An aluminum ingot production marking device

By designing an aluminum ingot production and printing device including a bracket, a slider, a drive part and an actuator, the problem of difficulty in efficiently labeling the information of interlaced parallel aluminum ingots is solved in the prior art, and efficient labeling operation of interlaced parallel aluminum ingots is realized.

CN115534565BActive Publication Date: 2025-06-27JIANGXI TANTAI ALUMINUM
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Patent Information

Application Number
CN202211266753.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-17
Publication Date
2025-06-27
Estimated Expiration
2042-10-17

AI Technical Summary

Technical Problem

It is difficult to efficiently mark the interlaced aluminum ingot information in existing aluminum ingot production and printing devices.

Method used

A aluminum ingot production marking device is designed, including a bracket, a slider, a drive part and an actuator part. The front and back and left and right movements of the connecting rod are realized by combining the moving components, which is suitable for interlaced and parallel aluminum ingot marking operations.

Benefits of technology

It realizes efficient marking operation of interlaced parallel aluminum ingots, and improves the efficiency and accuracy of aluminum ingot information labeling.

✦ Generated by Eureka AI based on patent content.

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Abstract

An aluminum ingot production marking device belongs to the technical field of aluminum rod production, and includes a bracket, a slide plate, a driving part and an actuating part. The slide plate is installed on the bracket, the driving part is installed on the bracket and connected to the slide plate, and the actuating part is installed on the slide plate and connected to the driving part. The bracket includes a bottom plate, a lower chute, a first vertical plate, a second vertical plate and a third vertical plate. There is a lower chute on the bottom plate, a first vertical plate is provided on the right side of the bottom plate, a swing rod is hinged on the first vertical plate, a second vertical plate and a third vertical plate are provided on the left side of the bottom plate, a rotating shaft is hinged on the second vertical plate, and a lever is hinged on the third vertical plate. The slide plate includes side plates, lower sliding blocks, dovetail chutes and vertical grooves. The driving part includes a left side wheel, a first chute, a rotating shaft, a right side wheel and a lever. The actuating part includes a connecting plate, a swing rod, a pin and a connecting rod. The connecting plate is sleeved and slides on the dovetail chute. One end of the swing rod is hinged on the first vertical plate, the other end is provided with a pin, one end of the pin is sleeved on the connecting plate, and the other end is sleeved on the second chute.
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Description

Technical Field

[0001] The present invention belongs to the technical field of aluminum ingot production, and particularly relates to a marking device for aluminum ingot production. Background Art

[0002] After the production of aluminum ingots, it is sometimes necessary to mark the information of the aluminum ingots on the surface of the aluminum ingots, such as the material grade, specifications, production batch number, etc. of the aluminum ingots, or, it may also be simply marked with key information for retrieval and verification. Pressing these information on the surface of the aluminum ingots by extrusion marking is a relatively efficient method. Therefore, the aluminum ingot marking device is still applied in the last stage of the aluminum ingot production line. Although the current aluminum ingot production marking devices have been widely used, the industry has never stopped optimizing and improving them. Summary of the Invention

[0003] The present invention provides a marking device for aluminum ingot production to solve the problems in the above background art.

[0004] The technical problems solved by the present invention are realized by the following technical solutions:

[0005] A marking device for aluminum ingot production includes a bracket, a sliding plate, a driving part and an actuating part. The bracket is installed at a suitable position in the last link of the aluminum ingot production line. The sliding plate is installed on the bracket. The driving part is installed on the bracket and connected to the sliding plate. The actuating part is installed on the sliding plate and connected to the driving part, jointly constituting a combined motion component.

[0006] The bracket includes a bottom plate, a lower chute, a first vertical plate, a second vertical plate and a third vertical plate. There is a lower chute on the bottom plate. The right side of the bottom plate has a first vertical plate, and a swing rod is hinged on the first vertical plate. The left side of the bottom plate has a second vertical plate and a third vertical plate. A rotating shaft is hinged on the second vertical plate, and a dial rod is hinged on the third vertical plate. The sliding plate includes a side plate, a lower sliding block, a dovetail chute and a vertical groove. The bottom of the side plate has a lower sliding block. The right side of the side plate has a pair of dovetail chutes, and a connecting plate is sleeved on the dovetail chutes. The left side of the side plate has a vertical groove, and the dial rod is sleeved in the vertical groove.

