Resection device and system

By introducing a drive unit and guide rail structure into the cutting device, the movement of the clamping unit and the cutter is controlled, which solves the problem of low cutting accuracy and improves production efficiency and cutting quality, especially the cutting accuracy of small parts.

CN224026566UActive Publication Date: 2026-03-24CHENGDU WANYING MICRO ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The existing cutting equipment has low cutting precision, resulting in low overall production efficiency. In particular, when cutting small devices such as chip casing pins, twisting and deformation are prone to occur, resulting in a large number of defective products.

Method used

The cutting device includes a drive unit, a lifting plate, a clamping unit, and a cutter. The drive unit drives the clamping unit to approach and clamp the target part, and the guide rail controls the movement of the cutter to cut the part of the target part, reducing the degree of twisting and deformation of the target part during the cutting process.

Benefits of technology

It improves the cutting accuracy and production efficiency of the cutting device, reduces maintenance difficulty and cost, and meets diverse cutting needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of device machining, in particular to a cutting device and system. The cutting device comprises a driving piece, a lifting plate, a pressing piece, a cutter and a first guide rail. The pressing piece and the cutter are arranged on the side, close to the target piece, of the lifting plate. The driving piece is connected with the liftable plate and is configured to drive the liftable plate to approach or leave the target piece; the first guide rail is arranged on the pressing piece or the lifting plate, and the cutter is arranged to be close to or away from the target piece relative to the pressing piece along the first guide rail. According to the device, the pressing piece can be driven by the driving piece to approach and press the target piece so as to limit the degree of freedom of the target piece; and the cutter is controlled to be close to the target piece relative to the pressing piece along the first guide rail so as to cut off the to-be-cut part of the target piece. The target part is pressed by the pressing part, so that the distortion and deformation degree of the target part in the cutting process can be reduced, the cutting precision of the cutting device is improved, and the overall production efficiency of the target part is guaranteed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of device processing, in particular to a cutting device and system. BACKGROUND

[0002] Mechanical cutting is one of the commonly used processing methods in device processing and manufacturing, and based on mechanical cutting, cutting operations of devices made of various materials can be realized. However, during the cutting process, especially when the cutting tool first contacts the device to be cut, the device to be cut is prone to problems such as distortion and deformation, resulting in low cutting precision and affecting overall production efficiency.

[0003] Therefore, the existing cutting device has the technical problem of low cutting precision, which leads to low overall production efficiency. Taking the cutting of the pins of a chip tube shell as an example, since the chip tube shell has a small volume and the tube shell pins have a small thickness, the tube shell pins are prone to deformation during cutting. For small and medium-sized enterprises that still use a large amount of manual labor and semi-automatic equipment, a large number of unqualified products are extremely easy to occur during cutting, which leads to low production efficiency of the chip. CONTENT OF THE INVENTION

[0004] Therefore, the technical problem of low cutting precision of the existing cutting device, which leads to low overall production efficiency, is solved by providing a cutting device and system.

[0005] In a first aspect, the present application provides a cutting device, which comprises a driving member, a liftable plate, a pressing member, a cutting tool and a first guide rail.

[0006] The pressing member and the cutting tool are arranged on the side of the liftable plate close to the target member.

[0007] The driving member is connected to the liftable plate and is configured to drive the liftable plate to approach or move away from the target member.

[0008] The first guide rail is arranged on the pressing member or the liftable plate, and the cutting tool is configured to approach or move away from the target member along the first guide rail relative to the pressing member.

