Punching device for sliding block machining

By designing a slider processing and drilling device, the hydraulic cylinder and lifting plate are used to drive multiple drilling rigs to process simultaneously, the problem of low processing efficiency of existing equipment is solved, and the effect of multiple drilling rigs is achieved at the same time and multiple holes are generated.

CN120170124APending Publication Date: 2025-06-20ZHEJIANG KUNAI AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202510533660.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

The existing slider processing equipment can only drill one hole in each operation, which is low in processing efficiency, making it difficult to process multiple drilling rigs at the same time and generate multiple holes in different locations.

Method used

A slider processing and drilling device is designed, including an operating table, hydraulic cylinder, lift plate and multiple drilling rigs. The hydraulic cylinder drives the lift plate and drilling rig to move downward at the same time, so as to realize that multiple drilling rigs simultaneously machining multiple slide workpieces and generating multiple holes at different locations.

Benefits of technology

It realizes that multiple drilling rigs are processed simultaneously, saving time and improving working efficiency, and can generate multiple holes in different locations at the same time, improving processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention relates to a sliding block machining punching device which comprises an operation table and a first drilling machine, a vertical frame is fixedly connected to the top of the operation table, a hydraulic cylinder is installed at the top of the vertical frame, a lifting plate is installed at the bottom of the hydraulic cylinder, a second drilling machine is arranged at the bottom of the lifting plate, a third drilling machine is arranged at the bottom of the lifting plate, and a fourth drilling machine is arranged at the bottom of the lifting plate. A fixing plate is installed at the top of the operation table, a containing base is fixedly connected to the top of the fixing plate, a containing groove is formed in the top of the containing base, a plurality of sliding block workpieces are placed in the containing groove, a feeding port is formed in the top of the containing base, and a discharging port is formed in the side edge of the containing base. A first piston rod is arranged at the output end of the first air cylinder, a first ejector rod is arranged on the side edge of the first piston rod, a first ejector block is arranged in the containing groove, a second air cylinder is installed in the vertical frame, the multiple drilling machines conduct machining at the same time, multiple holes are formed at the same time, time is saved, and operation efficiency is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of slider processing, and in particular to a slider processing and punching device. Background Art

[0002] The slider is a component commonly used in industrial production and mechanical processing. The slider carries the load of the workpiece or equipment, supports the load and ensures smooth movement, provides precise guidance and positioning, ensures the accuracy and stability of the workpiece or equipment during movement, enables the workpiece to move along a predetermined path, helps to reduce energy consumption, reduces heat generation during movement, and prolongs service life. The patent with application number: CN202021859531.3 discloses a high-efficiency adjustable punching device for slider processing, including a base, a pitch-adjusting cabin, and a drilling cabin. The outer wall of the top middle section of the base is fixedly connected to the first rotating bearing, the top outer wall of the first rotating bearing is fixedly connected to the pitch-adjusting shaft, the top outer wall of the pitch-adjusting shaft is fixedly connected to the limit block, the outer wall of the pitch-adjusting shaft is fixedly connected to the pitch-adjusting cabin, the right end of the pitch-adjusting cabin is penetrated from the outer wall to the inside and fixedly connected to the second rotating bearing, the right end of the pitch-adjusting cabin is provided with a ball through the left side of the second rotating bearing, the left end of the drilling cabin has an outer wall penetrating to the inside and an assembly adjustment rod is provided, the assembly adjustment rod passes through the outer wall of the drilling cabin to the inside and is connected to the assembly fixing rod, and the assembly fixing rod is connected to the drilling cabin. The left end of the interior passes through the rear side of the second rotating bearing to the right end of the pitch control cabin; the first motor is fixedly connected to the outside of the pitch control cabin, and the first motor passes through the outer wall of the pitch control cabin to the interior and is fixedly connected to the coupling, and the coupling is fixedly connected to the gear shaft through the interior of the pitch control cabin, and the gear shaft is connected to the pitch control shaft through the interior of the pitch control cabin; the front outer wall of the drilling cabin is fixedly connected to the second handle, and the top outer wall of the drilling cabin is fixedly connected to the second motor; the second motor passes through the outer wall of the drilling cabin to the interior and is fixedly connected to the coupling, and the coupling is fixedly connected to the drilling shaft through the interior of the drilling cabin, and the drilling shaft is fixedly connected to the drill rod through the bottom end of the drilling cabin; the left outer wall of the pitch control cabin is fixedly connected to the first handle, and the outer wall of the bottom left of the front side of the pitch control cabin is provided with a power control interface. However, only one hole can be drilled each time, and the processing efficiency is low. Summary of the invention

[0003] The present invention aims to solve the problems existing in the above-mentioned prior art and provides a slider processing and punching device, which can perform processing with multiple drilling rigs at the same time and generate multiple holes in different positions at the same time, thereby saving time and improving working efficiency.

