Automatic intelligent metal sorting system

By incorporating an electromagnetic generator and a crushing module within the electromagnetic enclosure, combined with a transmission module, automatic sorting of ferromagnetic and non-ferromagnetic metals is achieved. This solves the problem of inability to distinguish between them in traditional sorting methods, and improves resource recycling efficiency and environmental protection.

CN121314734AInactive Publication Date: 2026-01-13HUBEI SHIMEI TECH
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Patent Information

Application Number
CN202511768419.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-28
Publication Date
2026-01-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional methods cannot effectively separate ferromagnetic and non-ferromagnetic metals, making it difficult to solve problems related to resource recycling and environmental pollution.

Method used

The electromagnetic box uses an electromagnetic generator built into it, combined with a crushing module and a transmission module, to automatically sort ferromagnetic and non-ferromagnetic metals through electromagnetic force and mechanical motion. The inclined surface and opening design built into the electromagnetic box allow different metals to be discharged separately.

Benefits of technology

It enables intelligent sorting of ferromagnetic and non-ferromagnetic metals, improves resource recycling efficiency, reduces the need for manual sorting, and reduces environmental pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of intelligent metal sorting, and particularly relates to an automatic intelligent metal sorting system which comprises an electromagnetic box body, a supporting frame, a first opening, a second opening, a material pushing sliding rod and a rectangular sliding groove, the supporting frame is fixedly installed on the electromagnetic box body, the rectangular sliding groove is formed in the electromagnetic box body, and the material pushing sliding rod is slidably installed in the rectangular sliding groove; a smashing module and a transmission module are installed on the electromagnetic box body, the smashing module and the transmission module are connected through a connecting belt, an electromagnetic generator is arranged in the electromagnetic box body, magnetic force is generated through electrification, ferromagnetic metal in smashed materials is magnetically attracted to the inclined face of the electromagnetic box body, and the ferromagnetic metal is separated from the inclined face of the electromagnetic box body along with reciprocating motion of a material pushing sliding rod. According to the intelligent sorting device for the ferromagnetic metal and the non-ferromagnetic metal, the ferromagnetic metal in the crushed materials is discharged through the first opening, the non-ferromagnetic metal in the crushed materials is discharged through the second opening under the action of gravity, and intelligent sorting of the ferromagnetic metal and the non-ferromagnetic metal is achieved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of metal intelligent sorting, and particularly relates to a metal automatic intelligent sorting system. BACKGROUND

[0002] With the acceleration of global industrialization and the shortening of the replacement cycle of electronic products, the amount of waste metals increases dramatically. These metal waste materials are complex in composition, usually containing iron, aluminum, copper, stainless steel, zinc, lead and other metals and their alloys, and often mixed with plastic, rubber, glass and other non-metallic substances. Effective sorting of mixed metals is a key link to realize resource recycling, reduce primary mineral exploitation, reduce energy consumption and environmental pollution.

[0003] The traditional metal sorting method mainly relies on manual sorting, but it is difficult to sort ferromagnetic metals and non-ferromagnetic metals in the sorting process. SUMMARY

[0004] The application aims to provide a metal automatic intelligent sorting system to solve the technical problem that ferromagnetic metals and non-ferromagnetic metals cannot be sorted.

[0005] To achieve the above-mentioned purpose, the specific technical scheme of the metal automatic intelligent sorting system is as follows: A metal automatic intelligent sorting system, comprising an electromagnetic box, a support frame, an opening one, an opening two, a pushing slide rod and a rectangular sliding groove, the support frame is fixedly installed on the electromagnetic box, the rectangular sliding groove is opened on the electromagnetic box, the pushing slide rod is slidably installed in the rectangular sliding groove, a crushing module is installed on the electromagnetic box, a transmission module is installed on the electromagnetic box, and the crushing module and the transmission module are connected through a connecting belt.

