Carbon steel and stainless steel wire drawing machine

By using automatic flip and self-climbing mechanisms in carbon steel stainless steel wire drawing machines, continuous processing of the front and back sides of the plate is achieved, solving the problems of low production efficiency and single-side repeated processing in the prior art, and improving processing efficiency and product quality.

CN119927732AInactive Publication Date: 2025-05-06江苏鑫立强机械科技有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510155232.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-12
Publication Date
2025-05-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing board wire drawing machines cannot achieve continuous processing on the front and back sides, resulting in low production efficiency and easy to cause surface damage and safety hazards due to manual flipping of the board. At the same time, there are problems of single-sided repeated processing, which affects the performance and appearance quality of the board.

Method used

A carbon steel stainless steel wire drawing machine is designed, using an automatic flip mechanism and a self-climbing mechanism to realize the continuous processing of the double-sided plate parts through the lateral displacement of the installation frame, and the detection mechanism avoids repeated polishing on one side.

Benefits of technology

Continuous processing of both front and back sides of the board is achieved, production efficiency is improved, damage to the board during the flip process is avoided, and resource waste and performance damage caused by repeated polishing on one side is prevented.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119927732A_ABST
    Figure CN119927732A_ABST
Patent Text Reader

Abstract

The invention is applied to the technical field of plate wire drawing machines, and discloses a carbon steel and stainless steel wire drawing machine which comprises an outer shell, an electric push rod is fixedly mounted in the upper end of the outer shell, an electric grinding roller is mounted at the lower end of the electric push rod, and a sliding mounting frame is mounted on the inner side surface of the outer shell. A plate is arranged on the surface of the inner side of the mounting frame, automatic turnover mechanisms are arranged on the surfaces of the mounting frame and the outer shell, and the mounting frame can drive the plate to rotate for double-face machining in the mode that the mounting frame transversely moves relative to the outer shell. According to the carbon steel and stainless steel wire drawing machine, the mode that the mounting frame automatically turns over along with position changes in the process of sliding towards the interior of the outer shell is adopted, so that a plate on the inner side of the mounting frame can be turned over, continuous machining of the front face and the back face of the plate is achieved, and it is avoided that the plate is taken down for back face operation; and the working efficiency is improved, and meanwhile, the plates are effectively prevented from being damaged in the turnover process.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of plate wire drawing machines, in particular to a carbon steel and stainless steel wire drawing machine. Background Art

[0002] In today's industrial field, carbon steel plates and stainless steel plates, as important basic materials, are widely used in many industries such as construction, machinery manufacturing, and decoration. With the continuous improvement of market requirements for product quality and appearance, the surface treatment technology of plates has become more and more critical. Wire drawing, as a surface treatment method that can give plates unique texture and texture, occupies an important position in plate processing. At present, the existing plate wire drawing machines have exposed a series of problems in practical applications. First of all, the disadvantage of not being able to continuously draw the front and back sides seriously restricts production efficiency. In the traditional processing flow, when carbon steel plates and stainless steel plates need to be drawn, the drawing operation is usually performed on one side of the plate first. After completing the processing of one side, the plate must be turned over manually. , and then the other side can be drawn. This method is not only cumbersome to operate, but also consumes a lot of manpower and time costs. In the process of manually turning over the plate, it is very easy to damage the surface of the plate. For example, scratches, dents and other problems may occur, which will affect the appearance quality of the product. In addition, there are certain safety hazards in manual turning. The operator may be injured due to improper operation. From the perspective of production efficiency, the inability to continuously perform the front and back drawing processing causes interruptions in the entire production process. In the case of large-scale production, this interruption will lead to delays in production progress and cannot meet the market's demand for rapid supply of products. Moreover, since frequent manual operations are required, not only the labor intensity is increased, but also fatigue and mistakes are prone to occur, further reducing production efficiency. On the other hand, existing wire drawing machines are prone to operating errors that lead to repeated single-sided processing. In actual operation, due to the lack of an effective monitoring and prompting mechanism, operators may perform multiple wire drawing processes on the same side of the plate due to negligence, lack of concentration, or unfamiliarity with the operating procedures. This single-sided repeated processing not only wastes valuable time and resources, but may also have an adverse effect on the performance of the plate. For carbon steel plates and stainless steel plates, excessive wire drawing may make the plate thinner and reduce its strength and durability. For example, plates used in the construction field may affect the structural safety of the building if their strength is reduced due to repeated single-sided wire drawing. In addition, repeated wire drawing may also change the surface hardness and roughness of the plate, affecting its subsequent processing and use performance. In the field of decoration, the surface texture and texture of the plate are crucial to the aesthetics of the product. Repeated single-sided wire drawing may make the surface texture of the plate uneven and lose the original design beauty, thereby reducing the market competitiveness of the product. Summary of the invention

