Automatic cable checking mechanism

By designing an automatic line-calibration mechanism and using servo motor drive and electric push rod to realize automatic line calibration and cutting of metal wire, the problems of large error and low efficiency of manual line calibration are solved, and the welding efficiency and accuracy are improved.

CN223394206UActive Publication Date: 2025-09-30SHENZHEN CRAFTSMAN WIN TECH CO LTD
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Patent Information

Application Number
CN202422825049.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-09-30
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

In the prior art, manual calibration is required during metal wire welding, which results in large errors and low efficiency.

Method used

An automatic wire-aligning mechanism was designed, which included a driving mechanism, a wire-aligning and pressing mechanism, and a forming and cutting mechanism. The servo motor drove the moving block to drive the moving wire-pressing mechanism to align and cut the metal wire, and the electric push rod and cutter were used to realize the automated processing.

Benefits of technology

The working efficiency of metal wire welding is improved, the length error is reduced, and the production effect is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an automatic cable checking mechanism, which comprises a pretreatment assembly, the pretreatment assembly comprises a base, a driving moving mechanism, a cable checking and pressing mechanism, a storage box, a moving pressing mechanism and a forming and cutting mechanism, the driving moving mechanism, the cable checking and pressing mechanism and the forming and cutting mechanism are all arranged on the base, and the storage box is arranged on the base. The storage box is arranged on the rear surface of the base; the movable wire pressing mechanism is arranged on the driving moving mechanism; the driving moving mechanism drives the moving wire pressing mechanism to move back and forth, the wire correcting and pressing mechanism is used for conducting wire correcting and pressing treatment on metal wires, then the metal wires are conveyed into the moving wire pressing mechanism, the metal wires are driven to move, and meanwhile the metal wires can be pressed. The pressed metal wire is cut through the forming wire cutting mechanism, the working efficiency is improved, errors of the production length are avoided, and the production effect is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of line correction mechanisms, in particular to an automatic line correction mechanism. Background Art

[0002] When welding mesh, the metal wire needs to be bent and positioned. Usually, this is done manually. The metal wire is first calibrated, pressed and cut. The length of the cut is fixed. Manual measurement of the length of the metal wire will have errors and the work efficiency is low. Therefore, an automatic calibration mechanism is proposed. Utility Model Content

[0003] In view of this, the embodiments of the present invention hope to provide an automatic line correction mechanism to solve or alleviate the technical problems existing in the prior art and at least provide a beneficial option.

[0004] The technical solution of an embodiment of the present utility model is achieved as follows: an automatic line correction mechanism includes a preprocessing component, the preprocessing component includes a base, a driving and moving mechanism, a line correction and pressing mechanism, a storage box, a mobile line pressing mechanism and a forming and tangent mechanism, wherein the driving and moving mechanism, the line correction and pressing mechanism and the forming and tangent mechanism are all arranged on the base, and the storage box is arranged on the rear surface of the base; the mobile line pressing mechanism is arranged on the driving and moving mechanism, and the line correction and pressing mechanism, the mobile line pressing mechanism and the forming and tangent mechanism are arranged in sequence.

[0005] In some embodiments, the driving moving mechanism includes a servo motor, a first mounting plate, a protective cover, a threaded rod, an internal threaded tube, a moving block, a mounting block, a first pulley, a belt loop and a second pulley, wherein the first mounting plate is arranged on the upper surface of the base, and the servo motor is arranged on the rear surface of the first mounting plate; the output shaft of the servo motor passes through the first mounting plate and is rotatably connected, and the first pulley is arranged on the output shaft of the servo motor; the mounting block is arranged on the upper surface of the base, and the threaded rods pass through the first mounting plate and the mounting block and are rotatably connected; the internal threaded tube passes through the moving block, and the internal threaded tube is fixedly connected to the moving block; the moving block is slidably connected to the upper surface of the servo motor, and the moving wire pressing mechanism is arranged on the upper surface of the moving block; the second pulley is arranged on the outer wall of the threaded rod, and the inner wall of the belt loop is meshed with the first pulley and the belt loop; the protective cover is arranged on the front surface of the first mounting plate.