[0009] In the implementation process, the cutting device comprises a driving member, a liftable plate, a pressing member, a cutter and a first guide rail; the pressing member and the cutter are arranged on a side of the liftable plate close to the target member; the driving member is connected to the liftable plate and is configured to drive the liftable plate to move close to or away from the target member; the first guide rail is arranged on the pressing member or the liftable plate, and the cutter is configured to move close to or away from the target member relative to the pressing member along the first guide rail. The device can drive the pressing member to move close to and press the target member by the driving member, so as to limit the degree of freedom of the target member; and then the cutter is controlled to move close to the target member relative to the pressing member along the first guide rail, so as to cut the part to be cut of the target member. The target member can be pressed by the pressing member, so as to reduce the degree of distortion and deformation of the target member in the cutting process, thereby improving the cutting precision of the cutting device and providing guarantee for the overall production efficiency of the target member. The technical problem of low cutting precision of the existing cutting device and low overall production efficiency is solved. In addition, the structure of the cutting device is relatively simple, and the maintenance difficulty and cost in the later period can be reduced.

[0010] Optionally, in the embodiment of the present application, a positioning light source is arranged on the pressing member or the cutter; a plurality of positioning grooves are formed on a side of the liftable plate close to the target member, and the positioning grooves are provided with light receivers; the positioning light source is configured to emit positioning light along the formation direction of the positioning grooves; and the light receiver is configured to receive the positioning light when the pressing member or the cutter moves to the position of the corresponding positioning groove.

[0011] In the implementation process, the positioning light source is arranged on the pressing member or the cutter, a plurality of positioning grooves are formed on a side of the liftable plate close to the target member, and the positioning grooves are provided with light receivers; the position of the positioning groove where the pressing member or the cutter is located can be determined according to the light receiver that receives the positioning light. Therefore, the cutting device can realize cutting operation at different positions of the target member, so as to meet diversified cutting requirements.

[0012] Optionally, in the embodiment of the present application, the device further comprises a second guide rail and a connecting member arranged between the cutter and the liftable plate; a first sliding connection hole is formed on the pressing member, and a second sliding connection hole is formed on the connecting member; the second guide rail passes through the first sliding connection hole and the second sliding connection hole, and the arrangement direction of the second guide rail is perpendicular to the direction of the cutter; the connecting member and the pressing member are fixedly connected, and the first guide rail is arranged on the pressing member or the connecting member; and the driving member is further configured to drive the pressing member and the connecting member to move along the second guide rail to different positioning groove positions.

[0013] In the implementation process, since the arrangement direction of the second guide rail is perpendicular to the orientation direction of the cutter, by driving the compression member and the connecting member to move along the second guide rail to different positioning groove positions, the first guide rail arranged on the compression member or the connecting member can be moved to different positioning groove positions, that is, the cutter which can slide along the first guide rail can be moved to different positioning groove positions, and then the cutting operation on different positions of the target piece can be realized, and diversified cutting requirements are met.

[0014] Optionally, in the embodiment of the present application, a sliding groove is arranged on the liftable plate; the arrangement direction of the sliding groove is perpendicular to the orientation direction of the cutter; the device further comprises a first sliding block fixedly connected with the compression member or the connecting member; the first sliding block is in sliding connection with the sliding groove; the first sliding block is configured to drive the compression member and the connecting member to move to different positioning groove positions by sliding along the sliding groove.

[0015] In the implementation process, by arranging the sliding groove on the liftable plate which is perpendicular to the orientation direction of the cutter, and by slidingly connecting the first sliding block with the sliding groove and fixedly connecting the first sliding block with the compression member or the connecting member, the compression member and the connecting member can be moved to different positioning groove positions based on the sliding of the first sliding block along the sliding groove, and the cutting operation on different positions of the target piece can be realized.

[0016] Optionally, in the embodiment of the present application, one of the first fixed connecting member and the second fixed connecting member is arranged on the compression member or the connecting member; the other of the first fixed connecting member and the second fixed connecting member is arranged on the first sliding block; the first fixed connecting member and the second fixed connecting member are configured to realize the fixed connection between the first sliding block and the compression member, or realize the fixed connection between the first sliding block and the connecting member.

[0017] In the implementation process, the fixed connection between the first sliding block and the connecting member or the compression member can be realized by the first fixed connecting member and the second fixed connecting member, and then the compression member and the connecting member can be moved to different positioning groove positions based on the sliding of the first sliding block along the sliding groove.

