Wooden box machining plate drilling table with auxiliary positioning structure

By introducing a traction positioning mechanism and a pressing component into the drilling table of the wooden box processing board, the automatic centering and precise positioning of the board can be achieved, which solves the problems of low positioning efficiency and high labor intensity in the existing technology, improves drilling accuracy and production efficiency, and adapts to the processing needs of boards of different specifications.

CN121268024APending Publication Date: 2026-01-06HEFEI CYMBALTA PACKAGING CO LTD
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Patent Information

Application Number
CN202511518131.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-23
Publication Date
2026-01-06

AI Technical Summary

Technical Problem

Existing drilling tables for wooden crate processing have problems such as low positioning efficiency, high labor intensity, and easy to cause positioning deviation and damage to the boards, especially in the processing of long-sized or multi-batch boards.

Method used

The wood box processing board drilling table with auxiliary positioning structure includes a traction positioning mechanism, a pressing component and a conveying component. The automatic centering and precise positioning of the board is achieved by a motor-driven worm gear transmission. Combined with a hydraulic push rod, the board is automatically lifted and pressed to ensure that the board maintains a stable position during processing.

Benefits of technology

It improves drilling accuracy and processing quality, reduces manual labor intensity, avoids damage to the edges and corners of the boards, adapts to the processing needs of boards of different specifications, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a wooden case processing plate drilling table with an auxiliary positioning structure, and relates to the technical field of wooden case processing, and the technical scheme is that the wooden case processing plate drilling table comprises a top table, two downward pressing assemblies are arranged at the top of the top table, a plurality of supporting columns are fixedly arranged at the bottom of the top table, and a bottom plate is fixedly arranged at the bottoms of the supporting columns; a traction positioning mechanism and a conveying assembly are arranged at the top of the bottom plate. The traction positioning mechanism comprises a fixing plate, the fixing plate is arranged at the top of the bottom plate, a side shell is fixedly arranged on one side of the fixing plate, two limiting assemblies are arranged on one side of the fixing plate, and each limiting assembly comprises two mounting plates. By arranging the traction positioning mechanism and the downward pressing assembly, automatic centering clamping and accurate positioning of a plate are achieved, a second motor drives a worm and gear to conduct transmission, an anti-skid pad in the limiting assembly is driven to synchronously overturn to clamp the side edge of the plate, it is ensured that the plate is always kept in the center position in the conveying process, and the conveying efficiency is improved. The problem of deviation of traditional manual positioning is effectively solved, and the drilling precision and the machining quality are remarkably improved.
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Description

Technical Field

[0001] This invention relates to the field of wooden box processing technology, and more specifically to a drilling table for wooden box processing boards with an auxiliary positioning structure. Background Technology

[0002] In the wooden crate processing industry, drilling holes in the boards is a key process before assembly. The drilling accuracy directly affects the structural stability of the assembled wooden crate. Currently, most wooden crate processing board drilling tables on the market use manual placement of boards and simple stop blocks for positioning.

[0003] The existing manual adjustment of board position is inefficient, especially for long boards or boards in multiple batches. Positioning deviations are easily caused by operational errors. Traditional drilling tables are mostly fixed flat structures, and boards need to be lifted or dragged to the table manually. This is not only labor-intensive, but also easily damaged by bumps and knocks on the edges of the boards. After processing, the boards need to be manually handled and unloaded again, which is inconvenient and affects production efficiency. Summary of the Invention

[0004] Therefore, the present invention provides a drilling table for processing wooden boxes with an auxiliary positioning structure to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a drilling table for processing wooden boxes with an auxiliary positioning structure, comprising a top platform, two pressing components on the top of the top platform, multiple support columns fixedly provided at the bottom of the top platform, a base plate fixedly provided at the bottom of the multiple support columns, and a traction positioning mechanism and a conveying component on the top of the base plate; The traction positioning mechanism includes a fixed plate, which is located on the top of the base plate. A side shell is fixedly mounted on one side of the fixed plate. Two limiting components are provided on one side of the fixed plate. Each limiting component includes two mounting plates, which are fixedly connected to the fixed plate. A sliding groove is provided on one side of each mounting plate. A rotating rod is connected to the inside of the mounting plate via a bearing. A support cylinder is fixedly sleeved on the outside of the rotating rod. A fixed rod is fixedly mounted on one side of the support cylinder. A connector is fixedly mounted on one side of the fixed rod. An anti-slip pad is fixedly sleeved on the outside of the connector. A slider is provided inside the sliding groove. A push rod is fixedly mounted on one side of the slider. The push rod passes through the fixed plate and extends into the inside of the side shell. A toothed plate is fixedly connected to one end of the push rod. A first gear is fixedly sleeved on the outside of the rotating rod. A frame-shaped toothed plate is provided on one side of the first gear. The first gear meshes with the frame-shaped toothed plate. The frame-shaped toothed plate is fixedly connected to the slider.

