Stamping mechanism of efficient numerical control net pulling machine
By introducing a combination design of guide blocks and adjustment devices into the stamping mechanism of the screen forming machine, the problems of slow vertical and horizontal slider movement speed and high resistance are solved, achieving high-speed precision positioning and reducing wear, thus improving production efficiency.
Patent Information
- Application Number
- CN202520397347.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-08
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-03-08
AI Technical Summary
In the existing stamping mechanism of the screen forming machine, the vertical and horizontal sliders move slowly, have high resistance, and suffer from wear problems.
The design employs a combination of guide blocks and adjustment devices, including tracked rolling guide blocks, metal needle rollers, linear slider rolling bearings, and linear bearings. Through the cooperation of the first to fourth guide blocks and the adjustment device, high-speed movement of the vertical and horizontal sliders is achieved, and precise positioning is ensured by the adjustment device.
It increases the production speed of the screen forming machine, reduces the resistance and wear of the slider movement, and ensures the precise positioning and high-speed movement of the mold.
Smart Images

Figure CN223775773U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of mesh forming machines (mesh punching machines, steel plate mesh machines, expanded mesh machines), specifically a punching mechanism for a high-efficiency CNC mesh forming machine. Background Technology
[0002] Mesh forming machines, also known as mesh punching machines, steel plate mesh machines, or expanded mesh machines, produce a wide range of products with diverse applications, including automotive air filters, car horn mesh, oil filters, sterile workshop air filters, port and dock platforms, highway sound barrier mesh panels, and the main material mesh panels in flat-plate catalysts for desulfurization and denitrification in national air pollution control projects.
[0003] The vertical movement of the vertical slider and the horizontal movement of the horizontal slider in the stamping mechanism enable the mold to move up and down at high speed while simultaneously shifting left and right, thus forming a complete eyelet. The rapid vertical movement and quick, low-resistance positioning of the horizontal sliders are key technologies for increasing the production speed of the screen forming machine. Previously, vertical movement used a simple single slider, and horizontal movement used mechanisms with significant resistance and wear, such as dovetail grooves, which rotated via a planar cam to push a lever. The lever then propelled the horizontal slider left and right, resulting in slow speed, high resistance, and wear. Utility Model Content
[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a stamping mechanism for a high-efficiency CNC screen forming machine, so as to solve the problems of slow vertical and horizontal slider movement speed, high resistance and wear of the stamping mechanism of the existing screen forming machine in the background art.
[0005] To achieve the above objectives, this utility model proposes a stamping mechanism for a high-efficiency CNC screen forming machine, comprising: a screen forming machine body, a guide rail, a vertical slider, a first guide rail block, a slider cover plate, a horizontal slider, a second guide rail block, a third guide rail block, and a fourth guide rail block;
[0006] Guide rails are installed on the left and right sides of the main body of the screen pulling machine;
[0007] The first guide rail blocks are respectively installed on the front and rear sides of the vertical slider, and the first guide rail blocks are located on the left or right side of the vertical slider.
[0008] The first guide block installed on each side of the vertical slider is in contact with the corresponding guide rail;
[0009] A slider cover plate is installed on the vertical slider;
[0010] The horizontal slider is installed below the vertical slider, and there is an upper contact surface between the upper part of the horizontal slider and the vertical slider.
[0011] A second guide block is provided at the front of the horizontal slider;
[0012] A third guide block is provided at the rear of the horizontal slider;
[0013] A fourth guide block is provided at the lower part of the horizontal slider;
[0014] By setting up a first guide rail block, a second guide rail block, a third guide rail block, and a fourth guide rail block, the problems of slow vertical and horizontal slider movement speed, high resistance, and wear in the stamping mechanism of the existing screen forming machine in the background art are solved.
[0015] The guide blocks used in the first guide block, second guide block, third guide block and fourth guide block include, but are not limited to, track-type rolling guide blocks, metal needle rollers, linear slider rolling bearings and linear bearings.
[0016] Preferably, the guide rail has a guide rail slide plate, and the first guide rail block installed on each side of the vertical slider contacts the corresponding guide rail slide plate. When the vertical slider moves up and down, the first guide rail block installed on the vertical slider moves up and down along the corresponding guide rail slide plate.