[0006] Further, the electromagnetic box is provided with an electromagnetic generator, and the electromagnetic generator generates magnetic force when powered.

[0007] Further, the support frame is provided with an opening one at the left and right ends for discharging ferromagnetic metals, and an opening two is opened on the front end face of the support frame for discharging non-ferromagnetic metals.

[0008] Further, the electromagnetic box is provided with an inclined surface, and the opening two is arranged at the low part of the inclined surface.

[0009] Further, the crushing module comprises a crushing box, a driven shaft, a material collecting frame, a driven roller, a crushing ring one, an execution motor, a motor mounting frame, a driving roller, a driving shaft, a crushing ring two, a gear one, and a gear two, one end of the crushing box is fixedly installed on the support frame, the other end of the crushing box is fixedly installed with the material collecting frame, the crushing box is rotationally installed with the driven shaft, the driven shaft is fixedly installed with the driven roller, a plurality of crushing ring ones are linearly installed on the driven roller, the driven shaft is fixedly installed with the gear one, the gear one is in meshing transmission with the gear two, the gear two is fixedly installed on one end of the driving shaft, the other end of the driving shaft is installed on the output shaft of the execution motor, the execution motor is installed on the side wall of the crushing box through the motor mounting frame, the driving roller is fixedly installed on the driving shaft, and a plurality of crushing ring twos are linearly installed on the driving roller.

[0010] Further, the crushing ring two is staggered with the crushing ring one.

[0011] Further, the transmission module comprises a mounting frame, a rotating bevel gear one, a rotating bevel gear two, a transmission mounting shaft, a driving sleeve, a driving ring, an execution cylinder, a middle-end bevel gear one, a middle-end bevel gear rotating shaft, a connecting belt, a threaded rotating rod, a middle-end bevel gear two, an output bevel gear, and an output bevel gear rotating shaft, the mounting frame is fixedly installed on the electromagnetic box, the rotating bevel gear one and the rotating bevel gear two are rotationally installed on the mounting frame at the same time, the transmission mounting shaft is rotationally installed between the rotating bevel gear one and the rotating bevel gear two, the rotating bevel gear one and the rotating bevel gear two are in meshing transmission with the middle-end bevel gear one at the same time, the middle-end bevel gear one is fixedly installed on one end of the middle-end bevel gear rotating shaft, the other end of the middle-end bevel gear rotating shaft is fixedly installed with the middle-end bevel gear two, the middle-end bevel gear two is in meshing transmission with the output bevel gear, the output bevel gear is rotationally installed on the mounting frame through the output bevel gear rotating shaft, the connecting belt is connected between the output bevel gear rotating shaft and the driven shaft, the driving sleeve is slidably installed on the transmission mounting shaft, the driving sleeve is rotationally matched with the driving ring, the driving ring is installed on the output shaft of the execution cylinder, the execution cylinder is installed on the mounting frame, the threaded rotating rod is rotationally installed on the electromagnetic box, the threaded rotating rod is threadedly matched with the pushing slide rod, the transmission mounting shaft is fixedly connected with the threaded rotating rod, and the driving sleeve is in meshing transmission with the end face of the rotating bevel gear one or the rotating bevel gear two.

[0012] Further, a rectangular sliding groove A is formed on the transmission mounting shaft, a rectangular protrusion A is arranged on the inner end face of the driving sleeve, and the rectangular protrusion A is slidably matched with the rectangular sliding groove A.

