Efficient tin bar automatic production and processing equipment

By designing high-efficiency automatic production and processing equipment for tin bars, the problem of low production efficiency caused by manual operation of traditional tin bars is solved, and the automated production and processing of tin bars is realized, and the production efficiency is improved.

CN222865599UActive Publication Date: 2025-05-13KELITAI ELECTRONICS (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202421653681.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-05-13
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

Traditional tin bar machines require manual operation to clamp the tin bars to the cutting and drilling areas, resulting in inefficiency.

Method used

设计了一种高效锡条自动生产加工设备,包括熔化炉、成型槽、冷凝区、转动机构等,通过自动化操作将锡条从熔化炉形成、冷却固定,并自动移动到切割和打孔区域。

Benefits of technology

The automated production and processing of tin bars is realized, manual operations are reduced, and the efficiency and automation of tin bar production are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of tin bar automatic production, in particular to efficient tin bar automatic production and processing equipment which comprises a machine body and a processing table, and the upper surface of the processing table is fixedly connected with a melting furnace. By starting the first air cylinder, the forming groove can be pushed to the position above the fixing strip, by starting the first motor, an output shaft of the first motor drives the forming groove to rotate, so that the forming groove is reversed and covers the position above the moving groove, and by starting the second air cylinder, an output shaft of the second air cylinder drives the pressing plate to move downwards. According to the tin bar forming device, a pressing plate presses an adjusting plate, so that the adjusting plate slides downwards between the inner sides of two groups of fixing plates, fixing columns move downwards, springs are compressed, a top column ejects out a tin bar in a forming groove, and a tin bar falls onto a supporting plate above a moving groove; therefore, the tin bar does not need to be manually clamped to move.
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Description

Technical Field

[0001] The utility model relates to the technical field of automatic production of tin bars, in particular to efficient automatic production and processing equipment for tin bars. Background Art

[0002] Tin is widely used in tinplate, flux, organic synthesis, chemical production, alloy manufacturing, and the assembly of multiple integrated circuits in the electronics industry. It is also used as a reagent for the determination of arsenic and phosphate, a reducing agent, and tin-plated products.

[0003] After the tin bars are produced, they need to be cut into predetermined sizes and punched. However, after the tin bars are produced, traditional tin bar machines usually clamp the tin bars to the cutting and punching areas for cutting and punching operations by manual operation, which seriously affects the production efficiency of the tin bars. Utility Model Content

[0004] The purpose of the utility model is to provide an efficient automatic production and processing equipment for tin bars, so as to solve the problem that after the traditional tin bar machine mentioned in the above background technology produces the tin bar, the tin bar is usually clamped to the cutting and punching area by manual operation for cutting and punching operations, which seriously affects the production efficiency of the tin bar.

[0005] In order to achieve the above-mentioned purpose, the utility model provides the following technical solution, a highly efficient automatic production and processing equipment for tin bars, comprising:

[0006] The machine body comprises a processing table, the upper surface of the processing table is fixedly connected with a melting furnace, the outer surface of the melting furnace is fixedly connected with a conduit, the inner side of the processing table is movably connected with a forming groove, and the upper surface of the processing table is fixedly connected with a condensation zone on the side close to the melting furnace. A tin block is placed inside the melting furnace, and the tin block is melted by electric heating. The melted tin block solution flows to the inner side of the forming groove through the conduit, thereby forming a tin bar. Then, the three groups of forming grooves are moved from the inner side of the processing table to the lower side of the condensation zone, and the tin bar can be quickly cooled and fixed through condensation in the condensation zone.

[0007] The rotating mechanism comprises a fixed plate, the fixed plate is fixedly connected to the lower surface of the forming groove, the outer surface of the fixed plate is provided with a slide groove 1, the inner side of the slide groove 1 is slidably connected with a slider 1, the outer surface of the slider 1 is fixedly connected with an adjustment plate, the upper surface of the adjustment plate is fixedly connected with a fixed column, the inner side of the fixed column is fixedly connected with a spring, the upper end of the spring is fixedly connected with a top column, the outer surface of the top column is fixedly connected with a connecting rod 1, the side of the processing table is provided with a slide groove 2, the inner side of the slide groove 2 is slidably connected with a slider 2, the outer surface of the slider 2 is fixedly connected with a connecting plate, the connecting plate The outer surface is fixedly connected with a motor 1, a side of the processing table away from the connecting plate is fixedly connected with a cylinder 1, a side of the upper surface of the processing table away from the condensation zone is fixedly connected with a connecting frame, the upper surface of the connecting frame is fixedly connected with a cylinder 2, the output shaft of the cylinder 2 is connected with a pressure plate, the inner side of the processing table away from the forming groove is fixedly connected with a fixing bar, a sliding groove 3 is provided at the bottom of the inner side of the processing table, a slider 3 is slidably connected to the inner side of the sliding groove 3, the upper end of the slider 3 is fixedly connected with a moving groove, the inner side of the moving groove is fixedly connected with a support plate, and the outer surface of the support plate is fixedly connected with a connecting rod 2.