[0004] The technical solution adopted by the present invention to solve its technical problems: This slider processing and drilling device includes an operating table and a first drilling machine. A vertical frame is fixedly connected to the top of the operating table. A hydraulic cylinder is installed on the top of the vertical frame. There are multiple hydraulic cylinders. A lifting plate is installed at the bottom of the hydraulic cylinder. The first drilling machine is arranged at the bottom of the lifting plate. A second drilling machine is arranged at the bottom of the lifting plate. A third drilling machine is arranged at the bottom of the lifting plate. A fourth drilling machine is arranged at the bottom of the lifting plate. A fixing plate is installed on the top of the operating table. A placing seat is fixedly connected to the top of the fixing plate. A placing groove is opened on the top of the placing seat. The placing groove is a convex structure with a narrow upper part and a wide lower part. Multiple slider workpieces are placed inside the placing groove. First holes, second holes, third holes and fourth holes are respectively arranged on the surfaces of the slider workpieces. A feeding port is opened on the top of the placing seat. The feeding port communicates with the placing groove. A discharging port is arranged on the side of the placing seat. A first cylinder is arranged on the top of the fixing plate. A first piston rod is arranged at the output end of the first cylinder. A first ejector rod is arranged on the side of the first piston rod. The first ejector rod reaches inside the placing groove. A first ejecting block is arranged inside the placing groove. The first ejector rod is connected to the first ejecting block. The first ejecting block abuts against the side of the slider workpiece;

[0005] A second cylinder is installed inside the vertical frame. A second piston rod is arranged at the output end of the second cylinder. A second ejector rod is arranged on the side of the second piston rod. A second ejecting block is arranged on the side of the second ejector rod. An activity port is opened on the inner side of the placing seat. The activity port and the discharging port communicate with the placing groove. The second ejecting block reaches inside the placing groove through the activity port. A sliding groove is opened on the top of the operating table. The sliding groove is in front of the placing seat. A storage box is arranged on the side of the operating table. The storage box is below the sliding groove. A feeding cart is arranged in front of the operating table. A storage rack is fixedly connected to the top of the feeding cart. Multiple unprocessed slider workpieces are placed inside the storage rack;

[0006] The slider workpiece reaches inside the placement groove from the feed inlet. The first cylinder controls the rapid extension and movement of the first piston rod, the first ejector rod, and the first ejector block. The first ejector block abuts against the side of the just-placed slider workpiece, and multiple slider workpieces inside the placement groove are thus abutted and fixed. Multiple hydraulic cylinders extend and operate simultaneously, and the piston rods of the multiple hydraulic cylinders drive the lifting plate to move downward at the same time. The first drill, the second drill, the third drill, and the fourth drill move downward simultaneously to process multiple slider workpieces respectively. The first drill drills a first hole on the surface of one of the slider workpieces, the second drill drills a second hole on the surface of one of the slider workpieces, the third drill drills a third hole on the surface of one of the slider workpieces, and the fourth drill drills a fourth hole on the surface of one of the slider workpieces. Each slider workpiece finally has four holes drilled. Multiple hydraulic cylinders drive the lifting plate, the first drill, the second drill, the third drill, and the fourth drill to return to their original positions. The first cylinder controls the retraction of the first piston rod, the first ejector rod, and the first ejector block. The second cylinder controls the rapid extension and movement of the second piston rod, the second ejector rod, and the second ejector block. The second ejector block quickly reaches the movable opening and the placement groove, and the second ejector block ejects the slider workpiece that has been processed at the frontmost side. The slider workpiece passes through the discharge port and the chute in sequence and finally reaches the top of the storage box for storage. Slider workpieces are continuously added at the feed inlet for processing. During the whole process, multiple drills process simultaneously, generating multiple holes at different positions at the same time, saving time and improving the operation efficiency.

[0007] For further improvement, a retaining bar is provided on the top of the operating table. The retaining bar is located in front of the chute to prevent the slider workpiece from crossing the chute and reaching the outside, providing effective protection.

[0008] For further improvement, an internal groove is opened on the side of the operating table. The storage box reaches inside the internal groove. A chamfer is provided in front of the internal groove, saving space while ensuring that the storage box is directly below the chute. The chamfer reduces obstruction and facilitates viewing and operation.