[0013] The advantages of the present application are that: 1. Start to execute motor, the motor drives the main drive roller and the crushing ring two to rotate simultaneously through the main shaft, and through the gear one and the gear two meshing transmission, so that the driven shaft drives the driven roller and the crushing ring one to rotate simultaneously, through the crushing ring one and the crushing ring two and the contact with the recycled materials, realize the crushing of the recycled materials, and make the recycled materials fall into the electromagnetic box, realize the distinction of the ferromagnetic metal and the non ferromagnetic metal, realize the intelligent sorting; 2. The driven shaft rotates simultaneously through the connecting belt to drive the output bevel shaft to rotate, the output bevel shaft drives the middle end bevel shaft and the middle end bevel one to rotate through the output bevel gear and the middle end bevel gear two, through the middle end bevel one to drive the rotating bevel gear one and the rotating bevel gear two to rotate simultaneously, the initial position, the execution cylinder output shaft is stretched out and drives the driving ring to make the driving sleeve mesh with the end surface of the rotating bevel gear two, the rotating bevel gear two rotates simultaneously through the driving sleeve to drive the transmission mounting shaft and the threaded rotating rod to rotate, so that the threaded rotating rod drives the pushing slide rod to slide to the right side along the rectangular slide groove, the left and right two end surfaces of the rectangular slide groove are respectively provided with an execution switch A and an execution switch B, when the pushing slide rod slides to the right limit position of the rectangular slide groove, press the trigger execution switch B, the execution switch B makes the output shaft of the execution cylinder retract, and drives the driving ring to make the driving sleeve mesh with the end surface of the rotating bevel gear one, so that the driving sleeve drives the transmission mounting shaft and the threaded rotating rod to rotate reversely, so that the threaded rotating rod drives the pushing slide rod to slide to the left side along the rectangular slide groove, when the pushing slide rod slides to the left limit position of the rectangular slide groove, press the trigger execution switch A, the execution switch A makes the output shaft of the execution cylinder stretch out again, so that the driving sleeve meshes with the end surface of the rotating bevel gear two again, realizes the reciprocating sliding of the pushing slide rod along the rectangular slide groove, because the electromagnetic box is built-in electromagnetic generator, the power supply generates magnetic force, the ferromagnetic metal in the crushed materials is magnetically attracted on the inclined surface of the electromagnetic box, and along with the reciprocating movement of the pushing slide rod, so that the ferromagnetic metal in the crushed materials is discharged through the opening one, the non ferromagnetic metal in the crushed materials is discharged through the opening two under the action of gravity, realizes the intelligent sorting of the ferromagnetic metal and the non ferromagnetic metal. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 The overall structure of the present application Figure 1 ; Figure 2 The overall structure of the present application Figure 2 ; Figure 3 The overall structure of the present application Figure 2 The cross-sectional view along A-A; Figure 4 The overall structure of the present application Figure 3 ; Figure 5 The overall structure of the present application Figure 4A sectional view along section BB; Figure 6 for Figure 4 A sectional view along section CC; Figure 7 for Figure 6 A magnified view of a portion at point A; The markings in the diagram are as follows: 1. Electromagnetic housing; 2. Support frame; 3. Opening one; 4. Opening two; 5. Pushing slide bar; 6. Crushing housing; 7. Driven shaft; 8. Collector frame; 9. Driven roller; 10. Crushing ring one; 11. Actuating motor; 12. Motor mounting bracket; 13. Driven roller; 14. Driven shaft; 15. Crushing ring two; 16. Mounting bracket; 17. Rotating bevel gear one; 18. Rotating bevel gear two; 19. Transmission mounting shaft; 20. Drive sleeve; 21. Driven ring; 22. Actuating cylinder; 23. Middle bevel gear one; 24. Middle bevel gear rotating shaft; 25. Connecting belt; 26. Gear one; 27. Gear two; 28. Threaded rotating rod; 29. ​​Middle bevel gear two; 30. Output bevel gear; 31. Output bevel gear rotating shaft; 32. Rectangular chute. Detailed Implementation

[0015] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0016] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0017] Example 1 like Figures 1-7 As shown, an automatic intelligent metal sorting system includes an electromagnetic housing 1, a support frame 2, an opening 3, an opening 4, a pusher slide bar 5, and a rectangular chute 32. The support frame 2 is fixedly installed on the electromagnetic housing 1. The rectangular chute 32 is opened on the electromagnetic housing 1. The pusher slide bar 5 is slidably installed in the rectangular chute 32. A crushing module is installed on the electromagnetic housing 1. A transmission module is installed on the electromagnetic housing 1. The crushing module and the transmission module are connected by a connecting belt 25.