[0008] Preferably, the forming grooves are in three groups and are fixedly connected by a connecting rod; three groups of circular grooves are provided in the middle of the inner side of the forming grooves; the push columns are in three groups, and the three groups of push columns are slidably connected to the inner sides of the three groups of circular grooves. The function of the push columns is to start motor one after the forming grooves are moved to the top of the fixed strips so that the output shaft of motor one drives the forming grooves to rotate, thereby turning the forming grooves upside down and covering the top of the moving grooves; and then start cylinder two so that the output shaft of cylinder two drives the pressure plate to move downward, thereby causing the pressure plate to press down the adjustment plate so that the adjustment plate slides downward between the inner sides of the two groups of fixed plates, thereby causing the fixed column to move downward and compress the spring, thereby causing the push column to push out the tin bar in the forming groove, causing the tin block to fall onto the support plate above the moving groove.

[0009] Preferably, the adjustment plate is in a plate-like shape, and the adjustment plate is slidably connected between the two groups of fixed plates. The inner side of the fixed column is hollow, and the top column is slidably connected to the inner side of the fixed column. The spring is fixedly connected between the inner side of the fixed column and the top column. Its function is to prevent leakage through the top column when the tin block solution is injected into the molding groove. When the molding groove is rotated to cover the top of the movable groove, the fixed column is pressed so that the top column pushes out the tin bar in the molding groove, thereby facilitating the processing of the tin bar.

[0010] Preferably, the slider 2 is in a "convex" block shape, the slide groove 2 and the slider 2 are in two groups, the connecting plate is in a block shape, the connecting plate is slidably connected to the outer surface of the processing table, the output shaft of the motor 1 is fixedly connected to one group of the forming grooves, the side of the processing table is provided with a rectangular groove, the output shaft of the motor 1 is slidably connected to the inner side of the groove, and the output shaft of the cylinder 1 is fixedly connected to the connecting plate, and its function is to push the forming groove to the top of the fixed bar by starting the cylinder 1, and to start the motor 1 so that the output shaft of the motor 1 drives the forming groove to rotate, so that the forming groove is turned upside down and covers the top of the movable groove.

[0011] Preferably, the fixed strip is in the shape of a rectangular strip, the slide groove three is in the shape of a "convex" block, the slider three and the slide groove three are in three groups, the slide groove three is adapted to the slider three, the movable groove is in three groups corresponding to the three groups of molding grooves, the support plate is in the shape of a plate, and the support plate is fixedly connected to the inner side of the movable groove, and its function is to facilitate the movement of the tin bars in the three groups of molding grooves to the support plate of the movable groove through automated operation, thereby facilitating the processing of the tin bars on the support plate.

[0012] Preferably, a moving mechanism is provided on the side of the processing table, including a moving plate, which is fixedly connected to one end of connecting rod 2, and a side of the outer surface of the processing table away from motor 1 is fixedly connected to motor 2, and the output shaft of motor 2 is connected to a lead screw.

[0013] Preferably, the second connecting rod is block-shaped, and the second connecting rod is slidably connected to the outer surface of the processing table. The outer surface of the lead screw is connected to the movable plate through a screw sleeve. Its function is to start the second motor so that the output shaft of the second motor drives the lead screw to rotate, thereby driving the movable plate to slide on the outer surface of the processing table, thereby driving the three groups of movable grooves to move on the inner side of the processing table, so as to facilitate moving the tin bar above the support plate to the cutting and punching area, and facilitate cutting and punching operations on it.