[0018] Optionally, in the embodiment of the present application, the device further comprises a control unit; the control unit is in communication connection with the light source receiver; the light source receiver is further configured to send the received positioning light information to the control unit in the case of receiving the positioning light; wherein the positioning light information is used to determine the positioning groove position where the compression member or the cutter is located.

[0019] In the implementation process, the control unit can accurately determine the positioning groove position where the compression member or the cutter is located by receiving the positioning light information sent by the light source receiver.

[0020] Optionally, in the embodiment of the present application, the device further comprises a displacement sensor arranged on the cutter; the displacement sensor is in communication connection with the control unit; the displacement sensor is configured to acquire displacement data of the cutter and send the displacement data to the control unit; wherein the displacement data is used to determine the current position of the cutter.

[0021] In the implementation process described above, based on the displacement sensor arranged on the cutter, the movement distance of the cutter can be located, so as to further improve the cutting accuracy.

[0022] Optionally, in the embodiment of the present application, the device further comprises a second sliding block; the second sliding block is in sliding connection with the first guide rail, and the second sliding block is further fixedly connected with the cutter; the second sliding block is configured to drive the cutter to move close to or away from the target piece relative to the pressing piece by sliding along the first guide rail.

[0023] Optionally, in the embodiment of the present application, the driving member comprises a hydraulic cylinder; the liftable plate is fixedly connected with a piston rod of the hydraulic cylinder; the hydraulic cylinder is configured to drive the liftable plate to move close to or away from the target piece.

[0024] In the implementation process described above, by driving the liftable plate to move close to or away from the target piece through the hydraulic cylinder, the displacement control accuracy of the liftable plate can be improved, so as to further improve the cutting accuracy of the cutting device.

[0025] Optionally, in the embodiment of the present application, the device further comprises an indication unit; the indication unit is in communication connection with the control unit; the control unit is further configured to generate state information according to the working states of each component of the device, and send the state information to the indication unit in the case that the state information changes; the indication unit is configured to send corresponding state indication signals according to the state information.

[0026] In the implementation process described above, by the indication unit, the working states of each component of the cutting device can be indicated, so as to facilitate the operation and maintenance personnel to understand the current working state of the cutting device and improve the maintenance efficiency.

[0027] In a second aspect, the embodiment of the present application further provides a cutting system, which comprises a fixing device and the cutting device according to any one of the first aspect; the fixing device is configured to fix a target piece; the cutting device is configured to cut a part to be cut of the target piece.

[0028] The beneficial effects of the present application are: the cutting device comprises a driving member, a liftable plate, a pressing member, a cutter and a first guide rail; the pressing member and the cutter are arranged on the side of the liftable plate close to the target member; the driving member is connected to the liftable plate and is configured to drive the liftable plate to approach or move away from the target member; the first guide rail is arranged on the pressing member or the liftable plate, and the cutter is configured to approach or move away from the target member relative to the pressing member along the first guide rail. The device can drive the pressing member to approach and press the target member by the driving member, so as to limit the degree of freedom of the target member; then the cutter is controlled to approach the target member relative to the pressing member along the first guide rail, so as to cut the part to be cut of the target member. The target member is pressed by the pressing member, which can reduce the degree of distortion and deformation of the target member in the cutting process, thereby improving the cutting precision of the cutting device, and further providing protection for the overall production efficiency of the target member. The technical problem of low cutting precision of the existing cutting device, which leads to low overall production efficiency, is solved. In addition, the structure of the cutting device is relatively simple, which can reduce the difficulty and cost of later maintenance. BRIEF DESCRIPTION OF DRAWINGS

[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments of the present application. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.

[0030] Figure 1 The structure diagram of the first cutting device provided by the embodiments of the present application is shown in the figure.

[0031] Figure 2 The structure diagram of the second cutting device provided by the embodiments of the present application is shown in the figure.

[0032] Figure 3 The structure diagram of the third cutting device provided by the embodiments of the present application is shown in the figure.