[0006] Preferably, the traction positioning mechanism further includes a second motor, which is fixedly mounted on one side of the side housing. A drive shaft is fixedly connected to the output end of the second motor. One end of the drive shaft extends into the interior of the side housing and is connected to the fixed plate via a bearing. A first bevel gear is fixedly sleeved on the outside of the drive shaft. Second bevel gears are provided on both sides of the first bevel gear, and the first bevel gear meshes with the second bevel gears. A worm is fixedly mounted on one side of each of the two second bevel gears. A first support block is connected to one end of the worm via a bearing. The first support block is fixedly connected to the fixed plate. Two rotating shafts are connected inside the side housing via bearings. Worm wheels are fixedly sleeved on the outside of each of the two rotating shafts, and the worm wheels mesh with the worm. Two second gears are fixedly sleeved on the outside of the rotating shafts, and the second gears mesh with gear plates.

[0007] Preferably, two second support blocks are fixedly provided inside the side housing, and the worm gear passes through the second support blocks and is connected to the second support blocks through bearings.

[0008] Preferably, the top of the base plate is provided with two control components. Each control component includes a connecting shell, which is fixedly connected to a support column. A first motor is fixedly provided on one side of the connecting shell. A lead screw is fixedly connected to the output end of the first motor. The lead screw is connected to the inner wall of the connecting shell through a bearing. A sliding block is threaded onto the outside of the lead screw. A second hydraulic push rod is fixedly provided on the top of the sliding block. The output end of the second hydraulic push rod is fixedly connected to a fixed plate.

[0009] Preferably, a plurality of first hydraulic push rods are fixedly provided on the top of the base plate, and the output end of the first hydraulic push rods is fixedly connected to a support platform. A plurality of square grooves are provided on one side of the support platform, and the support platform is located at the bottom of the top platform.

[0010] Preferably, the conveying assembly includes two support plates, which are fixedly disposed on the top of the base plate. A connecting plate is fixedly disposed on the top of the two support plates. A plurality of conveying units are fixedly disposed on the top of the connecting plate. Each conveying unit includes two side plates, which are fixedly disposed on the top of the connecting plate. A conveying roller is connected between the two side plates by a bearing.

[0011] Preferably, the top of the top platform is provided with a through groove that matches the support platform.

[0012] Preferably, the pressing component includes a support bar, which is fixedly mounted on the top of the platform. The top of the support bar has multiple slots, and one side of the support bar has a side groove. One side of the support bar has multiple pressing units, each pressing unit including a side slider disposed inside the side groove. A pressing plate is fixedly mounted on one side of the side slider, and a pressing column is fixedly mounted on the bottom of the pressing plate. Two connecting blocks are fixedly mounted on the top of the pressing plate, and a locking plate is movably connected between the two connecting blocks via a rotating shaft. The locking plate engages with the slots.

[0013] Preferably, a reinforcing plate is fixedly provided at the bottom of the lower pressure plate.

[0014] The embodiments of the present invention have the following advantages: By setting up a traction positioning mechanism and a pressing component, the automatic centering and precise positioning of the plate is achieved. The second motor drives the worm gear transmission, which drives the anti-slip pad in the limit component to rotate synchronously and clamp the side of the plate, ensuring that the plate always stays in the center position during the conveying process. This effectively avoids the deviation problem of traditional manual positioning and significantly improves drilling accuracy and processing quality. By employing a collaborative approach between the support platform and the pressing component, the automatic lifting and clamping of the sheet metal is achieved. The first hydraulic push rod pushes the support platform upward to lift the sheet metal, ensuring close contact between it and the pressing column of the pressing component, thus forming a stable processing state. This not only reduces the labor intensity of manual handling but also avoids damage to the edges and corners of the sheet metal. At the same time, the rubber material design of the pressing column provides cushioning protection to prevent the sheet metal from deforming under pressure. By coordinating the control and conveying components, automated conveying and precise positioning of the sheet metal are achieved. The first motor drives the lead screw, which moves the sliding block and the fixed plate axially along the connecting shell, precisely pulling the clamped sheet metal to the top of the bearing platform. This completes the precise positioning of the processing position, greatly improving production efficiency. It is particularly suitable for the continuous processing needs of long-sized or multi-batch sheet metal. The pressing unit can flexibly adjust the pressing position according to the sheet metal size. Through the sliding of the side slider in the side groove and the fastening and fixing of the clamping plate and the groove, the position of the pressing unit can be quickly adjusted to avoid the drilling area, adapting to the processing needs of different specifications of sheet metal and enhancing the versatility and practicality of the equipment. Attached Figure Description