[0014] Compared with the prior art, the beneficial effects of the utility model are:

[0015] 1. By starting cylinder 1, the output shaft of cylinder 1 pushes the connecting plate to slide on the side of the processing table, thereby driving the three groups of molding grooves to move on the inner side of the processing table to the bottom of the condensation zone. Through the condensation in the condensation zone, the tin bar can be quickly cooled and fixed. Starting cylinder 1 again, the molding groove can be pushed to the top of the fixed bar. By starting motor 1, the output shaft of motor 1 drives the molding groove to rotate, so that the molding groove is turned upside down and covers the top of the moving groove. Then, by starting cylinder 2, the output shaft of cylinder 2 drives the pressure plate to move downward, so that the pressure plate presses down the adjustment plate so that the adjustment plate slides downward between the inner sides of the two groups of fixed plates, so that the fixed column moves downward, the spring is compressed, so that the ejector column ejects the tin bar in the molding groove, and the tin block falls onto the support plate above the moving groove, so that it is no longer necessary to manually clamp the tin bar for movement, which is convenient for subsequent cutting and punching of the tin bar, thereby improving the production and processing efficiency of the tin bar.

[0016] 2. By moving the tin bar to the inner side of the moving groove and then starting the second motor, the output shaft of the second motor drives the lead screw to rotate, thereby driving the moving plate to slide on the outer surface of the processing table, thereby driving the three sets of moving grooves to move on the inner side of the processing table, so as to facilitate the tin bar above the support plate to be moved to the cutting and punching area, and facilitate the cutting and punching operations, thereby reducing manual work, improving the automation of tin bar production and processing, and improving the production efficiency of tin bars. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a front view stereoscopic schematic diagram of the structure of the utility model;

[0018] Figure 2 It is a rear perspective schematic diagram of the structure of the utility model;

[0019] Figure 3 For this utility model Figure 1 A three-dimensional schematic diagram of the structure of the middle forming tank;

[0020] Figure 4 For this utility model Figure 3 A three-dimensional schematic diagram of the cross-sectional structure of the middle forming groove;

[0021] Figure 5 For this utility model Figure 4 A schematic diagram of the enlarged structure at point A in the middle.

[0022] In the figure: 1. processing table; 11. melting furnace; 12. conduit; 13. forming groove; 14. condensation zone; 2. fixed plate; 21. slide groove 1; 22. slider 1; 23. adjustment plate; 24. fixed column; 25. spring; 26. top column; 27. connecting rod 1; 28. slide groove 2; 29. ​​slider 2; 210. connecting plate; 211. motor 1; 212. cylinder 1; 213. connecting frame; 214. cylinder 2; 215. pressure plate; 3. fixed strip; 31. slide groove 3; 32. slider 3; 33. moving groove; 34. support plate; 35. connecting rod 2; 36. moving plate; 37. motor 2; 38. lead screw. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0024] See also Figure 1-5 , an embodiment provided by the utility model:

[0025] A highly efficient automatic production and processing equipment for tin bars, comprising:

[0026] The machine body includes a processing table 1, a melting furnace 11 is fixedly connected to the upper surface of the processing table 1, a conduit 12 is fixedly connected to the outer surface of the melting furnace 11, a forming groove 13 is movably connected to the inner side of the processing table 1, and a condensation zone 14 is fixedly connected to the side of the upper surface of the processing table 1 close to the melting furnace 11. A tin block is placed inside the melting furnace 11, and the tin block is melted by electric heating. The melted tin block solution flows to the inner side of the forming groove 13 through the conduit 12, thereby forming a tin bar. Then, the three groups of forming grooves 13 are moved from the inner side of the processing table 1 to the lower side of the condensation zone 14. Through the condensation of the condensation zone 14, the tin bar can be quickly cooled and fixed;