[0003] The object of the present invention is to provide a carbon steel stainless steel wire drawing machine to solve the problems in the above-mentioned background technology that continuous processing of the front and back sides cannot be performed and repeated processing of a single side is easy.

[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a carbon steel stainless steel wire drawing machine, comprising an outer shell, an electric push rod is fixedly installed inside the upper end of the outer shell, and an electric grinding roller is installed at the lower end of the electric push rod, a sliding mounting frame is installed on the inner surface of the outer shell, and a plate is arranged on the inner surface of the mounting frame, and an automatic flipping mechanism is arranged on the surface of the mounting frame and the outer shell, and the mounting frame can drive the plate to rotate for double-sided processing by lateral displacement of the mounting frame relative to the outer shell; The automatic flipping mechanism includes: a driving gear, the driving gear is fixedly arranged at both ends of the rotating shaft of the mounting frame, and a balancing block is fixedly arranged at one end of the driving gear, a switching motor is fixedly installed inside the side surface of the mounting frame, and the lower end of the output shaft of the switching motor passes through the lower surface of the mounting frame, and the lower end of the output shaft of the switching motor is fixedly connected to a supporting plate, a rotatable sliding frame is installed at one end of the balancing block, a sliding rod is fixedly arranged on the side surface of the outer shell, and a driving motor is fixedly arranged on the side surface of the outer shell, the output shaft of the driving motor is fixedly connected to a displacement rod, and the displacement rod is rotatably connected to the outer shell, a fixing rod is fixedly arranged on the outer surface of the outer shell, and a rotating movable tooth block is fixedly arranged on one end of the fixing rod, and a balancing rod is fixedly connected to one end of the fixing rod, and a material receiving plate is fixedly arranged on the inner surface of one end of the outer shell.

[0005] Preferably, the outer surface of the balancing block is in contact with the outer surface of the balancing rod, the end of the balancing rod connected to the fixed rod is designed as a downward inclined slope, and the fixed rod and the balancing rod are staggered, and the fixed rod is located directly below the driving gear, a spring is connected between the movable tooth block and the fixed rod, and a protrusion is provided on the upper surface of the fixed rod on one side of the movable tooth block, and the lower end side surface of the movable tooth block is in contact with the outer surface of the protrusion on the upper surface of the fixed rod, and the protrusion on the upper surface of the fixed rod is located on the side of the movable tooth block away from the driving gear.

[0006] By adopting the above technical solution, the movable tooth block can be driven by the movable tooth block to rotate in one direction.

[0007] Preferably, the lower surface of the support plate is flush with the lower surface of the mounting frame, and the support plate is a circular plate-shaped design with a section at one end, the displacement rod is threadedly connected to the sliding frame, and the sliding frame is slidably connected to the sliding rod.

[0008] By adopting the above technical solution, the supporting plate can be rotated to support the plate.

[0009] Preferably, a self-clamping mechanism is provided on the surface of the mounting frame, and the plate is automatically clamped by changing the position of the mounting frame relative to the outer shell.

[0010] By adopting the above technical solution, the mounting frame can automatically clamp the plate after sliding into the outer shell.

