily life by placing the waist flower on the surface of the transmission belt 123. At this time, the transmission drive motor 124 is activated, driving the transmission belt 123 to transport the waist flower to the center position of the transmission belt 123. When vertical cutting is performed, the crank handle is inserted into the extension rod of the drive gear 426 that passes through the drive groove 213. By rotating the crank handle, the drive gear 426 is driven to rotate, causing the drive gear 426 to drive the spacer gear 425, the rotating gear 422, and the... The two steering gears 424 and the double-threaded lead screw 431 rotate, thereby driving the slitting middle plate 311 and the slitting side plate 321 to adjust the spacing, thus determining the cutting spacing. By starting the lifting drive motor 114, the transmission belt 123 drives the waist flower to rise and fall, so that the waist flower is clamped by the transmission belt 123 with the slitting middle plate 311 and the slitting side plate 321. At this time, by pressing the pressing top plate 511, the middle cutting blade 514 and the movable blade 521 move along the cutting guide groove of the slitting middle plate 311. 313 slides downwards, causing the center cutting blade 514 and the movable blade 521 to vertically cut the kidney flower, and then remove the kidney flower. When it is necessary to diagonally cut the kidney flower, the pressing top plate 511 is tilted and pressed, causing the movable blade 521 to drive the cutting center plate 311 and the cutting side plate 321 to rotate and tilt. This causes the first guide shaft seat 312 and the second guide shaft seat 322 of the cutting center plate 311 and the cutting side plate 321 to move in an arc shape along the first guide groove 215 and the second guide groove 222, thereby making the cutting center plate 311 and the cutting side plate 321 move in an arc shape. The cutting plate 311 and the slitting side plate 321 are fixed at an angle. The pressing top plate 511 is pressed again in the tilted state, so that the cutting blade 514 and the movable blade 521 make oblique cuts on the waist flower, thereby completing the oblique cutting operation. When those skilled in the art need to use it in the factory, the device is installed on the factory's transmission mechanism, and the initial state of the transmission belt 123 is kept flush with the transmission platform of the transmission mechanism to ensure that the waist flower can be transmitted to the surface of the transmission belt 123 for slitting operation.

[0115] Although the present invention has been described above with reference to embodiments, various modifications can be made and components can be replaced with equivalents without departing from the scope of the invention. In particular, as long as there is no structural conflict, the features in the disclosed embodiments can be combined with each other in any manner. The lack of an exhaustive description of these combinations in this specification is merely for the sake of brevity and resource conservation. Therefore, the present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A waist-slice slitting and clamping device, characterized in that: include: The transmission and pressing device (1) is placed on the table and can place the waist piece through the transmission and pressing device (1). At the same time, through the transmission and lifting operation of the transmission and pressing device (1), the waist flower placed on the surface can be driven to perform transmission and lifting movements. Through the cooperation of the transmission and pressing device (1) and the cutting and clamping device (3), the waist flower after lifting can be clamped and limited. Limiting and guiding device (2) is installed at both ends of the top of the transmission and pressing device (1). The limiting and guiding device (2) can limit and guide the movement of the cutting and clamping device (3). At the same time, the limiting and guiding device (2) can slide and guide the tilt of the cutting and clamping device (3). The cutting and clamping device (3) is slidably connected to the upper and lower ends of the limiting and guiding device (2), and the cutting and clamping device (3) can guide and limit the cutting of the cutting and pressing device (5). The movable drive device (4) is installed at both ends of the cutting and clamping device (3). Through the drive of the movable drive device (4), the cutting and clamping device (3) can be driven to perform spacing control, thereby adjusting the cutting spacing. The cutting and pressing device (5) is slidably connected to both ends of the slitting and clamping device (3), and the cutting and pressing device (5) is set at the upper end of the slitting and clamping device (3). By tilting and pressing the cutting and pressing device (5), the slitting and clamping device (3) can be tilted. At the same time, by sliding and pressing the cutting and pressing device (5), the cutting and pressing device (5) can cut the clamped waist flower. The cutting and clamping device (3) includes: The first cutting clamping assembly (31) is slidably connected between the first guide groove (215) and the second guide groove (222); The second cutting clamping assembly (32) is slidably connected between the first guide groove (215) and the second guide groove (222), and the second cutting clamping assembly (32) is set at both ends of the first cutting clamping assembly (31), and is set as two sets. The two sets of second cutting clamping assemblies (32) and one set of first cutting clamping assemblies (31) form a unit. The two sets of first cutting clamping assemblies (31) and one set of second cutting clamping assemblies (32) cooperate with each other to control the cutting spacing. At the same time, the first cutting clamping assembly (31) and the second cutting clamping assembly (32) cooperate with the transmission belt (123) to clamp the waist flower. The active drive device (4) includes: An external limiting component (41) is slidably connected between two sets of guide boxes (214); The first pitch adjustment drive assembly (42) is rotatably connected in the middle of the external limiting assembly (41), and several sets of first pitch adjustment drive assemblies (42) are interconnected. At the same time, the connecting ends of several sets of first pitch adjustment drive assemblies (42) are slidably connected in the inside of the slide groove (315), and the drive groove (213) is penetrated through the middle of the first pitch adjustment drive assembly (42). At the same time, the first pitch adjustment drive assembly (42) can drive the cutting plate (311) to adjust the pitch. The second spacing adjustment component (43) is rotatably connected inside the limiting groove (212), and the middle position of the second spacing adjustment component (43) is connected to the first spacing adjustment drive component (42). Through the drive of the first spacing adjustment drive component (42), the second spacing adjustment component (43) can be driven to rotate, thereby driving the slitting side plate (321) to adjust the spacing.

