Cutting and discharging all-in-one machine

By designing an integrated cutting and unloading machine, the automatic cutting and unloading of products in motion is achieved by using components such as a traction machine and cutting equipment. This solves the problems of existing technologies that cannot cut moving products and require manual unloading, thus improving ease of use.

CN223573272UActive Publication Date: 2025-11-21CHANGZHOU JWELL MACHINERY
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Patent Information

Application Number
CN202423286380.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-21
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing cutting machines cannot cut products that are in motion, and the cut products need to be manually unloaded by workers, which is inconvenient.

Method used

Design a cutting and unloading integrated machine, including a traction machine, a cutting device, a moving component, a clamping mechanism, a cutting mechanism, and an unloading mechanism. By using a moving drive component, these components move synchronously with the product, realizing the cutting of the product during feeding and the automatic unloading and collection.

Benefits of technology

It enables automatic cutting and unloading of products during feeding and movement, improving ease of use and reducing manual intervention.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223573272U_ABST
Patent Text Reader

Abstract

The utility model discloses a cutting and discharging all-in-one machine which comprises a traction machine and a cutting device, and the traction machine is used for pulling a product to move forwards so that the product can stretch forwards into the cutting device. Wherein the cutting equipment comprises a fixing frame, a moving assembly, a moving driving part, a pressing mechanism, a cutting mechanism, a discharging mechanism and a material frame, the moving assembly is slidably connected to the fixing frame in the moving direction of the product, and the moving driving part is connected to the fixing frame and connected with the moving assembly; the moving driving part is used for driving the moving assembly to move forwards synchronously with the product, the moving driving part is further used for driving the moving assembly to move backwards to reset, the moving assembly comprises a cutting platform, and the product penetrates through the upper portion of the cutting platform. According to the automatic cutting device, products in feeding movement can be cut, the cut products can be automatically discharged and collected, and the automatic cutting device is more convenient to use.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a cutting and discharging integrated machine. BACKGROUND

[0002] At present, the extrusion production line can be used for producing plastic pipe, plastic profile and other extrusion products. In the production process, the material needs to be put into the extruder for heating and plasticizing, and then extruded from the mold to obtain the product. The product is gradually cooled and formed during the continuous extrusion and feeding movement. Then the cutting machine is used to cut the cooled and formed product according to the specific length. Because the extrusion production of the product is continuous, the product will continue to move forward. Some existing cutting machines cannot cut the product in the feeding movement. For example, the cutting machine for aluminum profile disclosed in the Chinese patent with the publication number CN203711988U cannot cut the product in the feeding movement, and cannot automatically discharge the cut product. The worker needs to manually discharge and collect the cut product, which is inconvenient to use. SUMMARY

[0003] The utility model solves the technical problem of overcoming the defects of the prior art, and provides a cutting and discharging integrated machine, which can cut the product in the feeding movement, can automatically discharge and collect the cut product, and is more convenient to use.

[0004] In order to solve the above technical problems, the technical scheme of the utility model is as follows: a cutting and discharging integrated machine, comprising a traction machine and a cutting device, the traction machine is used to pull the product to move forward so that the product extends forward into the cutting device;

[0005] The cutting device comprises a fixed frame, a moving assembly, a moving drive part, a pressing mechanism, a cutting mechanism, a discharging mechanism and a material frame.

[0006] The moving assembly is slidingly connected to the fixed frame along the moving direction of the product;

[0007] The moving drive part is connected to the fixed frame and connected to the moving assembly. The moving drive part is used to drive the moving assembly to move forward synchronously with the product. The moving drive part is also used to drive the moving assembly to move backward to reset.

[0008] The moving assembly comprises a cutting platform, and the product passes above the cutting platform.

[0009] The pressing mechanism is connected to the cutting platform and is used to press and fix the product on the cutting platform. The cutting mechanism is connected to the cutting platform and is used to cut the product pressed on the cutting platform.

[0010] The material frame is connected to the moving assembly;

[0011] The unloading mechanism is connected to the moving assembly and located above the material frame, and is used for receiving the products cut down by the cutting mechanism and unloading the received products into the material frame.