[0017] Preferably, the second guide block is mounted on the vertical slider;
[0018] The front part of the horizontal slider is provided with a first slider, which is positioned corresponding to the second guide block, and the first slider is in contact with the second guide block.
[0019] When the horizontal slider moves laterally, the first slider located at the front of the horizontal slider moves laterally along the second guide block.
[0020] Preferably, the third guide block is mounted on the transverse slider;
[0021] The front part of the slider cover is provided with a first sliding plate, which contacts a third guide rail block. When the transverse slider moves laterally, the third guide rail block mounted on the transverse slider moves laterally along the first sliding plate.
[0022] Preferably, the fourth guide block is mounted on the transverse slider;
[0023] A second sliding plate is provided at the lower part of the slider cover, and the second sliding plate contacts the fourth guide rail block. When the transverse slider moves laterally, the fourth guide rail block mounted on the transverse slider moves laterally along the second sliding plate.
[0024] Preferably, the guide rail slide includes a front guide rail slide and a rear guide rail slide, with the front guide rail slide disposed at the front of the guide rail and the rear guide rail slide disposed at the rear of the guide rail;
[0025] The rear of the guide rail is provided with a first adjustment device, which is used to adjust the gap between the vertical slider and the front track slide plate, and to adjust the gap between the vertical slider and the rear track slide plate. By adjusting the vertical slider to have no gap in front and back, the stamping mechanism is precisely restricted to move forward and backward when it moves up and down, so as to ensure the precise positioning of the stamping mechanism in front and back.
[0026] The first adjusting device includes a first bolt and a first nut. The first nut is mounted on the first bolt, and the first bolt is mounted on the rear of the guide rail. By rotating the first bolt, the first bolt pushes the rear track slide, thereby adjusting the gap between the vertical slider and the front track slide, as well as the gap between the vertical slider and the rear track slide. The first bolt is locked by rotating the first nut.
[0027] The guide rail is equipped with a rear track cover plate, which is connected to the guide rail and is used to limit the position of the rear track slide plate.
[0028] Preferably, a first adjusting device is provided at the front of the guide rail. The first adjusting device is used to adjust the gap between the vertical slider and the front track slide, and to adjust the gap between the vertical slider and the rear track slide. The first adjusting device includes a first bolt and a first nut. The first nut is mounted on the first bolt, and the first bolt is mounted at the front of the guide rail. By rotating the first bolt, the first bolt pushes the front track slide, thereby adjusting the gap between the vertical slider and the front track slide, and adjusting the gap between the vertical slider and the rear track slide. The first bolt is locked by rotating the first nut.
[0029] The guide rail is equipped with a front rail cover plate, which is connected to the guide rail and is used to limit the position of the front rail slide plate.
[0030] Preferably, a second adjustment device is provided on the slider cover plate. The second adjustment device is used to adjust the gap between the horizontal slider and the first slide plate, and to adjust the gap between the vertical slider and the first slider. By adjusting the second adjustment device to the point that there is no gap between the front and back of the horizontal slider, the stamping mechanism is precisely restricted from moving forward and backward when it moves laterally, so as to ensure that the stamping mechanism is precisely positioned forward and backward.
[0031] The second adjusting device includes a second bolt and a second nut, the second nut being mounted on the second bolt, and the second bolt being mounted on the slider cover plate;
[0032] By rotating the second bolt, the second bolt pushes the first slide plate, thereby adjusting the gap between the horizontal slider and the first slide plate, as well as the gap between the vertical slider and the first slide plate; the second bolt is locked by rotating the second nut.
[0033] Preferably, a third adjusting device is provided on the slider cover plate. This third adjusting device is used to adjust the gap between the lower part of the vertical slider and the upper surface of the horizontal slider, ensuring that the contact area between the vertical and horizontal sliders at the upper contact surface reaches 80%-95%, and that the horizontal slider can move laterally along the vertical slider. This ensures that all the pressure from the vertical slider of the screen stretching machine is transmitted to the horizontal slider, thus preventing pressure loss on the mold. When gravity causes downward movement, the weight of the horizontal slider can press against the fourth guide block, resulting in a small driving torque and ensuring vertical accuracy during horizontal slider movement. This achieves gapless sliding motion of the stamping mechanism during high-speed up-down and left-right movements, ensuring high-speed movement of the screen stretching machine's stamping mechanism and precise mold positioning.
