Stainless steel draining basket machining equipment with uniform hole pitch array
By using an industrial camera inspection and automated adjustment system, combined with switchable punches and grinding components, the problems of multiple clamping and inner wall burrs in the processing of stainless steel drain baskets have been solved, achieving efficient and low-cost processing of uniform hole spacing arrays.
Patent Information
- Application Number
- CN202610147056.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-02
- Publication Date
- 2026-03-10
AI Technical Summary
Existing stainless steel drain basket processing equipment requires multiple clamping operations during the punching process, which leads to increased positioning errors, processing time, and costs. At the same time, it cannot effectively remove burrs from the inner wall, affecting production efficiency and costs.
The machine uses an industrial camera to inspect the workpiece, and combines a rodless cylinder, a vacuum suction cup, and a tilting table to achieve automatic adjustment and angle switching of the workpiece. With the help of a switchable punch and a grinding component on the support cylinder, it can achieve multiple functions in one machine, automatically completing the punching of the side and bottom holes and the cleaning of the inner wall burrs.
It improves processing efficiency, ensures uniformity and quality of hole spacing, reduces manual intervention, and lowers production cycle and cost.
Smart Images

Figure CN121624281A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of draining basket processing, in particular to a stainless steel draining basket processing equipment with uniform hole spacing array. BACKGROUND
[0002] In the field of kitchenware manufacturing, stainless steel draining baskets are widely used in household kitchens and various catering places due to their durability, easy cleaning and other advantages. In the processing of stainless steel draining baskets, the outer side and bottom of the stainless steel basin need to be punched. The existing processing equipment can only perform punching in a single direction. It needs to be clamped again to punch the bottom after punching the side. For punching different positions such as the side and end of the stainless steel basin, the workpiece needs to be clamped and adjusted multiple times, which not only increases the processing time and cost, but also is prone to positioning errors due to multiple clamping. In addition, after punching, the inner side wall of the stainless steel draining basket often has burrs. The existing equipment cannot preliminarily process the inner side wall during punching, and additional manual or equipment is needed to remove the burrs on the inner side wall in the subsequent process, increasing the production cycle and cost. SUMMARY
[0003] The purpose of the present application is to provide a stainless steel draining basket processing equipment with uniform hole spacing array to solve the problems raised in the background.
[0004] To achieve the above purpose, the present application provides the following technical scheme: a stainless steel draining basket processing equipment with uniform hole spacing array, comprising: A punch body with an industrial camera installed on one side, a punch head with switchable angle is arranged in the middle of the punch body, used for punching the side and end of the workpiece; A material conveying mechanism is arranged on one side of the punch body, the material conveying mechanism comprises a reversible turnover table and a rodless cylinder, used for adjusting the angle of the workpiece and sorting materials, and a vacuum chuck for taking materials and switching the angle of the workpiece is installed on the top of the rodless cylinder; A support cylinder with a chip removal port is arranged below the punch head, a polishing part is embedded and installed on the outside of the support cylinder, and when the vacuum chuck switches the position of the workpiece and corresponds to the punch head, the polishing part cleans and polishes the burrs inside the workpiece.
[0005] As a preferred, the material conveying mechanism further comprises a material conveying machine, the material conveying machine is installed on one side of the punch body, a support is installed on the position of the punch body corresponding to the material conveying machine, a support table is fixedly connected to the top of the support and opposite to the position of the material conveying machine, a double-shaft cylinder is fixedly connected to the support table vertically to the conveying direction of the material conveying machine, and the industrial camera is located directly above the support table.
[0006] As preferred, one side of the support frame and corresponding to the position of the support table is provided with a turnover table, one side of the turnover table is rotatable with the support frame, one side of the support frame is fixedly connected with a motor I for driving the turnover table to turn over.
[0007] As preferred, a middle part of the turnover table is provided with an air exhaust hole, one side of the punch body is provided with a negative pressure device with an input end connected with the air exhaust hole, for generating negative pressure to the air exhaust hole.