[0012] Further, the moving assembly further comprises a moving frame;

[0013] The cutting platform is connected to the moving frame, and both the cutting platform and the moving frame are slidingly connected to the fixed frame along the moving direction of the products;

[0014] Both the material frame and the unloading mechanism are connected to the moving frame;

[0015] The moving driving part is connected to any one of the cutting platform and the moving frame and is used for driving the cutting platform and the moving frame to move forward synchronously with the products.

[0016] Further, the unloading mechanism comprises an unloading plate and an unloading cylinder;

[0017] The unloading plate is rotationally connected to the moving frame and has a horizontal receiving position and an inclined unloading position during rotation;

[0018] The unloading plate is located at one side of the cutting platform, and the products extend above the unloading plate after passing above the cutting platform;

[0019] One end of the unloading cylinder is hinged to the moving frame, and the other end of the unloading cylinder is hinged to the unloading plate, the unloading cylinder is used for driving the unloading plate to rotate to the horizontal receiving position to receive the cut-down products, and the unloading cylinder is also used for driving the unloading plate to rotate to the inclined unloading position to make the products on the unloading plate slide and unload into the material frame.

[0020] Further, the moving driving part is a linear module, which is connected to the fixed frame and connected to the cutting platform.

[0021] Further, the cutting mechanism comprises a swing arm, a cutting motor, a saw blade and a cutting cylinder;

[0022] One end of the swing arm is hinged to the cutting platform;

[0023] The saw blade is connected to the cutting motor, and the cutting motor is connected to the swing arm and is used for driving the saw blade to rotate;

[0024] The swing arm and the cutting motor are located below the cutting platform, and the cutting platform is provided with a cutting slot aligned with the saw blade and through which the saw blade passes;

[0025] The cylinder body of the cutting cylinder is hinged to the swing arm, the piston rod of the cutting cylinder is hinged to the cutting platform, and the cutting cylinder is used to drive the swing arm to swing, thereby driving the cutting motor and the saw blade to swing, so that a part of the saw blade passes through the cutting slot from below and cuts the product pressed on the cutting platform.

[0026] Further, the pressing mechanism comprises a cover, a pressing cylinder and a pressing block;

[0027] The cover is connected to the cutting platform and located above the cutting platform, the cover covers the outside of the cutting slot, and the cover is provided with a passage for the product to pass through;

[0028] The pressing block is slidingly connected to the cover in the up-down direction and located in the cover;

[0029] The pressing cylinder is connected to the cover and connected to the pressing block, and the pressing cylinder is used to drive the pressing block to move downward to press the product passing through the cover on the cutting platform.

[0030] Further, the cutting and unloading integrated machine further comprises a speed measuring and length measuring mechanism and a controller;

[0031] The speed measuring and length measuring mechanism is connected to the controller, and the speed measuring and length measuring mechanism is used to detect the moving speed information of the product and measure the length information of the forward movement of the product and send the obtained moving speed information and length information of the forward movement to the controller;

[0032] The controller is connected to the movement driving part, and the controller is used to control the movement driving part to act according to the moving speed information of the product and the length information of the forward movement of the product, so that the movement driving part drives the movement assembly to move forward synchronously with the product;

[0033] The controller is also connected to the pressing mechanism, the cutting mechanism and the unloading mechanism.

[0034] Further, the speed measuring and length measuring mechanism comprises a mounting frame, a first sliding seat, a second sliding seat, a first pressing roller, a second pressing roller, a first driving assembly, a second driving assembly and an encoder;

[0035] The first sliding seat and the second sliding seat are respectively slidingly connected to the mounting frame;

[0036] The first compression roller is rotatably connected to the first slide, and the second compression roller is rotatably connected to the second slide, and the product passes between the first compression roller and the second compression roller;

[0037] The first drive assembly is connected to the mounting frame and connected to the first slide, and the first drive assembly is used to drive the first slide to move and in turn drive the first compression roller to abut against one side of the product, and the second drive assembly is connected to the mounting frame and connected to the second slide, and the second drive assembly is used to drive the second slide to move and in turn drive the second compression roller to abut against the other side of the product, so that the first compression roller and the second compression roller clamp the product;

[0038] The encoder is connected to the first slide and connected to the first compression roller, so that when the product moves forward, the first compression roller rotates and in turn drives the encoder to operate to detect the moving speed information of the product and measure the length information of the forward movement of the product, and the encoder is connected to the controller.