[0006] In some embodiments, the line correction and pressing mechanism includes a mounting frame, a second mounting plate, two first fixing plates, a plurality of line correction rollers, a first threading plate, two limit plates, a second fixing plate, a first electric push rod, a plurality of connecting rollers, a plurality of first fixing members, a plurality of second fixing members, a first pressing plate and a first wire plate, wherein the mounting frame is arranged on the upper surface of the base, and the second mounting plate is arranged on the upper surface of the mounting frame; the two first fixing plates are symmetrically arranged on the upper surface of the second mounting plate, and the upper surface of the first fixing plate is respectively and evenly provided with a first movable through hole and a second movable through hole; a plurality of connecting rollers are respectively fitted to the inner walls corresponding to the first movable through hole and the second movable through hole, and the upper surface of the connecting roller is symmetrically provided with circular fixing holes; a plurality of first fixings The first fixing member and the second fixing member are respectively and evenly arranged on the corresponding limiting plate and the first fixing plate, and the first fixing members and the second fixing members are threadedly connected to the inner wall of the corresponding circular fixing hole; the second fixing plate is arranged on the upper surface of the two limiting plates, and the first electric push rod is arranged on the rear surface of the second fixing plate; the first pressure plate is arranged on the output shaft of the second fixing plate, the first wire board is arranged on the rear surface of the two first wire boards, and the upper surface of the first wire board is evenly provided with a first wire groove; the first threading plate is arranged on the front surface of the two first fixing plates, and the front surface of the first threading plate is evenly provided with a first threading hole; a number of the alignment rollers are rotatably connected to the outer wall of the corresponding connecting roller, and a number of the connecting rollers are staggered.

[0007] In some embodiments, the first fixing member includes a first fixing bolt and a first spring, wherein the upper surface of the limiting plate is evenly provided with a first threaded through hole, and the outer wall of the first fixing bolt is threadedly connected to the inner wall of the first threaded through hole; the first fixing bolt passes through the corresponding circular fixing hole, and the first spring is sleeved on the outer wall of the first fixing bolt; the top end of the first spring is arranged on the inner top wall of the first movable through hole, and the bottom end of the first spring is arranged on the upper surface of the corresponding connecting roller; the inner bottom wall of the first movable through hole is provided with a second threaded through hole, and the outer wall of the first fixing bolt is threadedly connected to the inner wall of the second threaded through hole.

[0008] In some embodiments, the second fixing member includes a second fixing bolt and a second spring, wherein a fourth threaded through hole is evenly opened on the upper surface of the limit plate, and the outer wall of the second fixing bolt is threadedly connected to the inner wall of the fourth threaded through hole; the second fixing bolt passes through the corresponding circular fixing hole, and the second spring is sleeved on the outer wall of the second fixing bolt; the top end of the second spring is arranged on the lower surface corresponding to the connecting roller, and the bottom end of the second spring is arranged on the inner bottom wall of the second movable through hole; a third threaded through hole is opened on the inner bottom wall of the second movable through hole, and the outer wall of the second fixing bolt is threadedly connected to the inner wall of the third threaded through hole.

[0009] In some embodiments, the movable wire pressing mechanism includes a second pressure plate, a fixed block, two pressure blocks and two second electric push rods, wherein the fixed block is arranged on the upper surface of the movable block, and the two second electric push rods are arranged on the outer wall of the fixed block; the two second electric push rods are symmetrically arranged on the outer walls of the corresponding second electric push rods, and the second pressure plate is arranged on the piston rod of the second electric push rod; the lower surface of the second pressure plate is symmetrically provided with bending grooves, and the outer wall of the pressure block is in contact with the inner wall of the bending groove, and the inner wall of the bending groove is evenly provided with second threading holes.