[0009] For further improvement, a first linear bearing is provided on the side of the placement seat. The first ejector rod passes through the inside of the first linear bearing. A support block is installed on the top of the operating table, and a second linear bearing is provided inside the support block. The second ejector rod passes through the inside of the second linear bearing. The first linear bearing improves the smoothness of the first ejector rod during movement. The support block provides effective support for the second ejector rod and the second ejector block, preventing the support block from shifting. The second linear bearing improves the smoothness of the second ejector rod during movement.

[0010] For further improvement, the inside of the support block is provided with first hexagon socket head cap screws. There are multiple first hexagon socket head cap screws. The multiple first hexagon socket head cap screws reach the inside of the support block and are threadedly connected to the inside of the operating table. The side surface of the second cylinder is fixedly connected with a mounting block. The inside of the mounting block is provided with second hexagon socket head cap screws. There are multiple second hexagon socket head cap screws. The multiple second hexagon socket head cap screws reach the inside of the mounting block and are threadedly connected to the inside of the vertical frame. Removing the first hexagon socket head cap screws and the second hexagon socket head cap screws facilitates the simultaneous removal of the support block and the second cylinder, making loading and unloading easy and convenient for replacement.

[0011] For further improvement, the inside of the fixed plate is provided with third hexagon socket head cap screws. There are multiple third hexagon socket head cap screws. The multiple third hexagon socket head cap screws reach the inside of the placement seat and are connected to the inside of the operating table. The bottom of the hydraulic cylinder is provided with a connecting block. The lifting plate is at the bottom of the connecting block. The top of the connecting block is provided with fixing bolts. There are multiple fixing bolts. The multiple fixing bolts pass through the connecting block and are connected to the inside of the lifting plate. Removing the third hexagon socket head cap screws enables the overall removal of the fixed plate, the placement seat, and the first cylinder. Removing the fixing bolts enables the overall removal of the lifting plate, the first drill, the second drill, the third drill, and the fourth drill, facilitating adjustment and replacement to meet more requirements.

[0012] For further improvement, there is a shelf on the inner side of the storage rack. The inner side of the storage rack is fixedly connected with a fixed seat. An inner groove is opened at the top of the fixed seat. The side of the shelf reaches the inside of the inner groove. A groove is opened at the top of the shelf. Multiple unprocessed slider workpieces are placed in the groove. A groove is also opened at the top of the loading cart. A handle is fixedly connected to the top of the shelf. Multiple unprocessed slider workpieces are placed in the groove of the shelf. The operator holds the handle to carry the shelf and the placed slider workpieces as a whole. The bottom of both sides of the shelf reaches the inside of the two inner grooves. The placement of the shelf enables the effective placement of the slider workpieces. According to this operation, multiple shelves are placed inside the storage rack, and multiple unprocessed slider workpieces are placed in the groove of the loading cart, further increasing the placement quantity of the slider workpieces. Pushing the storage rack and the loading cart as a whole to the front side of the operating table facilitates the operator to pick up materials nearby, saving time and labor and improving work efficiency.

[0013] For further improvement, a rounded corner is provided on the side of the handle. Rounded corners are also provided on the side of the shelf, the side of the fixed seat, the side of the loading cart, and the top of the storage rack. A magnetic block is fixedly connected to the side of the loading cart. The front side of the operating table is made of steel and metal. The magnetic block is magnetically adsorbed to the front side of the operating table. The setting of the rounded corners reduces the sharp right-angle edges on the side of the handle, the side of the shelf, the side of the fixed seat, the side of the loading cart, and the top of the storage rack, ensuring safety and improving the comfort during the operation process. The loading cart is temporarily fixed by the adsorption of the magnetic block to the front side of the operating table, improving stability and preventing the loading cart from moving.

[0014] For further improvement, the storage box is provided with multiple rollers at the bottom, a bracket is fixedly connected to the side of the storage box, and a push-pull rod is fixedly connected to the top of the bracket. The storage box can be easily moved with the help of the rollers and the push-pull rod, which improves flexibility and saves time and manpower.

[0015] To further improve, the storage box is fixedly connected to the inside with a spring part, there are multiple spring parts, an inner plate is arranged on the top of the spring part, an inner hole is opened on the surface of the inner plate, there are multiple inner holes, the multiple inner holes of the inner plate provide effective force, which is convenient for operators to grasp and operate, and when the number of slider workpieces placed on the top of the inner plate reaches a certain number, the multiple spring parts are forced to shrink, and the inner plate drops, which is convenient for storing and placing more slider workpieces, and the top of the slider workpiece maintains a certain distance from the slide groove, which is convenient for other slider workpieces to fall and be placed smoothly.