[0034] The third adjusting device includes a third bolt and a third nut, with the third nut mounted on the third bolt and the third bolt mounted on the slider cover plate;
[0035] Rotating the third bolt causes it to push the second slide plate, thereby adjusting the gap between the lower part of the vertical slider and the upper surface of the horizontal slider. The third bolt is then tightened by rotating the third nut.
[0036] Preferably, it also includes an anti-slip mechanism, which is used to prevent the vertical slider from sliding left or right when it moves up and down;
[0037] The anti-slip mechanism includes an anti-slip bracket, a third sliding plate, and a fifth guide block;
[0038] Anti-slip brackets are installed on the left and right sides of the vertical slider near the guide rail, and a third slide plate is installed on the anti-slip brackets;
[0039] The fifth guide block is installed on the guide rail and is correspondingly set with the anti-slip bracket. The fifth guide block contacts the third sliding plate set on the corresponding anti-slip bracket.
[0040] The fifth guide block uses guide blocks including, but not limited to, track-type rolling guide blocks, metal needle rollers, linear slider rolling bearings, and linear bearings.
[0041] Preferably, the anti-slip bracket is provided with a fourth adjustment device, which is used to adjust the gap between the guide rail and the third slide plate;
[0042] The fourth adjusting device includes a fourth bolt and a fourth nut, with the fourth nut mounted on the fourth bolt and the fourth bolt mounted on the anti-movement bracket.
[0043] Rotating the fourth bolt causes it to push the third slide plate, thereby adjusting the gap between the guide rail and the third slide plate. Rotating the fourth nut locks the fourth bolt in place.
[0044] Compared with the prior art, this utility model has the following advantages:
[0045] 1. By installing first guide blocks on the front and rear sides of the vertical slider, with the first guide blocks located near the left or right side of the vertical slider; and by setting a second guide block at the front of the horizontal slider, a third guide block at the rear of the horizontal slider, and a fourth guide block at the bottom of the horizontal slider, the problems of slow movement speed, high resistance, and wear of the vertical and horizontal sliders in the stamping mechanism of the existing screen forming machine in the background art are solved.
[0046] 2. A first adjustment device is provided at the rear of the guide rail. The first adjustment device is used to adjust the gap between the vertical slider and the front track slide plate, as well as the gap between the vertical slider and the rear track slide plate. The vertical slider is adjusted to have no gap in front and back by the first adjustment device, so that the stamping mechanism can be precisely restricted to move back and forth when it moves up and down, thus ensuring the precise positioning of the stamping mechanism in front and back.
[0047] 3. A second adjustment device is provided on the slider cover plate. The second adjustment device is used to adjust the gap between the horizontal slider and the first slide plate, and to adjust the gap between the vertical slider and the first slider. The second adjustment device is adjusted to the point that there is no gap between the front and back of the horizontal slider, so that the stamping mechanism can be precisely restricted to move forward and backward when it moves laterally, thus ensuring that the stamping mechanism is precisely positioned front and back.
[0048] 4. A third adjustment device is installed on the slide cover plate. This device adjusts the gap between the lower part of the vertical slide and the upper surface of the horizontal slide, ensuring that the contact area between the vertical and horizontal slides at the upper contact surface reaches 80%-95%. The horizontal slide can also move laterally along the vertical slide, guaranteeing that all the pressure from the vertical slide is transferred to the horizontal slide, thus preventing pressure loss on the mold. When gravity causes downward movement, the weight of the horizontal slide can press against the fourth guide block, resulting in low driving torque and maintaining vertical accuracy during horizontal slide movement. This achieves gapless sliding motion of the stamping mechanism during high-speed up-down and left-right movements, ensuring high-speed movement of the stamping mechanism and precise mold positioning.