[0039] Further, the first drive assembly comprises a first screw rod and a first hand wheel; wherein the first slide is provided with a first T-shaped groove, the first screw rod is threadedly connected to the mounting frame, one end of the first screw rod is provided with a first connector matched with the first T-shaped groove, and the first hand wheel is connected to the first screw rod and used to drive the first screw rod to rotate, and in turn drive the first slide to move;

[0040] The second drive assembly comprises a second screw rod and a second hand wheel; wherein the second slide is provided with a second T-shaped groove, the second screw rod is threadedly connected to the mounting frame, one end of the second screw rod is provided with a second connector matched with the second T-shaped groove, and the second hand wheel is connected to the second screw rod and used to drive the second screw rod to rotate, and in turn drive the second slide to move.

[0041] Further, the mounting frame comprises a first end plate, a second end plate and at least two guide rails;

[0042] The first end plate is connected to one end of the guide rail, and the second end plate is connected to the other end of the guide rail;

[0043] The first end plate is connected to the frame of the traction machine;

[0044] The first slide and the second slide are respectively slidably connected to the guide rails;

[0045] The first screw rod is threadedly connected to the first end plate;

[0046] The second screw rod is threadedly connected to the second end plate.

[0047] After adopting the above technical solution, under the traction of the traction machine, the product moves forward and extends into the cutting equipment, passing over the cutting platform. Then, the moving drive component drives the moving assembly to move forward synchronously with the product, thereby causing the cutting platform, clamping mechanism, cutting mechanism, unloading mechanism, and material frame on the moving assembly to move forward synchronously with the product at the same speed, thus maintaining relative stillness with the product. Then, the clamping mechanism actuates to clamp and fix the product on the cutting platform. Then, the cutting mechanism cuts the product clamped on the cutting platform. The cut product is caught by the unloading mechanism, which then actuates to unload and collect the caught product into the material frame. Then, the cutting mechanism resets, the clamping mechanism releases the product, and then the moving drive component drives the moving assembly to move backward and reset. Repeating the above actions allows for the next cut. The product is continuously fed forward. The moving component drives the moving assembly to move forward synchronously with the product, so that the cutting platform, clamping mechanism, cutting mechanism, unloading mechanism and material frame are all relatively stationary with respect to the product. This allows the product to be cut while it is being fed forward, and the cut product can be automatically unloaded and collected by the unloading mechanism and material frame, making it more convenient to use. Attached Figure Description

[0048] Figure 1 This is a schematic diagram of the integrated cutting and unloading machine of this utility model;

[0049] Figure 2 This is a schematic diagram of the cutting equipment of this utility model;

[0050] Figure 3 This is an exploded view of the assembly of the cutting equipment of this utility model;

[0051] Figure 4 This is a schematic diagram of the pressing mechanism and cutting mechanism of this utility model;

[0052] Figure 5 This is a schematic diagram of the speed measuring mechanism of this utility model. Detailed Implementation

[0053] To make the contents of this utility model easier to understand, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings.

[0054] like Figures 1-4 As shown, a cutting and unloading integrated machine includes a traction machine 100 and a cutting device 200. The traction machine 100 is used to pull the product 300 forward so that the product 300 extends forward into the cutting device 200.

[0055] The cutting device 200 comprises a fixed frame 1, a moving assembly 2, a moving driving part 3, a pressing mechanism 4, a cutting mechanism 5, a discharging mechanism 6 and a material frame 7;

[0056] The moving assembly 2 is slidably connected to the fixed frame 1 along the moving direction of the product 300;

[0057] The moving driving part 3 is connected to the fixed frame 1 and connected to the moving assembly 2, the moving driving part 3 is used to drive the moving assembly 2 to move forward synchronously with the product 300, and the moving driving part 3 is also used to drive the moving assembly 2 to move backward to reset;

[0058] The moving assembly 2 comprises a cutting platform 8, and the product 300 passes above the cutting platform 8;

[0059] The pressing mechanism 4 is connected to the cutting platform 8 and is used to press and fix the product 300 on the cutting platform 8;

[0060] The cutting mechanism 5 is connected to the cutting platform 8 and is used to cut the product 300 pressed on the cutting platform 8;