[0008] As preferred, a middle part of the punch body is fixedly connected with a workbench provided with a material collecting channel, the rodless cylinder is fixedly connected to the top of the workbench, a support seat is fixedly connected to the sliding block of the rodless cylinder, a moving sliding table is slidably connected to the top of the support seat through a guide rail, a cylinder I is fixedly connected to one side of the support seat for driving the moving sliding table to slide, a motor II is fixedly connected to one side of the moving sliding table, a hollow rod is rotatably connected to the middle part of the moving sliding table, a vacuum chuck is connected to the end of the hollow rod, and the motor II is drivingly connected with the hollow rod through a synchronous belt assembly.
[0009] As preferred, the punch head comprises an adjusting seat fixedly connected to the bottom of the lifting end of the punch body, a rotating disc in the adjusting seat, a top punch head and a side punch head fixedly connected to the outer side of the rotating disc, and the included angle between the top punch head and the side punch head is a right angle.
[0010] As preferred, a motor III is fixedly connected to the outer side of the adjusting seat for driving the rotating disc to rotate, a positioning cylinder is fixedly connected to the outer side of the adjusting seat, a positioning pin is fixedly connected to the output end of the positioning cylinder, and a positioning hole matched with the pin is formed in the middle part of the rotating disc.
[0011] As preferred, the adjusting mechanism comprises a fixed seat fixedly connected to the top of the workbench, a sliding table slidably connected to the inside of the fixed seat, a hydraulic cylinder fixedly connected to the outer side of the fixed seat for driving the sliding table to move, a moving frame fixedly connected to the top of the sliding table, a support cylinder rotatably mounted in the middle part of the moving frame, a motor IV with a brake function fixedly connected to the outer side of the moving frame, and the output end of the motor IV is fixedly connected with the support cylinder.
[0012] As preferred, an installation groove is formed in the outer side of one end of the support cylinder, a punch support block matched with the side punch head is fixedly connected in the installation groove, positioning support rods for supporting and positioning are equidistantly fixedly connected to the inner side of the installation groove, a rotary clamping cylinder is fixedly connected to the outer side of the support cylinder, the polishing part comprises a scraper and a sponge sandpaper, and the sponge sandpaper and the scraper are alternately fixedly connected in the inside of the installation groove.
[0013] As preferred, a material discharging conveyor is fixedly connected to the top of the sliding table and one side close to the chip removal opening, and a resilient plate is fixedly connected between the edge of the material discharging opening and the material discharging conveyor for shielding and guiding the waste chips.
[0014] Compared with existing technologies, the advantages of this invention are as follows: An industrial camera captures images of the stainless steel basin to detect whether the workpiece meets requirements, enabling timely detection of defective products and ensuring processing quality. A material handling and angle adjustment system, consisting of a rodless cylinder, cylinder one, motor two, hollow rod, and vacuum suction cup, accurately removes the stainless steel basin from the tilting table and adjusts it to a suitable angle corresponding to the support cylinder. It also rotates the stainless steel basin to switch punching positions, improving production efficiency. Motor two drives the hollow rod to rotate at a fixed angle via a synchronous belt assembly, thereby aligning different positions of the stainless steel basin with the punch to achieve side punching, ensuring uniform hole spacing. During the rotation of the stainless steel basin by the vacuum suction cup, the grinding section on the outside of the support cylinder automatically cleans and grinds the inner wall, achieving multi-purpose functionality. The punch can be switched between a top punching head and a side punching head, allowing for punching of the bottom and sides of the stainless steel basin respectively, meeting the processing needs of different parts. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of the structure of the workbench of the present invention; Figure 3 This is a schematic diagram of the structure of the flipping table of the present invention when it is flipped. Figure 4 This is a schematic diagram of the air extraction port of the present invention; Figure 5 This is a schematic diagram of the structure of cylinder one of the present invention; Figure 6 This is a schematic diagram of the rotating disk of the present invention; Figure 7 This is a schematic diagram of the scraper structure of the present invention; Figure 8 This is a schematic diagram of the material discharge conveyor of the present invention.