[0049] 5. A fourth adjustment device is installed on the anti-slip bracket. The fourth adjustment device is used to adjust the gap between the guide rail and the third slide plate. The vertical slider is adjusted to have no gap in the left and right directions through the fourth adjustment device, so that the left and right movement of the stamping mechanism is precisely restricted when it moves up and down, and the left and right positioning of the stamping mechanism is guaranteed. Attached Figure Description
[0050] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0051] Figure 1 This is a schematic diagram of the structure of this utility model;
[0052] Figure 2 for Figure 1 One of the sectional views;
[0053] Figure 3 for Figure 1 The second sectional view;
[0054] In the diagram: 1. Main body of the net pulling machine; 2. Guide rail; 21. Guide rail slide plate; 211. Front track slide plate; 212. Rear track slide plate; 22. First adjusting device; 23. First bolt; 24. First nut; 3. Vertical slider; 4. First guide rail block; 5. Slider cover plate; 51. First slide plate; 52. Second adjusting device; 53. Second bolt; 54. Second nut; 55. Third adjusting device; 56. Third bolt; 57. Third nut; 58. Horizontal slider; 6. First slider; 61. Second guide rail block; 7. Third guide rail block; 8. Fourth guide rail block; 9. Upper contact surface; 10. Anti-slip mechanism; 101. Anti-slip bracket; 102. Third slide plate; 103. Fifth guide rail block; 104. Fourth adjusting device; 105. Fourth bolt; 106. Fourth nut; 107. Detailed Implementation
[0055] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. The components of the embodiments of this utility model described and shown in the accompanying drawings can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of this utility model provided in the accompanying drawings is not intended to limit the scope of the claimed utility model, but merely to illustrate selected embodiments of the utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model.
[0056] Example 1: As Figure 1-3As shown, this utility model proposes a stamping mechanism for a high-efficiency CNC screen forming machine, including: screen forming machine body 1, guide rail 2, vertical slider 3, first guide rail block 4, slider cover plate 5, horizontal slider 6, second guide rail block 7, third guide rail block 8, and fourth guide rail block 9;
[0057] Guide rails 2 are installed on the left and right sides of the main body 1 of the net pulling machine;
[0058] The first guide rail block 4 is installed on the front and rear sides of the vertical slider 3, and the first guide rail block 4 is located on the left or right side of the vertical slider 3.
[0059] The first guide rail block 4 installed on each side of the vertical slider 3 is in contact with the corresponding guide rail 2;
[0060] A slider cover plate 5 is installed on the vertical slider 3;
[0061] The horizontal slider 6 is installed at the lower part of the vertical slider 3, and the upper part of the horizontal slider 6 has an upper contact surface 10 between it and the vertical slider 3.
[0062] A second guide block 7 is provided at the front of the horizontal slider 6;
[0063] A third guide block 8 is provided at the rear of the horizontal slider 6;
[0064] The lower part of the horizontal slider 6 is provided with a fourth guide rail block 9;
[0065] By setting the first guide rail block 4, the second guide rail block 7, the third guide rail block 8, and the fourth guide rail block 9, the problems of slow vertical and horizontal slider movement speed, high resistance, and wear of the existing screen forming machine's stamping mechanism in the background art are solved.
[0066] The guide blocks used in the first guide block 4, the second guide block 7, the third guide block 8 and the fourth guide block 9 include, but are not limited to, track-type rolling guide blocks, metal needle rollers, linear slider rolling bearings and linear bearings.
[0067] like Figure 2 As shown, the guide rail 2 has a guide rail slide plate 21, and the first guide rail block 4 installed on each side of the vertical slider 3 contacts the corresponding guide rail slide plate 21. When the vertical slider 3 moves up and down, the first guide rail block 4 installed on the vertical slider 3 moves up and down along the corresponding guide rail slide plate 21.
[0068] like Figure 3 As shown, the second guide block 7 is mounted on the vertical slider 3;
[0069] The front part of the horizontal slider 6 is provided with a first slider 61, which is positioned corresponding to the second guide block 7, and the first slider 61 is in contact with the second guide block 7.
[0070] When the horizontal slider 6 moves laterally, the first slider 61, which is located at the front of the horizontal slider 6, moves laterally along the second guide block 7.
[0071] like Figure 3 As shown, the third guide block 8 is mounted on the horizontal slider 6;
[0072] The front part of the slider cover plate 5 is provided with a first sliding plate 51, which contacts the third guide rail block 8. When the transverse slider 6 moves laterally, the third guide rail block 8 mounted on the transverse slider 6 moves laterally along the first sliding plate 51.