2. The waist-shaped slice cutting and clamping device according to claim 1, characterized in that, The transmission and pressing device (1) includes: The top pressure assembly (11) is placed on the table and is set in two sets. It is installed on the transmission mechanism of the factory through the top pressure assembly (11) so as to be able to support the waist flower. The transmission component (12) is installed between two sets of top pressing components (11) and the two ends of the transmission component (12) are connected to the driving end of the top pressing component (11). The transmission component (12) can be driven to rise and fall by the top pressing component (11). At the same time, the surface of the transmission component (12) can be used to place the waist flower and to transmit and receive the waist flower.

3. The waist-slice cutting and clamping device according to claim 2, characterized in that, The top pressure assembly (11) includes: The base plate (111) is placed on the table and the base plate (111) is set in two sets; The lifting groove (112) is located at both ends and the middle of the inner wall of the base plate (111); The lifting screw (113) is rotatably connected inside the lifting groove (112) and connects the two ends of the transmission component (12). The rotation of the lifting screw (113) can drive the transmission component (12) to lift. At the same time, the lifting screw (113) is set into three groups and the three groups of lifting screws (113) are connected to each other through sprockets and chains for transmission. The lifting drive motor (114) is installed on the outer wall of the base plate (111), and the output end of the lifting drive motor (114) is connected to a set of lifting screws (113) through the steering gear. The rotation of the lifting drive motor (114) and the steering gear can drive the three sets of lifting screws (113) to rotate. The transmission component (12) includes: The top pressure plate (121) has lifting threaded blocks (122) at both ends of its outer wall, and the inner wall of the lifting threaded block (122) is threadedly connected to the outer wall of the lifting screw (113). At the same time, the lifting threaded block (122) is slidably connected inside the lifting groove (112), and can drive the top pressure plate (121) to lift and lower through the drive of the lifting drive motor (114). The transmission belt (123) is rolled inside the top pressure plate (121) and can place the waist flower through the transmission belt (123). At the same time, the transmission belt (123) is flush with the factory's transmission mechanism, and the transmission mechanism transmits the waist flower to the surface of the transmission belt (123), and then the transmission belt (123) moves the waist flower to the center position of the transmission belt (123). The drive motor (124) is installed on the front end side of the top pressure plate (121) and is connected to the drive roller of the drive belt (123) by cooperating with the steering gear. The drive motor (124) can drive the drive belt (123) to perform transmission.