[0015] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are merely exemplary, and those skilled in the art can derive other embodiments based on the provided drawings without creative effort.

[0016] The structures, proportions, sizes, etc. illustrated in this specification are only for the purpose of assisting those skilled in the art in understanding and reading the content disclosed herein, and are not intended to limit the conditions under which the present invention can be implemented. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in the proportions, or adjustments to the size, without affecting the effects and objectives that the present invention can produce, should still fall within the scope of the technical content disclosed in the present invention.

[0017] Figure 1 Top view of the overall structure provided by the present invention; Figure 2 This is a front view of the overall structure provided by the present invention; Figure 3 Top sectional view of the overall structure provided for this invention; Figure 4 A perspective view of the transmission component provided by the present invention; Figure 5 A perspective view of the support platform provided by the present invention; Figure 6 This is a top view of the traction positioning mechanism provided by the present invention; Figure 7 This is a side view of the traction positioning mechanism provided by the present invention; Figure 8 This is a cross-sectional view of the traction positioning mechanism provided by the present invention; Figure 9 A perspective view of the limiting component provided by the present invention; Figure 10 A perspective view of the pressure-down component provided by the present invention.

[0018] In the diagram: 1. Top platform; 2. Support bar; 3. Bearing platform; 4. Support column; 5. Base plate; 6. First hydraulic push rod; 7. Support plate; 8. Connecting shell; 9. Connecting plate; 10. Side plate; 11. Conveying roller; 12. Fixing plate; 13. Side shell; 14. First motor; 15. Square channel; 16. Second motor; 17. Sliding block; 18. Lead screw; 19. Second hydraulic push rod; 20. Mounting plate; 21. Fixing rod; 22. Connector; 23. Anti-slip pad; 24. Rotating rod; 25. 26. First gear; 27. Frame-shaped toothed plate; 28. Support cylinder; 29. ​​Slider; 30. Slider; 31. Slide groove; 32. First support block; 33. Toothed plate; 34. Rotating shaft; 35. Worm gear; 36. Second support block; 37. Transmission shaft; 38. First bevel gear; 39. Second bevel gear; 40. Push rod; 41. Side groove; 42. Slot; 43. Side slider; 44. Lower pressure plate; 45. Pressure column; 46. Reinforcing plate; 47. Connecting block; 48. Clamping plate. Detailed Implementation