[0010] In some embodiments, the forming and cutting mechanism includes a third electric push rod, a fixing frame, a second threading plate, a cutter, a second wire plate, several return springs and a support plate, wherein the fixing frame is arranged on the upper surface of the base, and the third electric push rod is arranged on the upper surface of the fixing frame; the second threading plate is arranged on the inner wall of the fixing frame, and the outer wall of the second threading plate is evenly provided with third threading holes; the second wire plate is arranged on the rear surface of the fixing frame, and the upper surface of the second wire plate is evenly provided with second wire grooves; the second wire plate is arranged on the piston rod of the third electric push rod; the support plate is arranged on the rear surface of the fixing frame, and the bottom ends of several return springs are evenly arranged on the upper surface of the support plate, and the top ends of several return springs are evenly arranged on the lower surface of the second wire plate.

[0011] In some embodiments, a slide rail is provided on the upper surface of the base, the upper surface of the slide rail is slidably connected to a slide seat, and the upper surface of the slide seat is provided on the lower surface of the moving block.

[0012] The embodiment of the present invention has the following advantages due to the adoption of the above technical solution:

[0013] The utility model drives the mobile wire pressing mechanism to move back and forth by driving the moving mechanism. The wire correction and pressing mechanism is used to perform wire correction and pressing processing on the metal wire. The metal wire is then transmitted to the mobile wire pressing mechanism, which drives the metal wire to move and press the metal wire at the same time. The pressed metal wire is cut by the forming tangent mechanism, thereby improving work efficiency, avoiding errors in production length, and improving production effects.

[0014] The above summary is for the purpose of description only and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments and features described above, further aspects, embodiments and features of the present invention will be readily apparent by reference to the accompanying drawings and the following detailed description. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or technical descriptions. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0016] Figure 1 It is a structural diagram of the utility model;

[0017] Figure 2 This is a front view structural diagram of the utility model;

[0018] Figure 3 For this utility model Figure 2 AA side cross-sectional structure diagram;

[0019] Figure 4 For this utility model Figure 2 BB side section structure diagram;

[0020] Figure 5 For this utility model Figure 4 The enlarged structure diagram of the C region;

[0021] Figure 6 For this utility model Figure 4 A magnified structural diagram of the D region;

[0022] Figure 7 For this utility model Figure 2 EE side cross-sectional structure diagram;

[0023] Figure 8 For this utility model Figure 7 A magnified structural diagram of the F region;

[0024] Figure 9 This is a side view of the structure of the utility model;

[0025] Figure 10 For this utility model Figure 9 GG side cross-sectional structure diagram;

[0026] Figure 11 For this utility model Figure 10 The enlarged structure diagram of the H area;

[0027] Figure 12 For this utility model Figure 10 Magnified structural diagram of the J region;

[0028] Figure 13 For this utility model Figure 10 Enlarged structure diagram of the K area.

[0029] 1. Pretreatment assembly; 2. Slide rail; 3. Sliding seat; 4. First movable through hole; 5. First threaded through hole; 6. First threading hole; 7. Second threaded through hole; 8. Circular fixing hole; 9. Second movable through hole; 10. Base; 11. Driving and moving mechanism; 12. Line calibration and pressing mechanism; 13. Material storage box; 14. Moving pressing mechanism; 15. Forming and cutting mechanism; 20. Third threaded through hole; 21. Fourth threaded through hole; 22. Bending through groove; 23. Second threading hole; 24. First wire duct; 25. Third threading hole; 26. Second wire duct; 110. Servo motor; 111. First mounting plate; 112. Protective cover; 113. Threaded rod; 114. Internally threaded tube; 115. Moving block; 116. Mounting block; 117. First pulley; 118. Belt loop; 1 19. Second pulley; 120. Mounting frame; 121. Second mounting plate; 122. First fixed plate; 123. Alignment roller; 124. First threading plate; 125. Limiting plate; 126. Second fixed plate; 127. First electric push rod; 128. Connecting roller; 129. First fixing member; 130. Second fixing member; 131. First pressure plate; 132. First wire guide; 140. Second pressure plate; 141. Fixed block; 142. Pressure block; 143. Second electric push rod; 150. Third electric push rod; 151. Mounting frame; 152. Second threading plate; 153. Cutter; 154. Second wire guide; 155. Return spring; 156. Support plate; 1290. First fixing bolt; 1291. First spring; 1300. Second fixing bolt; 1301. Second spring. DETAILED DESCRIPTION

[0030] Hereinafter, only certain exemplary embodiments are briefly described. As will be appreciated by those skilled in the art, the described embodiments may be modified in various ways without departing from the spirit or scope of the present invention. Therefore, the drawings and description are to be regarded as illustrative in nature and not restrictive.

