Opposite breaking-off equipment for lower-layer connecting material of electric brush
By designing a brush-based material removal device that removes material from the upper and lower layers of the strip simultaneously using a synchronous material removal mechanism, the problem of inaccurate and inefficient material removal is solved, thus improving production efficiency.
Patent Information
- Application Number
- CN202423120212.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2034-12-17
AI Technical Summary
In existing technologies, the removal of brittle material from the strip during potentiometer production is not accurate or efficient enough, which affects production efficiency.
A brush-driven material removal device for opposing material removal is designed, comprising a material support and positioning part, a clamping structure and a synchronous material removal part. The material strip is fixed by a vacuum suction head, and the synchronous material removal mechanism is used to achieve synchronous removal of the material between the upper and lower layers.
It achieves stable and accurate removal of material connecting the upper and lower layers of the conveyor belt, simplifies the production process, and improves production efficiency.
Smart Images

Figure CN223884225U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of brush production and processing equipment, in particular to a brush lower layer continuous material opposite breaking-off equipment. BACKGROUND
[0002] A potentiometer is generally composed of a resistor body and a movable brush, when the brush moves along the resistor body, the resistance value or voltage related to the displacement amount is obtained at the output end. The potentiometer has a small size, in order to improve the production efficiency of the potentiometer, a multi-material belt splicing combination method is generally used for production, that is, different components such as potentiometer resistor bodies and brushes are arranged on different material belts, and then the different material belts are layered and spliced in whole. After splicing and combination, the continuous material on the material belt connected with each component of the potentiometer respectively needs to be removed before the final potentiometer product is obtained. How to accurately and efficiently remove the continuous material on the material belt is the long-term research direction of each enterprise in the industry. CONTENT OF THE UTILITY MODEL
[0003] In view of the deficiencies of the prior art, the present application provides a brush lower layer continuous material opposite breaking-off equipment, which can stably and accurately remove the continuous material at the upper end and the lower end of the lower layer of the material belt simultaneously, has a simple and stable structure, simplifies the production and processing steps, and greatly improves the production and processing efficiency.
[0004] A brush lower layer continuous material opposite breaking-off equipment, comprising a incoming material support positioning part for supporting incoming material, a pressing structure for pressing the incoming material on the incoming material support positioning part, and a synchronous material breaking-off part for breaking off the continuous material on both sides of the incoming material simultaneously.
[0005] The synchronous material breaking-off part is centrally symmetrically provided with two material breaking-off execution structures capable of synchronous up-down movement.
[0006] As a preferred, the material breaking-off execution structure comprises a lower material breaking-off plate, and an upper material breaking-off plate arranged above the lower material breaking-off plate and capable of being opened and closed by translation relative to the lower material breaking-off plate.
[0007] As a preferred, a gap is formed between the lower material breaking-off plate and the upper material breaking-off plate, and the width of the gap is greater than the thickness of the continuous material on the incoming material.
[0008] As a preferred, a plurality of air holes serving as suction heads are arranged on the pressing structure, and the air holes are connected with a vacuum generator through an air pipe.
[0009] Further, the synchronous material breaking-off part comprises a vertical support bearing structure, a synchronous driving structure arranged at the rear side of the vertical support bearing structure, and a synchronous material breaking-off structure arranged at the front side of the vertical support bearing structure and matched with the synchronous driving structure.
[0010] As preferred, the vertical support bearing structure further comprises a vertical support bearing plate, a connecting fixed block arranged on the bottom surface of the front side of the vertical support bearing plate and flush with the bottom surface of the vertical support bearing plate, a synchronous material breaking driving motor seat arranged on the rear side of the vertical support bearing plate, a driving shaft extension hole penetrating through the vertical support bearing plate and the synchronous material breaking driving motor seat, and at least two vertical synchronous guide rails arranged vertically on the front side of the vertical support bearing plate.
[0011] The synchronous driving structure further comprises a synchronous material breaking driving motor fixedly arranged on the synchronous material breaking driving motor seat and having the driving shaft extending into the driving shaft extension hole, and a synchronous material breaking eccentric wheel arranged on the driving shaft.