[0011] Preferably, the self-clamping mechanism includes: a pressurizing chamber, the pressurizing chamber is opened inside the side surfaces of both ends of the mounting frame, and a conduction chamber is opened inside the side surface of the middle section of the mounting frame, and a conduction tube is opened inside the side surface of the mounting frame between the conduction chamber and the pressurizing chamber, a pressurizing plate is arranged inside the pressurizing chamber, and one end of the pressurizing plate passes through the outer surface of the mounting frame and is fixedly connected to a contact plate, a piston plate is arranged inside the conduction chamber, and one end of the piston plate passes through the inner surface of the mounting frame and is fixedly connected to a clamping block, and a contact block is fixedly arranged on the outer surface of the clamping block, and a guide plate is fixedly arranged at one end of the outer shell.

[0012] By adopting the above technical solution, the clamping block can contact and clamp the side surface of the plate through the contact block.

[0013] Preferably, the pressurizing chamber and the pressurizing plate are connected by sliding friction, and a spring is connected between the pressurizing plate and the mounting frame, the outer surface of the contact plate fits with the inner surface of the outer shell, and the conduction chamber and the piston plate are connected by sliding friction.

[0014] By adopting the above technical solution, the air in the pressurized chamber can be conducted to the conduction chamber through the conduction pipe to push the piston plate.

[0015] Preferably, the guide plate is designed to be inclined toward the outside of the outer shell, and the two guide plates are distributed in an eight-shaped shape, and the smaller end of the eight-shaped opening formed by the two guide plates is arranged toward the inside of the outer shell.

[0016] By adopting the above technical solution, the guide plate can gradually press the contact plate through the inclined surface.

[0017] Preferably, a detection mechanism is provided on the surface of the mounting frame and the outer shell of the electric grinding roller, and repeated grinding of the plate is avoided by monitoring the positive and negative states of the mounting frame. The detection mechanism comprises: a side mounting plate, a magnetic block is fixedly provided on the lower end of the side mounting plate, and a nozzle is fixedly provided on the upper side surface of the side mounting plate, a function plate is fixedly provided on the side surface of one end of the mounting frame facing the side mounting plate, a rotating support plate is installed on the upper surface of the function plate, a sliding limit rod is installed on the upper surface of the function plate, and a sliding locking plate is installed on the upper surface of the function plate between the two limit rods, and a magnetic plate is fixedly provided on the upper surface of the locking plate away from the support plate.

[0018] By adopting the above technical solution, a single side of the plate will not be processed continuously on both sides.

[0019] Preferably, a spring is connected between the function plate and the support plate, and the two support plates are arranged opposite to each other, and the upper surface of one end of the two support plates facing each other is in contact with the lower surface of the locking plate, the connection between the support plate and the function plate is located directly below the side mounting plate, and a spring is connected between the locking plate and the function plate.

[0020] By adopting the above technical solution, the locking plate can maintain the position limitation of the supporting plate under the support of the spring.

[0021] Preferably, the end of the limit rod facing the support plate is C-shaped, and the C-shaped end of the limit rod is in contact with the side surface of the support plate, and a spring is connected between the limit rod and the function plate, and the magnetic plate and the magnetic block have the same magnetic pole at one end facing each other.

[0022] By adopting the above technical solution, the magnetic block can repel the magnetic plate and push the locking plate to slide.