[0018] The electromagnetic housing 1 contains an electromagnetic generator that generates magnetic force when energized.

[0019] Wherein, the support frame 2 left and right ends open for discharge of ferromagnetic metal opening one 3, support frame 2 of the front end surface open for discharge of non-ferromagnetic metal opening two 4.

[0020] Wherein, the electromagnetic box 1 built-in inclined surface, opening two 4 is set in the low of the inclined surface.

[0021] Example 2 As shown in Figures 1-7 The crushing module includes a crushing box 6, a driven shaft 7, a material collecting frame 8, a driven roller 9, a crushing ring one 10, an execution motor 11, a motor mounting frame 12, a driving roller 13, a driving shaft 14, a crushing ring two 15, a gear one 26, a gear two 27, the crushing box 6 is fixedly installed at one end of the support frame 2, the other end of the crushing box 6 is fixedly installed with the material collecting frame 8, the crushing box 6 is rotatably installed with the driven shaft 7, the driven shaft 7 is fixedly installed with the driven roller 9, a plurality of crushing ring one 10 is linearly arrayed on the driven roller 9, the driven shaft 7 is fixedly installed with the gear one 26, the gear one 26 is engaged with the gear two 27 for transmission, the gear two 27 is fixedly installed at one end of the driving shaft 14, the other end of the driving shaft 14 is installed on the output shaft of the execution motor 11, the execution motor 11 is installed on the side wall of the crushing box 6 through the motor mounting frame 12, the driving roller 13 is fixedly installed on the driving shaft 14, a plurality of crushing ring two 15 is linearly arrayed on the driving roller 13, in this way, the execution motor 11 is started, the execution motor 11 drives the driving roller 13 and the crushing ring two 15 to rotate simultaneously through the driving shaft 14, and the gear one 26 and the gear two 27 are engaged for transmission, so that the driven shaft 7 drives the driven roller 9 and the crushing ring one 10 to rotate simultaneously, the crushing ring one 10 and the crushing ring two 15 are contacted with the recovered material to realize the crushing of the recovered material, and the recovered material after crushing falls into the electromagnetic box 1, the electromagnetic box 1 realizes the separation and discharge of ferromagnetic metal and non-ferromagnetic metal, and realizes intelligent sorting.

[0022] Wherein, the crushing ring two 15 is staggered with the crushing ring one 10.