[0031] It should be noted that the terms "first," "second," "symmetrical," "array," etc., are used only for the purpose of distinguishing descriptions and positional descriptions, and should not be understood as indicating or implying relative importance or implicitly specifying the quantity of the technical features indicated. Therefore, limitations on features such as "first," "symmetrical," etc. may explicitly or implicitly include one or more of such features; similarly, when the quantity of certain features is not limited by words such as "two," "three," etc., it should be noted that such features also explicitly or implicitly include one or more of the number of features;

[0032] In the present invention, unless otherwise expressly specified or limited, terms such as "install," "connect," and "fix" should be interpreted broadly; for example, they may refer to fixed connections, detachable connections, or integral molding; they may refer to mechanical connections, direct connections, welding, or indirect connections via an intermediate medium; they may refer to internal communication between two components or the interaction between two components. Those skilled in the art will be able to understand the specific meanings of the above terms in the present invention based on the specification and drawings in conjunction with specific circumstances.

[0033] The embodiments of the present invention are described in detail below with reference to the accompanying drawings.

[0034] like Figures 1-13 As shown, an embodiment of the utility model provides an automatic line correction mechanism, including a pretreatment component 1, the pretreatment component 1 includes a base 10, a driving and moving mechanism 11, a line correction and pressing mechanism 12, a storage box 13, a movable line pressing mechanism 14 and a forming and cutting mechanism 15, wherein the driving and moving mechanism 11, the line correction and pressing mechanism 12 and the forming and cutting mechanism 15 are all arranged on the base 10, and the storage box 13 is arranged on the rear surface of the base 10, the movable line pressing mechanism 14 is arranged on the driving and moving mechanism 11, and the line correction and pressing mechanism 12, the movable line pressing mechanism 14 and the forming and cutting mechanism 15 are arranged in sequence.

[0035] In this embodiment, specifically, the driving movement mechanism 11 includes a servo motor 110, a first mounting plate 111, a protective cover 112, a threaded rod 113, an internal threaded tube 114, a moving block 115, a mounting block 116, a first pulley 117, a belt ring 118 and a second pulley 119, wherein the first mounting plate 111 is arranged on the upper surface of the base 10, and the servo motor 110 is arranged on the rear surface of the first mounting plate 111, the output shaft of the servo motor 110 passes through the first mounting plate 111 and is rotatably connected, the first pulley 117 is arranged on the output shaft of the servo motor 110, the mounting block 116 is arranged on the upper surface of the base 10, the threaded rod 113 passes through the first mounting plate 111 and the mounting block 116 and is rotatably connected, the internal threaded tube 114 passes through the moving block 115, and the internal threaded tube 114 is connected to the The moving block 115 is fixedly connected, and the moving block 115 is slidably connected to the upper surface of the servo motor 110. The mobile wire pressing mechanism 14 is arranged on the upper surface of the moving block 115. The second pulley 119 is arranged on the outer wall of the threaded rod 113, and the inner wall of the belt loop 118 is engaged with the first pulley 117 and the belt loop 118. The protective cover 112 is arranged on the front surface of the first mounting plate 111. The output shaft of the servo motor 110 is driven by the above arrangement to rotate the first pulley 117, and the first pulley 117 drives the second pulley 119 to rotate through the belt loop 118. The second pulley 119 drives the threaded rod 113 to rotate in the internal threaded tube 114, so that the internal threaded tube 114 drives the moving block 115 to move back and forth, and the moving block 115 drives the mobile wire pressing mechanism 14 to move back and forth.