[0023] Compared with the prior art, the invention has the following beneficial effects: the carbon steel stainless steel wire drawing machine: 1. The mounting frame is automatically flipped as its position changes during the sliding process into the outer shell, so that the plate inside the mounting frame can be flipped, thereby realizing continuous processing of the front and back sides of the plate, avoiding the need to remove the plate for reverse operation, improving work efficiency and effectively preventing damage to the plate during the flipping process; Furthermore, by placing the plate on the mounting frame and then moving it into the outer shell, the mounting frame can automatically clamp the plate by contacting with the guide plate and the side surface of the outer shell, so that both the front and back sides can be polished without being blocked; 2. A functional plate is set on one side of the mounting frame. When the side mounting plate moves downward with the outer shell of the electric grinding roller, the magnetic plate is repelled by the magnetic block. When the electric grinding roller moves downward again, the flipping of the mounting frame can be detected. The electric grinding roller cannot move downward to grind the plate when the mounting frame is not flipped, thereby avoiding excessive grinding of the plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the present invention; Figure 2 It is a schematic diagram of the three-dimensional structure of the outer shell and the material receiving plate connected to each other in the present invention; Figure 3 It is a schematic diagram of the three-dimensional structure of the overall cutaway surface of the present invention; Figure 4 It is a schematic diagram of the three-dimensional structure of the connection between the fixed rod, the movable gear block and the balance rod of the present invention; Figure 5 It is a schematic diagram of the three-dimensional structure of the connection between the side mounting plate and the nozzle of the present invention; Figure 6 This is a schematic diagram of the three-dimensional structure of the connection between the installation frame and the functional board of the present invention; Figure 7 This is a schematic diagram of the three-dimensional structure of the functional plate and the support plate connected to each other in the present invention; Figure 8 It is a three-dimensional structural schematic diagram of the functional plate and the support plate in the working state of connection of the present invention; Fig. 9 This is a schematic diagram of the three-dimensional structure of the connection between the mounting frame and the supporting plate of the present invention; Fig.10 It is a three-dimensional structural schematic diagram of the connection section of the mounting frame, the switching motor and the supporting plate of the present invention; Fig.11 It is a schematic diagram of the three-dimensional structure of the connection section of the installation frame, the pressure plate and the contact plate of the present invention; Fig.12 It is a three-dimensional structural schematic diagram of the cross-section surface connecting the pressurizing chamber, the conducting chamber and the conducting tube of the present invention.

[0025] In the figure: 1. outer shell; 2. electric push rod; 3. electric grinding roller; 4. mounting frame; 5. plate; 6. driving gear; 7. balancing block; 8. switching motor; 9. supporting plate; 10. sliding frame; 11. sliding rod; 12. driving motor; 13. displacement rod; 14. fixing rod; 15. movable gear block; 16. balancing rod; 17. receiving plate; 18. pressurizing chamber; 19. conduction chamber; 20. conduction tube; 21. pressurizing plate; 22. contact plate; 23. piston plate; 24. clamping block; 25. contact block; 26. guide plate; 27. side mounting plate; 28. magnetic block; 29. ​​nozzle; 30. function plate; 31. support plate; 32. limit rod; 33. locking plate; 34. magnetic plate. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0027] See also Figure 1-Figure 12 The present invention provides a technical solution: a carbon steel stainless steel wire drawing machine.