[0033] Reference signs:

[0034] 01-cutting device; 10-liftable plate; 101-positioning groove; 102-light source receiver; 20-pressing member; 30-cutter; 40-first guide rail; 50-positioning light source; 60-second guide rail; 70-connection member; 701-second sliding connection hole; 80-displacement sensor. DETAILED DESCRIPTION

[0035] The embodiments of the technical solutions of the present application will be described in detail below with reference to the drawings. The following embodiments are only used to more clearly illustrate the technical solutions of the present application, and therefore only serve as examples, and cannot limit the protection scope of the present application.

[0036] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs; the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit the present application.

[0037] In the description of the embodiments of the present application, the technical terms "first", "second", etc. are only used to distinguish different objects, and cannot be understood as indicating or implying relative importance or implicitly indicating the number, specific order or primary and secondary relationship of the indicated technical features. In the description of the embodiments of the present application, the meaning of "multiple" is two or more, unless otherwise explicitly specified.

[0038] Please refer to Figure 1 , Figure 1 The first cutting device 01 provided in the embodiments of the present application is shown in the structural schematic diagram. The cutting device 01 comprises a driving member (not shown in the figure), a liftable plate 10, a pressing member 20, a cutter 30 and a first guide rail 40. Figure 1

[0039] The pressing member 20 and the cutter 30 are both arranged on the side of the liftable plate 10 close to the target member.

[0040] The driving member is connected to the liftable plate 10 and is configured to drive the liftable plate 10 to approach or move away from the target member.

[0041] The first guide rail 40 is arranged on the pressing member 20 or the liftable plate 10, and the cutter 30 is configured to approach or move away from the target member along the first guide rail 40 relative to the pressing member 20.

[0042] Among them, the driving member can be realized by a hydraulic driving member (for example, a hydraulic cylinder) or a pneumatic driving member (for example, a pneumatic cylinder or an electric cylinder, etc.). In the case where the driving member is realized by a hydraulic cylinder, the driving member and the liftable plate 10 can be realized by a hydraulic lifting platform. Since the pressing member 20 and the cutter 30 are both arranged on the side of the liftable plate 10 close to the target member, in the process of driving the liftable plate 10 to approach the target member based on the driving member, the pressing member 20 and the cutter 30 both move close to the target member, and the pressing member 20 can be arranged to contact and press the target member first compared with the cutter 30 (a pressure sensor can be arranged on the contact surface between the pressing member 20 and the target member to determine whether the pressing member 20 has pressed the target member). For example, Figure 1 ​As shown, the setting direction of the first guide rail 40 can be consistent with the orientation direction of the cutter 30. The first guide rail 40 can be arranged on the pressing member 20 or the liftable plate 10. In the case that the first guide rail 40 is arranged on the liftable plate 10, the pressing member 20 and the liftable plate 10 can be fixedly connected. Figure 1 Exemplarily, the case that the first guide rail 40 is arranged on the pressing member 20 is shown. After the target member is pressed by the pressing member 20, the cutter 30 can be controlled to move along the first guide rail 40 to approach the target member, and the cutting operation on the target member can be realized.

[0043] Therefore, the cutting device 01 provided by the embodiment of the present application comprises a driving member, a liftable plate 10, a pressing member 20, a cutter 30 and a first guide rail 40. The cutting device 01 can drive the pressing member 20 to approach and press the target member by the driving member, so as to limit the degree of freedom of the target member; and then the cutter 30 is controlled to move along the first guide rail 40 to approach the target member relative to the pressing member, so as to cut the part to be cut of the target member. The target member is pressed by the pressing member 20, which can reduce the degree of distortion and deformation of the target member in the cutting process, so as to improve the cutting precision of the cutting device 01, and further provide guarantee for the overall production efficiency of the target member. The technical problem of low cutting precision of the existing cutting device, which leads to low overall production efficiency, is solved.

[0044] Please refer to Figure 2 , Figure 2 for the structure schematic diagram of the second cutting device 01 provided by the embodiment of the present application. Please refer to Figure 3 , Figure 3 for the structure schematic diagram of the third cutting device 01 provided by the embodiment of the present application.