4. The waist-piece slitting and clamping device according to claim 3, characterized in that, The limiting and guiding device (2) includes: The first limiting component (21) is mounted on the top of the base plate (111); The first limiting component (21) includes: The first limiting plate (211) is installed on the top of the base plate (111); The limiting groove (212) is located in the middle of the inner wall of the first limiting component (21). The limiting groove (212) can slide and limit the cutting and clamping device (3), and can also install the movable drive device (4). The drive groove (213) is provided on the upper end of the inner wall of the first limiting plate (211) and the drive groove (213) passes through the first limiting plate (211). The drive groove (213) can rotate and limit the movable drive device (4) and slide guide it. The guide box (214) is located at the upper end and lower end of the inner wall of the first limiting plate (211), and the bottom of the guide box (214) can slide and limit the top of the movable drive device (4). The first guide groove (215) is provided on the inner wall of the guide box (214); The second limiting component (22) is installed on the inner wall of the first limiting plate (211), and through the cooperation between the second limiting component (22) and the first limiting plate (211), it can guide and limit the movement of the cutting and clamping device (3); The second limiting component (22) includes: The second limiting plate (221) is installed on the inner wall of the first limiting plate (211); The second guide groove (222) is provided on the inner wall of the second limiting plate (221), and the first guide groove (215) and the second guide groove (222) cooperate with each other to provide tilting guidance for the cutting and clamping device (3).

5. The waist-shaped slice cutting and clamping device according to claim 1, characterized in that, The first cutting clamping assembly (31) includes: The cutting plate (311) has first guide shaft seats (312) at its top and bottom ends, and the cutting plate (311) is slidably connected between the first guide groove (215) and the second guide groove (222) through the first guide shaft seats (312). The first guide groove (215) and the second guide groove (222) cooperate with the cutting plate (311) to limit and guide the movement of the cutting plate (311), and at the same time, they can guide and limit the tilt of the cutting plate (311). The cutting guide groove (313) is set on both the front and rear sides of the cutting plate (311), and the cutting guide groove (313) can limit and guide the cutting of the cutting and pressing device (5). A convex plate (314) is provided at both ends of the side of the cutting plate (311); The slide groove (315) is provided at one end of the inner wall of the protrusion plate (314), and the slide groove (315) can limit and guide the sliding of the movable drive device (4). The limiting U-plate (316) is located at the middle position between the front end and the rear end of the protruding plate (314); The limiting slide (317) is located inside the limiting U plate (316), and through the cooperation between the limiting U plate (316) and the limiting slide (317), the movement of the second cutting clamping assembly (32) can be limited and guided. The second cutting clamping assembly (32) includes: The slitting side plate (321) has a second guide shaft seat (322) at its top and bottom ends, and the slitting side plate (321) is slidably connected between the first guide groove (215) and the second guide groove (222) through the second guide shaft seat (322). At the same time, the slitting side plate (321) is set at both ends of the slitting middle plate (311). The spacing adjustment rod (323) is rotatably connected to both ends of the side of the cutting side plate (321), and the spacing adjustment rod (323) is slidably connected inside the limiting slide groove (317); The stop block (324) is set on the outer wall of the spacing adjustment rod (323) and clamps the limiting U plate (316). Through the cooperation between the stop block (324) and the spacing adjustment rod (323), the spacing adjustment rod (323) can be slidably connected inside the limiting U plate (316). The spacing adjustment block (325) is located at the outer port of the spacing adjustment rod (323), and the interior of the spacing adjustment block (325) is connected to the rotation drive end of the movable drive device (4). Through the drive of the movable drive device (4), the spacing adjustment block (325) and the cutting side plate (321) can be driven to adjust the spacing.