[0019] The following specific embodiments illustrate the implementation of the present invention. Those skilled in the art can easily understand other advantages and effects of the present invention from the content disclosed in this specification. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0020] See attached document Figure 1 - Appendix Figure 10 The present invention provides a drilling table for processing wooden boxes with an auxiliary positioning structure, including a top platform 1, two pressing components on the top of the top platform 1, a plurality of support columns 4 fixedly provided at the bottom of the top platform 1, a base plate 5 fixedly provided at the bottom of the plurality of support columns 4, and a traction positioning mechanism and a conveying component on the top of the base plate 5. The traction positioning mechanism includes a fixed plate 12, which is located on the top of the base plate 5. A side housing 13 is fixedly mounted on one side of the fixed plate 12. Two limiting components are provided on one side of the fixed plate 12. Each limiting component includes two mounting plates 20, which are fixedly connected to the fixed plate 12. A sliding groove 29 is provided on one side of each mounting plate 20. A rotating rod 24 is connected to the inside of the mounting plate 20 via a bearing. A support cylinder 27 is fixedly sleeved on the outside of the rotating rod 24. One side of the support cylinder 27 is fixedly mounted on... A fixed rod 21 is provided, and a connector 22 is fixedly provided on one side of the fixed rod 21. An anti-slip pad 23 is fixedly sleeved on the outside of the connector 22. A slider 28 is provided inside the slide groove 29. A push rod 40 is fixedly provided on one side of the slider 28. The push rod 40 passes through the fixed plate 12 and extends into the side housing 13. A toothed plate 31 is fixedly connected to one end of the push rod 40. A first gear 25 is fixedly sleeved on the outside of the rotating rod 24. A frame-shaped toothed plate 26 is provided on one side of the first gear 25. The first gear 25 and the frame-shaped toothed plate... The frame-shaped toothed plate 26 is fixedly connected to the slider 28. The traction positioning mechanism also includes a second motor 16, which is fixedly mounted on one side of the side housing 13. The output end of the second motor 16 is fixedly connected to a transmission shaft 37. One end of the transmission shaft 37 extends into the interior of the side housing 13 and is connected to the fixed plate 12 via a bearing. A first bevel gear 38 is fixedly sleeved on the outside of the transmission shaft 37. A second bevel gear 39 is provided on both sides of the first bevel gear 38. The first bevel gear 38 and the second bevel gear 39 mesh with each other. A worm gear 35 is fixedly mounted on one side of each of the two second bevel gears 39. One end of the worm gear 35 is connected to a first support block 30 via a bearing. The first support block 30 is fixedly connected to the fixed plate 12. Two rotating shafts 32 are connected inside the side housing 13 via bearings. A worm wheel 33 is fixedly sleeved on the outside of each of the two rotating shafts 32. The worm wheel 33 meshes with the worm gear 35. Two second gears 34 are fixedly sleeved on the outside of the rotating shafts 32. The second gears 34 mesh with the toothed plate 31. In this embodiment, the second motor 16 is started, and the output torque of the second motor 16 is transmitted to the first bevel gear 38 through the transmission shaft 37. The first bevel gear 38 meshes with the second bevel gears 39 on both sides, driving the two worm gears 35 to rotate synchronously (the second support block 36 provides radial support for the worm gears 35 to ensure stable transmission). The worm gears 35 mesh with the worm wheel 33, transmitting the rotational motion to the rotating shaft 32. The rotating shaft 32 drives the externally fixed second gear 34 to rotate. The second gear 34 meshes with the toothed plate 31, pushing the toothed plate 31 to move horizontally along the inside of the side housing 13. The toothed plate 31 drives the push rod 40 to move synchronously. The push rod 40 pushes the slider 28 to slide along the slide groove 29 of the mounting plate 20. The slider 28 is fixedly connected to the frame toothed plate 26, which in turn drives the frame toothed plate 26 to move. The frame toothed plate 26 meshes with the first gear 25, which drives the first gear 25 to drive the rotating rod 24 to rotate. The rotating rod 24 drives the support cylinder 27 and the fixed rod 21 to rotate synchronously, so that the connector 22 and anti-slip pad 23 at one end of the fixed rod 21 are flipped toward the plate until both anti-slip pads 23 are in close contact with the side of the plate, thus achieving the centering and clamping of the plate. To achieve the purpose of support, the device adopts the following technical solution: two second support blocks 36 are fixedly provided inside the side housing 13, the worm 35 passes through the second support blocks 36 and is connected to the second support blocks 36 through bearings, and the worm 35 is supported by the second support blocks 36. To achieve the control objective, this device employs the following technical solution: Two control components are provided on the top of the base plate 5. Each control component includes a connecting shell 8, which is fixedly connected to the support column 4. A first motor 14 is fixedly mounted on one side of the connecting shell 8. A lead screw 18 is fixedly connected to the output end of the first motor 14. The lead screw 18 is connected to the inner wall of the connecting shell 8 via a bearing. A sliding block 17 is threaded onto the outside of the lead screw 18. A second hydraulic push rod 19 is fixedly mounted on the top of the sliding block 17. The output end of the hydraulic push rod 19 is fixedly connected to the fixed plate 12. The first motor 14 is started, and the first motor 14 drives the lead screw 18 to rotate inside the connecting shell 8. The lead screw 18 drives the sliding block 17 to move axially along the connecting shell 8 through the thread transmission. The second hydraulic push rod 19 at the top of the sliding block 17 moves synchronously with the sliding block 17, thereby driving the fixed plate 12 and the clamped plate to move along the surface of the conveyor roller 11. By observing the relative position of the plate and the through groove of the top platform 1, when the plate moves to the top of the bearing platform 3, the first motor 14 is stopped, and the traction and positioning of the plate is completed. To achieve the lifting purpose, the device adopts the following technical solution: multiple first hydraulic push rods 6 are fixedly provided on the top of the base plate 5, and the output end of the first hydraulic push rod 6 is fixedly connected to the support platform 3. Multiple square grooves 15 are opened on one side of the support platform 3. The support platform 3 is located at the bottom of the top platform 1. The top of the top platform 1 is provided with a through groove that matches the support platform 3. When the first hydraulic push rod 6 is activated, the first hydraulic push rod 6 pushes the support platform 3 to move upward. After the top of the support platform 3 contacts the bottom of the plate, it continues to rise. To achieve the purpose of conveying, the device adopts the following technical solution: The conveying component includes two support plates 7, which are fixedly mounted on the top of the base plate 5. A connecting plate 9 is fixedly mounted on the top of the two support plates 7. Multiple conveying units are fixedly mounted on the top of the connecting plate 9. Each conveying unit includes two side plates 10, which are fixedly mounted on the top of the connecting plate 9. A conveying roller 11 is connected between the two side plates 10 through a bearing. The wooden box processing board that needs to be drilled is placed stably on the surface of the conveying roller 11, and the board is pushed to move along the axial direction of the conveying roller 11. To achieve the downward pressing purpose, this device employs the following technical solution: The pressing assembly includes a support bar 2, which is fixedly mounted on the top of the top platform 1. The top of the support bar 2 has multiple slots 42, and one side of the support bar 2 has a side groove 41. Multiple pressing units are located on one side of the support bar 2. Each pressing unit includes a side slider 43, which is disposed inside the side groove 41. A pressing plate 44 is fixedly mounted on one side of the side slider 43. A pressing column 45 is fixedly mounted at the bottom of the pressing plate 44. Two connecting blocks 47 are fixedly mounted on the top of the pressing plate 44. Between the two connecting blocks 47... A clamping plate 48 is movably connected via a rotating shaft. The clamping plate 48 is engaged with the clamping groove 42. A reinforcing plate 46 is fixedly provided at the bottom of the lower pressure plate 44. According to the size of the material to be processed, the position of the lower pressure assembly is adjusted. First, the clamping plate 48 is flipped upward to disengage it from the clamping groove 42. The side slider 43 is pushed to slide along the side groove 41 to move the lower pressure plate 44 to a position that avoids the drilling area. Then, the clamping plate 48 is flipped downward to engage it in the corresponding clamping groove 42, thus completing the position fixation of the lower pressure unit. After the top of the support platform 3 contacts the bottom of the material, it continues to rise until the top of the material is in close contact with the pressure column 45 of the lower pressure assembly. At this time, the material is pressed and fixed.