[0023] Example 3 As shown in Figures 1-7As shown, the transmission module includes a mounting frame 16, a rotating bevel gear one 17, a rotating bevel gear two 18, a transmission mounting shaft 19, a driving sleeve 20, a driving ring 21, an execution cylinder 22, a middle end bevel gear one 23, a middle end bevel gear rotating shaft 24, a connecting belt 25, a threaded rotating rod 28, a middle end bevel gear two 29, an output bevel gear 30, an output bevel gear rotating shaft 31, the mounting frame 16 is fixedly installed on the electromagnetic box body 1, the rotating bevel gear one 17 and the rotating bevel gear two 18 are rotatably installed on the mounting frame 16, the transmission mounting shaft 19 is rotatably installed between the rotating bevel gear one 17 and the rotating bevel gear two 18, the rotating bevel gear one 17 and the rotating bevel gear two 18 simultaneously mesh with the middle end bevel gear one 23, the middle end bevel gear one 23 is fixedly installed at one end of the middle end bevel gear rotating shaft 24, the other end of the middle end bevel gear rotating shaft 24 is fixedly installed with the middle end bevel gear two 29, the middle end bevel gear two 29 meshes with the output bevel gear 30,The output bevel gear 30 is rotatably installed on the mounting frame 16 through an output bevel gear rotating shaft 31, the connecting belt 25 is connected between the output bevel gear rotating shaft 31 and the driven shaft 7, the driving sleeve 20 is slidably installed on the transmission mounting shaft 19, the driving sleeve 20 is rotatably matched with the driving ring 21, the driving ring 21 is installed on the output shaft of the execution cylinder 22, the execution cylinder 22 is installed on the mounting frame 16, the threaded rotating rod 28 is rotatably installed on the electromagnetic box body 1, the threaded rotating rod 28 is threadedly matched with the pushing slide rod 5, the transmission mounting shaft 19 is fixedly connected with the threaded rotating rod 28, the driving sleeve 20 is meshed with the end surface of the rotating bevel gear one 17 or the rotating bevel gear two 18, in this way, when the driven shaft 7 rotates, the output bevel gear rotating shaft 31 is driven to rotate through the connecting belt 25, the output bevel gear rotating shaft 31 drives the middle end bevel gear two 29 and the middle end bevel gear one 23 to rotate through the output bevel gear 30, the middle end bevel gear one 23 drives the rotating bevel gear one 17 and the rotating bevel gear two 18 to rotate at the same time, in the initial position, the output shaft of the execution cylinder 22 is extended and drives the driving ring 21 to make the driving sleeve 20 meshed with the end surface of the rotating bevel gear two 18, the rotating bevel gear two 18 is driven to rotate through the driving sleeve 20, the transmission mounting shaft 19 and the threaded rotating rod 28 are driven to rotate, the threaded rotating rod 28 drives the pushing slide rod 5 to slide to the right along the rectangular sliding groove 32, the execution switch A and the execution switch B are arranged on the left and right end surfaces of the rectangular sliding groove 32 respectively, when the pushing slide rod 5 slides to the limit position on the right side of the rectangular sliding groove 32, the execution switch B is pressed and triggered, the output shaft of the execution cylinder 22 is retracted, the driving ring 21 is driven to make the driving sleeve 20 meshed with the end surface of the rotating bevel gear one 17, the driving sleeve 20 drives the transmission mounting shaft 19 and the threaded rotating rod 28 to rotate reversely, the threaded rotating rod 28 drives the pushing slide rod 5 to slide to the left along the rectangular sliding groove 32, when the pushing slide rod 5 slides to the limit position on the left side of the rectangular sliding groove 32, the execution switch A is pressed and triggered, the output shaft of the execution cylinder 22 is extended again, the driving sleeve 20 is meshed with the end surface of the rotating bevel gear two 18 again, the reciprocating sliding of the pushing slide rod 5 along the rectangular sliding groove 32 is realized, the electromagnetic generator is built-in in the electromagnetic box body 1, the magnetic force is generated through electrification, the ferromagnetic metal in the completed crushed material is magnetically attracted on the inclined surface of the electromagnetic box body 1 and is discharged through the opening one 3 along with the reciprocating movement of the pushing slide rod 5, the non-ferromagnetic metal in the completed crushed material is discharged through the opening two 4 under the action of gravity, the intelligent sorting of the ferromagnetic metal and the non-ferromagnetic metal is realized.

[0024] The transmission mounting shaft 19 is provided with a rectangular sliding groove A, the inner end surface of the driving sleeve 20 is provided with a rectangular protrusion A, the rectangular protrusion A is slidably matched with the rectangular sliding groove A.

[0025] It is to be understood that the present application is described by way of example only, and that modifications or alterations can be made to the features and embodiments described without departing from the spirit and scope of the application. In addition, modifications can be made to the features and embodiments described to accommodate specific situations and materials without departing from the spirit and scope of the application. Accordingly, the application is not limited to the specific embodiments disclosed herein, but rather, the scope of the application includes all embodiments falling within the scope of the claims.