[0073] like Figure 3 As shown, the fourth guide rail block 9 is mounted on the horizontal slider 6;
[0074] The lower part of the slider cover plate 5 is provided with a second sliding plate 52, which contacts the fourth guide rail block 9. When the transverse slider 6 moves laterally, the fourth guide rail block 9 mounted on the transverse slider 6 moves laterally along the second sliding plate 52.
[0075] like Figure 2 As shown, the guide rail slide 21 includes a front track slide 211 and a rear track slide 212. The front track slide 211 is disposed at the front of the guide rail 2, and the rear track slide 212 is disposed at the rear of the guide rail 2.
[0076] The rear of the guide rail 2 is provided with a first adjustment device 22. The first adjustment device 22 is used to adjust the gap between the vertical slider 3 and the front track slide 211, and to adjust the gap between the vertical slider 3 and the rear track slide 212. By adjusting the first adjustment device 22 to the point that there is no gap between the front and rear of the vertical slider, the stamping mechanism is precisely restricted from moving forward and backward when it moves up and down, so as to ensure that the stamping mechanism is precisely positioned forward and backward.
[0077] The first adjusting device 22 includes a first bolt 23 and a first nut 24. The first nut 24 is mounted on the first bolt 23, and the first bolt 23 is mounted on the rear of the guide rail 2. By rotating the first bolt 23, the first bolt 23 pushes the rear track slide plate 212, thereby adjusting the gap between the vertical slider 3 and the front track slide plate 211, as well as the gap between the vertical slider 3 and the rear track slide plate 212. The first bolt 23 is locked by rotating the first nut 24.
[0078] The guide rail 2 is provided with a rear track cover plate, which is connected to the guide rail 2 and is used to limit the position of the rear track slide plate 212.
[0079] like Figure 3As shown, a second adjustment device 53 is provided on the slider cover plate 5. The second adjustment device 53 is used to adjust the gap between the horizontal slider 6 and the first slide plate 51, and to adjust the gap between the vertical slider 3 and the first slider 61. By adjusting the second adjustment device 53 to the point that there is no gap between the front and back of the horizontal slider, the stamping mechanism is precisely restricted from moving forward and backward when it moves laterally, so as to ensure that the stamping mechanism is precisely positioned forward and backward.
[0080] The second adjusting device 53 includes a second bolt 54 and a second nut 55, the second nut 55 is mounted on the second bolt 54, and the second bolt 54 is mounted on the slider cover plate 5;
[0081] By rotating the second bolt 54, the second bolt 54 pushes the first slide plate 51, thereby adjusting the gap between the horizontal slider 6 and the first slide plate 51, and adjusting the gap between the vertical slider 3 and the first slider 61; by rotating the second nut 55, the second bolt 54 is locked.
[0082] like Figure 3 As shown, a third adjusting device 56 is provided on the slider cover plate 5. The third adjusting device 56 is used to adjust the gap between the lower part of the vertical slider 3 and the upper surface of the horizontal slider 6, so that the contact area between the vertical slider 3 and the horizontal slider 6 at the upper contact surface 10 reaches 80%-95%, and the horizontal slider 6 can move laterally along the vertical slider 3. This ensures that all the pressure of the vertical slider of the screen stretching machine is transmitted to the horizontal slider, thereby ensuring that the pressure on the mold is not lost. When gravity is downward, the gravity of the horizontal slider 6 can press on the fourth guide rail block 9. In this way, the driving torque is small when the horizontal slider moves, and the vertical accuracy is guaranteed. This achieves gapless sliding of the stamping mechanism when moving up, down, left, and right at high speed, thereby ensuring the high-speed movement of the stamping mechanism of the screen stretching machine and ensuring the precise positioning of the mold.
[0083] The third adjusting device 56 includes a third bolt 57 and a third nut 58, the third nut 58 is mounted on the third bolt 57, and the third bolt 57 is mounted on the slider cover plate 5;
[0084] By rotating the third bolt 57, the third bolt 57 pushes the second slide plate 52, thereby adjusting the gap between the lower part of the vertical slider 3 and the upper surface of the horizontal slider 6. The third bolt 57 is then locked by rotating the third nut 58.