[0007] The driving part includes a left wheel, a first slide groove, a rotating shaft, a right wheel and a lever. The left wheel and the right wheel are both mounted on the rotating shaft. The rotating shaft is connected to a power source to drive the left wheel and the right wheel to rotate. The right side of the left wheel has a first slide groove, and the left side of the right wheel has a second slide groove. The lever is hinged on the third vertical plate and sleeved on the first slide groove. The left side of the right wheel has a second slide groove, which is a diamond groove with a circular arc. The pin of the actuating part is sleeved on the second slide groove and slides. The actuating part includes a connecting plate, a swing rod, a pin and a connecting rod. The connecting plate is sleeved on the dovetail slide groove and slides. One end of the swing rod is hinged on the first vertical plate, and the other end is installed with a pin. One end of the pin is sleeved on the connecting plate, and the other end is sleeved on the second slide groove. The pin controls the upper and lower positions of the connecting plate. The connecting rod is installed at the lower part of the connecting plate. The connecting rod has a pair of through holes, and the through holes are connected to the boss to complete the installation of the connecting rod. The front end of the connecting rod is downwardly installed with a die.

[0008] Furthermore, the lower slide groove is a dovetail slide groove, and the lower slider is sleeved in the lower slide groove and slides.

[0009] Furthermore, the first sliding groove is a cam groove, including a pair of connecting grooves, a left groove and a right groove. The left groove is a large diameter portion. When the shift rod is sleeved on the left groove, the shift connecting plate is in the left position. The right groove is a small diameter portion. When the shift rod is sleeved on the right groove, the shift connecting plate is in the right position. The two connecting grooves connect the left groove and the right groove from both sides and make a circular transition.

[0010] Further, a connecting key is installed at the right end of the rotating shaft, and the right side wheel is connected to the rotating shaft through the connecting key. A slot hole is provided at the center of the right side wheel, and the slot hole is connected with the rotating shaft and the connecting key to complete the installation of the right side wheel.

[0011] Furthermore, the lever comprises a left boss, a mounting boss and a right boss, the left boss is sleeved in the first slide groove, the mounting boss is hinged on the third vertical plate, the right boss is sleeved on the vertical groove, and the lever controls the position of the slide plate.

[0012] Furthermore, the connecting plate includes a dovetail slider, a transverse groove and a boss. The back of the connecting plate has a pair of dovetail sliders, the dovetail sliders are sleeved on the dovetail slot, the front of the connecting plate has a transverse groove, the pins are sleeved on the transverse groove, the bottom of the dovetail slider has a pair of bosses, and connecting rods are installed on the bosses.

[0013] The beneficial effects of the present invention are:

[0014] The invention is used for marking information of aluminum ingots in aluminum production. The invention has driving mechanisms which cooperate with each other to push connecting rods to move forward and backward and left and right, and can perform marking operations on aluminum ingots that are staggered and arranged side by side. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic diagram of the present invention;

[0016] Figure 2 is the front view of the present invention;

[0017] Figure 3 is the exploded view of the present invention;

[0018] Figure 4 is the partial schematic view of the present invention;

[0019] In the figure: 10. bracket, 11. bottom plate, 12. lower chute, 13. first vertical plate, 14. second vertical plate, 15. third vertical plate, 20. slide plate, 21. side plate, 22. lower slider, 23. dovetail chute, 24. vertical chute, 30. driving part, 31. left wheel, 32. first chute, 321. connecting groove, 322. left position groove, 323. right position groove, 33. rotating shaft, 331. connecting key, 34. right wheel, 341. slot hole, 342. second chute, 35. lever, 351. left boss, 352. mounting boss, 353. right boss, 40. actuating part, 41. connecting plate, 411. dovetail slider, 412. transverse groove, 413. boss, 42. swing rod, 43. pin, 44. connecting rod, 441. through hole, 442. pressing die. Detailed implementation mode

[0020] For the convenience of understanding the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. The preferred embodiments of the present invention are given in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided to make the disclosure of the present invention more thorough and comprehensive.

[0021] See Figures 1 - 4 the aluminum ingot production marking device shown in the figure, including a bracket 10, a slide plate 20, a driving part 30 and an actuating part 40. The bracket 10 is installed at a suitable position in the last link of the aluminum ingot production line. The slide plate 20 is installed on the bracket 10. The driving part 30 is installed on the bracket 10 and connected to the slide plate 20. The actuating part 40 is installed on the slide plate 20 and connected to the driving part 30, jointly forming a combined motion assembly.

[0022] The bracket 10 includes a bottom plate 11, a lower chute 12, a first vertical plate 13, a second vertical plate 14 and a third vertical plate 15. There is a lower chute 12 on the bottom plate 11. The lower chute 12 is selected as a dovetail chute. The right side of the bottom plate 11 has a first vertical plate 13. A swing rod 42 is hinged on the first vertical plate 13. The left side of the bottom plate 12 has a second vertical plate 14 and a third vertical plate 15. A rotating shaft 33 is hinged on the second vertical plate 14. A lever 35 is hinged on the third vertical plate 15.