[0061] The material frame 7 is connected to the moving assembly 2;

[0062] The unloading mechanism 6 is connected to the moving assembly 2 and located above the material frame 7, and is used to catch the products 300 cut by the cutting mechanism 5 and unload the caught products 300 into the material frame 7. Specifically, under the traction of the traction machine 100, the products 300 move forward into the cutting device 200 and pass above the cutting platform 8, and then the moving driving part 3 drives the moving assembly 2 to move forward synchronously with the products 300, so that the cutting platform 8, the pressing mechanism 4, the cutting mechanism 5, the unloading mechanism 6 and the material frame 7 on the moving assembly 2 move forward synchronously with the products 300 at the same speed, and then remain relatively static with the products 300. Then the pressing mechanism 4 acts to press and fix the products 300 on the cutting platform 8, and then the cutting mechanism 5 cuts the products 300 pressed on the cutting platform 8, and the cut products 300 are caught by the unloading mechanism 6, and then the unloading mechanism 6 acts to unload the caught products 300 into the material frame 7, and then the cutting mechanism 5 resets, the pressing mechanism 4 releases the products 300, and then the moving driving part 3 drives the moving assembly 2 to move backward to reset, and the above-mentioned actions are repeated to cut the products 300 again. Among them, the products 300 are continuously fed forward, and the moving driving part 3 drives the moving assembly 2 to move forward synchronously with the products 300, so that the cutting platform 8, the pressing mechanism 4, the cutting mechanism 5, the unloading mechanism 6 and the material frame 7 remain relatively static with the products 300, and then the products 300 in the moving feeding state can be cut, and the cut products 300 can be automatically unloaded and collected by the unloading mechanism 6 and the material frame 7, which is more convenient to use. The specific structure of the traction machine 100 is well known to those skilled in the art, and will not be described in detail in this embodiment.

[0063] As shown in Figures 1-4 The moving assembly 2 can further include a moving frame 9;

[0064] The cutting platform 8 is connected to the moving frame 9, and the cutting platform 8 and the moving frame 9 are both slidingly connected to the fixed frame 1 along the moving direction of the products 300;

[0065] The material frame 7 and the unloading mechanism 6 are both connected to the moving frame 9;

[0066] The moving driving part 3 is connected to any one of the cutting platform 8 and the moving frame 9 and is used to drive the cutting platform 8 and the moving frame 9 to move forward synchronously with the products 300, and the moving driving part 3 is also used to drive the cutting platform 8 and the moving frame 9 to move backward to reset.

[0067] As shown in Figures 1-3 The discharging mechanism 6 can include a discharging plate 10 and a discharging cylinder 11.

[0068] The discharging plate 10 is rotationally connected to the moving frame 9 and has a horizontal receiving position and an inclined discharging position during rotation.

[0069] The discharging plate 10 is located on one side of the cutting platform 8, and the product 300 extends above the discharging plate 10 after passing above the cutting platform 8.

[0070] One end of the discharging cylinder 11 is hinged to the moving frame 9, and the other end of the discharging cylinder 11 is hinged to the discharging plate 10. The discharging cylinder 11 is used to drive the discharging plate 10 to rotate to the horizontal receiving position to receive the cut product 300, and is also used to drive the discharging plate 10 to rotate to the inclined discharging position to make the product 300 on the discharging plate 10 slide and discharge into the frame 7.

[0071] As shown in Figure 4 The moving drive component 3 can be a linear module connected to the fixed frame 1 and connected to the cutting platform 8. The linear module can drive the cutting platform 8 and the moving frame 9 to move forward synchronously with the product 300, and can also drive the cutting platform 8 and the moving frame 9 to move backward to reset.

[0072] As shown in Figure 4 The cutting mechanism 5 can include a swing arm 12, a cutting motor 13, a saw blade 14, and a cutting cylinder 15.

[0073] One end of the swing arm 12 is hinged to the cutting platform 8.

[0074] The saw blade 14 is connected to the cutting motor 13, and the cutting motor 13 is connected to the swing arm 12 and used to drive the saw blade 14 to rotate.