[0036] In this embodiment, specifically, the line correction and pressing mechanism 12 includes a mounting frame 120, a second mounting plate 121, two first fixing plates 122, a plurality of line correction rollers 123, a first threading plate 124, two limit plates 125, a second fixing plate 126, a first electric push rod 127, a plurality of connecting rollers 128, a plurality of first fixing members 129, a plurality of second fixing members 130, a first pressing plate 131 and a first wire plate 132, wherein the mounting frame 120 is arranged on the upper surface of the base 10, and the first The second mounting plate 121 is arranged on the upper surface of the mounting frame 120, and the two first fixing plates 122 are symmetrically arranged on the upper surface of the second mounting plate 121, and the upper surface of the first fixing plate 122 is evenly opened with the first movable through hole 4 and the second movable through hole 9, and a plurality of connecting rollers 128 are respectively fitted to the inner walls of the corresponding first movable through hole 4 and the second movable through hole 9, and the upper surface of the connecting roller 128 is symmetrically opened with a circular fixing hole 8, a plurality of first fixing members 129 and a plurality of second fixing members 130 are respectively The first fixing members 129 and the second fixing members 130 are evenly arranged on the corresponding limiting plates 125 and the first fixing plates 122, and a plurality of first fixing members 129 and a plurality of second fixing members 130 are threadedly connected to the inner wall of the corresponding circular fixing hole 8. The second fixing plate 126 is arranged on the upper surface of the two limiting plates 125, and the first electric push rod 127 is arranged on the rear surface of the second fixing plate 126. The first pressing plate 131 is arranged on the output shaft of the second fixing plate 126, the first wire plate 132 is arranged on the rear surface of the two first wire plates 132, and the first guide plate 131 is arranged on the output shaft of the second fixing plate 126. The upper surface of the wire plate 132 is evenly provided with a first wire groove 24, the first threading plate 124 is arranged on the front surface of the two first fixed plates 122, and the front surface of the first threading plate 124 is evenly provided with a first threading hole 6, a number of alignment rollers 123 are rotatably connected to the outer wall of the corresponding connecting roller 128, and a number of connecting rollers 128 are staggered, and the piston rod of the first electric push rod 127 arranged above drives the first pressing plate 131 to move downward, which is used to preliminarily press the metal wire in the first wire groove 24.

[0037] In this embodiment, specifically, the first fixing member 129 includes a first fixing bolt 1290 and a first spring 1291, wherein the upper surface of the limiting plate 125 is evenly provided with a first threaded through hole 5, and the outer wall of the first fixing bolt 1290 is threadedly connected to the inner wall of the first threaded through hole 5, the first fixing bolt 1290 passes through the corresponding circular fixing hole 8, and the first spring 1291 is sleeved on the outer wall of the first fixing bolt 1290, the top end of the first spring 1291 is arranged on the inner top wall of the first movable through hole 4, and the bottom end of the first spring 1291 is arranged on the upper surface of the corresponding connecting roller 128, the inner bottom wall of the first movable through hole 4 is provided with a second threaded through hole 7, and the outer wall of the first fixing bolt 1290 is threadedly connected to the inner wall of the second threaded through hole 7. Through the above arrangement, the first fixing bolt 1290 and the first spring 1291 are used to fix the corresponding connecting roller 128.

[0038] In this embodiment, specifically, the second fixing member 130 includes a second fixing bolt 1300 and a second spring 1301, wherein the upper surface of the limiting plate 125 is evenly provided with a fourth threaded through hole 21, and the outer wall of the second fixing bolt 1300 is threadedly connected to the inner wall of the fourth threaded through hole 21, the second fixing bolt 1300 passes through the corresponding circular fixing hole 8, and the second spring 1301 is sleeved on the outer wall of the second fixing bolt 1300, the top end of the second spring 1301 is arranged on the lower surface of the corresponding connecting roller 128, and the bottom end of the second spring 1301 is arranged on the inner bottom wall of the second movable through hole 9, the inner bottom wall of the second movable through hole 9 is provided with a third threaded through hole 20, and the outer wall of the second fixing bolt 1300 is threadedly connected to the inner wall of the third threaded through hole 20, and the above arrangement of the second fixing bolt 1300 and the second spring 1301 is used to fix the corresponding connecting roller 128.