[0016] The beneficial effects of the present invention are:

[0017] 1. The slider workpiece reaches the inside of the placement groove from the feed port, the first cylinder controls the first piston rod, the first push rod and the first push block to extend and move quickly, the first push block abuts against the side of the slider workpiece just placed, and multiple slider workpieces in the placement groove are abutted and fixed, multiple hydraulic cylinders extend and operate at the same time, the piston rods of multiple hydraulic cylinders drive the lifting plate to move downward at the same time, the first drilling rig, the second drilling rig, the third drilling rig and the fourth drilling rig move downward at the same time, and process multiple slider workpieces respectively, the first drilling rig drills a first hole on the surface of one of the slider workpieces, the second drilling rig drills a second hole on the surface of one of the slider workpieces, the third drilling rig drills a third hole on the surface of one of the slider workpieces, and the fourth drilling rig drills a third hole on the surface of one of the slider workpieces. The fourth hole is drilled on the surface of the workpiece, and four holes are finally drilled out of each slider workpiece. Multiple hydraulic cylinders drive the lifting plate, the first drilling rig, the second drilling rig, the third drilling rig and the fourth drilling rig to return to their positions. The first cylinder controls the first piston rod, the first push rod and the first push block to retract. The second cylinder controls the second piston rod, the second push rod and the second push block to extend and move quickly. The second push block quickly reaches the movable port and the placement slot. The second push block ejects the slider workpiece that has been processed on the front side. The slider workpiece passes through the discharge port and the slide slot in turn and finally reaches the top of the storage box for storage and placement. Slider workpieces are continuously added to the feed port for processing. During the whole process, multiple drilling rigs perform processing at the same time and generate multiple holes in different positions at the same time, saving time and improving work efficiency.

[0018] 2. The first linear bearing is used to improve the smoothness of the first push rod during movement. The support block provides effective support for the second push rod and the second push block to prevent the support block from shifting. The second linear bearing improves the smoothness of the second push rod during movement. The first hexagon socket screw and the second hexagon socket screw are removed to facilitate the simultaneous removal of the support block and the second cylinder. The loading and unloading are easy and the replacement is convenient. The third hexagon socket screw is removed, and the fixing plate, the placement seat and the first cylinder are removed as a whole. The fixing bolts are removed, and the lifting plate, the first drilling rig, the second drilling rig, the third drilling rig and the fourth drilling rig are removed as a whole, which is convenient for adjustment and replacement to meet more needs.

[0019] 3. Place multiple unprocessed slider workpieces in the grooves of the shelf, and the operator holds the handle to carry the shelf and the placed slider workpiece as a whole. The shelves are placed from the bottom of both sides of the shelf to the inside of the two inner grooves so that the slider workpiece is effectively placed. According to this operation, multiple shelves are placed inside the storage rack, and multiple unprocessed slider workpieces are placed in the grooves of the loading cart, which further increases the number of placed slider workpieces, and pushes the storage rack and the loading cart to the front side of the operating table as a whole, which is convenient for operators to take materials nearby, saves time and manpower, and improves work efficiency. The rounded corner setting reduces the sharp right-angle edges of the handle side, shelf side, fixed seat side, loading cart side and storage rack top, ensuring safety while improving the comfort of the operation process. The loading cart is temporarily fixed by the adsorption of magnetic blocks and the front side of the operating table to improve stability and avoid position movement of the loading cart.

[0020] 4. The storage box can be moved conveniently with the help of rollers and push-pull rods, which improves flexibility, saves time and manpower, and the multiple inner holes of the inner plate provide effective force, which is convenient for operators to grab and operate. When the number of slider workpieces placed on the top of the inner plate reaches a certain number, multiple spring parts are forced to contract, and the inner plate drops, which is convenient for storing and placing more slider workpieces. The top of the slider workpiece maintains a certain distance from the slide slot, which is convenient for other slider workpieces to fall and be placed smoothly. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a structural schematic diagram of the present invention;

[0022] Figure 2 For the present invention Figure 1 Enlarged view of point A in the middle;

[0023] Figure 3 For the present invention Figure 1 Enlarged view of point B in the middle;

[0024] Figure 4 For the present invention Figure 1 Enlarged view of point C in the middle;

[0025] Figure 5 For the present invention Figure 1 Enlarged view of point D in the middle;

[0026] Figure 6 Internal sectional view of the placement seat of the present invention;

[0027] Figure 7 Front view of the structure of the present invention;

[0028] Figure 8 For the present invention Figure 7 Enlarged view at position E;

[0029] Figure 9 Structure display diagram of the storage box of the present invention;

[0030] Figure 10 Internal display diagram of the storage box of the present invention;

[0031] Figure 11 Right view of the operating table of the present invention;

[0032] Figure 12 For the present invention Figure 11 Enlarged view at position F.