Claims

1. A metal automatic intelligent sorting system, characterized in that, Including electromagnetic box (1), support frame (2), opening one (3), opening two (4), push material slide rod (5) and rectangular chute (32), the support frame (2) is fixedly installed on electromagnetic box (1), rectangular chute (32) is opened on electromagnetic box (1), push material slide rod (5) is slidably installed in rectangular chute (32), the crushing module is installed on electromagnetic box (1), the transmission module is installed on electromagnetic box (1), the crushing module is connected with transmission module through connecting belt (25).

2. The automatic intelligent metal sorting system according to claim 1, wherein, The electromagnetic box (1) is built-in electromagnetic generator, and generates magnetic force when energized.

3. The automatic intelligent metal sorting system according to claim 1, wherein, The support frame (2) is opened with opening one (3) for discharging ferromagnetic metal at both ends, and opening two (4) for discharging non-ferromagnetic metal is opened on the front end surface of the support frame (2).

4. The automatic intelligent metal sorting system according to claim 1, wherein, The electromagnetic box (1) is built-in inclined surface, and the opening two (4) is arranged at the low of the inclined surface.

5. The automatic intelligent metal sorting system according to claim 1, wherein, The crushing module includes a crushing box (6), a driven shaft (7), a material collecting frame (8), a driven roller (9), a crushing ring one (10), an execution motor (11), a motor mounting frame (12), a driving roller (13), a driving shaft (14), a crushing ring two (15), a gear one (26), a gear two (27), the crushing box (6) is fixedly installed at one end of the support frame (2), the other end of the crushing box (6) is fixedly installed with the material collecting frame (8), the driven shaft (7) is rotatably installed on the crushing box (6), the driven roller (9) is fixedly installed on the driven shaft (7), a plurality of crushing ring one (10) is linearly arranged on the driven roller (9), the gear one (26) is fixedly installed on the driven shaft (7), the gear one (26) and the gear two (27) are engaged transmission, the gear two (27) is fixedly installed at one end of the driving shaft (14), the other end of the driving shaft (14) is installed on the output shaft of the execution motor (11), the execution motor (11) is installed on the side wall of the crushing box (6) through the motor mounting frame (12), the driving roller (13) is fixedly installed on the driving shaft (14), a plurality of crushing ring two (15) is linearly arranged on the driving roller (13), so as to set, start the execution motor (11), the execution motor (11) drives the driving roller (13) and the crushing ring two (15) to rotate at the same time through the driving shaft (14), and the gear one (26) and the gear two (27) are engaged transmission, so that the driven shaft (7) drives the driven roller (9) and the crushing ring one (10) to rotate at the same time, through the contact of the crushing ring one (10) and the crushing ring two (15) with the recycled material, the crushing of the recycled material is realized, and the recycled material after crushing is dropped into the electromagnetic box (1), the electromagnetic box (1) is used for distinguishing and discharging the ferromagnetic metal and the non-ferromagnetic metal, and the intelligent sorting is realized.

6. The automatic intelligent metal sorting system according to claim 5, wherein, The crushing ring two (15) and the crushing ring one (10) are staggered.