[0012] The synchronous material breaking structure further comprises a synchronous material breaking guide block arranged on the vertical synchronous guide rail and vertically movable along the vertical synchronous guide rail, a synchronous material breaking driven block arranged vertically and fixedly on the synchronous material breaking guide block, a synchronous material breaking driving block arranged on the synchronous material breaking driven block and matched with the synchronous material breaking eccentric wheel through a synchronous material breaking elliptical matching hole, the synchronous material breaking eccentric wheel arranged in the synchronous material breaking elliptical matching hole, two material breaking execution structures arranged symmetrically on the synchronous material breaking driven block, and a synchronous material breaking support block fixedly arranged on the front side of the synchronous material breaking driven block and on the lower side of the material breaking execution structure.
[0013] As preferred, the material breaking execution structure further comprises a lower material breaking plate, a material breaking connecting plate arranged on the outer side of the lower material breaking plate, a material breaking extension driving cylinder arranged on the upper side of the lower material breaking plate and fixedly arranged on the material breaking connecting plate, an upper material breaking plate arranged above the lower material breaking plate and on the extension rod of the material breaking extension driving cylinder, and a material breaking accommodation slot arranged on the lower side of the upper material breaking plate.
[0014] Further, the incoming material support positioning part further comprises a bottom bearing block and an incoming material bearing limiting seat arranged on the upper side of the bottom bearing block.
[0015] As preferred, the incoming material bearing limiting seat comprises an incoming material bearing seat body in the shape of a cuboid, a plurality of incoming material separation blocks arranged in parallel with the short side of the upper side of the incoming material bearing seat body and along the long side of the upper side of the incoming material bearing seat body, a plurality of incoming material side limiting blocks arranged symmetrically along the two long edges of the upper side of the incoming material bearing seat body, and an incoming material detection laser slot horizontally penetrating through all the incoming material separation blocks.
[0016] Further, a bearing slag collecting box is further arranged below the incoming material support positioning part.
[0017] The bearing residue collecting box comprises a residue collecting box bottom fixing base, a residue collecting box body arranged above the residue collecting box bottom fixing base and fixed as a whole with the residue collecting box bottom fixing base, two fixed openings symmetrically arranged on the upper ends of the front and rear sides of the residue collecting box body and used for erecting material supporting and positioning parts, and two residue collecting box connecting fixing plates vertically arranged on the front and rear side walls of the residue collecting box body and adjacent to the two fixed openings respectively; the side surface of the residue collecting box bottom fixing base is further provided with a residue collecting box carrying handle;
[0018] The top end height of the front and rear side walls of the residue collecting box body is higher than the top end height of the left and right side walls;
[0019] The side surface of the bottom bearing block is provided with a bearing block fixing threaded hole matched with the residue collecting box connecting fixing plate, and the lower side surface of the bottom bearing block is provided with a bottom bearing block limiting strip used for limiting the position of the bottom bearing block;
[0020] The bottom bearing block is fixed on the residue collecting box connecting fixing plate through a fixing screw penetrating through the residue collecting box connecting fixing plate and screwed in the bearing block fixing threaded hole; and the length of the bottom bearing block limiting strip is smaller than the interval of the two fixed openings;
[0021] The lower opening of the material connecting lower leakage opening is located above the residue collecting box body.
[0022] Compared with the prior art, the embodiment of the present application has the following beneficial effects:
[0023] The utility model discloses a stable, accurate material connecting of the upper end and the lower end of the lower layer of material belt is removed simultaneously, and its structure is simple and stable, the step of production and processing is simplified, and the production and processing efficiency is greatly improved.