[0033] Explanation of reference numerals: 1. Operating table; 2. First drill; 3. Erection frame; 4. Hydraulic cylinder; 5. Lifting plate; 6. Second drill; 7. Third drill; 8. Fourth drill; 9. Fixed plate; 10. Placement seat; 11. Placement groove; 12. Slider workpiece; 121. First hole; 122. Second hole; 123. Third hole; 124. Fourth hole; 13. Feed inlet; 14. Discharge outlet; 15. First cylinder; 16. First piston rod; 17. First ejector rod; 18. First ejector block; 19. Second cylinder; 20. Second piston rod; 21. Second ejector rod; 22. Second ejector block; 23. Movable opening; 24. Chute; 25. Storage box; 26. Loading vehicle; 27. Storage rack; 28. Stop bar; 29. Built-in groove; 30. Chamfer; 31. First linear bearing; 32. Support block; 33. Second linear bearing; 34. First hexagon socket screw; 35. Mounting block; 36. Second hexagon socket screw; 37. Third hexagon socket screw; 38. Connecting block; 39. Fixed bolt; 40. Shelf; 41. Fixed seat; 42. Inner groove; 43. Groove; 44. Handle; 45. Fillet; 46. Magnet; 47. Roller; 48. Bracket; 49. Push-pull rod; 50. Spring member; 51. Inner plate; 52. Inner hole. Detailed implementation manners

[0034] The following is further described in conjunction with the attached Figure 1-12 to this embodiment:

[0035] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5, Figure 6 , Figure 7 , Figure 8 , Figure 11 and Figure 12 As shown in Figure 6 , Figure 7 , Figure 8 , Figure 11 , Figure 12 and : In this embodiment, a slider processing and drilling device includes an operating table 1 and a first drilling machine 2. A vertical frame 3 is fixedly connected to the top of the operating table 1, and a hydraulic cylinder 4 is installed at the top of the vertical frame 3. There are multiple hydraulic cylinders 4, and a lifting plate 5 is installed at the bottom of the hydraulic cylinder 4. The first drilling machine 2 is arranged at the bottom of the lifting plate 5. A second drilling machine 6 is arranged at the bottom of the lifting plate 5. A third drilling machine 7 is arranged at the bottom of the lifting plate 5. A fourth drilling machine 8 is arranged at the bottom of the lifting plate 5. A fixing plate 9 is installed on the top of the operating table 1, and a placing seat 10 is fixedly connected to the top of the fixing plate 9. A placing groove 11 is opened at the top of the placing seat 10. The placing groove 11 is a convex structure with a narrow upper part and a wide lower part. Multiple slider workpieces 12 are placed inside the placing groove 11. First holes 121, second holes 122, third holes 123 and fourth holes 124 are respectively arranged on the surfaces of the slider workpieces 12. A feeding port 13 is opened at the top of the placing seat 10. The feeding port 13 communicates with the placing groove 11. A discharging port 14 is arranged on the side of the placing seat 10. A first air cylinder 15 is arranged on the top of the fixing plate 9. A first piston rod 16 is arranged at the output end of the first air cylinder 15. A first ejector rod 17 is arranged on the side of the first piston rod 16. The first ejector rod 17 reaches inside the placing groove 11. A first ejecting block 18 is arranged inside the placing groove 11. The first ejector rod 17 is connected to the first ejecting block 18. The first ejecting block 18 abuts against the side of the slider workpiece 12. A second air cylinder 19 is installed inside the vertical frame 3. A second piston rod 20 is arranged at the output end of the second air cylinder 19. A second ejector rod 21 is arranged on the side of the second piston rod 20. A second ejecting block 22 is arranged on the side of the second ejector rod 21. An activity port 23 is opened on the inner side of the placing seat 10. The activity port 23 and the discharging port 14 communicate with the placing groove 11. The second ejecting block 22 reaches inside the placing groove 11 through the activity port 23. A sliding groove 24 is opened on the top of the operating table 1. The sliding groove 24 is in front of the placing seat 10. A storage box 25 is arranged on the side of the operating table 1. The storage box 25 is below the sliding groove 24. A loading cart 26 is arranged in front of the operating table 1. A storage rack 27 is fixedly connected to the top of the loading cart 26. Multiple unprocessed slider workpieces 12 are placed inside the storage rack 27. A stop bar 28 is arranged on the top of the operating table 1. The stop bar 28 is in front of the sliding groove 24. An internal groove 29 is opened on the side of the operating table 1. The storage box 25 reaches inside the internal groove 29. A chamfer 30 is arranged in front of the internal groove 29.