[0028] Embodiment 1: This embodiment discloses an outer shell 1, an electric push rod 2 is fixedly installed inside the upper end of the outer shell 1, and an electric grinding roller 3 is installed at the lower end of the electric push rod 2, a sliding mounting frame 4 is installed on the inner surface of the outer shell 1, and a plate 5 is arranged on the inner surface of the mounting frame 4, and an automatic flipping mechanism is arranged on the surface of the mounting frame 4 and the outer shell 1, and the mounting frame 4 can drive the plate 5 to rotate for double-sided processing by lateral displacement of the mounting frame 4 relative to the outer shell 1; The automatic flipping mechanism includes: a driving gear 6, the driving gear 6 is fixedly arranged at both ends of the rotating shaft of the mounting frame 4, and a balancing block 7 is fixedly arranged at one end of the driving gear 6, a switching motor 8 is fixedly installed inside the side surface of the mounting frame 4, and the lower end of the output shaft of the switching motor 8 passes through the lower surface of the mounting frame 4, and the lower end of the output shaft of the switching motor 8 is fixedly connected to a supporting plate 9, a rotating sliding frame 10 is installed at one end of the balancing block 7, a sliding rod 11 is fixedly arranged on the side surface of the outer shell 1, and a driving motor 12 is fixedly arranged on the side surface of the outer shell 1, a displacement rod 13 is fixedly connected to the output shaft of the driving motor 12, and the displacement rod 13 is rotatably connected to the outer shell 1, a fixed rod 14 is fixedly arranged on the outer surface of the outer shell 1, and a rotating movable tooth block 15 is fixedly arranged at one end of the fixed rod 14, and a balancing rod 16 is fixedly connected to one end of the fixed rod 14, and a material receiving plate 17 is fixedly arranged on the inner surface of one end of the outer shell 1; The outer surface of the balancing block 7 is fitted with the outer surface of the balancing rod 16, and the end of the balancing rod 16 connected to the fixed rod 14 is designed as a downwardly inclined slope, and the fixed rod 14 and the balancing rod 16 are staggered, and the fixed rod 14 is located directly below the driving gear 6, and a spring is connected between the movable tooth block 15 and the fixed rod 14, and a protrusion is provided on the upper surface of the fixed rod 14 on one side of the movable tooth block 15, and the lower end side surface of the movable tooth block 15 is fitted with the outer surface of the protrusion on the upper surface of the fixed rod 14, and the protrusion on the upper surface of the fixed rod 14 is located on the side of the movable tooth block 15 away from the driving gear 6; The lower surface of the support plate 9 is flush with the lower surface of the mounting frame 4, and the support plate 9 is a circular plate-shaped design with a cross section at one end, the displacement rod 13 is threadedly connected to the sliding frame 10, and the sliding frame 10 is slidably connected to the sliding rod 11; During the processing, first start the driving motor 12 to drive the displacement rod 13 to rotate. The displacement rod 13 drives the sliding frame 10 to slide relative to the outer shell 1 on the sliding rod 11 through the threaded connection with the sliding frame 10. When the mounting frame 4 slides to the outside of the outer shell 1, the switching motor 8 is started to drive the supporting plate 9 to rotate, so that the plate 5 can be stably supported and limited when placed on the inner side of the mounting frame 4. At this time, as the mounting frame 4 is driven to the inside of the middle section of the outer shell 1, the switching motor 8 is started to drive the supporting plate 9 to rotate and retract into the interior of the mounting frame 4. The cross-section design ensures that the supporting plate 9 will not block the surface of the plate 5. At this time, the electric push rod 2 drives the electric grinding roller 3 to move downward. At this time, the plate 5 is driven to move in the direction of the receiving plate 17 and is polished and drawn by the electric grinding roller 3. After the polishing is completed, the mounting frame 4 drives the driving gear 6 and the balance The block 7 moves to the downward bending part of the balance bar 16. At this time, the driving gear 6 contacts the movable tooth block 15 on the fixed rod 14 and is driven to rotate, so that the mounting frame 4 is driven to make the plate 5 rotate 180°, and then the mounting frame 4 is driven to slide in the opposite direction. At this time, the driving gear 6 squeezes the movable tooth block 15 so that the movable tooth block 15 rotates relative to the fixed rod 14. At this time, the driving gear 6 will not be driven to rotate until the balance block 7 moves to the downward bending part of the balance bar 16 and is squeezed by the balance bar 16 to gradually restore the horizontal level. At this time, the mounting frame 4 moves to the middle section of the outer shell 1, the electric grinding roller 3 descends and the mounting frame 4 continues to be driven to move toward the receiving plate 17 for grinding. After the grinding is completed, the mounting frame 4 drives the plate 5 to move out of the outer shell 1 to complete the processing. During the flipping process of the plate 5, the debris on the surface of the plate 5 slides off and is guided out of the outer shell 1 through the receiving plate 17. Embodiment 2: Based on Embodiment 1, this embodiment discloses that a self-clamping mechanism is provided on the surface of the mounting frame 4, and the plate 5 is automatically clamped by the change of the position of the mounting frame 4 relative to the outer shell 1; The self-clamping mechanism includes: a pressurizing chamber 18, wherein the pressurizing chamber 18 is provided inside the side surfaces of both ends of the mounting frame 4, and a conduction chamber 19 is provided inside the side surface of the middle section of the mounting frame 4, and a conduction tube 20 is provided inside the side surface of the mounting frame 4 between the conduction chamber 19 and the pressurizing chamber 18, a pressurizing plate 21 is provided inside the pressurizing chamber 18, and one end of the pressurizing plate 21 penetrates through the outer surface of the mounting frame 4 and is fixedly connected to a contact plate 22, a piston plate 23 is provided inside the conduction chamber 19, and one end of the piston plate 23 penetrates through the inner surface of the mounting frame 4 and is fixedly connected to a clamping block 24, and a contact block 25 is fixedly provided on the outer surface of the clamping block 24, and a guide plate 26 is fixedly provided at one end of the outer shell 1; The pressurizing chamber 18 is connected to the pressurizing plate 21 by sliding friction, and a spring is connected between the pressurizing plate 21 and the mounting frame 4. The outer surface of the contact plate 22 is in contact with the inner surface of the outer shell 1, and the conduction chamber 19 is connected to the piston plate 23 by sliding friction. The guide plate 26 is designed to be inclined toward the outside of the outer shell 1, and the two guide plates 26 are distributed in an eight-shaped shape, and the smaller end of the eight-shaped opening formed by the two guide plates 26 is arranged toward the inside of the outer shell 1; When the mounting frame 4 gradually slides toward the inside of the outer shell 1, the contact plate 22 is squeezed by the inclined surface of the guide plate 26 to drive the pressure plate 21 to slide in the pressure chamber 18, so that the air in the pressure chamber 18 is injected into the conduction chamber 19 through the conduction tube 20. The conduction chamber 19 drives the piston plate 23 to slide through the pressure, so that the clamping block 24 can contact the side surface of the plate 5 through the contact block 25 to clamp the plate 5 laterally.