[0024] Part of the additional features of the present application can be described in the following description. Part of the additional features of the present application are obvious to those skilled in the art through the examination of the following description and corresponding drawings or the understanding of the production or operation of the embodiments. The features disclosed in the present application can be realized and achieved through the practice or use of various methods, means and combinations of the specific embodiments described below. BRIEF DESCRIPTION OF DRAWINGS
[0025] The drawings described herein are used to provide further understanding of the present application, and constitute a part of the present application. The schematic embodiments and their descriptions of the present application are used to explain the present application, and do not constitute the limitation of the present application. In each figure, the same reference signs represent the same parts. Among them,
[0026] Figure 1 It is a structural schematic view of the utility model.
[0027] Figure 2 It is a structural schematic view of the synchronous material separating part of the utility model.
[0028] Figure 3 The utility model discloses a component cooperation use explosion map.
[0029] Figure 4 The utility model discloses the structure diagram of the lower material plate.
[0030] Mark explanation:
[0031] 1000, synchronous material breaking part;
[0032] 1100, vertical support bearing structure; 1110, vertical support bearing plate; 1120, connecting fixed block; 1130, synchronous material breaking drive motor seat; 1140, drive shaft extension hole; 1150, vertical synchronous guide rail;
[0033] 1200, synchronous drive structure; 1210, synchronous material breaking drive motor; 1220, synchronous material breaking eccentric wheel;
[0034] 1300, synchronous material breaking structure; 1310, synchronous material breaking drive block; 1320, synchronous material breaking ellipse cooperation hole; 1330, synchronous material breaking driven block; 1340, synchronous material breaking guide block; 1350, material breaking execution structure; 1351, lower material plate; 1352, material breaking connecting plate; 1353, material lower leakage mouth; 1354, material breaking telescopic drive cylinder; 1355, upper material plate; 1356, material breaking accommodation slot; 1360, synchronous material breaking support block;
[0035] 2000, incoming material support positioning part;
[0036] 2100, bottom bearing block;
[0037] 2200, bearing block fixed screw hole;
[0038] 2300, bearing block bottom limit strip;
[0039] 2400, incoming material bearing limit seat; 2410, incoming material bearing seat body; 2420, incoming material separation block; 2430, incoming material side limit block; 2440, incoming material detection laser slot;
[0040] 3000, compression structure;
[0041] 4000, bearing slag collection box;
[0042] 4100, slag collection box bottom fixed seat;
[0043] 4200, slag collection box handling lifting handle;
[0044] 4300, slag collection box body;
[0045] 4400, the slag collecting box connecting fixing plate;
[0046] 4500, the fixed opening. DETAILED DESCRIPTION
[0047] In order to make the personnel in the technical field better understand the scheme of the present application, the technical scheme in the embodiments of the present application will be clearly and completely described below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor should be within the scope of protection of the present application.
[0048] It should be noted that if the terms "first", "second", etc. are involved in the specification, claims and above-mentioned drawings of the present application, they are used to distinguish similar objects, and do not have to be used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so as to describe the embodiments of the present application. In addition, if the terms "include" and "have" and any variations thereof are involved, it is intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units does not have to be limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0049] In the present application, if the terms "up", "down", "left", "right", "front", "back", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal" and the like are involved, the indicated orientation or positional relationship is based on the orientation or positional relationship shown in the drawings. These terms are mainly used to better describe the present application and its embodiments, and are not used to limit the indicated devices, elements or components to have a specific orientation, or to be constructed and operated in a specific orientation.
[0050] Also, in addition to being used to indicate the orientation or positional relationship, the above-mentioned part of the terms can also be used to indicate other meanings, for example, the term "up" can also be used to indicate a certain dependent relationship or connection relationship in some cases. For those of ordinary skill in the art, the specific meaning of these terms in the present application can be understood according to the specific circumstances.
[0051] Furthermore, in the present application, if the terms "mount", "set", "provided with", "connect", "connected", "socketed" and the like are involved, they should be understood in a broad sense. For example, it can be fixedly connected, detachably connected, or integrally configured; it can be mechanically connected, or electrically connected; it can be directly connected, or indirectly connected through an intermediate medium, or it can be internal communication between two devices, elements or components. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0052] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The present application will be described in detail below with reference to the drawings and in combination with the embodiments.