7. The automatic intelligent metal sorting system according to claim 5, wherein, The transmission module comprises a mounting frame (16), a rotating bevel gear one (17), a rotating bevel gear two (18), a transmission mounting shaft (19), a driving sleeve (20), a driving ring (21), an execution cylinder (22), a middle end bevel gear one (23), a middle end bevel gear rotating shaft (24), a connecting belt (25), a threaded rotating rod (28), a middle end bevel gear two (29), an output bevel gear (30), and an output bevel gear rotating shaft (31). The mounting frame (16) is fixedly mounted on the electromagnetic box body (1). The rotating bevel gear one (17) and the rotating bevel gear two (18) are rotatably mounted on the mounting frame (16) at the same time. The transmission mounting shaft (19) is rotatably mounted between the rotating bevel gear one (17) and the rotating bevel gear two (18). The rotating bevel gear one (17) and the rotating bevel gear two (18) are in meshing transmission with the middle end bevel gear one (23) at the same time. The middle end bevel gear one (23) is fixedly mounted at one end of the middle end bevel gear rotating shaft (24). The other end of the middle end bevel gear rotating shaft (24) is fixedly mounted with the middle end bevel gear two (29). The middle end bevel gear two (29) is in meshing transmission with the output bevel gear (30).The output bevel gear (30) is rotatably installed on the mounting frame (16) through an output bevel gear rotating shaft (31), the connecting belt (25) is connected between the output bevel gear rotating shaft (31) and the driven shaft (7), the driving sleeve (20) is slidably installed on the transmission mounting shaft (19), the driving sleeve (20) is rotatably connected with the driving ring (21), the driving ring (21) is installed on the output shaft of the execution cylinder (22), the execution cylinder (22) is installed on the mounting frame (16), the threaded rotating rod (28) is rotatably installed on the electromagnetic box body (1), the threaded rotating rod (28) is threadedly connected with the pushing slide rod (5), the transmission mounting shaft (19) is fixedly connected with the threaded rotating rod (28), the driving sleeve (20) is in end surface engagement with the rotating bevel gear one (17) or the rotating bevel gear two (18), in this way, when the driven shaft (7) rotates, the output bevel gear rotating shaft (31) is driven to rotate through the connecting belt (25), the output bevel gear rotating shaft (31) drives the middle end bevel gear two (29) and the middle end bevel gear one (23) to rotate through the output bevel gear (30), the middle end bevel gear one (23) drives the rotating bevel gear one (17) and the rotating bevel gear two (18) to rotate at the same time, in the initial position, the output shaft of the execution cylinder (22) is extended and drives the driving ring (21) to make the driving sleeve (20) in end surface engagement with the rotating bevel gear two (18), the rotating bevel gear two (18) drives the transmission mounting shaft (19) and the threaded rotating rod (28) to rotate through the driving sleeve (20), the threaded rotating rod (28) drives the pushing slide rod (5) to slide to the right along the rectangular sliding groove (32), the execution switch A and the execution switch B are arranged at the left and right two end faces of the rectangular sliding groove (32) respectively, when the pushing slide rod (5) slides to the right limit position of the rectangular sliding groove (32), the execution switch B is pressed and triggered, the execution switch B makes the output shaft of the execution cylinder (22) retract, drives the driving ring (21) to make the driving sleeve (20) in end surface engagement with the rotating bevel gear one (17), and drives the driving sleeve (20) to drive the transmission mounting shaft (19) and the threaded rotating rod (28) to rotate reversely, so that the threaded rotating rod (28) drives the pushing slide rod (5) to slide to the left along the rectangular sliding groove (32), when the pushing slide rod (5) slides to the left limit position of the rectangular sliding groove (32), the execution switch A is pressed and triggered, the execution switch A makes the output shaft of the execution cylinder (22) extend again, makes the driving sleeve (20) in end surface engagement with the rotating bevel gear two (18) again, and realizes the reciprocating sliding of the pushing slide rod (5) along the rectangular sliding groove (32), the electromagnetic generator is arranged in the electromagnetic box body (1), the electromagnetic generator generates magnetic force when electrified, the ferromagnetic metal in the crushed material is magnetically attracted to the inclined surface of the electromagnetic box body (1), and moves along with the reciprocating movement of the pushing slide rod (5), so that the ferromagnetic metal in the crushed material is discharged through the opening one (3), the non-ferromagnetic metal in the crushed material is discharged through the opening two (4) under the action of gravity, and the intelligent sorting of the ferromagnetic metal and the non-ferromagnetic metal is realized.

8. The automatic intelligent metal sorting system according to claim 7, wherein, The rectangular chute A is opened on the transmission mounting shaft (19), the rectangular protrusion A is arranged on the inner end surface of the driving sleeve (20), and the rectangular protrusion A and the rectangular chute A are slidably matched.