[0029] Embodiment 3: Based on Embodiment 1 and Embodiment 2, this embodiment discloses that the surfaces of the mounting frame 4 and the outer shell of the electric grinding roller 3 are provided with a detection mechanism, and repeated grinding of the plate 5 is avoided by monitoring the positive and negative states of the mounting frame 4. The detection mechanism comprises: a side mounting plate 27, a magnetic block 28 is fixedly provided at the lower end of the side mounting plate 27, and a nozzle 29 is fixedly provided on the upper side surface of the side mounting plate 27, a functional plate 30 is fixedly provided on the side surface of one end of the mounting frame 4 facing the side mounting plate 27, a rotating support plate 31 is installed on the upper surface of the functional plate 30, a sliding limit rod 32 is installed on the upper surface of the functional plate 30, and a sliding locking plate 33 is installed on the upper surface of the functional plate 30 between the two limit rods 32, and a magnetic plate 34 is fixedly provided on the upper surface of the locking plate 33 away from the support plate 31; A spring is connected between the function plate 30 and the support plate 31, and the two support plates 31 are arranged facing each other, and the upper surfaces of the facing ends of the two support plates 31 are in contact with the lower surface of the locking plate 33, and the connection between the support plate 31 and the function plate 30 is located directly below the side mounting plate 27, and a spring is connected between the locking plate 33 and the function plate 30; One end of the limit rod 32 facing the support plate 31 is designed in a C shape, and one end of the limit rod 32 C shape fits the side surface of the support plate 31, and a spring is connected between the limit rod 32 and the function plate 30, and the magnetic plate 34 has the same magnetic pole as the end of the magnetic block 28 facing each other; When the electric grinding roller 3 is grinding the plate 5 for the first time, the side mounting plate 27 moves to the top of the locking plate 33 as the electric grinding roller 3 moves downward, and the magnetic block 28 repels the magnetic plate 34 so that the locking plate 33 is driven to slide away from the support plate 31, and the support plate 31 loses the limit of the locking plate 33 and flips upward under the support of the spring between the functional plate 30 until the limit rod 32 receives the support of the spring between the functional plate 30 and slides and engages with the support plate 31, when the single grinding of the mounting frame 4 is completed but the operating error of the operator causes the mounting frame 4 to be not turned over, at this time, as the electric grinding roller 3 is raised and descends again, the lower end of the side mounting plate 27 is blocked by the support plate 31 which is vertically upward and cannot move downward further, thereby ensuring that the electric grinding roller 3 cannot grind the already grinded plate 5 again; After both sides of the plate 5 are polished, the staff resets the support plate 31 that slides out of the outer shell 1 along with the installation frame 4 to ensure subsequent normal processing. During the polishing process, the plate 5 is sprayed with cooling medium through the nozzle 29 to cool it.