[0053] Embodiments
[0054] As shown in Figures 1-4 A brush lower layer continuous material opposite prying device, comprising a material support positioning part 2000 for carrying incoming material, a pressing structure 3000 for pressing the incoming material on the material support positioning part 2000, and a synchronous prying part 1000 for simultaneously prying the continuous material on both sides of the incoming material;
[0055] The material support positioning part cooperates with the pressing structure to press and fix the incoming material on the material positioning part, effectively preventing the incoming material from moving when the prying part moves up and down, and effectively ensuring smooth prying.
[0056] The synchronous prying part 1000 is centrally symmetrically provided with two prying execution structures 1350 capable of synchronous up-down movement.
[0057] The prying execution structure 1350 includes a lower prying plate 1351, and an upper prying plate 1355 arranged above the lower prying plate 1351 and capable of translational opening and closing relative to the lower prying plate 1351.
[0058] A gap is formed between the lower prying plate 1351 and the upper prying plate 1355, and the width of the gap is greater than the thickness of the continuous material on the incoming material.
[0059] The pressing structure 3000 is provided with a plurality of air holes as suction heads, and the air holes are connected with a vacuum generator through an air pipe.
[0060] The pressing structure is a suction head of a mechanical arm, which is a conventional device for grabbing the brush. The suction head of the mechanical arm can suck the brush from the previous station and transfer the brush to the incoming material supporting and positioning part through the movement of the mechanical arm. The brush is pressed on the incoming material supporting and positioning part when the synchronous material separating part operates. The setting and use mode are mature technologies in the field. The skilled person in the art can complete the setting and use without creative labor according to the above description. Here, no further description is given.
[0061] Further, the synchronous material separating part 1000 comprises a vertical supporting and bearing structure 1100, a synchronous driving structure 1200 arranged at the rear side of the vertical supporting and bearing structure 1100, and a synchronous material separating structure 1300 arranged at the front side of the vertical supporting and bearing structure 1100 and matched with the synchronous driving structure 1200.
[0062] As a preferred, the vertical supporting and bearing structure 1100 further comprises a vertical supporting and bearing plate 1110, a connecting and fixing block 1120 arranged at the bottom surface of the front side of the vertical supporting and bearing plate 1110 and flush with the bottom surface of the vertical supporting and bearing plate 1110, a synchronous material separating driving motor seat 1130 arranged at the rear side of the vertical supporting and bearing plate 1110, a driving shaft extension hole 1140 penetrating through the vertical supporting and bearing plate 1110 and the synchronous material separating driving motor seat 1130, and at least two vertical synchronous guide rails 1150 arranged vertically at the front side of the vertical supporting and bearing plate 1110.
[0063] The vertical supporting and bearing structure serves to bear the synchronous driving structure and the synchronous material separating structure, and reliably fix the synchronous material separating part on the ground.
[0064] The synchronous driving structure 1200 further comprises a synchronous material separating driving motor 1210 fixedly arranged on the synchronous material separating driving motor seat 1130 and having a driving shaft extending into the driving shaft extension hole 1140, and a synchronous material separating eccentric wheel 1220 arranged on the driving shaft.
[0065] The synchronous driving structure is a power source of the synchronous material separating structure, which can make the synchronous material separating structure reciprocate up and down under the driving of the synchronous driving structure.
[0066] The synchronous stripping structure 1300 further comprises a synchronous stripping guide block 1340 arranged on the vertical synchronous guide rail 1150 and vertically movable along the vertical synchronous guide rail 1150, a synchronous stripping driven block 1330 vertically arranged and fixed on the synchronous stripping guide block 1340, a synchronous stripping driving block 1310 arranged on the synchronous stripping driven block 1330 and matched with the synchronous stripping eccentric wheel 1220 through the synchronous stripping elliptical matching hole 1320, and the synchronous stripping eccentric wheel 1220 arranged in the synchronous stripping elliptical matching hole 1320, two stripping execution structures 1350 horizontally arranged on the synchronous stripping driven block 1330 and symmetrically arranged with each other on the material carrying limiting seat 2400, and a synchronous stripping support block 1360 fixed on the front side of the synchronous stripping driven block 1330 and the lower side of the stripping execution structure 1350.