[0045] In some optional embodiments, the pressing member 20 or the cutter 30 is provided with a positioning light source 50; the side of the liftable plate 10 close to the target member is provided with a plurality of positioning grooves 101, and the positioning grooves 101 are provided with light receivers 102; the positioning light source 50 is configured to emit positioning light along the setting direction of the positioning grooves 101; and the light receivers 102 are configured to receive the positioning light when the pressing member 20 or the cutter 30 moves to the position of the corresponding positioning groove.

[0046] The positioning light source 50 can be implemented by a laser light source. Since the divergence angle of laser light is very small, the laser light is almost emitted along a parallel direction, which can ensure that only the light source receiver arranged at the positioning groove at the position of the pressing member 20 or the cutter 30 can receive the light emitted by the positioning light source 50. The accuracy of the determined position of the pressing member 20 or the cutter 30 at the positioning groove can be improved according to the light source receiver 102 that receives the positioning light. In the case where the positioning light source 50 is arranged on the cutter 30, the light source receiver 102 is configured to receive the positioning light when the cutter 30 moves to the corresponding position of the positioning groove. The position of the cutter 30 at the positioning groove can be directly determined according to the light source receiver 102 that receives the positioning light. In the case where the positioning light source 50 is arranged on the pressing member 20, the light source receiver 102 is configured to receive the positioning light when the pressing member 20 moves to the corresponding position of the positioning groove. The position of the pressing member 20 at the positioning groove can be directly determined according to the light source receiver 102 that receives the positioning light. The current position of the cutter 30 can be determined according to the position of the pressing member 20 at the positioning groove and the relative position between the pressing member 20 and the cutter 30. The positioning groove 101 can be a cylindrical groove, a semi-cylindrical groove (as shown in FIG. 8) or other reasonable shapes. The positioning light source 50 can be arranged on the groove bottom of the positioning groove 101 or the groove wall of the positioning groove 101. The size and number of the positioning groove 101 can be adjusted according to actual application, which is not limited in the present application. The arrangement direction of the plurality of positioning grooves 101 can be perpendicular to the orientation direction of the cutter 30. By arranging the positioning light source 50 on the pressing member 20 or the cutter 30, a plurality of positioning grooves 101 are arranged on the side of the liftable plate 10 close to the target object, and a light source receiver 102 is arranged in each positioning groove 101. The position of the pressing member 20 or the cutter 30 at the positioning groove can be determined according to the light source receiver 102 that receives the positioning light. Therefore, the cutting device 01 can realize cutting operation at different positions of the target object to meet diversified cutting requirements. Figure 2

[0047] In some optional embodiments, the cutting device 01 further comprises a second guide rail 60 and a connecting member 70 arranged between the cutter 30 and the liftable plate 10. A first sliding connection hole is arranged on the pressing member 20, and a second sliding connection hole 701 is arranged on the connecting member 70. The second guide rail 60 passes through the first sliding connection hole and the second sliding connection hole 701, and the arrangement direction of the second guide rail 60 is perpendicular to the orientation direction of the cutter 30. The connecting member 70 and the pressing member 20 are fixedly connected, and the first guide rail 40 is arranged on the pressing member 20 or the connecting member 70. The driving member is further configured to drive the pressing member 20 and the connecting member 70 to move along the second guide rail 60 to different positioning groove positions.

[0048] ​The opening shape and size of the first sliding connection hole and the second sliding connection hole 701 can be adjusted according to the specific implementation mode (rail cross-sectional shape and cross-sectional size, etc.) of the second guide rail 60. Figure 3 The opening position of the second sliding connection hole 701 is exemplarily shown, and the opening position of the first sliding connection hole on the pressing member 20 corresponds to the opening position of the second sliding connection hole 701. Since the connecting member 70 and the pressing member 20 are fixedly connected, the first guide rail 40 can be specifically provided on the pressing member 20 or the connecting member 70, so that the cutter 30 can be close to or away from the target object along the first guide rail 40 relative to the pressing member 20. Since the setting direction of the second guide rail 60 is perpendicular to the orientation direction of the cutter 30, by driving the pressing member 20 and the connecting member 70 to move along the second guide rail 60 to different positioning groove positions, the first guide rail 40 provided on the pressing member 20 or the connecting member 70 can be moved to different positioning groove positions, that is, the cutter 30 which can slide along the first guide rail 40 is moved to different positioning groove positions; and then the cutting operation on different positions of the target object can be realized, and the diversified cutting requirements are met.