[0023] The slide plate 20 includes a side plate 21, a lower slider 22, a dovetail slide groove 23 and a vertical groove 24. The side plate 21 has a lower slider 22 at the bottom, and the lower slider 22 is sleeved in the lower slide groove 12 to slide. The right side of the side plate 21 has a pair of dovetail slide grooves 23, and the dovetail slide grooves 23 are sleeved with a connecting plate 41. The left side of the side plate 21 has a vertical groove 24, and the vertical groove 24 is sleeved with a lever 35.

[0024] The driving part 30 includes a left wheel 31, a first slide groove 32, a rotating shaft 33, a right wheel 34 and a lever 35. The left wheel 31 and the right wheel 34 are both installed on the rotating shaft 23. The rotating shaft 23 is connected to the power source to drive the left wheel 31 and the right wheel 34 to rotate. The left wheel 31 has a first slide groove 32 on the right side, and the right wheel 34 has a second slide groove 342 on the left side. The lever 35 is hinged on the third vertical plate 15 and is sleeved on the first slide groove 32. The first slide groove 32 is a cam groove, including a pair of connecting grooves 321, a left groove 322 and a right groove 323. The left groove 322 is a large diameter part. When the lever 35 is sleeved on the left groove 322, the connecting plate 41 is in the left position. The right groove 323 is a small diameter part. When the lever 35 is sleeved on the right groove 323, the connecting plate 41 is in the right position. The two connecting grooves 321 connect the left groove 322 and the right groove 323 from both sides and transition in an arc. A connecting key 331 is installed at the right end of the rotating shaft 33, and the right wheel 34 is connected to the rotating shaft 33 through the connecting key 331. The right wheel 34 has a slot hole 341 at the center, and the slot hole 341 is connected with the rotating shaft 33 and the connecting key 331 to complete the installation of the right wheel 34. The left side of the right wheel 34 has a second slide groove 342, and the second slide groove 342 is a diamond groove with a circular arc. The pin 43 of the actuating part 40 is sleeved on the second slide groove 342 and slides. The lever 35 includes a left boss 351, a mounting boss 352 and a right boss 353. The left boss 351 is sleeved in the first slide groove 32, the mounting boss 352 is hinged on the third vertical plate 15, and the right boss 353 is sleeved on the vertical groove 24. The lever 35 controls the position of the skateboard 20.

[0025] The actuating part 40 includes a connecting plate 41, a swing rod 42, a pin 43 and a connecting rod 44. The connecting plate 41 is sleeved on the dovetail chute 23 and slides thereon. One end of the swing rod 42 is hinged to the first vertical plate 13, and a pin 43 is installed at the other end. One end of the pin 43 is sleeved on the connecting plate 41, and the other end is sleeved on the second chute 342. The pin 43 controls the up-and-down position of the connecting plate 41. The connecting rod 44 is installed at the lower part of the connecting plate 41, and an embossing die is installed on the connecting rod 44 to emboss the aluminum ingot. The connecting plate 41 includes a dovetail slider 411, a transverse groove 412 and a boss 413. There are a pair of dovetail sliders 411 on the back of the connecting plate 41, and the dovetail sliders 411 are sleeved on the dovetail chute 23. There is a transverse groove 412 on the front of the connecting plate 41, and the pin 43 is sleeved on the transverse groove 412. There are a pair of bosses 413 at the bottom of the dovetail slider 411, and the connecting rod 44 is installed on the bosses 413. There are a pair of through holes 441 on the connecting rod 44, and the through holes 441 are docked with the bosses 413 to complete the installation of the connecting rod 44. A pressing die 442 is installed downward at the front end of the connecting rod 44, and the embossing information is engraved on the embossing surface of the pressing die 442.

[0026] Of course, the pressing die 442 can be designed as a detachable structure, and the pressing die 442 can be replaced according to needs to adapt to different embossing requirements.

[0027] The working principle of the present invention is as follows: The power source drives the rotating shaft 33 to rotate, and the left wheel 31 and the right wheel 34 rotate synchronously. When the left wheel 31 rotates, the first chute 32 drives the lever 35 to swing through the left boss 351, and pushes the slide plate 20 to move back and forth. When the left wheel 31 rotates one circle, the slide plate 20 completes one back-and-forth movement. The right wheel 34 drives the connecting plate 41 to move up and down through the pin 43, and the connecting plate 41 drives the connecting rod 44, that is, the pressing die 442, to move up and down. When the right wheel 34 rotates one circle, the pressing die 42 completes two up-and-down movements. Of course, the orientations of the left slot 322, the right slot 323 of the first chute 32 and the second chute 342 should match each other. When the slide plate 20 is in the front position, the connecting rod 44 completes one downward pressure. When the slide plate 20 is in the rear position, the connecting rod 44 completes one downward pressure. In this way, the embossing operation of two aluminum ingots arranged in a staggered and parallel manner can be realized.