[0085] like Figure 1 As shown, it also includes an anti-slip mechanism 101, which is used to prevent the vertical slider 3 from sliding left and right when it moves up and down.
[0086] The anti-slip mechanism 101 includes an anti-slip bracket 102, a third sliding plate 103, and a fifth guide block 104;
[0087] Anti-slip brackets 102 are installed on the left and right sides of the vertical slider 3 near the guide rail 2, and a third slide plate 103 is set on the anti-slip brackets 102;
[0088] The fifth guide rail block 104 is installed on the guide rail 2. The fifth guide rail block 104 is correspondingly set with the anti-slip bracket 102. The fifth guide rail block 104 is in contact with the third slide plate 103 set on the corresponding anti-slip bracket 102.
[0089] When the vertical slider 3 moves up and down, the third slide plate 103 set on the anti-slip bracket 102 moves up and down along the fifth guide block 104 installed on the guide rail 2.
[0090] The fifth guide block 104 uses guide blocks including but not limited to track-type rolling guide blocks, metal needle rollers, linear slider rolling bearings, and linear bearings.
[0091] like Figure 1 As shown, a fourth adjustment device 105 is provided on the anti-slip bracket 102, which is used to adjust the gap between the guide rail 2 and the third slide plate 103.
[0092] The fourth adjusting device 105 includes a fourth bolt 106 and a fourth nut 107. The fourth nut 107 is installed on the fourth bolt 106, and the fourth bolt 106 is installed on the anti-movement bracket 102.
[0093] By rotating the fourth bolt 106, the fourth bolt 106 pushes the third slide plate 103, thereby adjusting the gap between the guide rail 2 and the third slide plate 103. The fourth bolt 106 is then locked by rotating the fourth nut 107.
[0094] The working principle of this embodiment:
[0095] When the vertical slider 3 moves up and down, the first guide block 4 mounted on the vertical slider 3 moves up and down along the corresponding guide slide plate 21; when the horizontal slider 6 moves horizontally, the first slider 61 located at the front of the horizontal slider 6 moves horizontally along the second guide block 7; when the horizontal slider 6 moves horizontally, the third guide block 8 mounted on the horizontal slider 6 moves horizontally along the first slide plate 51; when the horizontal slider 6 moves horizontally, the fourth guide block 9 mounted on the horizontal slider 6 moves horizontally along the second slide plate 52; when the vertical slider 3 moves up and down, the third slide plate 103 located on the anti-slip bracket 102 moves up and down along the fifth guide block 104 mounted on the guide rail 2.
[0096] By rotating the first bolt 23, the first bolt 23 pushes the rear track slide plate 212, thereby adjusting the gap between the vertical slider 3 and the front track slide plate 211, as well as the gap between the vertical slider 3 and the rear track slide plate 212; the first bolt 23 is locked by rotating the first nut 24.
[0097] By rotating the second bolt 54, the second bolt 54 pushes the first slide plate 51, thereby adjusting the gap between the horizontal slider 6 and the first slide plate 51, and adjusting the gap between the vertical slider 3 and the first slider 61; by rotating the second nut 55, the second bolt 54 is locked.
[0098] By rotating the third bolt 57, the third bolt 57 pushes the second slide plate 52, thereby adjusting the gap between the lower part of the vertical slider 3 and the upper surface of the horizontal slider 6. The third bolt 57 is then locked by rotating the third nut 58.
[0099] By rotating the fourth bolt 106, the fourth bolt 106 pushes the third slide plate 103, thereby adjusting the gap between the guide rail 2 and the third slide plate 103. The fourth bolt 106 is then locked by rotating the fourth nut 107.
[0100] Example 2: Based on the technical solution and working principle of Example 1, the difference between this example and the previous one is as follows:
[0101] The guide rail 2 is provided with a first adjustment device 22 at the front. The first adjustment device 22 is used to adjust the gap between the vertical slider 3 and the front track slide 211, and to adjust the gap between the vertical slider 3 and the rear track slide 212. The first adjustment device 22 includes a first bolt 23 and a first nut 24. The first nut 24 is installed on the first bolt 23, and the first bolt 23 is installed at the front of the guide rail 2. By rotating the first bolt 23, the first bolt 23 pushes the front track slide 211, thereby adjusting the gap between the vertical slider 3 and the front track slide 211, and adjusting the gap between the vertical slider 3 and the rear track slide 212. The first bolt 23 is locked by rotating the first nut 24.