[0027] The rotating mechanism includes a fixed plate 2, which is fixedly connected to the lower surface of the forming groove 13. A sliding groove 21 is provided on the outer surface of the fixed plate 2. A slider 22 is slidably connected to the inner side of the sliding groove 21. An adjusting plate 23 is fixedly connected to the outer surface of the slider 22. A fixed column 24 is fixedly connected to the upper surface of the adjusting plate 23. A spring 25 is fixedly connected to the inner side of the fixed column 24. A top column 26 is fixedly connected to the upper end of the spring 25. A connecting rod 27 is fixedly connected to the outer surface of the top column 26. A sliding groove 28 is provided on the side of the processing table 1. A slider 29 is slidably connected to the inner side of the sliding groove 28. A connecting plate 210 is fixedly connected to the outer surface of the slider 29. The outer surface of the connecting plate 210 is fixedly connected to the outer surface of the connecting plate 210. A motor 211 is connected, a cylinder 212 is fixedly connected to the side of the processing table 1 away from the connecting plate 210, a connecting frame 213 is fixedly connected to the side of the upper surface of the processing table 1 away from the condensation area 14, a cylinder 214 is fixedly connected to the upper surface of the connecting frame 213, a pressing plate 215 is connected to the output shaft of the cylinder 214, a fixing bar 3 is fixedly connected to the inner side of the processing table 1 away from the forming groove 13, a sliding groove 31 is provided at the bottom of the inner side of the processing table 1, a slider 3 32 is slidably connected to the inner side of the sliding groove 31, a moving groove 33 is fixedly connected to the upper end of the slider 32, a supporting plate 34 is fixedly connected to the inner side of the moving groove 33, and a connecting rod 2 35 is fixedly connected to the outer surface of the supporting plate 34.

[0028] Furthermore, the forming grooves 13 are in three groups and are fixedly connected by a connecting rod 27. Three groups of circular grooves are opened in the middle of the inner side of the forming grooves 13. The top columns 26 are in three groups. The three groups of top columns 26 are slidably connected to the inner sides of the three groups of circular grooves. Their function is to move the forming grooves 13 to the top of the fixed strip 3 by starting the motor 211 so that the output shaft of the motor 211 drives the forming grooves 13 to rotate, thereby turning the forming grooves 13 upside down and covering the top of the moving grooves 33. Then, the cylinder 214 is started so that the output shaft of the cylinder 214 drives the pressure plate 215 to move downward, thereby causing the pressure plate 215 to press down the adjustment plate 23 so that the adjustment plate 23 slides downward between the inner sides of the two groups of fixed plates 2, thereby causing the fixed column 24 to move downward, causing the spring 25 to be compressed, thereby causing the top column 26 to push out the tin bar in the forming groove 13, causing the tin block to fall onto the support plate 34 above the moving groove 33.

[0029] Furthermore, the adjustment plate 23 is in a plate-like shape, and the adjustment plate 23 is slidably connected between the two groups of fixed plates 2. The inner side of the fixed column 24 is hollow, and the top column 26 is slidably connected to the inner side of the fixed column 24. The spring 25 is fixedly connected between the inner side of the fixed column 24 and the top column 26. Its function is to prevent leakage through the top column 26 when the tin block solution is injected into the molding groove 13. When the molding groove 13 is rotated to cover the top of the movable groove 33, the fixed column 24 is pressed so that the top column 26 pushes out the tin bar in the molding groove 13, which facilitates the processing of the tin bar.

[0030] Furthermore, the slider 29 is in a "convex" block shape, the slide groove 28 and the slider 29 are in two groups, the connecting plate 210 is in a block shape, the connecting plate 210 is slidably connected to the outer surface of the processing table 1, the output shaft of the motor 211 is fixedly connected to one group of the forming grooves 13, and a rectangular groove is opened on the side of the processing table 1. The output shaft of the motor 211 is slidably connected to the inner side of the groove, and the output shaft of the cylinder 212 is fixedly connected to the connecting plate 210. Its function is to start the cylinder 212 so that the forming groove 13 can be pushed to the top of the fixed bar 3, and by starting the motor 211, the output shaft of the motor 211 drives the forming groove 13 to rotate, so that the forming groove 13 is turned upside down and covers the top of the movable groove 33.

[0031] Furthermore, the fixed strip 3 is in the shape of a rectangular strip, the slide groove 31 is in the shape of a "convex" block, the slider 32 and the slide groove 31 are both in three groups, the slide groove 31 is adapted to the slider 32, the movable groove 33 is in three groups corresponding to the three groups of molding grooves 13, the support plate 34 is in a plate shape, and the support plate 34 is fixedly connected to the inner side of the movable groove 33, and its function is to facilitate the movement of the tin bars in the three groups of molding grooves 13 to the support plate 34 of the movable groove 33 through automated operation, thereby facilitating the processing of the tin bars on the support plate 34.

[0032] Furthermore, a moving mechanism is provided on the side of the processing table 1, including a moving plate 36, which is fixedly connected to one end of a connecting rod 2 35, and a motor 2 37 is fixedly connected to the side of the outer surface of the processing table 1 away from the motor 1 211, and a screw 38 is connected to the output shaft of the motor 2 37.