[0067] When the synchronous stripping driving motor operates, the synchronous stripping eccentric wheel rotates with the driving shaft, and then drives the synchronous stripping driving block to reciprocate up and down, and the synchronous stripping driving block further drives the synchronous stripping driven block to reciprocate up and down along the vertical synchronous guide rail, and finally drives the stripping execution structure to reciprocate up and down to strip the material on the brush.
[0068] The stripping execution structure 1350 further comprises a lower stripping plate 1351, a material stripping outlet 1353 arranged on the lower stripping plate 1351, a stripping connecting plate 1352 arranged on the outer side of the lower stripping plate 1351, a stripping telescopic driving cylinder 1354 arranged on the upper side of the lower stripping plate 1351 and fixed on the stripping connecting plate 1352, an upper stripping plate 1355 arranged above the lower stripping plate 1351 and on the telescopic rod of the stripping telescopic driving cylinder 1354, and a stripping accommodation groove 1356 arranged on the lower side of the upper stripping plate 1355.
[0069] The stripping telescopic driving cylinder is used to make the upper stripping plate telescopic, and when the pressing structure transfers the group of brushes, the upper stripping plate is retracted outwardly so that the group of brushes can be smoothly put into the material carrying limiting seat, and when the group of brushes is pressed in the material carrying limiting seat, the upper stripping plate is extended inwardly to cover the upper side of the material.
[0070] When the stripping execution structure reciprocates up and down, the material can be repeatedly bent up and down, and finally separated from the brush, and then leaked out through the material stripping outlet.
[0071] The material support positioning part 2000 comprises a bottom carrying block 2100 and a material carrying limiting seat 2400 arranged on the upper side of the bottom carrying block 2100.
[0072] The incoming material bearing limiting seat 2400 comprises an incoming material bearing seat body 2410 in the shape of a cuboid, a plurality of incoming material partition blocks 2420 with the same spacing arranged in parallel with the short side of the upper side of the incoming material bearing seat body 2410 and along the long side of the upper side of the incoming material bearing seat body 2410, a plurality of incoming material side limiting blocks 2430 with the same spacing symmetrically arranged along the two long edges of the upper side of the incoming material bearing seat body 2410, and an incoming material detection laser slot 2440 horizontally penetrating all the incoming material partition blocks 2420.
[0073] The compression structure sucks the group of brush material connected brushes and places them on the incoming material bearing limiting seat, each brush is located between two adjacent incoming material partition blocks, and the gap on the brush material connected brush is penetrated by the incoming material side limiting block, thereby effectively fixing and limiting the group of brushes.
[0074] The incoming material support positioning part 2000 is further provided below with a bearing slag collecting box 4000;
[0075] The bearing slag collecting box 4000 comprises a slag collecting box bottom fixing seat 4100, a slag collecting box body 4300 arranged above the slag collecting box bottom fixing seat 4100 and fixed as a whole with the slag collecting box bottom fixing seat 4100, two fixed openings 4500 symmetrically arranged on the upper middle part of the front and rear sides of the slag collecting box body 4300 for erecting the incoming material support positioning part 2000, and two slag collecting box connecting fixing plates 4400 respectively vertically arranged on the front and rear side walls of the slag collecting box body 4300 and respectively adjacent to the two fixed openings 4500; the side surface of the slag collecting box bottom fixing seat 4100 is further provided with a slag collecting box carrying handle;
[0076] The top end height of the front and rear side walls of the slag collecting box body 4300 is higher than the top end height of the left and right side walls;
[0077] The side surface of the bottom bearing block 2100 is provided with a bearing block fixing threaded hole 2200 matched with the slag collecting box connecting fixing plate 4400, and the lower side surface of the bottom bearing block 2100 is provided with a bearing block bottom limiting strip 2300 for limiting the position of the bottom bearing block 2100;
[0078] The bottom bearing block 2100 is fixed on the slag collecting box connecting fixing plate 4400 by a fixing screw penetrating through the slag collecting box connecting fixing plate 4400 and then tightened in the bearing block fixing threaded hole 2200; the length of the bearing block bottom limiting strip 2300 is less than the spacing of the two fixed openings 4500;
[0079] The lower opening of the continuous material lower discharge port 1353 is located above the slag collecting box body 4300, and the purpose is to make the two material breaking execution structures of the synchronous material breaking part extend into the slag collecting box body from both sides, so that the broken continuous material can directly fall into the slag collecting box body by the material breaking execution structure, more effectively avoiding the broken continuous material scattered around the equipment, and thus the staff does not need to clean the environment around the equipment frequently.