[0021] The usage process of this invention is as follows: Preliminary preparation: According to the size of the material to be processed, adjust the position of the pressing component. First, flip the clamping plate 48 upward to disengage it from the slot 42. Push the side slider 43 to slide along the side groove 41 and move the pressing plate 44 to a position that avoids the drilling area. Then, flip the clamping plate 48 downward to lock it into the corresponding slot 42, thus fixing the position of the pressing unit. At the same time, adjust the initial height of the fixing plate 12 through the second hydraulic push rod 19 to ensure that the height difference between the fixing plate 12 and the conveying roller 11 is adapted to the thickness of the material and avoid jamming during material conveying. Board feeding and initial positioning: Place the wooden box processing board that needs to be drilled stably on the surface of the conveyor roller 11, and push the board along the axial direction of the conveyor roller 11 until one end of the board contacts the inner surface of the fixed plate 12. At this time, the board is in the initial positioning state, and the pushing is stopped. Automatic centering clamping: The second motor 16 is started, and the output torque of the second motor 16 is transmitted to the first bevel gear 38 through the transmission shaft 37. The first bevel gear 38 meshes with the second bevel gears 39 on both sides, driving the two worm gears 35 to rotate synchronously (the second support block 36 provides radial support for the worm gears 35 to ensure stable transmission). The worm gears 35 mesh with the worm wheel 33, transmitting the rotational motion to the rotating shaft 32. The rotating shaft 32 drives the externally fixed second gear 34 to rotate. The second gear 34 meshes with the toothed plate 31, pushing the toothed plate 31 to move horizontally along the inside of the side housing 13. The toothed plate 31 drives the push rod 40 to move synchronously. The push rod 40 pushes the slider 28 to slide along the slide groove 29 of the mounting plate 20. The slider 28 is fixedly connected to the frame toothed plate 26, which in turn drives the frame toothed plate 26 to move. The frame toothed plate 26 meshes with the first gear 25, which drives the first gear 25 to drive the rotating rod 24 to rotate. The rotating rod 24 drives the support cylinder 27 and the fixed rod 21 to rotate synchronously, so that the connector 22 and anti-slip pad 23 at one end of the fixed rod 21 are flipped toward the plate until both anti-slip pads 23 are in close contact with the side of the plate, thus achieving the centering and clamping of the plate. The sheet metal is pulled to the processing position: The first motor 14 is started, and the first motor 14 drives the lead screw 18 to rotate inside the connecting shell 8. The lead screw 18 drives the sliding block 17 to move axially along the connecting shell 8 through the thread transmission. The second hydraulic push rod 19 at the top of the sliding block 17 moves synchronously with the sliding block 17, thereby driving the fixed plate 12 and the clamped sheet metal to move along the surface of the conveyor roller 11. By observing the relative position of the sheet metal and the through groove of the top platform 1, when the sheet metal moves to the top of the bearing platform 3, the first motor 14 is stopped, and the traction and positioning of the sheet metal is completed. Clamping Release and Lifting of the Support Platform: The second motor 16 is started in reverse to disengage the anti-slip pad 23 from the side of the plate, releasing the clamping of the plate; the first motor 14 is started again to move the traction positioning mechanism to the outside of the support platform 3 to avoid interference with the lifting of the support platform 3; the first hydraulic push rod 6 is started, and the first hydraulic push rod 6 pushes the support platform 3 upward; after the top of the support platform 3 contacts the bottom of the plate, it continues to rise until the top of the plate is in close contact with the pressure column 45 of the pressing component. At this time, the plate is pressed and fixed (the rubber material of the pressure column 45 can buffer the pressure and prevent the plate from deforming); the first hydraulic push rod 6 is closed. Drilling and unloading: Drilling equipment is used to drill holes in the fixed area of ​​the board. After drilling is completed, the first hydraulic push rod 6 is activated in reverse to lower the support platform 3 to the initial position. The board after drilling is controlled by the traction positioning mechanism to move along the conveyor roller 11 to the other side of the connecting plate 9. Then, the second hydraulic push rod 19 is activated to control the fixed plate 12 and the side shell 13 to move upward to avoid them blocking the board from moving out, thus completing a single processing flow.