[0033] Furthermore, the connecting rod 2 35 is block-shaped, and the connecting rod 2 35 is slidably connected to the outer surface of the processing table 1. The outer surface of the screw 38 is connected to the movable plate 36 through a screw sleeve. Its function is to start the motor 2 37 so that the output shaft of the motor 2 37 drives the screw 38 to rotate, thereby driving the movable plate 36 to slide on the outer surface of the processing table 1, thereby driving the three groups of movable grooves 33 to move on the inner side of the processing table 1, so as to facilitate the movement of the tin bar above the support plate 34 to the cutting and punching area, so as to facilitate the cutting and punching operations.

[0034] Working principle: by placing the tin block inside the melting furnace 11, the tin block is melted by electric heating, and the melted tin block solution flows to the inside of the forming groove 13 through the conduit 12, thereby forming a tin bar, and then by starting the cylinder 1 212, the output shaft of the cylinder 1 212 pushes the connecting plate 210 to slide on the side of the processing table 1, thereby driving the three groups of forming grooves 13 to move on the inner side of the processing table 1 to the bottom of the condensation area 14, and the condensation of the condensation area 14 allows the tin block to be quickly cooled and fixed, and the cylinder 1 212 is started again, so that the forming groove 13 can be pushed to the top of the fixing bar 3, and by starting the motor 1 211, the output shaft of the motor 1 211 drives the forming groove 13 to move to the bottom of the condensation area 14. The molding groove 13 rotates, so that the molding groove 13 is turned upside down and covers the top of the movable groove 33, and then by starting the cylinder 214, the output shaft of the cylinder 214 drives the pressure plate 215 to move downward, so that the pressure plate 215 presses down the adjustment plate 23 so that the adjustment plate 23 slides downward between the inner sides of the two sets of fixed plates 2, so that the fixed column 24 moves downward, so that the spring 25 is compressed, so that the ejector column 26 ejects the tin bar in the molding groove 13, and the tin block falls onto the support plate 34 above the movable groove 33, so that it is no longer necessary to manually clamp the tin bar for movement, which facilitates the subsequent cutting and punching of the tin bar, thereby improving the production and processing efficiency of the tin bar.

[0035] A fixing bar 3 is fixedly connected to the inner side of the processing table 1, a slide groove 31 is opened at the bottom of the inner side of the processing table 1, a slider 32 is slidably connected to the inner side of the slide groove 31, a moving groove 33 is fixedly connected to the upper end of the slider 32, a supporting plate 34 is fixedly connected to the inner side of the moving groove 33, a connecting rod 2 35 is fixedly connected to the outer surface of the moving groove 33, a moving plate 36 is fixedly connected to the outer surface of the connecting rod 2 35, a motor 2 37 is fixedly connected to the side of the outer surface of the processing table 1 away from the motor 1 211, and the output of the motor 2 37 The output shaft is connected to a lead screw 38. By moving the tin bar to the inner side of the movable groove 33 and then starting the motor 2 37, the output shaft of the motor 2 37 drives the lead screw 38 to rotate, thereby driving the movable plate 36 to slide on the outer surface of the processing table 1, thereby driving the three groups of movable grooves 33 to move on the inner side of the processing table 1, so as to facilitate the movement of the tin bar above the support plate 34 to the cutting and punching area, and facilitate the cutting and punching operations thereon, thereby reducing manual work, improving the automation of tin bar production and processing, and improving the production efficiency of tin bars.

[0036] It is obvious to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or essential features of the present invention. Therefore, the embodiments should be regarded as exemplary and non-restrictive from any point of view, and the scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims be included in the present invention. Any reference numeral in a claim should not be regarded as limiting the claim to which it relates.