[0039] In this embodiment, specifically, the movable wire pressing mechanism 14 includes a second pressure plate 140, a fixed block 141, two pressure blocks 142 and two second electric push rods 143, wherein the fixed block 141 is arranged on the upper surface of the movable block 115, and the two second electric push rods 143 are arranged on the outer wall of the fixed block 141, the two second electric push rods 143 are symmetrically arranged on the outer walls of the corresponding second electric push rods 143, and the second pressure plate 140 is arranged on the piston rod of the second electric push rod 143, and the lower surface of the second pressure plate 140 is symmetrically provided with a bending groove 22, and the outer wall of the pressure block 142 is in contact with the inner wall of the bending groove 22, and the inner wall of the bending groove 22 is evenly provided with a second wire threading hole 23, and the piston rod of the second electric push rod 143 set above drives the second pressure plate 140 to move downward, so that the second pressure plate 140 drives the metal wire to contact the pressure block 142, which is used to fix the metal wire, and then the fixed block 141 drives the metal wire to move.

[0040] In this embodiment, specifically, the forming and cutting mechanism 15 includes a third electric push rod 150, a fixing frame 151, a second threading plate 152, a cutter 153, a second wire plate 154, a plurality of return springs 155 and a support plate 156, wherein the fixing frame 151 is arranged on the upper surface of the base 10, and the third electric push rod 150 is arranged on the upper surface of the fixing frame 151, the second threading plate 152 is arranged on the inner wall of the fixing frame 151, and the outer wall of the second threading plate 152 is uniformly provided with a third threading hole 25, the second wire plate 154 is arranged on the rear surface of the fixing frame 151, and the upper surface of the second wire plate 154 is uniformly provided with a second wire groove 2 6. The second wire plate 154 is arranged on the piston rod of the third electric push rod 150, and the support plate 156 is arranged on the rear surface of the fixing frame 151. The bottom ends of the plurality of return springs 155 are evenly arranged on the upper surface of the support plate 156, and the top ends of the plurality of return springs 155 are evenly arranged on the lower surface of the second wire plate 154. Through the above arrangement, the piston rod of the third electric push rod 150 drives the cutter 153 to move downward, and the cutter 153 drives the second wire plate 154 to move downward, so that the cutter 153 and the second wire plate 154 are used to cut the metal wire, wherein the return spring 155 is used to reset the position of the second wire plate 154.

[0041] In this embodiment, specifically, a slide rail 2 is provided on the upper surface of the base 10, the upper surface of the slide rail 2 is slidably connected to the sliding seat 3, the upper surface of the sliding seat 3 is provided on the lower surface of the moving block 115, and the sliding seat 3 slides on the slide rail 2 through the above setting to assist the moving block 115 to move.

[0042] When the present invention is in operation: after the relevant personnel passes the metal wire through the first threading hole 6, the metal wire is clamped in a plurality of line-adjusting rollers 123 in sequence, and then the metal wire is passed through the first wire groove 24, the second threading hole 23, the bending through groove 22, the third threading hole 25 and the second wire groove 26 in sequence. After that, the piston rod of the first electric push rod 127 drives the first pressing plate 131 to move downward, which is used to preliminarily press the metal wire in the first wire groove 24.

[0043] The output shaft of the servo motor 110 drives the first pulley 117 to rotate, and the first pulley 117 drives the second pulley 119 to rotate through the belt ring 118, and the second pulley 119 drives the threaded rod 113 to rotate in the internal threaded tube 114, so that the internal threaded tube 114 drives the moving block 115 to move back and forth, and the moving block 115 drives the fixed block 141 to move back and forth. The piston rod of the second electric push rod 143 drives the second pressure plate 140 to move downward, so that the second pressure plate 140 drives the metal wire to contact the pressure block 142, which is used to fix the metal wire, and then the fixed block 141 drives the metal wire to move.

[0044] Afterwards, the piston rod of the third electric push rod 150 drives the cutter 153 to move downward, and the cutter 153 drives the second wire plate 154 to move downward, so that the cutter 153 and the second wire plate 154 are used to cut the metal wire, wherein the reset spring 155 is used to reset the position of the second wire plate 154.