[0028] The above embodiments mainly illustrate the aluminum ingot production and embossing device of the present invention. Although only a limited number of embodiments and technical features are described, those skilled in the art should understand that the present invention can be implemented in many other forms without departing from its main idea and scope. Therefore, the embodiments shown are regarded as illustrative rather than restrictive. Without departing from the spirit and scope of the present invention defined by the appended claims, the present invention may cover various modification and replacement schemes.

Claims

1. An aluminum ingot production marking device, comprising a bracket (10), a sliding plate (20), a driving part (30) and an actuating part (40), characterized in that, The skateboard (20) is mounted on the bracket (10), the driving part (30) is mounted on the bracket (10) and connected to the skateboard (20), the actuating part (40) is mounted on the skateboard (20) and connected to the driving part (30). The bracket (10) includes a bottom plate (11), a lower chute (12), a first vertical plate (13), a second vertical plate (14) and a third vertical plate (15). There is a lower chute (12) on the bottom plate (11). The right side of the bottom plate (11) has a first vertical plate (13), and a swing rod (42) is hinged on the first vertical plate (13). The left side of the bottom plate (12) has a second vertical plate (14) and a third vertical plate (15). A rotating shaft (33) is hinged on the second vertical plate (14), and a shifting rod (35) is hinged on the third vertical plate (15). The skateboard (20) includes side plates (21), lower sliding blocks (22), dovetail chutes (23) and vertical chutes (24). The bottom of the side plates (21) has lower sliding blocks (22). The right side of the side plates (21) has a pair of dovetail chutes (23), and a connecting plate (41) is sleeved on the dovetail chutes (23). The left side of the side plates (21) has a vertical chute (24), and the shifting rod (35) is sleeved in the vertical chute (24). The driving part (30) includes a left wheel (31), a first chute (32), a rotating shaft (33), a right wheel (34) and a shifting rod (35). Both the left wheel (31) and the right wheel (34) are mounted on the rotating shaft (23), and the rotating shaft (23) is connected to a power source. The right side of the left wheel (31) has a first chute (32), and the left side of the right wheel (34) has a second chute (342). The shifting rod (35) is hinged on the third vertical plate (15) and sleeved in the first chute (32). The left side of the right wheel (34) has a second chute (342), and the second chute (342) is a rhombic groove with an arc. The pin (43) of the actuating part (40) is sleeved on the second chute (342) and slides. The actuating part (40) includes a connecting plate (41), a swing rod (42), a pin (43) and a connecting rod (44). The connecting plate (41) is sleeved on the dovetail chute (23) and slides. One end of the swing rod (42) is hinged on the first vertical plate (13), and the other end is provided with a pin (43). One end of the pin (43) is sleeved on the connecting plate (41), and the other end is sleeved on the second chute (342). The connecting rod (44) is mounted on the lower part of the connecting plate (41), and an embossing die is mounted on the connecting rod (44) to emboss the aluminum ingot.

2. The aluminum ingot production marking device according to claim 1, characterized in that, The lower chute (12) is a dovetail chute, and the lower sliding block (22) is sleeved in the lower chute (12) and slides.

3. The aluminum ingot production marking device according to claim 1, characterized in that, The first chute (32) is a cam chute, which includes a pair of connecting grooves (321), a left position groove (322) and a right position groove (323). The left position groove (322) is a large-diameter part, and the right position groove (323) is a small-diameter part. The two connecting grooves (321) connect the left position groove (322) and the right position groove (323) from both sides and have an arc transition.

4. The aluminum ingot production marking device according to claim 1, characterized in that, A connection key (331) is installed at the right end of the rotating shaft (33). The right-side wheel (34) is connected to the rotating shaft (33) through the connection key (331). A slot hole (341) is provided at the center of the right-side wheel (34). The slot hole (341) is docked with the rotating shaft (33) and the connection key (331) to complete the installation of the right-side wheel (34).

5. The aluminum ingot production marking device according to claim 1, characterized in that, The lever (35) includes a left boss (351), a mounting boss (352), and a right boss (353). The left boss (351) is sleeved in the first chute (32). The mounting boss (352) is hinged to the third vertical plate (15). The right boss (353) is sleeved on the vertical slot (24).

6. The aluminum ingot production marking device according to claim 1, characterized in that, The connecting plate (41) includes a dovetail slider (411), a horizontal slot (412), and a boss (413). A pair of dovetail sliders (411) are provided on the back of the connecting plate (41). The dovetail sliders (411) are sleeved on the dovetail chutes (23). A horizontal slot (412) is provided on the front of the connecting plate (41). A pin (43) is sleeved in the horizontal slot (412). A pair of bosses (413) are provided at the bottom of the dovetail sliders (411). A connecting rod (44) is installed on the bosses (413).

Citation Information

Patent Citations

  • Shell embossing device of electronic product production

    CN109049658A

  • Impressing jig

    CN213383678U