[0016] In the diagram: 1. Punch press body; 2. Material conveyor; 3. Support table; 4. Tilting table; 5. Motor 1; 6. Air extraction port; 7. Dual-axis cylinder; 8. Worktable; 9. Rodless cylinder; 10. Support base; 11. Moving slide; 12. Cylinder 1; 13. Motor 2; 14. Hollow rod; 15. Vacuum suction cup; 16. Adjusting seat; 17. Positioning cylinder; 18. Motor 3; 19. Rotary disc; 20. Top punch head; 21. Side punch head; 22. Fixed base; 23. Sliding table; 24. Discharge conveyor; 25. Moving frame; 26. Motor 4; 27. Support cylinder; 28. Rotary clamping cylinder; 29. Elastic plate; 30. Mounting slot; 31. Punching support block; 32. Sponge sandpaper; 33. Positioning support rod; 34. Scraper; 35. Hydraulic cylinder; 36. Industrial camera. Detailed Implementation
[0017] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. 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.
[0018] Please see Figures 1-8 This invention provides a technical solution: a stainless steel drain basket processing device with a uniform hole spacing array, comprising: a punch press body 1 with an industrial camera 36 mounted on one side, the punch press body 1 being a hydraulic punch press, a corresponding hydraulic station mounted on one side of the punch press body 1, and a punch with an adjustable angle installed in the middle of the punch press body 1 for punching holes on the sides and ends of the stainless steel basin; a material conveying mechanism located on one side of the punch press body 1, the material conveying mechanism including a rotatable tilting table 4 and a rodless cylinder 9 for adjusting the angle of the stainless steel basin and sorting materials, a vacuum suction cup 15 mounted on the top of the rodless cylinder 9 for picking up materials and switching the angle of the stainless steel basin; a support cylinder 27 with a chip discharge port at one end, the support cylinder 27 being adjustable and positioned below the punch, a grinding part embedded in the outer side of the support cylinder 27, and while the vacuum suction cup 15 switches the position of the stainless steel basin to correspond with the punch, the grinding part cleans and grinds the burrs inside the stainless steel basin.
[0019] It should be noted that a controller is provided in this embodiment, and all motors are servo motors equipped with encoders. The material is conveyed to the top of the tilting table 4, and the stainless steel basin is adsorbed and fixed by the negative pressure adsorption of the tilting table 4. Then, the stainless steel basin is rotated so that its outer wall is perpendicular to the vertical angle, which makes it convenient for the rodless cylinder 9 to drive the vacuum suction cup 15 to pick up the material by extension and retraction. After the material is picked up, it is moved horizontally. When the position of the stainless steel basin is aligned with that of the support cylinder 27, the vacuum suction cup 15 drives the stainless steel basin to be sleeved on the end of the support cylinder 27. At this time, the punch body 1 drives the punch to reciprocate up and down. During the process of the punch rising, the motor 2 13 drives the vacuum suction cup 15 to rotate at a fixed angle through the hollow rod 14, thereby switching the position of the opening, so as to realize the punching processing on the outside of the stainless steel basin. During the process of the vacuum suction cup 15 driving the stainless steel basin to rotate, the position of the opening on the inner wall of the stainless steel basin contacts the grinding part on the outside of the support cylinder 27, thereby scraping and grinding the burrs on the inner wall of the stainless steel basin. Under the action of the timer, after the side hole is opened, the support cylinder 27 rotates and moves horizontally, so that the bottom of the stainless steel basin is perpendicular to the vertical direction. Then the punch is switched, and the punch body 1 drives the punch to punch the bottom of the stainless steel basin. After the punching is completed, the support cylinder 27 rotates upward and moves horizontally with the moving frame 25 to make the stainless steel basin after the hole is opened fall onto the receiving conveyor.
[0020] In one embodiment, the material conveying mechanism further includes a material conveyor 2. Rubber separators are fixed at equal intervals on the conveyor belt of the material conveyor 2 for separating and conveying each stainless steel basin. The material conveyor 2 is installed on one side of the punch press body 1. A bracket is installed on the punch press body 1 corresponding to the position of the material conveyor 2. A support platform 3 is fixed on the top of the bracket and directly opposite the position of the material conveyor 2. A dual-axis cylinder 7 is fixed on the support platform 3 perpendicular to the conveying direction of the material conveyor 2. An industrial camera 36 is located directly above the support platform 3. The industrial camera 36 is a CCD camera. An LED light that works with the punch press body 1 is installed.