[0049] In some optional embodiments, the slide groove is provided on the liftable plate 10; the opening direction of the slide groove is perpendicular to the orientation direction of the cutter 30; and the cutting device 01 further comprises a first sliding block fixedly connected with the pressing member 20 or the connecting member 70; the first sliding block is in sliding connection with the slide groove; and the first sliding block is configured to drive the pressing member 20 and the connecting member 70 to move to different positioning groove positions by sliding along the slide groove.

[0050] The slide groove can be provided on the liftable plate 10 and adjacent to the side of the liftable plate 10 close to the target object. By providing the slide groove on the liftable plate 10 and perpendicular to the orientation direction of the cutter 30, and slidingly connecting the first sliding block with the slide groove and fixedly connecting the first sliding block with the pressing member 20 or the connecting member 70, the pressing member 20 and the connecting member 70 can be moved to different positioning groove positions based on the sliding of the first sliding block along the slide groove, and the cutting operation on different positions of the target object can be realized.

[0051] In some optional embodiments, one of the first fixed connecting member and the second fixed connecting member is provided on the pressing member 20 or the connecting member 70; the other of the first fixed connecting member and the second fixed connecting member is provided on the first sliding block; and the first fixed connecting member and the second fixed connecting member are configured to realize the fixed connection between the first sliding block and the pressing member 20 or realize the fixed connection between the first sliding block and the connecting member 70.

[0052] The first fixed connecting piece can be implemented by one of an inner threaded hole and an outer threaded column, and the second fixed connecting piece can be implemented by the other one of the inner threaded hole and the outer threaded column. The first fixed connecting piece and the second fixed connecting piece can also be implemented by a clamping type connecting piece in a clamping type fixed connecting unit. The first slider can be fixedly connected to the connecting piece 70 or the pressing piece 20 through the first fixed connecting piece and the second fixed connecting piece, and then the pressing piece 20 and the connecting piece 70 can be moved to different positioning groove positions based on the sliding of the first slider along the sliding groove.

[0053] In some optional embodiments, the cutting device 01 further comprises a control unit; the control unit is in communication connection with the light source receiver 102; the light source receiver 102 is further configured to send the received positioning light information to the control unit in the case of receiving the positioning light; wherein the positioning light information is used to determine the positioning groove position where the pressing piece 20 or the cutter 30 is located.

[0054] The control unit can be implemented by a microprocessor, a single-chip microcomputer or a programmable logic control unit, etc. The control unit can accurately determine the positioning groove position where the pressing piece 20 or the cutter 30 is located by receiving the positioning light information sent by the light source receiver 102.

[0055] In some optional embodiments, the cutting device 01 further comprises a displacement sensor 80 arranged on the cutter 30; the displacement sensor 80 is in communication connection with the control unit; the displacement sensor 80 is configured to acquire and send displacement data of the cutter 30 to the control unit; wherein the displacement data is used to determine the current position of the cutter 30.

[0056] The displacement data is specifically used to determine the relative position between the cutter 30 and the surface of the target piece. The displacement sensor 80 can be implemented by an optical displacement sensor or an ultrasonic displacement sensor. Based on the fact that the displacement sensor 80 can directly determine the distance between the displacement sensor and the surface of the target piece, and based on the distance between the displacement sensor 80 and the cutting tip of the cutter 30, the distance between the cutting tip of the cutter 30 and the surface of the target piece can be determined. Then, the movement of the cutter 30 along the first guide rail 40 relative to the pressing piece 20 can be accurately controlled according to the distance between the cutting tip of the cutter 30 and the surface of the target piece, and the cutting precision is further improved.