[0030] The above specific embodiments further illustrate the purpose, technical solutions and beneficial effects of the present invention in detail. It should be understood that the above are only specific embodiments of the present invention and do not limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention are included in the protection scope of the present invention.

Claims

1. A carbon steel stainless steel wire drawing machine, comprising an outer shell (1), an electric push rod (2) fixedly mounted inside the upper end of the outer shell (1), and an electric grinding roller (3) mounted at the lower end of the electric push rod (2), characterized in that: A sliding mounting frame (4) is installed on the inner surface of the outer shell (1), and a plate (5) is arranged on the inner surface of the mounting frame (4). The surfaces of the mounting frame (4) and the outer shell (1) are provided with an automatic flipping mechanism, and the mounting frame (4) can drive the plate (5) to rotate to perform double-sided processing by means of a lateral displacement of the mounting frame (4) relative to the outer shell (1); The automatic flipping mechanism comprises: a driving gear (6), the driving gear (6) being fixedly arranged at both ends of a rotating shaft of the mounting frame (4), and a balancing block (7) being fixedly arranged at one end of the driving gear (6), a switching motor (8) being fixedly arranged inside a side surface of the mounting frame (4), and the lower end of an output shaft of the switching motor (8) passing through a lower surface of the mounting frame (4), and a supporting plate (9) being fixedly connected to the lower end of the output shaft of the switching motor (8), a rotating sliding frame (10) being installed at one end of the balancing block (7), and the side surface of the outer shell (1) being fixedly arranged inside the outer shell (1) A sliding rod (11) is fixedly provided, and a driving motor (12) is fixedly mounted on the side surface of the outer shell (1), the output shaft of the driving motor (12) is fixedly connected to a displacement rod (13), and the displacement rod (13) is rotatably connected to the outer shell (1), a fixing rod (14) is fixedly provided on the outer surface of the outer shell (1), and a rotatable movable tooth block (15) is fixedly provided on one end of the fixing rod (14), and a balancing rod (16) is fixedly connected to one end of the fixing rod (14), and a material receiving plate (17) is fixedly provided on the inner surface of one end of the outer shell (1).

2. A carbon steel stainless steel wire drawing machine according to claim 1, characterized in that: The outer surface of the balancing block (7) is in contact with the outer surface of the balancing rod (16); one end of the balancing rod (16) connected to the fixed rod (14) is designed to be inclined downward; the fixed rod (14) and the balancing rod (16) are arranged in an offset manner; the fixed rod (14) is located directly below the driving gear (6); a spring is connected between the movable tooth block (15) and the fixed rod (14); a protrusion is provided on the upper surface of the fixed rod (14) on one side of the movable tooth block (15); the lower end side surface of the movable tooth block (15) is in contact with the outer surface of the protrusion on the upper surface of the fixed rod (14); and the protrusion on the upper surface of the fixed rod (14) is located on the side of the movable tooth block (15) away from the driving gear (6).

3. A carbon steel stainless steel wire drawing machine according to claim 1, characterized in that: The lower surface of the support plate (9) is flush with the lower surface of the mounting frame (4), and the support plate (9) is a circular plate with a cross section at one end. The displacement rod (13) is threadedly connected to the sliding frame (10), and the sliding frame (10) is slidably connected to the sliding rod (11).