[0036] As Figure 2 , Figure 3 , Figure 4 , Figure 6 , Figure 8 and Figure 12As shown: A first linear bearing 31 is provided on the side of the placement seat 10. The first ejector rod 17 passes through the inside of the first linear bearing 31. A support block 32 is installed on the top of the operating table 1. A second linear bearing 33 is provided inside the support block 32. The second ejector rod 21 passes through the inside of the second linear bearing 33. A first hexagon socket head screw 34 is provided inside the support block 32. There are multiple first hexagon socket head screws 34. The multiple first hexagon socket head screws 34 reach the inside of the support block 32 and are threadedly connected to the inside of the operating table 1. A mounting block 35 is fixedly connected to the side surface of the second cylinder 19. A second hexagon socket head screw 36 is provided inside the mounting block 35. There are multiple second hexagon socket head screws 36. The multiple second hexagon socket head screws 36 reach the inside of the mounting block 35 and are threadedly connected to the inside of the vertical frame 3. A third hexagon socket head screw 37 is provided inside the fixing plate 9. There are multiple third hexagon socket head screws 37. The multiple third hexagon socket head screws 37 reach the inside of the placement seat 10 and are connected to the inside of the operating table 1. A connecting block 38 is provided at the bottom of the hydraulic cylinder 4. The lifting plate 5 is at the bottom of the connecting block 38. A fixing bolt 39 is provided at the top of the connecting block 38. There are multiple fixing bolts 39. The multiple fixing bolts 39 pass through the connecting block 38 and are connected to the inside of the lifting plate 5.

[0037] As Figure 1 , Figure 4 , Figure 5 and Figure 7 As shown: A shelf 40 is provided on the inner side of the storage rack 27. A fixing seat 41 is fixedly connected to the inner side of the storage rack 27. An inner groove 42 is opened at the top of the fixing seat 41. The side of the shelf 40 reaches the inside of the inner groove 42. A groove 43 is opened at the top of the shelf 40. Multiple unprocessed slider workpieces 12 are placed inside the groove 43. A groove 43 is also opened at the top of the loading cart 26. A handle 44 is fixedly connected to the top of the shelf 40. A fillet 45 is provided on the side of the handle 44. Fillets 45 are also provided on the side of the shelf 40, the side of the fixing seat 41, the side of the loading cart 26, and the top of the storage rack 27. A magnetic block 46 is fixedly connected to the side of the loading cart 26. The front side of the operating table 1 is made of steel and metal material. The magnetic block 46 is magnetically adsorbed to the front side of the operating table 1.

[0038] As Figure 1 , Figure 7 , Figure 9 and Figure 10 As shown: Multiple rollers 47 are provided at the bottom of the storage box 25. A support 48 is fixedly connected to the side of the storage box 25. A push-pull rod 49 is fixedly connected to the top of the support 48. Multiple spring members 50 are fixedly connected to the inside of the storage box 25. An inner plate 51 is provided at the top of the spring members 50. Inner holes 52 are opened on the surface of the inner plate 51. There are multiple inner holes 52.