[0057] In some optional embodiments, the cutting device 01 further comprises a second slider; the second slider is in sliding connection with the first guide rail 40, and the second slider is further in fixed connection with the cutter 30; the second slider is configured to drive the cutter 30 to approach or move away from the target piece relative to the pressing piece 20 by sliding along the first guide rail 40.

[0058] The sliding power of the second slider along the first guide rail 40 can be provided based on the driving piece.

[0059] In some optional embodiments, the driving member comprises a hydraulic cylinder, the liftable plate 10 is fixedly connected with a piston rod of the hydraulic cylinder, and the hydraulic cylinder is configured to drive the liftable plate 10 to move close to or away from the target member.

[0060] In this way, the displacement control accuracy of the liftable plate 10 can be improved, and the cutting accuracy of the cutting device 01 can be further improved.

[0061] In some optional embodiments, the target member comprises a chip tube shell to be cut, the pressing member 20 and the cutter 30 are arranged on a side of the liftable plate 10 close to the chip tube shell, the driving member is connected with the liftable plate 10 and configured to drive the liftable plate 10 to move close to or away from the chip tube shell, and the first guide rail 40 is arranged on the pressing member 20 or the liftable plate 10, and the cutter 30 is configured to move close to or away from the chip tube shell along the first guide rail 40 relative to the pressing member 20.

[0062] In this way, the cutting quality of the chip tube shell pin is a prerequisite for measuring the yield of the chip in the later stage. Since the chip tube shell has a small volume, it is not easy to control its degree of freedom, and the pin of the tube shell has a small thickness and is prone to deformation. Therefore, for small and medium-sized enterprises that still use a large amount of manual work and semi-automatic equipment, the cutting process of the chip tube shell is prone to cause a large number of unqualified products, resulting in low production efficiency of the chip. Based on the cutting device provided in the present application, the driving member can drive the pressing member 20 to move close to and press the chip tube shell, so as to limit the degree of freedom of the chip tube shell, and then the cutter 30 can be controlled to move close to the chip tube shell along the first guide rail 40 relative to the pressing member, so as to cut the pin to be cut of the chip tube shell. By pressing the chip tube shell by the pressing member 20, the range of manual intervention in the pin cutting process can be reduced, the degree of distortion and deformation of the chip tube shell in the cutting process can be reduced, the cutting accuracy of the cutting device 01 for the pin to be cut can be improved, and the overall production efficiency of the chip packaging is ensured. In addition, the cutting device 01 provided in the present application can also realize batch cutting of the pin of the tube shell, while ensuring the cutting quality of the pin, improving the cutting efficiency of the pin, and further improving the overall production efficiency of the chip packaging.

[0063] It should be noted that the cutting direction of the cutting device 01 for the target member is vertically upward in the drawings only as an example, and the actual cutting direction of the cutting device 01 for the target member can be vertically downward or other cutting directions, which are not limited in the present application.

[0064] The embodiments of the present application also provide a cutting system, which comprises a fixing device and the cutting device 01 according to any one of the first aspect.

[0065] The fixing device is configured to fix the target object;

[0066] The cutting device 01 is configured to cut the target object.

[0067] It should be understood that the cutting system corresponds to the above-described cutting device 01 embodiment, and the specific implementation of the cutting system can be referred to the description above, and the detailed description is appropriately omitted here to avoid repetition.

[0068] In several embodiments provided by the embodiments of the present application, it should be understood that the disclosed device / system can also be implemented in other ways. The device embodiments described above are only schematic, for example, the flowchart and block diagram in the drawings show the possible implementation architecture, function and operation of the device according to the embodiments of the present application. In this regard, each block in the flowchart or block diagram can represent a module or a part of a module. It should also be noted that each block in the block diagram and / or flowchart, and the combination of blocks in the block diagram and / or flowchart, can be implemented by a dedicated hardware-based system for performing the specified function or action, or can be implemented by a combination of dedicated hardware and computer instructions.