[0080] The fixed opening is arranged so that the material supporting and positioning part can be arranged in the space above the slag collecting box body, and the material supporting and positioning part can be better fixed by the slag collecting box connecting and fixing sheet, and the displacement of the material supporting and positioning part is more effectively reduced, and the stability and accuracy of the processing are ensured.
[0081] It should be noted that all the features disclosed in the specification, or the steps in all the disclosed methods or processes, can be combined in any manner, except for mutually exclusive features and / or steps.
[0082] In addition, the above specific embodiments are exemplary, and those skilled in the art can think of various solutions under the inspiration of the disclosure of the present application, and these solutions also belong to the disclosed range of the present application and fall within the protection scope of the present application. Those skilled in the art should understand that the specification and drawings of the present application are illustrative and do not constitute a limitation on the claims. The protection scope of the present application is defined by the claims and their equivalents.
Claims
1. A brush underlayer continuous material facing peeling device, characterized by, The device comprises a material support positioning part (2000) for carrying the material, a pressing structure (3000) for pressing the material on the material support positioning part (2000), and a synchronous material breaking part (1000) for breaking the material on both sides of the material at the same time. The synchronous material breaking part (1000) is centrally symmetrically provided with two material breaking execution structures (1350) capable of synchronous up-down movement. The material breaking execution structure (1350) comprises a lower material breaking plate (1351) and an upper material breaking plate (1355) arranged above the lower material breaking plate (1351) and capable of being opened and closed relative to the lower material breaking plate (1351).
2. The device according to claim 1, wherein, A gap is formed between the lower material breaking plate (1351) and the upper material breaking plate (1355), and the width of the gap is greater than the thickness of the material on the material.
3. The device according to claim 2, wherein, The pressing structure (3000) is provided with a plurality of air holes as suction heads, and the air holes are connected with a vacuum generator through an air pipe.
4. The device according to claim 3, wherein, The synchronous material breaking part (1000) comprises a vertical support bearing structure (1100), a synchronous driving structure (1200) arranged at the rear side of the vertical support bearing structure (1100), and a synchronous material breaking structure (1300) arranged at the front side of the vertical support bearing structure (1100) and matched with the synchronous driving structure (1200).
5. The apparatus according to claim 4, wherein, The vertical support bearing structure (1100) further comprises a vertical support bearing plate (1110), a connecting fixed block (1120) arranged on the bottom surface of the front side of the vertical support bearing plate (1110) and flush with the bottom surface of the vertical support bearing plate (1110), a synchronous material breaking driving motor seat (1130) arranged at the rear side of the vertical support bearing plate (1110), a driving shaft extension hole (1140) penetrating through the vertical support bearing plate (1110) and the synchronous material breaking driving motor seat (1130), and at least two vertical synchronous guide rails (1150) arranged vertically at the front side of the vertical support bearing plate (1110). The synchronous driving structure (1200) further comprises a synchronous material breaking driving motor (1210) fixedly arranged on the synchronous material breaking driving motor seat (1130) and having a driving shaft extending into the driving shaft extension hole (1140), and a synchronous material breaking eccentric wheel (1220) arranged on the driving shaft. The synchronous stripping structure (1300) further comprises a synchronous stripping guide block (1340) arranged on the vertical synchronous guide rail (1150) and vertically movable along the vertical synchronous guide rail (1150), a synchronous stripping driven block (1330) vertically arranged and fixed on the synchronous stripping guide block (1340), a synchronous stripping driving block (1310) arranged on the synchronous stripping driven block (1330) and matched with the synchronous stripping eccentric wheel (1220) through the synchronous stripping elliptical matching hole (1320), and the synchronous stripping eccentric wheel (1220) arranged in the synchronous stripping elliptical matching hole (1320), two stripping execution structures (1350) horizontally arranged on the synchronous stripping driven block (1330) and symmetrically arranged with the material carrying limiting seat (2400), and a synchronous stripping support block (1360) fixed on the front side of the synchronous stripping driven block (1330) and the lower side of the stripping execution structure (1350).