[0021] It should be noted that, in this embodiment, an infrared sensor for detecting the position of the stainless steel basin is installed at the end of the bracket. When the stainless steel basin is conveyed and pushed to the top of the support platform 3 by the conveyor 2, the controller controls the conveyor 2 to stop working under the action of the infrared sensor. In addition, the industrial camera 36 acquires an image of the stainless steel basin below. After the acquisition is completed, the dual-axis cylinder 7 pushes the stainless steel basin on the top of the support platform 3 to the top of the tilting platform 4.
[0022] In one embodiment, a rotating platform 4 is installed on one side of the bracket and at the position corresponding to the support platform 3. One side of the rotating platform 4 rotates with the bracket, and a motor 5 that drives the rotating platform 4 to rotate is fixedly connected to one side of the bracket. An air extraction hole 6 is opened in the middle of the rotating platform 4. A vacuum cleaner with its input end connected to the air extraction hole 6 is installed on one side of the punch press body 1. The vacuum cleaner is connected to the air extraction hole 6 through a hose to generate negative pressure on the air extraction hole 6. The negative pressure is used to adsorb the stainless steel basin onto the top of the rotating platform 4 and at the same time collect the debris inside the stainless steel basin.
[0023] It should be noted that after the industrial camera 36 acquires images in this embodiment, it sends them to the processing computer. The processing computer receives, processes, and analyzes the image data, compares the images with a pre-set standard, and thus obtains a test result indicating whether the requirements are met. When the dual-axis cylinder 7 pushes the stainless steel basin to the top of the tilting table 4, it is positioned under the limit of the edge. After the dual-axis cylinder 7 reaches its limit, the negative pressure device evacuates the air extraction hole 6 under the action of the limit switch, thereby using negative pressure to adsorb and fix the stainless steel basin on the top of the tilting table 4. After the dual-axis cylinder 7 resets, the motor 5 drives one end of the tilting table 4 to rotate, thereby placing the stainless steel basin in an inclined state through the tilting table 4, with its outer wall perpendicular to the punch. When the test fails, the top of the tilting table 4 flips downward, so that the stainless steel basin falls to the waste collection position below.
[0024] In one embodiment, a worktable 8 with a material receiving channel in the middle is fixedly connected to the middle of the punch press body 1. A rodless cylinder 9 is tilted and fixedly connected to the top of the worktable 8. A support base 10 is fixedly connected to the slider of the rodless cylinder 9. A movable slide 11 is slidably connected to the top of the support base 10 through a guide rail. A cylinder 12 for driving the movable slide 11 to slide is fixedly connected to one side of the support base 10. A motor 13 is fixedly connected to one side of the movable slide 11. A hollow rod 14 is rotatably connected to the middle of the movable slide 11. The end of the hollow rod 14 is connected to a vacuum suction cup 15. The motor 13 is connected to the hollow rod 14 through a synchronous belt assembly. A rotary joint is installed at one end of the hollow rod 14. The rotary joint is connected to a vacuum pump through an air duct.
[0025] It should be noted that in this embodiment, the tilting table 4 tilts the stainless steel basin to an angle that mates with the vacuum suction cup 15. The rodless cylinder 9 moves the support base 10 laterally. The support base 10 moves the hollow rod 14 and the vacuum suction cup 15 to a position corresponding to the center of the stainless steel basin at the top of the tilting table 4. The cylinder 12 moves the sliding table 11 along the support base 10. The sliding table 11 and the hollow rod 14 bring the vacuum suction cup 15 into contact with the stainless steel basin. The cylinder 12 works with the limit switch, and the vacuum suction cup 15 uses negative pressure to adhere and fix the stainless steel basin. At the same time, the controller controls the negative pressure device connected to the air extraction port 6 to disconnect the power. 12 extends and drives the vacuum suction cup 15 to separate the stainless steel basin at its end from the flipping table 4. The flipping table 4 rotates and resets. The rodless cylinder 9 moves the stainless steel basin laterally to the position corresponding to the support cylinder 27 via the moving slide 11 and the vacuum suction cup 15. The cylinder 12 retracts and drives the moving slide 11 to move. The moving slide 11, through the hollow rod 14 and the vacuum suction cup 15, puts the stainless steel basin on the outside of the support cylinder 27. The motor 13 drives the hollow rod 14 to rotate at a fixed angle via the synchronous belt and synchronous pulley. The hollow rod 14 drives the stainless steel basin to different positions corresponding to the punch via the vacuum suction cup 15. The punch reciprocates and rises to achieve 360° punching.