[0075] The swing arm 12 and the cutting motor 13 are located below the cutting platform 8, and the cutting platform 8 is provided with a cutting groove 16 aligned with the saw blade 14 and through which the saw blade 14 passes.

[0076] The cylinder body of the cutting cylinder 15 is hinged on the swing arm 12, the piston rod of the cutting cylinder 15 is hinged with the cutting platform 8, and the cutting cylinder 15 is used to drive the swing arm 12 to swing, thereby driving the cutting motor 13 and the saw blade 14 to swing, so that a part of the saw blade 14 passes through the cutting groove 16 from below and cuts the product 300 pressed on the cutting platform 8. Specifically, using the swing arm 12 to drive the cutting motor 13 and the saw blade 14 to swing can reduce the impact force when the high-speed rotating saw blade 14 contacts the product 300, thereby avoiding the phenomenon of cutting edge collapse on the product 300.

[0077] As shown in Figures 1-4 , the pressing mechanism 4 can include a cover 17, a pressing cylinder 18 and a pressing block 19.

[0078] The cover 17 is connected to and located above the cutting platform 8, the cover 17 covers the outside of the cutting groove 16, and the cover 17 is provided with a passage for the product 300 to pass through.

[0079] The pressing block 19 is slidingly connected to and located in the cover 17 in the up-down direction.

[0080] The pressing cylinder 18 is connected to the cover 17 and connected to the pressing block 19, and the pressing cylinder 18 is used to drive the pressing block 19 to move downward to press the product 300 passing through the cover 17 on the cutting platform 8. Specifically, after the saw blade 14 passes through the cutting groove 16 from below, it will cut the product 300 pressed on the cutting platform 8 on the inside of the cover 17.

[0081] As shown in Figure 1 , 5 , the cutting and discharging integrated machine can further include a speed measuring and length measuring mechanism 400 and a controller.

[0082] The speed measuring and length measuring mechanism 400 is connected to the controller, and the speed measuring and length measuring mechanism 400 is used to detect the moving speed information of the product 300 and measure the length information of the forward movement of the product 300, and send the obtained moving speed information and length information of the forward movement to the controller.

[0083] The controller is connected with the moving driving part 3, and the controller is used for controlling the moving driving part 3 to act according to the moving speed information of the product 300 and the length information of the forward movement of the product 300, and then the moving driving part 3 drives the moving assembly 2 to move forward synchronously with the product 300. The controller is also connected with the pressing mechanism 4, the cutting mechanism 5 and the unloading mechanism 6. Specifically, when the length of the forward movement of the product 300 reaches the required length measured by the speedometer length measuring mechanism 400, the controller controls the moving driving part 3 to act, so that the moving driving part 3 drives the moving assembly 2 to move forward synchronously with the product 300 at the same speed. Then the controller controls the pressing mechanism 4 to press and fix the product 300 on the cutting platform 8, and then controls the cutting mechanism 5 to cut the product 300 pressed on the cutting platform 8, and the cut product 300 falls on the unloading mechanism 6. Then the controller controls the unloading mechanism 6 to unload the received product 300 into the material frame 7 for collection and storage. In the embodiment, the controller is used for controlling the straight line module, the pressing cylinder 18 in the pressing mechanism 4, the cutting cylinder 15 in the cutting mechanism 5 and the unloading cylinder 11 in the unloading mechanism 6 to act. Specifically, the controller can be a PLC controller.

[0084] As shown in Figure 5 The speedometer length measuring mechanism 400 can include a mounting frame 20, a first sliding seat 21, a second sliding seat 22, a first pressing roller 23, a second pressing roller 24, a first driving assembly, a second driving assembly and an encoder 25.

[0085] The first sliding seat 21 and the second sliding seat 22 are respectively slidably connected to the mounting frame 20.

[0086] The first pressing roller 23 is rotatably connected to the first sliding seat 21, and the second pressing roller 24 is rotatably connected to the second sliding seat 22. The product 300 passes between the first pressing roller 23 and the second pressing roller 24.

[0087] The first driving assembly is connected to the mounting frame 20 and connected with the first sliding seat 21. The first driving assembly is used for driving the first sliding seat 21 to move and then driving the first pressing roller 23 to abut against one side of the product 300. The second driving assembly is connected to the mounting frame 20 and connected with the second sliding seat 22. The second driving assembly is used for driving the second sliding seat 22 to move and then driving the second pressing roller 24 to abut against the other side of the product 300, so that the first pressing roller 23 and the second pressing roller 24 clamp the product 300.