[0045] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any person skilled in the art can easily conceive of various modifications or substitutions within the technical scope disclosed in the present invention, and such modifications or substitutions are intended to be within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be based on the scope of protection of the claims.

Claims

1. An automatic line calibration mechanism, comprising a pre-processing component (1), characterized in that: The pretreatment assembly (1) comprises a base (10), a driving and moving mechanism (11), a line calibration and pressing mechanism (12), a material storage box (13), a moving line pressing mechanism (14) and a forming and cutting mechanism (15), wherein: The driving and moving mechanism (11), the line-correcting and pressing mechanism (12), and the forming and cutting mechanism (15) are all arranged on the base (10), and the material storage box (13) is arranged on the rear surface of the base (10); The movable wire pressing mechanism (14) is arranged on the driving moving mechanism (11), and the line correction and wire pressing mechanism (12), the movable wire pressing mechanism (14) and the forming and cutting mechanism (15) are arranged in sequence.

2. The automatic line alignment mechanism according to claim 1, characterized in that: The driving movement mechanism (11) includes a servo motor (110), a first mounting plate (111), a protective cover (112), a threaded rod (113), an internal threaded tube (114), a moving block (115), a mounting block (116), a first pulley (117), a belt ring (118) and a second pulley (119), wherein: The first mounting plate (111) is arranged on the upper surface of the base (10), and the servo motor (110) is arranged on the rear surface of the first mounting plate (111); The output shaft of the servo motor (110) passes through the first mounting plate (111) and is rotatably connected thereto, and the first pulley (117) is disposed on the output shaft of the servo motor (110); The mounting block (116) is arranged on the upper surface of the base (10), and the threaded rods (113) penetrate the first mounting plate (111) and the mounting block (116) and are rotatably connected; The internal threaded tube (114) passes through the moving block (115), and the internal threaded tube (114) is fixedly connected to the moving block (115); The moving block (115) is slidably connected to the upper surface of the servo motor (110), and the moving wire pressing mechanism (14) is arranged on the upper surface of the moving block (115); The second pulley (119) is arranged on the outer wall of the threaded rod (113), and the inner wall of the belt loop (118) is meshed with the first pulley (117) and the belt loop (118); The protective cover (112) is arranged on the front surface of the first mounting plate (111).

3. The automatic line alignment mechanism according to claim 1, characterized in that: The wire correction and pressing mechanism (12) comprises a mounting frame (120), a second mounting plate (121), two first fixing plates (122), a plurality of wire correction rollers (123), a first threading plate (124), two limit plates (125), a second fixing plate (126), a first electric push rod (127), a plurality of connecting rollers (128), a plurality of first fixing members (129), a plurality of second fixing members (130), a first pressing plate (131) and a first wire guide plate (132), wherein: The mounting frame (120) is arranged on the upper surface of the base (10), and the second mounting plate (121) is arranged on the upper surface of the mounting frame (120); The two first fixing plates (122) are symmetrically arranged on the upper surface of the second mounting plate (121), and the upper surface of the first fixing plates (122) is evenly provided with a first movable through hole (4) and a second movable through hole (9); A plurality of connecting rollers (128) are respectively attached to the inner walls of the corresponding first movable through hole (4) and the second movable through hole (9), and circular fixing holes (8) are symmetrically opened on the upper surface of the connecting rollers (128); A plurality of first fixing members (129) and a plurality of second fixing members (130) are respectively and evenly arranged on the corresponding limiting plate (125) and the first fixing plate (122), and the plurality of first fixing members (129) and the plurality of second fixing members (130) are threadedly connected to the inner wall of the corresponding circular fixing hole (8); The second fixing plate (126) is arranged on the upper surface of the two limiting plates (125), and the first electric push rod (127) is arranged on the rear surface of the second fixing plate (126); The first pressing plate (131) is arranged on the output shaft of the second fixing plate (126), the first wire plate (132) is arranged on the rear surface of the two first wire plates (132), and the upper surface of the first wire plate (132) is evenly provided with first wire grooves (24); The first threading plate (124) is arranged on the front surfaces of the two first fixing plates (122), and the front surface of the first threading plate (124) is evenly provided with first threading holes (6); A plurality of alignment rollers (123) are rotatably connected to the outer walls of corresponding connecting rollers (128), and a plurality of connecting rollers (128) are staggeredly arranged.