[0026] In one embodiment, the punch includes an adjusting seat 16 fixedly attached to the bottom of the lifting end of the punch body 1, a rotating disk 19 inside the adjusting seat 16, a top punch head 20 and a side punch head 21 fixedly attached to the outer side of the rotating disk 19, the included angle between the top punch head 20 and the side punch head 21 being a right angle, a motor 18 for driving the rotating disk 19 to rotate fixedly attached to the outer side of the adjusting seat 16, a positioning cylinder 17 fixedly attached to the outer side of the adjusting seat 16, a positioning pin fixedly connected to the output end of the positioning cylinder 17, and a positioning hole for engaging with the pin being opened in the middle of the rotating disk 19.
[0027] It should be noted that, in this embodiment, when drilling holes in the outer wall of the stainless steel basin, motor 18 drives the rotating disk 19 to rotate, making the rotating disk 19 vertically downward. At this time, the positioning cylinder 17 on the outer side of the rotating disk 19 corresponds to the positioning hole. The positioning cylinder 17 drives the positioning pin to insert into the positioning pin inside the rotating disk 19, thereby positioning the rotating disk 19 and preventing it from deflecting or loosening. The punch press body 1 drives the adjusting seat 16 to reciprocate up and down, realizing the reciprocating up and down of the side punching head 21. When punching holes in the bottom of the stainless steel basin, the positioning cylinder 17 drives the limiting pin to reset, and motor 18 drives the rotating disk 19 to rotate, making the top punching head 20 vertically downward. The positioning cylinder 17 inserts the limiting pin into the corresponding positioning hole of the rotating disk 19, thereby limiting the angle of the top punching head 20.
[0028] In one embodiment, an adjustment mechanism is also included. The adjustment mechanism includes a fixed base 22 fixed to the top of the worktable 8. A sliding stage 23 is slidably connected inside the fixed base 22. A hydraulic cylinder 35 for driving the sliding stage 23 is fixed to the outside of the fixed base 22. A movable frame 25 is fixed to the top of the sliding stage 23. A support cylinder 27 is rotatably mounted in the middle of the movable frame 25. A motor 26 with a braking function is fixed to the outside of the movable frame 25. The output end of the motor 26 is fixedly connected to the support cylinder 27. A rotary clamping cylinder 28 is fixed to the outside of the support cylinder 27.
[0029] It should be noted that, in this embodiment, when the stainless steel basin is perforated on the side, motor 26 drives the support cylinder 27 to rotate, so that the angle of the support cylinder 27 is the same as the angle and height of the rotated stainless steel basin on the top of the tilting table 4. This facilitates the rodless cylinder 9 to move the stainless steel basin on the top of the tilting table 4 to the outside of the support cylinder 27 via the hollow rod 14 and the vacuum suction cup 15. Under the action of cylinder 12, the end of the inner wall of the stainless steel basin fits against the end of the support cylinder 27. When it is necessary to punch holes in the bottom of the stainless steel basin, the rotating clamping cylinder 28 rotates and presses and fixes the edge of the stainless steel basin to the outside of the support cylinder 27. At this time, the hollow rod 14 drives the hollow rod 14 and the vacuum suction cup 15 to reset, and then the material is picked up again corresponding to the tilting table 4. Then, motor 26 drives the support cylinder 27 to rotate, so that the support cylinder 27 drives the top of the stainless steel basin to a horizontal state. Then, hydraulic cylinder 35 drives the sliding table 23 to slide inside the fixed seat 22, so that the bottom of the stainless steel basin corresponds to the vertically downward top punching head 20. After the opening is made, the rotary clamping cylinder 28 rotates and separates from the stainless steel basin. The hydraulic cylinder 35 drives the sliding table 23 to reset, and the motor 4 26 drives the end of the support cylinder 27 to rotate downward. Through the frequent and rapid extension and retraction of the hydraulic cylinder 35 and the up and down swing of the support cylinder 27 driven by the motor 4 26, the workpiece after the opening is made to fall from the receiving channel in the middle of the worktable 8 into the corresponding receiving and conveying equipment.