6. The waist-shaped slice cutting and clamping device according to claim 1, characterized in that, The external limiting component (41) includes: An external limiting main board (411) is rotatably connected between two sets of guide boxes (214); An external limiting subplate (412) is set at both ends of the external limiting main plate (411) and is configured in several groups, and the external limiting subplate (412) is slidably connected between two groups of guide boxes (214); The first pitch adjustment drive component (42) includes: The main rotating plate (421) is rotatably connected to the interior of the external limiting main plate (411) at its middle position; The follower plate (428) is rotatably connected to both ends of the main plate (421), and the follower plate (428) is set into several groups. The several groups of follower plates (428) are rotatably connected to each other, forming a V shape. At the same time, the follower plate (428) is rotatably connected to the inside of the external limiting sub-plate (412). The rotating gear (422) is connected to the middle position of the main rotating plate (421), and the rotation of the rotating gear (422) can drive the main rotating plate (421) to rotate. The first steering gear (423) is rotatably connected to the port of the main rotating plate (421); The second steering gear (424) is installed in the middle position of the second pitch adjustment assembly (43), and the outer wall of the second steering gear (424) meshes with the first steering gear (423). By rotating the gear (422), the first steering gear (423) and the second steering gear (424) can be driven to rotate. The spacer gear (425) is rotatably connected inside the external limiting main board (411), and the lower end of the outer wall of the spacer gear (425) meshes with the upper end of the outer wall of the rotating gear (422). The rotation of the rotating gear (422) can drive the spacer gear (425) to rotate. The drive gear (426) is rotatably connected to the upper end of the outer limiting main board (411), and the lower end of the outer wall of the drive gear (426) meshes with the upper end of the outer wall of the spacer gear (425). At the same time, the straight rod of the drive gear (426) passes through the outer limiting main board (411) until it passes through the drive groove (213). Through the limiting and guiding of the drive groove (213), the rotation of the drive gear (426) can be limited and guided. At the same time, the tilting movement of the drive gear (426) can be limited and guided. The sliding guide block (427) is rotatably connected to the connection end of the main rotating plate (421) and the follower rotating plate (428), and the sliding guide block (427) is connected to the connection end of several sets of follower rotating plates (428).

7. The waist-shaped slice cutting and clamping device according to claim 6, characterized in that, The second spacing adjustment component (43) includes: A bidirectional threaded screw (431) is set inside the limiting groove (212), and a second steering gear (424) is connected to the middle of the outer wall of the bidirectional threaded screw (431). At the same time, the two ends of the outer wall of the bidirectional threaded screw (431) are connected to the inside of the spacing adjustment block (325). Through the rotation of the second steering gear (424), the bidirectional threaded screw (431) can be driven to rotate, thereby causing the bidirectional threaded screw (431) to drive the spacing adjustment blocks (325) at both ends to move away from each other and move closer to each other, thereby realizing the spacing adjustment of the cutting side plate (321). The connecting post (432) is connected to both ends of the bidirectional threaded screw (431), and the connecting post (432) at the end is rotatably connected to the inner wall of the limiting groove (212). Several sets of bidirectional threaded screws (431) can be connected to each other through the connecting post (432).

8. The waist-shaped slice cutting and clamping device according to claim 7, characterized in that, The cutting and pressing device (5) includes: The pressing tilting component (51) is located at the upper end of the cutting and clamping device (3). By pressing the pressing tilting component (51), the cutting component (52) can be driven to cut the waist flower. At the same time, by tilting the pressing tilting component (51), the cutting component (52) can be driven to tilt, thus achieving oblique cutting. The pressing and tilting assembly (51) includes: Pressing top plate (511), which is set at the upper end of the cutting and clamping device (3); Built-in grooves (513) are provided at both ends of the inner wall of the pressing top plate (511); The center cutting blade (514) is rotatably connected to the inside of the built-in groove (513) and can be driven to cut the center of the waist flower by pressing the top plate (511). At the same time, by tilting the top plate (511), the center cutting blade (514) can be tilted, so that the center cutting blade (514) can make an inclined cut in the middle of the waist flower. The cutting component (52) is slidably connected inside the cutting guide groove (313) of the cutting plate (311), and can be driven to cut the waist flower by pressing the tilting component (51); The cutting assembly (52) includes: The movable blade (521) has a shaft (522) at both ends of its top, and the movable blade (521) is slidably connected to the inside of the built-in groove (513) through the shaft (522). By pressing the pressing top plate (511), the movable blade (521) can be driven to cut the waist flower. By tilting the pressing top plate (511), the movable blade (521) can be driven to tilt, so that the movable blade (521) can make tilted cuts on the waist flower. At the same time, the movable blade (521) is installed on the side end of the cutting side plate (321), so as to realize multiple cuts. The movable guide block (523) is located at both ends on one side of the outer wall of the movable blade (521), and the movable guide block (523) is slidably connected to the inside of the cutting guide groove (313). The movable blade (521) can slide and cut along the cutting guide groove (313) through the movable guide block (523).

Citation Information

Patent Citations

  • Processing equipment for automatically cutting waist patterns

    CN117507022A

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    CN221338645U