Claims

1. A highly efficient automatic production and processing equipment for tin bars, characterized in that: include: The machine body comprises a processing table (1), the upper surface of the processing table (1) is fixedly connected to a melting furnace (11), the outer surface of the melting furnace (11) is fixedly connected to a guide tube (12), the inner side of the processing table (1) is movably connected to a forming groove (13), and the upper surface of the processing table (1) is fixedly connected to a condensation area (14) on a side close to the melting furnace (11); The rotating mechanism comprises a fixed plate (2), wherein the fixed plate (2) is fixedly connected to the lower surface of the forming groove (13), the outer surface of the fixed plate (2) is provided with a sliding groove (21), the inner side of the sliding groove (21) is slidably connected with a slider (22), the outer surface of the slider (22) is fixedly connected with an adjusting plate (23), the upper surface of the adjusting plate (23) is fixedly connected with a fixing column (24), the inner side of the fixing column (24) is fixedly connected with a spring (25), the upper end of the spring (25) is fixedly connected with a top column (26), the outer surface of the top column (26) is fixedly connected with a connecting rod (27), the side surface of the processing table (1) is provided with a sliding groove (28), the inner side of the sliding groove (28) is slidably connected with a slider (29), the outer surface of the slider (29) is fixedly connected with a connecting plate (210), the outer surface of the connecting plate (210) A motor (211) is fixedly connected thereto; a side of the processing table (1) away from the connecting plate (210) is fixedly connected thereto with a cylinder (212); a side of the upper surface of the processing table (1) away from the condensation zone (14) is fixedly connected thereto with a connecting frame (213); a side of the upper surface of the connecting frame (213) is fixedly connected thereto with a cylinder (214); an output shaft of the cylinder (214) is connected to a pressing plate (215); a side of the inner side of the processing table (1) away from the forming groove (13) is fixedly connected thereto with a fixing bar (3); a sliding groove (31) is provided at the bottom of the inner side of the processing table (1); a sliding block (32) is slidably connected to the inner side of the sliding groove (31); a moving groove (33) is fixedly connected to the upper end of the sliding block (32); a supporting plate (34) is fixedly connected to the inner side of the moving groove (33); a connecting rod (35) is fixedly connected to the outer surface of the supporting plate (34).

2. The high-efficiency tin bar automatic production and processing equipment according to claim 1 is characterized by: The forming grooves (13) are in three groups and are fixedly connected by a connecting rod (27). Three groups of circular grooves are opened in the middle of the inner side of the forming grooves (13). The top columns (26) are in three groups. The three groups of top columns (26) are slidably connected to the inner sides of the three groups of circular grooves.

3. The high-efficiency automatic production and processing equipment for tin bars according to claim 2 is characterized by: The adjustment plate (23) is in a plate-like shape and is slidably connected between the two groups of fixed plates (2). The inner side of the fixed column (24) is hollow. The top column (26) is slidably connected to the inner side of the fixed column (24). The spring (25) is fixedly connected between the inner side of the fixed column (24) and the top column (26).

4. The high-efficiency automatic production and processing equipment for tin bars according to claim 3 is characterized by: The second slide block (29) is in a convex block shape, the second slide groove (28) and the second slide block (29) are in two groups, the connecting plate (210) is in a block shape, the connecting plate (210) is slidably connected to the outer surface of the processing table (1), the output shaft of the first motor (211) is fixedly connected to one group of the forming grooves (13), a rectangular groove is provided on the side of the processing table (1), the output shaft of the first motor (211) is slidably connected to the inner side of the groove, and the output shaft of the first cylinder (212) is fixedly connected to the connecting plate (210).

5. The high-efficiency automatic production and processing equipment for tin bars according to claim 4 is characterized by: The fixed strip (3) is in the shape of a rectangular strip, the sliding groove three (31) is in the shape of a "convex" block, the sliding block three (32) and the sliding groove three (31) are both in three groups, the sliding groove three (31) is adapted to the sliding block three (32), the movable groove (33) is in three groups corresponding to the three groups of forming grooves (13), the support plate (34) is in the shape of a plate, and the support plate (34) is fixedly connected to the inner side of the movable groove (33).

6. The high-efficiency automatic production and processing equipment for tin bars according to claim 1 is characterized by: A moving mechanism is provided on the side of the processing table (1), comprising a moving plate (36), wherein the moving plate (36) is fixedly connected to one end of the second connecting rod (35), and a second motor (37) is fixedly connected to the side of the outer surface of the processing table (1) away from the first motor (211), and the output shaft of the second motor (37) is connected to a lead screw (38).

7. The high-efficiency automatic production and processing equipment for tin bars according to claim 6 is characterized by: The second connecting rod (35) is block-shaped and is slidably connected to the outer surface of the processing table (1). The outer surface of the lead screw (38) is connected to the moving plate (36) through a threaded sleeve.