[0102] The guide rail 2 has a front rail cover plate at the front, which is connected to the guide rail 2 and is used to limit the position of the front rail slide plate 211.
[0103] In this utility model, the "left, right, up, down" orientation / direction involved in the technical solution is based on... Figure 1 The displayed content serves as a reference benchmark;
[0104] Furthermore, the terms "upper," "lower," "front," "rear," "left," and "right" used above are for descriptive purposes only and should not be construed as indicating or implying relative importance. Unless otherwise specifically stated, the relative steps, numerical expressions, and values of the components and steps described in these embodiments do not limit the scope of this invention.
[0105] Of course, the above description is only a specific embodiment of the present utility model and is not intended to limit the scope of the present utility model. All equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model should be included in the scope of the claims of the present utility model.
[0106] The above-described embodiments are merely specific implementations of this utility model, used to illustrate the technical solutions of this utility model, and not to limit it. The protection scope of this utility model is not limited thereto. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that any person skilled in the art can still modify or easily conceive of changes to the technical solutions described in the foregoing embodiments, or make equivalent substitutions for some of the technical features, within the technical scope disclosed in this utility model. These modifications, changes, or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model, and should all be covered within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.
Claims
1. A stamping mechanism for a high-efficiency CNC screen forming machine, characterized in that, include: The main body of the net stretching machine (1), guide rail (2), vertical slider (3), first guide rail block (4), slider cover plate (5), horizontal slider (6), second guide rail block (7), third guide rail block (8), and fourth guide rail block (9); Guide rails (2) are installed on the left and right sides of the main body (1) of the net pulling machine; The first guide block (4) is installed on the front and rear sides of the vertical slider (3), and the first guide block (4) is located on the left or right side of the vertical slider (3). The first guide block (4) installed on each side of the vertical slider (3) contacts the corresponding guide rail (2); A slider cover plate (5) is installed on the vertical slider (3); The horizontal slider (6) is installed at the lower part of the vertical slider (3), and there is an upper contact surface (10) between the upper part of the horizontal slider (6) and the vertical slider (3); A second guide block (7) is provided at the front of the horizontal slider (6); A third guide block (8) is provided at the rear of the horizontal slider (6); A fourth guide block (9) is provided at the lower part of the horizontal slider (6).
2. The stamping mechanism of a high-efficiency CNC screen forming machine according to claim 1, characterized in that, The guide rail (2) has a guide rail slide plate (21), and the first guide rail block (4) installed on each side of the vertical slider (3) contacts the corresponding guide rail slide plate (21).
3. The stamping mechanism of a high-efficiency CNC screen forming machine according to claim 1 or 2, characterized in that, The second guide block (7) is mounted on the vertical slider (3); The front part of the horizontal slider (6) is provided with a first slider (61), the first slider (61) is positioned corresponding to the second guide block (7), and the first slider (61) is in contact with the second guide block (7).
4. The stamping mechanism of a high-efficiency CNC screen forming machine according to claim 1 or 2, characterized in that, The third guide block (8) is mounted on the transverse slider (6); The front part of the slider cover (5) is provided with a first sliding plate (51), which contacts the third guide block (8).
5. The stamping mechanism of a high-efficiency CNC screen forming machine according to claim 1 or 2, characterized in that, The fourth guide block (9) is mounted on the transverse slider (6); The lower part of the slider cover (5) is provided with a second sliding plate (52), which contacts the fourth guide block (9).