[0030] In one embodiment, an installation groove 30 is provided on the outer side of one end of the support cylinder 27. A punching support block 31 that cooperates with the side punching head 21 is fixedly connected inside the installation groove 30. A positioning support rod 33 for support and positioning is fixedly connected at equal intervals inside the installation groove 30. The grinding part includes a scraper 34 and a sponge sandpaper 32. The sponge sandpaper 32 and the scraper 34 are alternately fixed inside the installation groove 30.
[0031] It should be noted that in this embodiment, when the hollow rod 14 and the vacuum suction cup 15 cover the stainless steel basin outside the support cylinder 27, the positioning support rod 33 contacts the inner wall of the stainless steel basin to support it. The motor 13 rotates the stainless steel basin through the hollow rod 14 and the vacuum suction cup 15, so that the stainless steel basin is placed at different positions outside the punching support block 31 and fits against the punching support block 31. The punching support block 31 has through holes corresponding to the side punching head 21. Under the action of the punching machine body 1, the side punching head 21 reciprocates into the punching support block 31. During this period, the hollow rod 14 and the vacuum suction cup 15 drive the stainless steel basin to rotate. The inner wall of the stainless steel basin slides and connects with the outer side of the punching support block 31 and the outer side of the positioning support rod 33, thereby realizing the angle switching of the stainless steel basin and enabling orderly and fixed-angle openings on the outer side. During the rotation of the stainless steel basin, the scraper 34 scrapes off the protruding burrs. The support cylinder 27 has a rectangular hole near the scraper 34 to facilitate the entry of debris into the support cylinder 27. After the scraper 34 scrapes off the burrs, the sponge sandpaper 32 slides against the inner wall of the stainless steel basin to trim and polish the burrs inside. This allows for the use of position switching to drill holes for burr cleaning and polishing.
[0032] In one embodiment, a discharge conveyor 24 is fixedly connected to the top of the sliding table 23 and to the side near the chip discharge port, and an elastic plate 29 is fixedly connected between the discharge port and the edge of the discharge conveyor 24 to block and guide the waste chips.
[0033] It should be noted that in this embodiment, the elastic plate 29 is a rubber sheet. When the support cylinder 27 is in an inclined state, the debris cut off inside the punched support block 31 enters the interior of the support cylinder 27. It rolls down into the discharge conveyor 24 through the inner wall of the support cylinder 27 and the guidance of the elastic plate 29 and is transported to one end for collection. When the support cylinder 27 rotates to a vertical state, the elastic plate 29 is stretched and taut. At this time, the waste debris at the bottom of the stainless steel basin and the previously accumulated waste debris are all poured out from the bottom of the support cylinder 27. The poured-out waste debris enters the top of the discharge conveyor 24 along the inclined rotating disk 19 and is transported and collected.
[0034] In the description of this invention, it should be understood that the terms "coaxial," "bottom," "one end," "top," "middle," "other end," "upper," "side," "top," "inner," "front," "center," "both ends," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting this invention.
[0035] Furthermore, the terms "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first," "second," "third," or "fourth" may explicitly or implicitly include at least one of those features.
[0036] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "setting," "connection," "fixing," "screw connection," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0037] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A stainless steel drainage basket processing apparatus having a uniform pitch array, characterized by: Include: One side of the punch body (1) installed with industrial camera (36), the middle part of the punch body (1) is provided with angle switchable punch, which is used for punching the side edge and end of workpiece; The material conveying mechanism is arranged on one side of the punch body (1), the material conveying mechanism includes a reversible turnover table (4) and a rodless cylinder (9), which is used for adjusting the angle of the workpiece and sorting the material, and the top of the rodless cylinder (9) is provided with a vacuum chuck (15) for taking material and switching the angle of the workpiece; One end of the support cylinder (27) is provided with a chip removal port, the support cylinder (27) can be arranged below the punch, and the outer side of the support cylinder (27) is embeddedly provided with a polishing part, the vacuum chuck (15) switches the position of the workpiece corresponding to the punch, and the polishing part polishes the burr in the workpiece.