[0088] The encoder 25 is connected to the first sliding seat 21 and connected with the first compression roller 23, so that the first compression roller 23 is rotated when the product 300 moves forward, and the encoder 25 is driven to work to detect the moving speed information of the product 300 and measure the length information of the product 300 moving forward. The encoder 25 is connected with the controller; in the embodiment, the mounting frame 20 is connected to the frame of the traction machine 100, so that the measurement error caused by cutting vibration can be effectively avoided, and the encoder 25 can be connected to the first sliding seat 21 through a support.

[0089] As shown in Figure 5 , the first driving assembly can include a first screw rod 26 and a first hand wheel 27; wherein the first sliding seat 21 is provided with a first T-shaped groove, the first screw rod 26 is threadedly connected to the mounting frame 20, one end of the first screw rod 26 is provided with a first connector matched with the first T-shaped groove, and the first hand wheel 27 is connected to the first screw rod 26 and used to drive the first screw rod 26 to rotate, thereby driving the first sliding seat 21 to move. The second driving assembly can include a second screw rod 28 and a second hand wheel 29; wherein the second sliding seat 22 is provided with a second T-shaped groove 30, the second screw rod 28 is threadedly connected to the mounting frame 20, one end of the second screw rod 28 is provided with a second connector 31 matched with the second T-shaped groove 30, and the second hand wheel 29 is connected to the second screw rod 28 and used to drive the second screw rod 28 to rotate, thereby driving the second sliding seat 22 to move. Of course, in some embodiments, the first driving assembly and the second driving assembly can be air cylinders.

[0090] As shown in Figure 5 , the mounting frame 20 can include a first end plate 32, a second end plate 33 and at least two guide rails 34; wherein the first end plate 32 is connected with one end of the guide rail 34, the second end plate 33 is connected with the other end of the guide rail 34, the first end plate 32 is connected to the frame of the traction machine 100, the first sliding seat 21 and the second sliding seat 22 are respectively slidably connected to the guide rail 34, the first screw rod 26 is threadedly connected to the first end plate 32, and the second screw rod 28 is threadedly connected to the second end plate 33.

[0091] In summary, under the traction of the traction machine 100, the product 300 moves forward into the cutting device 200 and passes above the cutting platform 8, then the moving driving part 3 drives the moving assembly 2 to move forward synchronously with the product 300, and then the cutting platform 8, the pressing mechanism 4, the cutting mechanism 5, the unloading mechanism 6 and the material frame 7 on the moving assembly 2 all move forward synchronously with the product 300 at the same speed, and then the product 300 is kept relatively static. Then the pressing mechanism 4 acts to press and fix the product 300 on the cutting platform 8, then the cutting mechanism 5 cuts the product 300 pressed on the cutting platform 8, the cut product 300 is caught by the unloading mechanism 6, then the unloading mechanism 6 acts to unload and collect the caught product 300 into the material frame 7, then the cutting mechanism 5 resets, the pressing mechanism 4 releases the product 300, then the moving driving part 3 drives the moving assembly 2 to move backward to reset, and the above-mentioned actions are repeated to cut the next time. Wherein, the product 300 is continuously fed forward, and the cutting platform 8, the pressing mechanism 4, the cutting mechanism 5, the unloading mechanism 6 and the material frame 7 are kept relatively static with the product 300 by driving the moving assembly 2 forward synchronously with the product 300 by the moving driving part 3, and then the product 300 in the feeding movement can be cut, and the cut product 300 can be automatically unloaded and collected by the unloading mechanism 6 and the material frame 7, which is more convenient to use.