[0039] When the present invention is in use: A plurality of unprocessed slider workpieces 12 are placed in the grooves 43 of the shelf 40. An operator holds the handle 44 to carry the shelf 40 and the placed slider workpieces 12 as a whole. From the bottoms on both sides of the shelf 40 to the inside of the two inner grooves 42, the shelf 40 is placed so that the slider workpieces 12 can be effectively placed. According to this operation, a plurality of shelves 40 are placed inside the storage rack 27. A plurality of unprocessed slider workpieces 12 are placed in the grooves 43 of the loading cart 26, further increasing the placement quantity of the slider workpieces 12. The storage rack 27 and the loading cart 26 are pushed as a whole to the front side of the operation table 1. The loading cart 26 is temporarily fixed by the adsorption of the magnetic block 46 on the front side of the operation table 1, facilitating the operator to pick up materials nearby. The operator holds the push-pull rod 49 and pushes the storage box 25. The storage box 25 reaches inside the built-in groove 29. The storage box 25 is directly below the sliding groove 24. The operator obtains the slider workpiece 12 and places the slider workpiece 12 from the feed port 13. The slider workpiece 12 reaches inside the placement groove 11. The first air cylinder 15 controls the first piston rod 16, the first ejector rod 17, and the first ejector block 18 to quickly extend and move. The first ejector block 18 abuts against the side of the just-placed slider workpiece 12, and the plurality of slider workpieces 12 inside the placement groove 11 are abutted and fixed. The first linear bearing 31 improves the smoothness of the movement of the first ejector rod 17. A plurality of hydraulic cylinders 4 extend and operate simultaneously. The piston rods of the plurality of hydraulic cylinders 4 drive the lifting plate 5 to move downward simultaneously. The first drill 2, the second drill 6, the third drill 7, and the fourth drill 8 move downward simultaneously to process a plurality of slider workpieces 12 respectively. The first drill 2 drills a first hole 121 on the surface of one of the slider workpieces 12. The second drill 6 drills a second hole 122 on the surface of one of the slider workpieces 12. The third drill 7 drills a third hole 123 on the surface of one of the slider workpieces 12. The fourth drill 8 drills a fourth hole 124 on the surface of one of the slider workpieces 12. Each slider workpiece 12 finally drills out four holes. The plurality of hydraulic cylinders 4 drive the lifting plate 5, the first drill 2, the second drill 6, the third drill 7, and the fourth drill 8 to return to their original positions. The first air cylinder 15 controls the first piston rod 16, the first ejector rod 17, and the first ejector block 18 to retract. The second air cylinder 19 controls the second piston rod 20, the second ejector rod 21, and the second ejector block 22 to quickly extend and move. The support block 32 provides effective support for the second ejector rod 21 and the second ejector block 22 to prevent the support block 32 from shifting. The second linear bearing 33 improves the smoothness of the movement of the second ejector rod 21. The second ejector block 22 quickly reaches the movable opening 23 and the placement groove 11. The second ejector block 22 ejects the most forward processed slider workpiece 12. The slider workpiece 12 passes through the discharge port 14 and the sliding groove 24 in sequence and finally reaches the top of the storage box 25 for storage placement. Slider workpieces 12 are continuously added at the feed port 13 for processing. During the whole process, a plurality of drills process simultaneously, generating a plurality of holes at different positions at the same time, saving time and improving the operation efficiency. After the number of slider workpieces 12 placed on the top of the inner plate 51 reaches a certain amount,Multiple spring members 50 are stressed to contract, and the inner plate 51 descends, facilitating the storage of more slider workpieces 12. Moreover, a certain distance is maintained between the top of the slider workpiece 12 and the chute 24, facilitating the smooth placement of other slider workpieces 12 when they fall.

[0040] Although the present invention has been illustrated and described with reference to the preferred embodiments, those of ordinary skill in the art should understand that various changes in form and details may be made within the scope of the claims.

Claims

1. A slide processing and drilling device, comprising an operating table (1) and a first drilling machine (2), characterized in that: The top of the operating table (1) is fixedly connected to a stand (3), the top of the stand (3) is equipped with a hydraulic cylinder (4), there are multiple hydraulic cylinders (4), a lifting plate (5) is installed at the bottom of the hydraulic cylinder (4), the first drilling machine (2) is arranged at the bottom of the lifting plate (5), the bottom of the lifting plate (5) is equipped with a second drilling machine (6), the bottom of the lifting plate (5) is equipped with a third drilling machine (7), and the bottom of the lifting plate (5) is equipped with a fourth drilling machine (8), the top of the operating table (1) is equipped with a fixed plate (9), the top of the fixed plate (9) is fixedly connected to a placement seat (10), the top of the placement seat (10) is provided with a placement groove (11), the placement groove (11) is a convex structure with a narrow top and a wide bottom, a slider workpiece (12) is placed inside the placement groove (11), there are multiple slider workpieces (12), and the slider workpiece (12) is arranged inside the placement groove (11). 2) The surface is respectively provided with a first hole (121), a second hole (122), a third hole (123) and a fourth hole (124); a feed port (13) is provided on the top of the placement seat (10); the feed port (13) and the placement groove (11) are communicated with each other; a discharge port (14) is provided on the side of the placement seat (10); a first cylinder (15) is provided on the top of the fixing plate (9); a first piston rod (16) is provided on the output end of the first cylinder (15); a first push rod (17) is provided on the side of the first piston rod (16); the first push rod (17) reaches the inside of the placement groove (11); a first push block (18) is provided inside the placement groove (11); the first push rod (17) is connected to the first push block (18); the first push block (18) abuts against the side of the slider workpiece (12); A second cylinder (19) is installed inside the stand (3), a second piston rod (20) is arranged at the output end of the second cylinder (19), a second push rod (21) is arranged on the side of the second piston rod (20), a second push block (22) is arranged on the side of the second push rod (21), a movable opening (23) is opened on the inner side of the placement seat (10), the movable opening (23) and the discharge opening (14) are connected to the placement groove (11), and the second push block (22) passes through the movable opening (23). 3) Arriving inside the placement groove (11), a slide groove (24) is opened on the top of the operating table (1), the slide groove (24) is on the front side of the placement seat (10), a storage box (25) is arranged on the side of the operating table (1), the storage box (25) is below the slide groove (24), a loading car (26) is arranged on the front side of the operating table (1), and a storage rack (27) is fixedly connected to the top of the loading car (26), and a plurality of unprocessed slider workpieces (12) are placed inside the storage rack (27).