2. A stainless steel drainage basket processing apparatus having a uniform pitch array according to claim 1, characterized in that: The material conveying mechanism further includes a material conveying machine (2), the material conveying machine (2) is installed on one side of the punch body (1), the punch body (1) is provided with a support corresponding to the position of the material conveying machine (2), the top of the support and opposite to the position of the material conveying machine (2) is fixedly connected with a support table (3), the support table (3) is fixedly connected with a double shaft cylinder (7) perpendicular to the conveying direction of the material conveying machine (2), and the industrial camera (36) is located directly above the support table (3).
3. A stainless steel drainage basket processing apparatus having a uniform pitch array according to claim 2, wherein: One side of the support and corresponding to the position of the support table (3) is provided with a turnover table (4), one side of the turnover table (4) is rotatable with the support, and one side of the support is fixedly connected with a motor (5) for driving the turnover of the turnover table (4).
4. The stainless steel drainage basket processing apparatus having a uniform pitch array of holes of claim 1, wherein: The middle part of the punch body (1) is fixedly connected with a workbench (8) provided with a material collecting channel, and the top of the workbench (8) is fixedly connected with the rodless cylinder (9).
5. The stainless steel drainage basket processing apparatus having a uniform pitch array of holes of claim 1, wherein: The middle part of the punch body (1) is fixedly connected with a workbench (8) provided with a material collecting channel, and the top of the workbench (8) is fixedly connected with the rodless cylinder (9).
6. A stainless steel drainage basket processing apparatus having a uniform pitch array according to claim 1, wherein: The punch includes an adjusting seat (16) fixedly connected to the bottom of the lifting end of the punch body (1), a rotating disc (19) in the adjusting seat (16), a top punching head (20) and a side edge punching head (21) fixedly connected to the outer side of the rotating disc (19), and the included angle between the top punching head (20) and the side edge punching head (21) is a right angle.
7. A stainless steel drainage basket processing apparatus having a uniform pitch array according to claim 6, wherein: The outer side of the adjusting seat (16) is fixedly connected with a motor three (18) for driving the rotation of the rotating disc (19), and the outer side of the adjusting seat (16) is fixedly connected with a positioning cylinder (17), and the output end of the positioning cylinder (17) is fixedly connected with a positioning bolt, and the middle part of the rotating disc (19) is provided with a positioning hole matched with the bolt.
8. A stainless steel drainage basket processing apparatus having a uniform pitch array according to claim 6, wherein: Further comprising an adjusting mechanism, the adjusting mechanism comprises a fixed seat (22) fixed on the top of the workbench (8), the inside of the fixed seat (22) is slidably connected with a sliding table (23), the outside of the fixed seat (22) is fixedly connected with a hydraulic cylinder (35) for driving the movement of the sliding table (23), the top of the sliding table (23) is fixedly connected with a moving frame (25), the support cylinder (27) is rotatably installed in the middle part of the moving frame (25), the outside of the moving frame (25) is fixedly connected with a motor four (26) with a brake function, and the output end of the motor four (26) is fixedly connected with the support cylinder (27).
9. A stainless steel drainage basket processing apparatus having a uniform pitch array according to claim 8, wherein: The outer side of one end of the support cylinder (27) is provided with a mounting groove (30), the inside of the mounting groove (30) is fixedly connected with a punching support block (31) matched with the side punching head (21), the inside of the mounting groove (30) is fixedly connected with a positioning support rod (33) for supporting and positioning at equal intervals, the outside of the support cylinder (27) is fixedly connected with a rotary clamping cylinder (28), the polishing part comprises a scraper (34) and a sponge sandpaper (32), and the sponge sandpaper (32) and the scraper (34) are fixedly connected in the inside of the mounting groove (30) alternately.
10. A stainless steel drainage basket processing apparatus having a uniform pitch array according to claim 9, wherein: The top of the sliding table (23) and one side close to the chip removal opening are fixedly connected with a material discharging conveyor (24), and the elastic plates (29) are fixedly connected between the edges of the material discharging opening and the material discharging conveyor (24) for shielding and guiding the waste chips.