4. A carbon steel stainless steel wire drawing machine according to claim 1, characterized in that: A self-clamping mechanism is provided on the surface of the mounting frame (4), and the plate (5) is automatically clamped by changing the position of the mounting frame (4) relative to the outer shell (1).

5. A carbon steel stainless steel wire drawing machine according to claim 4, characterized in that: The self-clamping mechanism comprises: a pressurizing chamber (18), wherein the pressurizing chamber (18) is provided inside the side surfaces of both ends of the mounting frame (4), and a conduction chamber (19) is provided inside the side surface of the middle section of the mounting frame (4), and a conduction tube (20) is provided inside the side surface of the mounting frame (4) between the conduction chamber (19) and the pressurizing chamber (18), a pressurizing plate (21) is provided inside the pressurizing chamber (18), and one end of the pressurizing plate (21) passes through the outer surface of the mounting frame (4) and is fixedly connected to a contact plate (22), a piston plate (23) is provided inside the conduction chamber (19), and one end of the piston plate (23) passes through the inner surface of the mounting frame (4) and is fixedly connected to a clamping block (24), and a contact block (25) is fixedly provided on the outer surface of the clamping block (24), and a guide plate (26) is fixedly provided at one end of the outer shell (1).

6. A carbon steel stainless steel wire drawing machine according to claim 5, characterized in that: The pressurizing chamber (18) and the pressurizing plate (21) are connected by sliding friction, and a spring is connected between the pressurizing plate (21) and the mounting frame (4). The outer surface of the contact plate (22) fits the inner surface of the outer shell (1), and the conduction chamber (19) and the piston plate (23) are connected by sliding friction.

7. The carbon steel stainless steel wire drawing machine according to claim 5, characterized in that: The guide plate (26) is designed to be inclined toward the outside of the outer shell (1), and the two guide plates (26) are distributed in an eight-shaped shape, and the smaller end of the eight-shaped opening formed by the two guide plates (26) is arranged toward the inside of the outer shell (1).

8. The carbon steel and stainless steel wire drawing machine according to claim 1, characterized in that: The surfaces of the mounting frame (4) and the outer shell of the electric grinding roller (3) are provided with a detection mechanism, and repeated grinding of the plate (5) is avoided by monitoring the positive and negative states of the mounting frame (4). The detection mechanism comprises: a side mounting plate (27), a magnetic block (28) is fixedly provided at the lower end of the side mounting plate (27), and a nozzle (29) is fixedly provided on the upper side surface of the side mounting plate (27); a function plate (30) is fixedly provided on the side surface of one end of the mounting frame (4) facing the side mounting plate (27), a rotating support plate (31) is installed on the upper surface of the function plate (30), a sliding limit rod (32) is installed on the upper surface of the function plate (30), and a sliding locking plate (33) is installed on the upper surface of the function plate (30) between the two limit rods (32), and a magnetic plate (34) is fixedly provided on the upper surface of the end of the locking plate (33) away from the support plate (31).

9. A carbon steel stainless steel wire drawing machine according to claim 8, characterized in that: A spring is connected between the function plate (30) and the support plate (31), and the two support plates (31) are arranged facing each other, and the upper surfaces of the facing ends of the two support plates (31) are in contact with the lower surface of the locking plate (33), and the connection between the support plate (31) and the function plate (30) is located directly below the side mounting plate (27), and a spring is connected between the locking plate (33) and the function plate (30).

10. The carbon steel or stainless steel wire drawing machine according to claim 8, characterized in that: One end of the limit rod (32) facing the support plate (31) is designed in a C shape, and the C-shaped end of the limit rod (32) is in contact with the side surface of the support plate (31), and a spring is connected between the limit rod (32) and the function plate (30), and the magnetic plate (34) and the magnetic block (28) have the same magnetic pole at one end facing each other.