[0022] The above description is merely a preferred embodiment of the present invention. Any person skilled in the art can modify the present invention or modify it into an equivalent technical solution using the technical solutions described above. Therefore, any simple modifications or equivalent substitutions made based on the technical solutions of the present invention fall within the scope of protection claimed by the present invention.

Claims

1. A wood box processing plate drilling table with auxiliary positioning structure, comprising a top table (1), characterized in that: The top (1) top is equipped with two down components, the top (1) bottom is equipped with a plurality of support columns (4), a plurality of the support column (4) bottom is equipped with a bottom plate (5), the bottom plate (5) top is equipped with traction positioning mechanism and conveying assembly; The traction positioning mechanism includes a fixed plate (12), the fixed plate (12) is equipped on the top of the bottom plate (5), the fixed plate (12) is fixedly provided with a side shell (13) on one side, the fixed plate (12) is provided with two limiting components on one side, the limiting component includes two mounting plates (20), two mounting plates (20) are fixedly connected with the fixed plate (12), two mounting plates (20) are provided with a sliding groove (29) on one side, the mounting plate (20) is internally connected with a rotating rod (24) through a bearing, the rotating rod (24) is fixedly sleeved with a support cylinder (27) outside, the support cylinder (27) is fixedly provided with a fixed rod (21) on one side, the fixed rod (21) is fixedly provided with a connecting head (22) on one side, the connecting head (22) is fixedly sleeved with an antiskid pad (23) outside, the sliding groove (29) is provided with a sliding block (28) inside, the sliding block (28) is fixedly provided with a push rod (40) on one side, the push rod (40) penetrates through the fixed plate (12) and extends into the inside of the side shell (13), the push rod (40) is fixedly connected with a toothed plate (31) on one end, the rotating rod (24) is fixedly sleeved with a first gear (25) outside, the first gear (25) is provided with a frame-shaped toothed plate (26) on one side, the first gear (25) is engaged with the frame-shaped toothed plate (26), and the frame-shaped toothed plate (26) is fixedly connected with the sliding block (28).