[0069] In addition, each functional module in each of the embodiments of the present application can be integrated together to form an independent part, or each module can exist independently, or two or more modules can be integrated to form an independent part.

[0070] The above description is only an optional implementation of the embodiments of the present application, but the protection scope of the embodiments of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the embodiments of the present application, which should be covered within the protection scope of the embodiments of the present application.

Claims

1. A resection device, characterized in that, The device comprises a driving member, a liftable plate, a pressing member, a cutter and a first guide rail; The pressing member and the cutter are arranged on the side of the liftable plate close to the target member; The driving member is connected to the liftable plate and configured to drive the liftable plate to move close to or away from the target member; The first guide rail is arranged on the pressing member or the liftable plate, and the cutter is configured to move close to or away from the target member along the first guide rail relative to the pressing member.

2. The apparatus of claim 1, wherein, Among them, The pressing member or the cutter is provided with a positioning light source; the side of the liftable plate close to the target member is provided with a plurality of positioning grooves, and the positioning grooves are provided with light receivers; The positioning light source is configured to emit positioning light along the opening direction of the positioning groove; The light receiver is configured to receive the positioning light when the pressing member or the cutter moves to the position of the corresponding positioning groove.

3. The apparatus of claim 2, wherein, The device further comprises a second guide rail and a connecting member arranged between the cutter and the liftable plate; The pressing member is provided with a first sliding connection hole, and the connecting member is provided with a second sliding connection hole; the second guide rail passes through the first sliding connection hole and the second sliding connection hole, and the arrangement direction of the second guide rail is perpendicular to the direction of the cutter; The connecting member and the pressing member are fixedly connected, and the first guide rail is arranged on the pressing member or the connecting member; the driving member is further configured to drive the pressing member and the connecting member to move along the second guide rail to different positioning groove positions.

4. The apparatus of claim 3, wherein, Among them, The liftable plate is provided with a sliding groove; the opening direction of the sliding groove is perpendicular to the direction of the cutter; The device further comprises a first sliding block fixedly connected to the pressing member or the connecting member; The first sliding block and the sliding groove are in sliding connection; the first sliding block is configured to drive the pressing member and the connecting member to move to different positioning groove positions by sliding along the sliding groove.

5. The apparatus of claim 4, wherein, Among them, The pressing member or the connecting member is provided with one of a first fixed connecting member and a second fixed connecting member; the first sliding block is provided with the other of the first fixed connecting member and the second fixed connecting member; The first fixed connecting member and the second fixed connecting member are configured to realize the fixed connection between the first sliding block and the pressing member, or realize the fixed connection between the first sliding block and the connecting member.

6. The apparatus of claim 2, wherein, The device further comprises a control unit; The control unit is in communication connection with the light receiver; The light receiver is further configured to send the received positioning light information to the control unit when the positioning light is received; Among them, the positioning light information is used to determine the positioning groove position where the pressing member or the cutter is located.

7. The apparatus of claim 6, wherein, The device further comprises a displacement sensor arranged on the cutter; The displacement sensor is in communication connection with the control unit; The displacement sensor is configured to acquire and send displacement data of the cutter to the control unit; wherein the displacement data is used to determine the current position of the cutter.

8. The apparatus of claim 1, wherein, The device further comprises a second sliding block; The second sliding block is in sliding connection with the first guide rail, and is fixedly connected with the cutter; the second sliding block is configured to drive the cutter to move close to or away from the target object along the first guide rail.

9. The apparatus of any of claims 1-8, wherein, The driving member comprises a hydraulic cylinder. The liftable plate is fixedly connected with a piston rod of the hydraulic cylinder; the hydraulic cylinder is configured to drive the liftable plate to move close to or away from the target object.

10. A resection system, comprising: The system comprises a fixing device and the resection device according to any one of claims 1-9. The fixing device is configured to fix a target object. The resection device is configured to resect a part to be resected of the target object.