[0092] The above-mentioned specific embodiments further specifically describe the technical problems, technical solutions and beneficial effects solved by the present application, and it should be understood that the above-mentioned specific embodiments are only specific embodiments of the present application and are not used to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims

1. A cutting and unloading all-in-one machine, characterized in that, The traction machine (100) is used to pull the product (300) to move forward so that the product (300) extends forward into the cutting device (200); The cutting device (200) includes a fixed frame (1), a moving assembly (2), a moving drive component (3), a pressing mechanism (4), a cutting mechanism (5), a discharging mechanism (6), and a material frame (7); The moving assembly (2) is slidingly connected to the fixed frame (1) along the moving direction of the product (300); The moving drive component (3) is connected to the fixed frame (1) and connected to the moving assembly (2), and is used to drive the moving assembly (2) to move forward synchronously with the product (300), and is also used to drive the moving assembly (2) to move backward to reset; The moving assembly (2) includes a cutting platform (8), and the product (300) passes above the cutting platform (8); The pressing mechanism (4) is connected to the cutting platform (8) and is used to press and fix the product (300) on the cutting platform (8); The cutting mechanism (5) is connected to the cutting platform (8) and is used to cut the product (300) pressed on the cutting platform (8); The material frame (7) is connected to the moving assembly (2); The discharging mechanism (6) is connected to the moving assembly (2) and located above the material frame (7), and is used to receive the product (300) cut by the cutting mechanism (5) and discharge the received product (300) into the material frame (7).

2. The cutting and unloading all-in-one machine according to claim 1, characterized in that, The moving assembly (2) further includes a moving frame (9); The cutting platform (8) is connected to the moving frame (9), and the cutting platform (8) and the moving frame (9) are both slidingly connected to the fixed frame (1) along the moving direction of the product (300); The material frame (7) and the discharging mechanism (6) are both connected to the moving frame (9); The moving drive component (3) is connected to any one of the cutting platform (8) and the moving frame (9) and is used to drive the cutting platform (8) and the moving frame (9) to move forward synchronously with the product (300).

3. The cutting and unloading all-in-one machine according to claim 2, characterized in that, The discharging mechanism (6) includes a discharging plate (10) and a discharging cylinder (11), the discharging plate (10) is rotationally connected to the moving frame (9) and has a horizontal receiving position and an inclined discharging position during rotation; The discharging plate (10) is located on one side of the cutting platform (8), and the product (300) extends above the discharging plate (10) after passing above the cutting platform (8); One end of the unloading cylinder (11) is hinged to the moving frame (9), the other end of the unloading cylinder (11) is hinged to the unloading plate (10), the unloading cylinder (11) is used to drive the unloading plate (10) to rotate to the horizontal receiving position to make the unloading plate (10) catch the cut-down product (300), the unloading cylinder (11) is also used to drive the unloading plate (10) to rotate to the inclined unloading position to make the product (300) on the unloading plate (10) slide and unload into the frame (7).

4. The cutting and unloading all-in-one machine according to claim 2, characterized in that, The moving driving part (3) is a linear module, which is connected to the fixed frame (1) and connected to the cutting platform (8).

5. The cutting and unloading all-in-one machine according to claim 1, characterized in that, The cutting mechanism (5) comprises a swing arm (12), a cutting motor (13), a saw blade (14) and a cutting cylinder (15); One end of the swing arm (12) is hinged to the cutting platform (8); The saw blade (14) is connected to the cutting motor (13), the cutting motor (13) is connected to the swing arm (12) and is used to drive the saw blade (14) to rotate; The swing arm (12) and the cutting motor (13) are located below the cutting platform (8), and the cutting platform (8) is provided with a cutting groove (16) aligned with the saw blade (14) and through which the saw blade (14) passes; The cylinder body of the cutting cylinder (15) is hinged to the swing arm (12), the piston rod of the cutting cylinder (15) is hinged to the cutting platform (8), and the cutting cylinder (15) is used to drive the swing arm (12) to swing, thereby driving the cutting motor (13) and the saw blade (14) to swing, so that a part of the saw blade (14) passes through the cutting groove (16) from below and cuts the product (300) pressed on the cutting platform (8).

6. The cutting and unloading all-in-one machine according to claim 5, characterized in that, The pressing mechanism (4) comprises a cover (17), a pressing cylinder (18) and a pressing block (19); The cover (17) is connected to the cutting platform (8) and located above the cutting platform (8), the cover (17) covers the outside of the cutting groove (16), and the cover (17) is provided with a passage for the product (300) to pass through; The pressing block (19) is slidably connected to the cover (17) and located in the cover (17) in the up-down direction; The pressing cylinder (18) is connected to the cover (17) and connected to the pressing block (19), and the pressing cylinder (18) is used to drive the pressing block (19) to move downward to press the product (300) passing through the cover (17) on the cutting platform (8).