2. A slider processing and punching device according to claim 1, characterized in that: A blocking bar (28) is arranged on the top of the operating table (1), and the blocking bar (28) is located in front of the slide groove (24).

3. A slider processing and punching device according to claim 1, characterized in that: The operating table (1) is provided with a built-in groove (29) on the side, the storage box (25) reaches the inside of the built-in groove (29), and the front side of the built-in groove (29) is provided with a chamfer (30).

4. A slider processing and punching device according to claim 1, characterized in that: A first linear bearing (31) is arranged on the side of the placement seat (10), the first push rod (17) passes through the first linear bearing (31), a support block (32) is installed on the top of the operating table (1), a second linear bearing (33) is arranged inside the support block (32), and the second push rod (21) passes through the second linear bearing (33).

5. A slider processing and punching device according to claim 4, characterized in that: The support block (32) is provided with a first hexagon socket screw (34), there are a plurality of first hexagon socket screws (34), the plurality of first hexagon socket screws (34) reach the inside of the support block (32) and are threadedly connected to the inside of the operating table (1); the side surface of the second cylinder (19) is fixedly connected with a mounting block (35), the mounting block (35) is provided with a second hexagon socket screw (36), there are a plurality of second hexagon socket screws (36), the plurality of second hexagon socket screws (36) reach the inside of the mounting block (35) and are threadedly connected to the inside of the stand (3).

6. A slider processing and punching device according to claim 1, characterized in that: The fixing plate (9) is provided with a third hexagon socket screw (37) inside, and there are a plurality of the third hexagon socket screws (37). The plurality of third hexagon socket screws (37) reach the inside of the placement seat (10) and are connected to the inside of the operating table (1). A connecting block (38) is provided at the bottom of the hydraulic cylinder (4). The lifting plate (5) is at the bottom of the connecting block (38). A fixing bolt (39) is provided at the top of the connecting block (38). There are a plurality of the fixing bolts (39). The plurality of fixing bolts (39) pass through the connecting block (38) and are connected to the inside of the lifting plate (5).

7. The slider processing and punching device according to claim 1, characterized in that: A shelf (40) is arranged on the inner side of the storage rack (27), a fixing seat (41) is fixedly connected to the inner side of the storage rack (27), an inner groove (42) is provided on the top of the fixing seat (41), the side of the shelf (40) reaches the inside of the inner groove (42), a groove (43) is provided on the top of the shelf (40), a plurality of unprocessed slider workpieces (12) are placed in the groove (43), a groove (43) is also provided on the top of the loading vehicle (26), and a handle (44) is fixedly connected to the top of the shelf (40).

8. A slider processing and punching device according to claim 7, characterized in that: The handle (44) is provided with a rounded corner (45) on the side, and the shelf (40), the fixed seat (41), the loading trolley (26) and the top of the storage rack (27) are also provided with a rounded corner (45). The loading trolley (26) is fixedly connected with a magnetic block (46) on the side. The front side of the operating table (1) is made of steel metal material, and the magnetic block (46) is magnetically adsorbed to the front side of the operating table (1).

9. The slider processing and punching device according to claim 1, characterized in that: The bottom of the storage box (25) is provided with a plurality of rollers (47), the side of the storage box (25) is fixedly connected with a bracket (48), and the top of the bracket (48) is fixedly connected with a push-pull rod (49).

10. The slider processing and punching device according to claim 1, characterized in that: The storage box (25) is fixedly connected with a spring member (50) inside, wherein there are a plurality of spring members (50), an inner plate (51) is arranged on the top of the spring member (50), and a surface of the inner plate (51) is provided with an inner hole (52), wherein there are a plurality of inner holes (52).

Citation Information

Patent Citations

  • Efficient adjustable punching equipment for sliding block machining

    CN213195731U