2. The wood box processing plate drilling table with auxiliary positioning structure according to claim 1, characterized in that: The traction positioning mechanism further includes a second motor (16), the second motor (16) is fixedly provided on one side of the side shell (13), the output end of the second motor (16) is fixedly connected with a transmission shaft (37), one end of the transmission shaft (37) extends into the inside of the side shell (13) and is connected with the fixed plate (12) through a bearing, the transmission shaft (37) is fixedly sleeved with a first bevel gear (38) outside, the first bevel gear (38) is provided with a second bevel gear (39) on both sides, the first bevel gear (38) is engaged with the second bevel gear (39), two second bevel gears (39) are fixedly provided with a worm (35) on one side, one end of the worm (35) is connected with a first supporting block (30) through a bearing, the first supporting block (30) is fixedly connected with the fixed plate (12), the inside of the side shell (13) is connected with two rotating shafts (32) through bearings, two rotating shafts (32) are fixedly sleeved with a worm wheel (33) outside, the worm wheel (33) is engaged with the worm (35), and the rotating shaft (32) is fixedly sleeved with two second gears (34) outside, the second gear (34) is engaged with the toothed plate (31).

3. The wood box processing plate drilling table with auxiliary positioning structure according to claim 2, characterized in that: The inside of the side shell (13) is fixedly provided with two second supporting blocks (36), the worm (35) penetrates through the second supporting block (36) and is connected with the second supporting block (36) through a bearing.

4. The wood box processing board drilling table with auxiliary positioning structure according to claim 1, characterized in that: The bottom plate (5) top is equipped with two control components, the control component includes connecting shell (8), the connecting shell (8) is fixedly connected with support column (4), first motor (14) is fixedly arranged on one side of connecting shell (8), the output end of first motor (14) is fixedly connected with lead screw (18), the connecting place of lead screw (18) and connecting shell (8) inner wall is connected through bearing, the outside of lead screw (18) is equipped with sliding block (17) through thread, the top of sliding block (17) is fixedly provided with second hydraulic push rod (19), the output end of second hydraulic push rod (19) is fixedly connected with fixed plate (12).

5. The wood box processing board drilling table with auxiliary positioning structure according to claim 1, characterized in that: The bottom plate (5) top is fixedly provided with a plurality of first hydraulic push rods (6), the output end of first hydraulic push rod (6) is fixedly connected with bearing table (3), a plurality of square grooves (15) are formed in one side of bearing table (3), and bearing table (3) is arranged at the bottom of top table (1).

6. The wood box processing board drilling station with auxiliary positioning structure according to claim 1, characterized in that: The conveying assembly includes two support plates (7), two support plates (7) are fixedly arranged on the top of bottom plate (5), two support plates (7) are fixedly provided with connecting plate (9) on the top, a plurality of conveying units are fixedly arranged on the top of connecting plate (9), the conveying unit includes two side plates (10), two side plates (10) are fixedly arranged on the top of connecting plate (9), and conveying roller (11) is connected between two side plates (10) through bearing.

7. A wood box processing board drilling table with auxiliary positioning structure according to claim 5, characterized in that: The top of top table (1) is provided with a through groove matched with bearing table (3).

8. The wood box processing board drilling station with auxiliary positioning structure according to claim 1, characterized in that: The down pressing assembly includes support strip (2), the support strip (2) is fixedly arranged on the top of top table (1), a plurality of clamping grooves (42) are formed in the top of support strip (2), a side groove (41) is formed in one side of support strip (2), a plurality of down pressing units are arranged on one side of support strip (2), the down pressing unit includes side sliding block (43), the side sliding block (43) is arranged in the inside of side groove (41), the down pressing plate (44) is fixedly arranged on one side of side sliding block (43), the pressing column (45) is fixedly arranged on the bottom of down pressing plate (44), two connecting blocks (47) are fixedly arranged on the top of down pressing plate (44), the clamping plate (48) is movably connected between two connecting blocks (47) through rotating shaft, and the clamping plate (48) is buckled with clamping groove (42).

9. A wood box processing board drilling station with auxiliary positioning structure according to claim 8, characterized in that: The reinforcing plate (46) is fixedly arranged on the bottom of down pressing plate (44).

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