6. The stamping mechanism of a high-efficiency CNC screen forming machine according to claim 2, characterized in that, The guide rail slide (21) includes a front track slide (211) and a rear track slide (212). The front track slide (211) is located at the front of the guide rail (2), and the rear track slide (212) is located at the rear of the guide rail (2). A first adjustment device (22) is provided at the rear of the guide rail (2). The first adjustment device (22) is used to adjust the gap between the vertical slider (3) and the front track slide (211), and to adjust the gap between the vertical slider (3) and the rear track slide (212). The first adjustment device (22) includes a first bolt (23) and a first nut (24). The first nut (24) is mounted on the first bolt (23), and the first bolt (23) is mounted at the rear of the guide rail (2). By rotating the first bolt (23), the first bolt (23) pushes the rear track slide (212), thereby adjusting the gap between the vertical slider (3) and the front track slide (211), and adjusting the gap between the vertical slider (3) and the rear track slide (212). The first bolt (23) is locked by rotating the first nut (24). Alternatively, a first adjustment device (22) is provided at the front of the guide rail (2). The first adjustment device (22) is used to adjust the gap between the vertical slider (3) and the front track slide (211), and to adjust the gap between the vertical slider (3) and the rear track slide (212). The first adjustment device (22) includes a first bolt (23) and a first nut (24). The first nut (24) is mounted on the first bolt (23), and the first bolt (23) is mounted at the front of the guide rail (2). By rotating the first bolt (23), the first bolt (23) pushes the front track slide (211), thereby adjusting the gap between the vertical slider (3) and the front track slide (211), and adjusting the gap between the vertical slider (3) and the rear track slide (212). The first bolt (23) is locked by rotating the first nut (24).
7. The stamping mechanism of a high-efficiency CNC screen forming machine according to claim 4, characterized in that, The slider cover plate (5) is provided with a second adjustment device (53), which is used to adjust the gap between the horizontal slider (6) and the first sliding plate (51), and to adjust the gap between the vertical slider (3) and the first slider (61); The second adjusting device (53) includes a second bolt (54) and a second nut (55), the second nut (55) being mounted on the second bolt (54), and the second bolt (54) being mounted on the slider cover plate (5); By rotating the second bolt (54), the second bolt (54) pushes the first slide plate (51), thereby adjusting the gap between the horizontal slider (6) and the first slide plate (51), and adjusting the gap between the vertical slider (3) and the first slider (61); by rotating the second nut (55), the second bolt (54) is locked.
8. The stamping mechanism of a high-efficiency CNC screen forming machine according to claim 5, characterized in that, The slider cover plate (5) is provided with a third adjustment device (56), which is used to adjust the gap between the lower part of the vertical slider (3) and the upper surface of the horizontal slider (6), so that the contact area between the vertical slider (3) and the horizontal slider (6) at the upper contact surface (10) reaches 80%-95%, and the horizontal slider (6) can move laterally along the vertical slider (3). The third adjusting device (56) includes a third bolt (57) and a third nut (58), the third nut (58) being mounted on the third bolt (57), and the third bolt (57) being mounted on the slider cover plate (5); By rotating the third bolt (57), the third bolt (57) pushes the second slide plate (52), thereby adjusting the gap between the lower part of the vertical slider (3) and the upper surface of the horizontal slider (6). The third bolt (57) is locked by rotating the third nut (58).
9. The stamping mechanism of a high-efficiency CNC screen forming machine according to claim 1, 2, 6, 7 or 8, characterized in that, It also includes an anti-slip mechanism (101), which is used to prevent the vertical slider (3) from sliding left and right when it moves up and down; The anti-slip mechanism (101) includes an anti-slip bracket (102), a third sliding plate (103), and a fifth guide block (104); Anti-slip brackets (102) are installed on the left and right sides of the vertical slider (3) near the guide rail (2), and a third slide plate (103) is installed on the anti-slip brackets (102); The fifth guide block (104) is installed on the guide rail (2). The fifth guide block (104) is correspondingly set with the anti-movement bracket (102). The fifth guide block (104) is in contact with the third sliding plate (103) set on the corresponding anti-movement bracket (102).
10. The stamping mechanism of a high-efficiency CNC screen forming machine according to claim 9, characterized in that, The anti-slip support (102) is provided with a fourth adjustment device (105), which is used to adjust the gap between the guide rail (2) and the third slide plate (103); The fourth adjusting device (105) includes a fourth bolt (106) and a fourth nut (107), the fourth nut (107) is mounted on the fourth bolt (106), and the fourth bolt (106) is mounted on the anti-slip bracket (102); By rotating the fourth bolt (106), the fourth bolt (106) pushes the third slide plate (103), thereby adjusting the gap between the guide rail (2) and the third slide plate (103). The fourth bolt (106) is locked by rotating the fourth nut (107).