4. The automatic line alignment mechanism according to claim 3, characterized in that: The first fixing member (129) includes a first fixing bolt (1290) and a first spring (1291), wherein: The upper surface of the limiting plate (125) is evenly provided with first threaded through holes (5), and the outer wall of the first fixing bolt (1290) is threadedly connected to the inner wall of the first threaded through hole (5); The first fixing bolt (1290) passes through the corresponding circular fixing hole (8), and the first spring (1291) is sleeved on the outer wall of the first fixing bolt (1290); The top end of the first spring (1291) is arranged on the inner top wall of the first movable through hole (4), and the bottom end of the first spring (1291) is arranged on the upper surface corresponding to the connecting roller (128); A second threaded through hole (7) is provided on the inner bottom wall of the first movable through hole (4), and the outer wall of the first fixing bolt (1290) is threadedly connected to the inner wall of the second threaded through hole (7).

5. The automatic line alignment mechanism according to claim 3, characterized in that: The second fixing member (130) includes a second fixing bolt (1300) and a second spring (1301), wherein: The upper surface of the limiting plate (125) is evenly provided with fourth threaded through holes (21), and the outer wall of the second fixing bolt (1300) is threadedly connected to the inner wall of the fourth threaded through hole (21); The second fixing bolt (1300) passes through the corresponding circular fixing hole (8), and the second spring (1301) is sleeved on the outer wall of the second fixing bolt (1300); The top end of the second spring (1301) is arranged on the lower surface corresponding to the connecting roller (128), and the bottom end of the second spring (1301) is arranged on the inner bottom wall of the second movable through hole (9); A third threaded through hole (20) is provided on the inner bottom wall of the second movable through hole (9), and the outer wall of the second fixing bolt (1300) is threadedly connected to the inner wall of the third threaded through hole (20).

6. The automatic line alignment mechanism according to claim 2, characterized in that: The movable wire pressing mechanism (14) comprises a second pressing plate (140), a fixed block (141), two pressing blocks (142) and two second electric push rods (143), wherein: The fixed block (141) is arranged on the upper surface of the moving block (115), and the two second electric push rods (143) are arranged on the outer wall of the fixed block (141); The two second electric push rods (143) are symmetrically arranged on the outer wall of the corresponding second electric push rod (143), and the second pressure plate (140) is arranged on the piston rod of the second electric push rod (143); The lower surface of the second pressing plate (140) is symmetrically provided with a bending groove (22), and the outer wall of the pressing block (142) is in contact with the inner wall of the bending groove (22), and the inner wall of the bending groove (22) is evenly provided with second threading holes (23).

7. The automatic line alignment mechanism according to claim 1, characterized in that: The forming and cutting mechanism (15) comprises a third electric push rod (150), a fixing frame (151), a second threading plate (152), a cutter (153), a second wire guide plate (154), a plurality of return springs (155) and a support plate (156), wherein: The fixing frame (151) is arranged on the upper surface of the base (10), and the third electric push rod (150) is arranged on the upper surface of the fixing frame (151); The second threading plate (152) is arranged on the inner wall of the fixing frame (151), and the outer wall of the second threading plate (152) is evenly provided with third threading holes (25); The second wire plate (154) is arranged on the rear surface of the fixing frame (151), and the upper surface of the second wire plate (154) is evenly provided with second wire grooves (26); The second wire plate (154) is arranged on the piston rod of the third electric push rod (150); The support plate (156) is arranged on the rear surface of the fixing frame (151), and the bottom ends of the plurality of return springs (155) are evenly arranged on the upper surface of the support plate (156), and the top ends of the plurality of return springs (155) are evenly arranged on the lower surface of the second wire plate (154).

8. The automatic line alignment mechanism according to claim 2, characterized in that: The upper surface of the base (10) is provided with a slide rail (2), the upper surface of the slide rail (2) is slidably connected to a slide seat (3), and the upper surface of the slide seat (3) is provided on the lower surface of the moving block (115).