6. The device according to claim 5, wherein, The stripping execution structure (1350) further comprises a lower stripping plate (1351), a material connecting lower outlet (1353) arranged on the lower stripping plate (1351), a stripping connecting plate (1352) arranged on the outer side of the lower stripping plate (1351), a stripping telescopic driving cylinder (1354) arranged on the upper side of the lower stripping plate (1351) and fixed on the stripping connecting plate (1352), an upper stripping plate (1355) arranged above the lower stripping plate (1351) and on the telescopic rod of the stripping telescopic driving cylinder (1354), and a stripping accommodation groove (1356) arranged on the lower side of the upper stripping plate (1355).
7. The apparatus according to claim 6, wherein, The incoming material support positioning part (2000) comprises a bottom carrying block (2100) and an incoming material carrying limiting seat (2400) arranged on the upper side of the bottom carrying block (2100).
8. The apparatus according to claim 7, wherein, The incoming material carrying limiting seat (2400) comprises an incoming material carrying seat body (2410) in the shape of a cuboid, a plurality of incoming material separation blocks (2420) arranged in parallel with the short side of the upper side of the incoming material carrying seat body (2410) and at the same interval along the long side of the upper side of the incoming material carrying seat body (2410), a plurality of incoming material side limiting blocks (2430) arranged symmetrically along the two long edges of the upper side of the incoming material carrying seat body (2410) at the same interval, and an incoming material detection laser groove (2440) horizontally penetrating all the incoming material separation blocks (2420).
9. The apparatus according to claim 8, wherein, A carrying slag collecting box (4000) is further arranged below the incoming material support positioning part (2000).
10. The apparatus according to claim 9, wherein the apparatus is characterized by: The carrying slag collecting box (4000) comprises a slag collecting box bottom fixing seat (4100), a slag collecting box body (4300) arranged above the slag collecting box bottom fixing seat (4100) and fixed as a whole with the slag collecting box bottom fixing seat (4100), two fixed openings (4500) symmetrically arranged on the upper middle parts of the front and rear sides of the slag collecting box body (4300) and used for erecting the incoming material supporting and positioning part (2000), and two slag collecting box connecting fixing plates (4400) vertically arranged on the front and rear side walls of the slag collecting box body (4300) respectively and adjacent to the two fixed openings (4500); the side surface of the slag collecting box bottom fixing seat (4100) is further provided with a slag collecting box carrying handle; The top end height of the front and rear side walls of the slag collecting box body (4300) is higher than the top end height of the left and right side walls; The side surface of the bottom carrying block (2100) is provided with a carrying block fixing threaded hole (2200) matched with the slag collecting box connecting fixing plate (4400), and the lower side surface of the bottom carrying block (2100) is provided with a carrying block bottom limiting strip (2300) used for limiting the position of the bottom carrying block (2100); The bottom carrying block (2100) is fixed on the slag collecting box connecting fixing plate (4400) through a fixing screw which penetrates through the slag collecting box connecting fixing plate (4400) and is screwed in the carrying block fixing threaded hole (2200); and the length of the carrying block bottom limiting strip (2300) is less than the spacing between the two fixed openings (4500); The lower opening of the incoming material lower leakage opening (1353) is located above the slag collecting box body (4300).