7. The cutting and unloading all-in-one machine according to claim 1, characterized in that, It also comprises a speedometer length mechanism (400) and a controller; The speedometer length mechanism (400) is connected to the controller, and the speedometer length mechanism (400) is used to detect the moving speed information of the product (300) and measure the length information of the forward movement of the product (300), and send the obtained moving speed information and forward movement length information to the controller; The speedometer length mechanism (400) is connected to the controller, and the speedometer length mechanism (400) is used to detect the moving speed information of the product (300) and measure the length information of the forward movement of the product (300), and send the obtained moving speed information and forward movement length information to the controller; The controller is connected with the moving driving part (3), and the controller is used for controlling the moving driving part (3) to act according to the moving speed information and the length information of the forward movement of the product (300), and then the moving driving part (3) drives the moving assembly (2) to move forward synchronously with the product (300); The controller is also connected with the pressing mechanism (4), the cutting mechanism (5) and the unloading mechanism (6).

8. The cutting and unloading all-in-one machine according to claim 7, characterized in that, The speedometer long mechanism (400) comprises a mounting frame (20), a first sliding seat (21), a second sliding seat (22), a first pressing roller (23), a second pressing roller (24), a first driving assembly, a second driving assembly and an encoder (25); The first sliding seat (21) and the second sliding seat (22) are respectively slidably connected on the mounting frame (20); The first pressing roller (23) is rotatably connected on the first sliding seat (21), and the second pressing roller (24) is rotatably connected on the second sliding seat (22), and the product (300) passes between the first pressing roller (23) and the second pressing roller (24); The first driving assembly is connected on the mounting frame (20) and connected with the first sliding seat (21), and the first driving assembly is used for driving the first sliding seat (21) to move and then driving the first pressing roller (23) to abut against one side of the product (300); the second driving assembly is connected on the mounting frame (20) and connected with the second sliding seat (22), and the second driving assembly is used for driving the second sliding seat (22) to move and then driving the second pressing roller (24) to abut against the other side of the product (300), so that the first pressing roller (23) and the second pressing roller (24) clamp the product (300); The encoder (25) is connected on the first sliding seat (21) and connected with the first pressing roller (23), so that when the product (300) moves forward, the first pressing roller (23) rotates and then drives the encoder (25) to operate to detect the moving speed information of the product (300) and measure the length information of the forward movement of the product (300), and the encoder (25) is connected with the controller.

9. The cutting and unloading all-in-one machine according to claim 8, wherein The first driving assembly comprises a first screw rod (26) and a first hand wheel (27); wherein the first sliding seat (21) is provided with a first T-shaped groove, the first screw rod (26) is threadedly connected on the mounting frame (20), one end of the first screw rod (26) is provided with a first connector matched with the first T-shaped groove, and the first hand wheel (27) is connected on the first screw rod (26) and used for driving the first screw rod (26) to rotate, and then driving the first sliding seat (21) to move. The second driving assembly comprises a second screw rod (28) and a second hand wheel (29); wherein a second T-shaped slot (30) is arranged on the second sliding base (22), the second screw rod (28) is threadedly connected to the mounting frame (20), a second joint (31) is arranged on one end of the second screw rod (28) and is matched with the second T-shaped slot (30), the second hand wheel (29) is connected to the second screw rod (28) and is used to drive the second screw rod (28) to rotate, thereby driving the second sliding base (22) to move.

10. The cutting and unloading all-in-one machine according to claim 9, characterized in that, The mounting frame (20) comprises a first end plate (32), a second end plate (33) and at least two guide rails (34); The first end plate (32) is connected to one end of the guide rail (34), and the second end plate (33) is connected to the other end of the guide rail (34); The first end plate (32) is connected to the rack of the traction machine (100); The first sliding base (21) and the second sliding base (22) are respectively slidably connected to the guide rail (34); The first screw rod (26) is threadedly connected to the first end plate (32); The second screw rod (28) is threadedly connected to the second end plate (33).

Citation Information

Patent Citations

  • Cutting machine for aluminum profile

    CN203711988U